Güncel Yara Bakım Ürünleri

Özet

İlk zamanlar doğada bulunan malzemeler ile gerçekleştirilen yara bakımının tarihi Milattan Önceki (M.Ö.) yıllara kadar uzanır. Günümüzde yaranın tanılanması, takip edilmesi, bakım ve pansumanlarının yapılması hemşirelerin önemli sorumlulukları arasında yer alır.  Yara bakımı, aseptik teknikler ile dikkatle uygulanan ve uzun süre sabırla takip edilmesi gereken bir süreçtir. Günümüzde çeşitli teknolojilerin kullanımıyla beraber yara bakımında birtakım yenilikler meydana gelmiştir. Yara bakımı hakkında bilinenlerin her geçen gün değişmesi, yeni yöntem ve ürünlerin ortaya çıkması, bakımın planlanması ve değerlendirmesi üzerinde birtakım değişikliklere neden olmuştur. Yara bakımında kilit role sahip olan hemşireler, bu yenilikleri yakından takip ederek yara iyileşmesi, hasta güvenliği ve bakım maliyetleri gibi önemli alanlara katkı sağlar. Bu noktada, yara bakımına ilişkin bilimsel çalışma sonuçlarının takip edilmesi, yeni kullanılmaya başlanan teknolojik yöntem ve ürünler hakkında bilgi edinilmesi ve deneyimlerin paylaşılması hemşirelere güncel ve kanıta dayalı yara bakımı uygulamasında yarar sağlayacak bazı yöntemlerdir. Yara bakımında önemli olan nokta, iyileşme için yaraya gereksinim duyduğu ortamı sağlayarak, yaranın kendi kendini iyileştirmesini teşvik etmektir. Yaranın gereksinimleri hakkında bilgi sahibi olmak ve uygun bakım ürününü kullanmak hemşirenin sorumluluğundadır.

Referanslar

Koyutürk A, Demiray Soyaslan D. Yara ve yanık tedavisinde kullanılan örtüler. Mehmet Akif Ersoy Üniversitesi Fen Bilimleri Enstitüsü Dergisi Özel Sayı; 2016;1:58-65.

Kanat Z. Dermatolojide Geleneksel ve Tamamlayıcı Tıp Yöntemleri. Sırıken B, Güler A. (ed.). In: Sağlık Bilimleri Teori, Güncel Araştırmalar ve Yeni Eğilimler. Birinci Baskı Cetinje: Montenegro; 2021.

Vowden K, Vowden P. Wound dressings: principles and practice. Surg; 2017; 35 (9): 489–494. Doi: https://doi.org/10.1016/j.mpsur.2017.06.005

Doğan E. Yara Bakım Ürünleri. In: Yıldız CE, Karpuzoğlu E, Uğur M. (ed.) Kalp Damar Cerrahisinde Yara Bakım Ortak Görüş. Türk Kalp Damar Cerrahisi Derneği. 2021. p. 163-179.

Reed LA. Skin Integrity and Wound Healing. In: Craven R, Hirnle C, Henshaw CM. (ed.) Fundamentals of Nursing. Concepts and Competencies for Practice. 9th ed. Wolters Kluwer; 2021.

World Health Organization. Global Health Expenditure Database. World Health Organization. 2021. https://apps.who.int/nha/database. Access: 13.01.2022

TYBÜKS (Türk Yara Bakım Ürünleri Kodlama Sistemi). Erişim adresi: http://yarabakimidernegi.org.tr/sayfa-tybUks-turk-yara-bakim-Urunleri-kodlama-sistemi-65. html

Laurie S. Composite dressings. Access: 13 Mayıs 2020. https://www.woundsource.com/product-category/dressings/composites.

Tsai HC, Shu HC, Huang LC, Chen CM. A randomized clinical trial comparing a collagen‑based composite dressing versus topical antibiotic ointment on healing full‑thickness skin wounds to promote epithelialization. Formos J Surg; 2019;52:52-6.

Karadağ E. Basınç Yaraları. In: Kara Kaşıkçı M, Akın E. (ed.). Temel Hemşirelik Esaslar, Kavramlar, İlkeler, Uygulamalar. 2. Baskı. İstanbul Tıp Kitabevleri; 2023.

Özel B. Bası yarası olan hastaların yönetimi. Archives Medical Review Journal; 2014; 23 (3): 492-505.

Hassan ADAF, Mohammed HA. Effect of hydrocolloid dressing versus paraffin gauze dressing on wound healing and pain for split thickness skin graft donor site. International Journal of Nursing Didactics; 2018;8:43-51.

Aktaş Ş. Yara örtüleri ve kullanımları. İstanbul Üniversitesi Tıp Fakültesi, Sualtı Hekimliği ve HiperbarikTıp AD. Uygulamalı Yara Bakım Kursu. 28-30 Eylül 2017; Eskişehir.

Metcalf DG, Bowler PG.Clinical impact of an anti-biofilm hydrofiber dressing in hard-to-heal wounds previously managed with traditional antimicrobial products and systemic antibiotics. Burns & Trauma; 2020; 8: tkaa004. https://doi.org/10.1093/burnst/tkaa004

Edmonds M, Lázaro-Martínez JL, Alfayate-García JM, et al. Sucrose octasulfate dressing versus control dressing in patients with neuroischaemic diabetic foot ulcers (explorer): An international, multicentre, double-blind, randomised, controlled trial. The Lancet Diabetes & Endocrinology. 2018; 6(3):186-196. Doi:10.1016/S2213-8587(17)30438-2.

Lynn P. Taylor Klinik Hemşirelik Becerileri Bir Hemşirelik Süreci Yaklaşımı. Bektaş H. (ed.) 3. Basımdan Çeviri; Ankara: Nobel Akademik Yayıncılık. 2015: 190-198.

Basınç Ülserlerinin/Yaralarının Önlenmesi ve Tedavisi: Hızlı Başvuru Kılavuzu. (Türkçe versiyon). Haesler E. (ed.). EPUAP/NPIAP/PPPIA; 2019.

Yang Y, Hu H. A review on antimicrobial silver absorbent wound dressing applied to exuding wounds. J Microb Biochem Technol; 2015; 7(4): 228-233

Powers JG, Higham C, Broussard K, Phillips TJ. Wound healing and treating wounds. Chronic wound care and management. J Am Acad Dermatol; 2016; 74: 607-25.

Lee YJ, Kim JY, Shin WY. Use of prophylactic silicone adhesive dressings for maintaining skin integrity in intensive care unit patients: a randomised controlled trial. International Wound Journal; 2019;16 (Suppl. 1): 36-42. Doi:10.1111/iwj.13028.

Ersoy T, Duran M, Tayyar A. Tıbbi tekstiller ve yara örtüsü. Düzce Üniversitesi Bilim ve Teknoloji Dergisi; 2015; 3: 451-458.

Hasatsri S, Pitiratanaworanat A, Swangwit S, et al. Comparison of the morphological and physical properties of different absorbent wound dressings. Dermatology Research and Practice; 2018;1-6. Doi:10.1155/2018/9367034.

Öztaş P. Yara İyileşmesi, Bakımı Ve Tedavisi. Ankara Eğitim ve Araştırma Hastanesi Tıp Dergisi; 2021; 54 (2) :341-351. Doi: 10.20492/aeahtd.931499

Mirasoğlu B. Yara bakım ürünleri. TOTBİD Dergisi; 2015; 14: 456-461.

Kazancı Göğüş DÖ, Tüzüm Demir, AP. Hidrojel Temelli Yara örtülerinde kullanılan doğal biyopolimerler. Plastik & Ambalaj Teknolojisi Dergisi; Erişim tarihi: 08.11.2023. https://www.plastik-ambalaj.com/tr/katilacagimiz-fuarlar/160-plastik-ambalaj-makale/makale2/3135-hidrojel-temelli-yara-oertuelerinde-kullan-lan-dogal-biyopolimerler

Burç Deşer S. Medikal Tedavi. In: Yıldız CE, Karpuzoğlu E, Uğur M. (ed.) Kalp Damar Cerrahisinde Yara Bakım Ortak Görüş. Türk Kalp Damar Cerrahisi Derneği. 2021; 63-76.

Perry AG, Potter PA. Klinik Uygulama Becerileri ve Yöntemleri. Atabek Aştı T, Karadağ A. (Edit.). Pansumanlar ve Yara Bakımı 2011; 1256-1305.

Akhmetova A, Saliev T, Allan IU, et al. A comprehensive review of topical odor-controlling treatment options for chronic wounds. Journal Of Wound, Ostomy and Continence Nursing; 2016; 43 (6): 598–609. https://doi.org/10.1097/WON.0000000000000273

Barrett S, Rippon MG, Rogers AA. Effectiveness of wound contact layers in enabling undisturbed wound management: a case series. Journal of Wound Care; 2023; 32 (3):134-144. https://doi.org/10.12968/jowc.2023.32.3.134

King B, Barrett S, Welch D. A clinical evaluation of 21 patients using Kliniderm silicone wound contact layer. Wounds UK; 2021; 17 (1): 98-103.

Rızalar S, Tural Büyük E, Kaplan Uzunkaya G, et al. Hemşirelerin yara bakım uygulamaları; Üniversite hastanesi örneği. DEUHFED; 2019;12 (3):163-169.

Şanlı D, Sarıkaya A. Santral venöz kateterde kanıta dayalı hemşirelik bakım yönetimi. Yoğun Bakım Hemşireliği Dergisi; 2016; 20: 84-97.

Tito A, Minale M, Riccio S, et al. A triticum vulgare extract exhibits regenerating activity during the wound healing process. Clinical, Cosmetic and Investigational Dermatology; 2020; 13: 21–30. https://doi.org/10.2147/CCID.S216391

Ahmed AS, Taher M, Mandal, UK, et al. Pharmacological properties of Centella asiatica hydrogel in accelerating wound healing in rabbits. BMC Complement Altern Med; 2019; 19 (1): 213. https://doi.org/10.1186/s12906-019-2625-2

DiDomenico LA, Orgill DP, Galiano RD, et al. Use of an aseptically processed, dehydrated human amnion and chorion membrane improves likelihood and rate of healing in chronic diabetic foot ulcers: a prospective, randomised, multi‐centre clinical trial in 80 patients. International Wound Journal; 2018;15 (6): 950-957. Doi:10.1111/iwj.12954.

Peng W, Li D, Dai K, et al. International Journal of Biological Macromolecules; 2022; 208: 400–408. https://doi.org/10.1016/j.ijbiomac.2022.03.002

Şahin İ, Alhan D, Eski M, et al. Deri grefti alma eğitimi için pratik bir çözüm: domuz derisinden greft alma modeli. Türk Plastik Rekonstrüktif Ve Estetik Cerrahi Dergisi; 2009; 17 (2): 61-64.

Cui R, Zhang L, Ou R, et al. Polysaccharide-based hydrogels for wound dressing: design considerabons and clinical applicabons. Front Bioeng Biotechnol; 2022; (10): 845735.

Jayakumar R, Sudhessh Kumar PT, et al. The art, method, manner, process and system of chitosan hydrogel/nano zinc oxide membranes for wound dressing applications. U.S. Patent 1025/CHE/20102010. https://www.amrita.edu/publication/artmethod-manner-process-and-system-chitosan-hydrogel-nano-zinc-oxidemembranes-wound. Access: 20.01.2020.

Demir O. Acil servise üst ekstremite kesisi ile başvuran hastalarda primer süturasyon öncesi yapılan lokal anesteziklerin uygulanış şekli açısından yara yeri enfeksiyonu gelişimi ile ilişkisi. Tıpta Uzmanlık Tezi. Marmara Üniversitesi Tıp Fakültesi, Acil Tıp Anabilim Dalı, İstanbul, 2018.

Osman S, Umar H, Hashmi Y, et al. The efficacy of honey compared to silver sulfadiazine for burn wound dressing in superficial and partial thickness burns—a systematic review and meta-analysis. Trauma Care; 2022, 2: 523–534.

Norman G, Dumville JC, Moore ZEH, et al. Antibiotics and antiseptics for pressure ulcers. Cochrane Database of Systematic Reviews; 2016; (4): CD011586. Doi: 10.1002/14651858.CD011586.pub2

Norman G, Christie J, Liu Z, et al. Antiseptics for burns. Cochrane Database of Systematic Reviews; 2017; (7): CD011821. Doi: 10.1002/14651858.CD011821.pub2

Akalın B, İrban A., Özargun G. Türkiye’de Geleneksel ve Tamamlayıcı Tıp Uygulamalarının Mevcut Standartları ve İyileştirme Önerileri. J Pro Health Res; 2023; 5 (1): 49-69.

Adhikari BN, Khatiwada S. Comparison of the nanocrystalline silver (ncs) dressing over paraffin gauze dressing on split-thickness skin graft donor site. International Journal of Health Sciences & Research; 2017; 7 (12): 63-67.

Heiro H, Sandven I, Berents, TL. Glove-related hand urticaria. Tidsskr Nor Legeforen; 2021; 141: 14. Doi: 10.4045/tidsskr.21.0050

Kon Y, Ichikawa-Shigeta Y, Iuchi T, et al. Effects of a skin barrier cream on management of ıncontinence-associated dermatitis in older women: a cluster randomized controlled trial. Journal of Wound, Ostomy And Continence Nursing; 2017; 44 (5): 481–486. https://doi.org/10.1097/WON.0000000000000353

Pancur S, Bilensoy E, Çalış S. Biyoparçalanır Doğal ve sentetik polimerlerin yara örtülerinde kullanımı. FABAD J Pharm. Sci; 2022; 47 (3): 419-442. Doi: 10.55262/fabadeczacilik.1185870

El-Rashidy AA, Gad A, Abu-Hussein AEG, et al. Chemical and biological evaluation of egyptian nile tilapia (oreochromis niloticas) fish scale collagen. International Journal of Biological Macromolecules; 2015; 79: 618–626.

Sahana TG, Rekha PD. Biopolymers: Applications in wound healing and skin tissue engineering. Molecular Biology Reports; 2018; 45 (6): 28572867. https://doi.org/10.1007/s11033-018-4296-3

Liu Y, Liu Y, Deng J, Li W and Nie X (2021) Fibroblast Growth Factor in Diabetic Foot Ulcer: Progress and Therapeutic Prospects. Front. Endocrinol. 12:744868. doi: 10.3389/fendo.2021.744868

Greer N, Foman NA, MacDonald R, et al. Advanced wound care therapies for nonhealing diabetic, venous, and arterial ulcers. Annals of Internal Medicine; 2013; 159: 532-542.

Mutlu S, Yılmaz E. Yara yönetiminde güncel yaklaşımlar. GÜSBD; 2019; 8 (4): 481 – 494.

Cortes H, Caballero-Florán IH, Mendoza-Muñoz N, et al. Hyaluronic acid in wound dressings. Cellular and Molecular Biology (Noisy-le-Grand, France); 2020; 66 (4): 191–198.

Graça MFP, Miguel SP, Cabral CSD, et al. Hyaluronicacid—based wound dressings: A review. Carbohydrate Polymers; 2020; 241: 116364.

Robert N. Negative pressure wound therapy in orthopaedic surgery. Orthop Traumatol Surg Res; 2017;103 (1S): 99–103.

Cwaliński J, Hermann J, Banasiewicz T. Healing peristomal wounds around retracted stomas with negative-pressure wound therapy: a case series. Advances in Skin & Wound Care; 2023; 36(8), 435–440.

Ud-Din S, Sebastian A, Giddings P, et al. Angiogenesis is ınduced and wound size is reduced by electrical stimulation in an acute wound healing model in human skin. Plos One; 2015; 10 (4): 1-22.

Ozan F, Altay T, Kayalı C. Hiperbarik oksijen tedavisi. TOTBİD Dergisi; 2017; 16: 187–195. Doi: 10.14292/totbid.dergisi.2017.28

Vural F, Savcı A. Yara bakımında yeni uygulamalar. Turkiye Klinikleri J Surg Nurs-Special Topics; 2017; 3 (3): 224-32

Kaufman H, Gurevich M, Tamir E, et al. Topical oxygen therapy stimulates healing in difficult, chronic wounds: a tertiary centre experience. Journal of Wound Care; 2018; 27 (7): 426-433. https://doi.org/10.12968/jowc.2018.27.7.426

Serena TE, Bullock NM, Cole W, et al. Patricia PriceTopical oxygen therapy in the treatment of diabetic foot ulcers: a multicentre, open, randomised controlled clinical trial. Journal of Wound; 2021; 30 (5): 7-14. https://doi.org/10.12968/jowc.2021.30.Sup5.S7

Chandra PK, Ross CL, Smith LC, et al. Peroxide-based oxygen generating topical wound dressing for enhancing healing of dermal wounds. Wound Repair Regen; 2015; 23 (6): 830-841.

Choi H., Ryu H., Woon Lee D. Case of Treatment of Snakebite on Finger with Topical Oxygen Therapy Arch Hand Microsurg 2020;25(4):292-296

Sezer D, Aktaş M. Açık Yara Tedavilerine Son Yaklaşımlar. Turk Vet J; 2020; 2 (1) : 24-28

Karakaya E, Akdur A, Soy EA, et al. Effect of subcutaneous topical ozone therapy on second-degree burn wounds in rats: an experimental study. J Burn Care Res; 2021; 42 (6): 1243-1253.

Liu L, Zeng L, Gao L, et al. Ozone therapy for skin diseases: Cellular and molecular mechanisms. Int Wound J; 2023; 20 (6): 2376-2385. Doi:10.1111/iwj.14060

Gazi U, Özkan AT, Mumcuoğlu KY. Larval terapi ve kronik yaralar. J Biotechnol and Strategic Health Res; 2019; 3 (Özel Sayı): 55-60.

Mohd Zubir MZ, Holloway S, Mohd Noor N. Maggot Therapy in Wound Healing: A Systematic Review. International Journal Of Environmental Research And Public Health; 2020; 17(17): 6103. https://doi.org/10.3390/ijerph17176103

İstanbul Üniversitesi. Cerrahpaşa Geleneksel ve Tamamlayıcı Tıp Uygulama ve Araştırma Merkezi. Erişim adresi: https://getat.iuc.edu.tr/tr/content/uygulamalar/larva

Stiehl JB. Jet lavage ırrigation resolves stage 4 pelvic pressure ınjury undermining. Advances in Skin and Wound Care; 2023; 36 (8): 441-446. Doi: 10.1097/ASW.0000000000000007

Vees T, Hofmann GO. Early periprosthetic infection: dilution, jet dilution or local antibiotics. Which way to go? A meta-analysis on 575 patients. GMS Interdisciplinary Plastic And Reconstructive Surgery DGPW; 2020; 9: Doc03. https://doi.org/10.3205/iprs000147

Jackson WM, Nesti LJ, Tuan RS. Concise review: Clinical Translation of wound healing therapies based on mesenchymal stem cells. Stem Cells Trans Med; 2012; 1: 44-50.

Suter VGA, Sjölund S, Bornstein MM. Tekrarlayan aftöz stomatitte lazerin ağrının giderilmesi ve yara iyileşmesi üzerindeki etkisi: sistematik bir inceleme. Lasers Med Sci; 2017; 32: 953–963. https://doi.org/10.1007/s10103-017-2184-z

Boyraz İ, Yıldız A. Lazer çeşitleri ve yüksek yoğunluklu lazer kullanımı. J Contemp Med; 2016; 6: 104-109. Doi: 10.16899/ctd. 55797

Bavaresco T, Lucena AF. Low-laser light therapy in venous ulcer healing: a randomized clinical trial. Rev Bras Enferm; 2022; 75 (3): 1-7. https://doi.org/10.1590/0034-7167-2021-0396

Taşçı Bozbaş G, Güler G. Bası Yaralarında Güncel Tedavi Yaklaşımları. Sakarya Medical Journal; 2011; (4): 118-125. Doi:10.5505/sakaryamj.2011.24633

Mostafa J, Ali Y, Zohre R, et al. Electromagnetic fields and ultrasound waves in wound treatment: a comparative review of therapeutic outcomes. Biosciences Biotechnology Research Asia; 2015; 12 (1): 185–195.

Baba-Akbari Sari A, Flemming K, Cullum NA, et al. Therapeutic ultrasound for pressure ulcers. Cochrane Database of Systematic Reviews; 2006; 3: pub2.

Pita-Vilar M, Concheiro A, Alvarez-Lorenzo C, et al. Recent advances in 3D printed cellulose-based wound dressings: A review on in vitro and in vivo achievements. Carbohydrate Polymers; 2023; 321 (1): 121298

Feng Z, Su Q, Zhang C, et al. Bioinspired nanofibrous glycopeptide hydrogel dressing for accelerating wound healing: A Cytokine-free, M2-type macrophage polarization approach. Adv. Funct. Mater; 2020; 30: 2006454. https://doi.org/10.1002/adfm.202006454

Uchida DT, Bruschi ML. 3D printing as a technological strategy for the personalized treatment of wound healing. AAPS Pharm Sci Tech; 2023; 24 (1): 41. https://doi.org/10.1208/s12249-023-02503-0

Las Heras K, Igartua M, Santos-Vizcaino E, et al. Chronic wounds: Current status, available strategies and emerging therapeutic solutions. Journal of Controlled Release; 2020; 328: 532-550

Sun Y, AD. Juncos Bombin AD, Boyd P et al. Application of 3D printing and 3D bioprinting for promoting cutaneous wound regeneration. Bioprinting; 2022; 28: 00230.

Demiral A, Mert F. Polimerik Yara örtülerinde üç boyutlu (3B) baskı teknolojisi uygulamaları. Gazi Üniversitesi Fen Bilimleri Dergisi Part C; 2022; 10 (2): 348-359.

Visscher, DO, te Slaa S, Jaspers ME, et al. 3D printing of patient-specific neck splints for the treatment of post-burn neck contractures. Burns & Trauma; 2018; 6:15. https://doi.org/10.1186/s41038-018-0116-1

Maver T, Smrke DM, Kurečič M, et al. Combining 3D printing and electrospinning for preparation of pain-relieving wound-dressing materials. Journal of Sol-Gel Science and Technology; 2018; 88 (1): 33-48.

Diaz-Gomez L, Gonzalez-Prada I, Millan R, et al. 3D printed carboxymethyl cellulose scaffolds for autologous growth factors delivery in wound healing Carbohydrate Polymers; 2022; 278:118924

Hafezi F, Scoutaris N, Douroumis D, et al. 3D printed chitosan dressing crosslinked with genipin for potential healing of chronic wounds. Int. J. Pharm; 2019; 560: 406–415. Doi: 10.1016/j.ijpharm.2019.02.020

Teoh JH, Tay SM, Fuh J, et al. Fabricating scalable, personalized wound dressings with customizable drug loadings via 3D printing. J. Control. Release; 2021; 341: 80–94. Doi: 10.1016/j.jconrel.2021.11.017

Wong AYW, Ong BSY, Lee A, et al. Topical biological agents as adjuncts to improve wound healing in chronic diabetic wounds: A systematic review of clinical evidence and future directions. Cureus; 2022;14 (7): 27180.

Long J, Etxeberria AE, Nand AV, et al. A 3D printed chitosan-pectin hydrogel wound dressing for lidocaine hydrochloride delivery. Materials science and engineering C; 2019; 109873. https://doi.org/10.1016/j.msec.2019.109873

Customised hydrogel mask starts with 3D scan. University of Waterloo. Access: https://www.theengineer.co.uk/content/news/3d-printed-wound-dressing-could-improve-treatment-for-burns-and-cancer-patients/

Levin A, Gong S, Cheng W. Wearable smart bandage-based bio-sensors. Biosensors; 2023; 13: 462. https://doi.org/10.3390/bios13040462

Farooqui MF, Shamim A. low cost ınkjet printed smart bandage for wireless monitoring of chronic wounds. Sci. Rep; 2016; 6: 28949.

Kassal P, Zubak M, Scheipl G, et al. Smart bandage with wireless connectivity for optical monitoring of pH. Sensors and Actuators B: Chemical; 2017; 246: 455-460.

Ribeiro AM, Flores-Sahagun THS. Application of stimulus-sensitive polymers in wound healing formulation. Int. J. Polym. Mater. Polym. Biomater; 2020; 69:979.

Percival SL, Hill KE, Williams DW, et al. A review of the scientific evidence for biofilms in wounds. Wound Repair and Regen; 2012; 20 (5): 647–657. https://doi.org/10.1111/j.1524-475X.2012.00836.x

Kassal P, Kim J, Kumar R, et al. Smart bandage with wireless connectivity for uric acid biosensing as an indicator of wound status. Electrochem. Commun; 2015; 56: 6–10.

Mostafalu P, Gita K, Giatsidis G, et al. A textile dressing for temporal and dosage controlled drug delivery. Advanced Functional Material; 2017; 27 (41): 1702399. https://doi.org/10.1002/adfm.201702399

Landsman A, Agnew P, Parish L, Joseph, et al. Diabetic foot ulcers treated with becaplermin and TheraGauze, a moisture-controlling smart dressing: a randomized, multicenter, prospective analysis. Journal of the American Podiatric Medical Association; 2010; 100 (3): 155–160. https://doi.org/10.7547/1000155

Pang Q, Lou D, Li S, et al. Smart flexible electronics‐integrated wound dressing for real‐time monitoring and on‐demand treatment of infected wounds. Advanced Science; 2020; 7(6), 1902673.

Khatib M, Zohar O, Saliba W, et al. A multifunctional electronic skin empowered with damage mapping and autonomic acceleration of self-healing in designated locations. Advanced Materials; 2020; 32 (17): e2000246. https://doi.org/10.1002/adma.202000246

Ochoa M, Rahimi R, Zhou J, et al. Integrated sensing and delivery of oxygen for next-generation smart wound dressings. Microsystems & Nanoengineering; 2020; 6: 46. https://doi.org/10.1038/s41378-020-0141-7

Long Y, Wei H, Li J, et al. Effective wound healing enabled by discrete alternative electric fields from wearable nanogenerators. ACS Nano; 2018; 12 (12): 12533-12540 Doi: 10.1021/acsnano.8b07038Long

Ghassemi JW, Shupp TE, Travis AJ. A portable automatic pressure delivery system for scar compression therapy in large animals. Rev. Sci. Instrum; 2015; 86: 015101.

Nardini M, Perteghella S, Mastracci L, et al. Growth factors delivery system for skin regeneration: an advanced wound dressing. Pharmaceutics; 2020; 12: 120.

Sharifuzzaman M, Chhetry A, Zahed MA, et al. Smart bandage with integrated multifunctional sensors based on MXene-functionalized porous graphene scaffold for chronic wound care management. Biosens. Bioelectron; 2020; 169: 112637.

Tamayol A, Hassani Najafabadi A, Mostafalu P, et al. Biodegradable elastic nanofibrous platforms with integrated flexible heaters for on-demand drug delivery. Scientific Reports; 2017; 7 (1): 9220.

Referanslar

Koyutürk A, Demiray Soyaslan D. Yara ve yanık tedavisinde kullanılan örtüler. Mehmet Akif Ersoy Üniversitesi Fen Bilimleri Enstitüsü Dergisi Özel Sayı; 2016;1:58-65.

Kanat Z. Dermatolojide Geleneksel ve Tamamlayıcı Tıp Yöntemleri. Sırıken B, Güler A. (ed.). In: Sağlık Bilimleri Teori, Güncel Araştırmalar ve Yeni Eğilimler. Birinci Baskı Cetinje: Montenegro; 2021.

Vowden K, Vowden P. Wound dressings: principles and practice. Surg; 2017; 35 (9): 489–494. Doi: https://doi.org/10.1016/j.mpsur.2017.06.005

Doğan E. Yara Bakım Ürünleri. In: Yıldız CE, Karpuzoğlu E, Uğur M. (ed.) Kalp Damar Cerrahisinde Yara Bakım Ortak Görüş. Türk Kalp Damar Cerrahisi Derneği. 2021. p. 163-179.

Reed LA. Skin Integrity and Wound Healing. In: Craven R, Hirnle C, Henshaw CM. (ed.) Fundamentals of Nursing. Concepts and Competencies for Practice. 9th ed. Wolters Kluwer; 2021.

World Health Organization. Global Health Expenditure Database. World Health Organization. 2021. https://apps.who.int/nha/database. Access: 13.01.2022

TYBÜKS (Türk Yara Bakım Ürünleri Kodlama Sistemi). Erişim adresi: http://yarabakimidernegi.org.tr/sayfa-tybUks-turk-yara-bakim-Urunleri-kodlama-sistemi-65. html

Laurie S. Composite dressings. Access: 13 Mayıs 2020. https://www.woundsource.com/product-category/dressings/composites.

Tsai HC, Shu HC, Huang LC, Chen CM. A randomized clinical trial comparing a collagen‑based composite dressing versus topical antibiotic ointment on healing full‑thickness skin wounds to promote epithelialization. Formos J Surg; 2019;52:52-6.

Karadağ E. Basınç Yaraları. In: Kara Kaşıkçı M, Akın E. (ed.). Temel Hemşirelik Esaslar, Kavramlar, İlkeler, Uygulamalar. 2. Baskı. İstanbul Tıp Kitabevleri; 2023.

Özel B. Bası yarası olan hastaların yönetimi. Archives Medical Review Journal; 2014; 23 (3): 492-505.

Hassan ADAF, Mohammed HA. Effect of hydrocolloid dressing versus paraffin gauze dressing on wound healing and pain for split thickness skin graft donor site. International Journal of Nursing Didactics; 2018;8:43-51.

Aktaş Ş. Yara örtüleri ve kullanımları. İstanbul Üniversitesi Tıp Fakültesi, Sualtı Hekimliği ve HiperbarikTıp AD. Uygulamalı Yara Bakım Kursu. 28-30 Eylül 2017; Eskişehir.

Metcalf DG, Bowler PG.Clinical impact of an anti-biofilm hydrofiber dressing in hard-to-heal wounds previously managed with traditional antimicrobial products and systemic antibiotics. Burns & Trauma; 2020; 8: tkaa004. https://doi.org/10.1093/burnst/tkaa004

Edmonds M, Lázaro-Martínez JL, Alfayate-García JM, et al. Sucrose octasulfate dressing versus control dressing in patients with neuroischaemic diabetic foot ulcers (explorer): An international, multicentre, double-blind, randomised, controlled trial. The Lancet Diabetes & Endocrinology. 2018; 6(3):186-196. Doi:10.1016/S2213-8587(17)30438-2.

Lynn P. Taylor Klinik Hemşirelik Becerileri Bir Hemşirelik Süreci Yaklaşımı. Bektaş H. (ed.) 3. Basımdan Çeviri; Ankara: Nobel Akademik Yayıncılık. 2015: 190-198.

Basınç Ülserlerinin/Yaralarının Önlenmesi ve Tedavisi: Hızlı Başvuru Kılavuzu. (Türkçe versiyon). Haesler E. (ed.). EPUAP/NPIAP/PPPIA; 2019.

Yang Y, Hu H. A review on antimicrobial silver absorbent wound dressing applied to exuding wounds. J Microb Biochem Technol; 2015; 7(4): 228-233

Powers JG, Higham C, Broussard K, Phillips TJ. Wound healing and treating wounds. Chronic wound care and management. J Am Acad Dermatol; 2016; 74: 607-25.

Lee YJ, Kim JY, Shin WY. Use of prophylactic silicone adhesive dressings for maintaining skin integrity in intensive care unit patients: a randomised controlled trial. International Wound Journal; 2019;16 (Suppl. 1): 36-42. Doi:10.1111/iwj.13028.

Ersoy T, Duran M, Tayyar A. Tıbbi tekstiller ve yara örtüsü. Düzce Üniversitesi Bilim ve Teknoloji Dergisi; 2015; 3: 451-458.

Hasatsri S, Pitiratanaworanat A, Swangwit S, et al. Comparison of the morphological and physical properties of different absorbent wound dressings. Dermatology Research and Practice; 2018;1-6. Doi:10.1155/2018/9367034.

Öztaş P. Yara İyileşmesi, Bakımı Ve Tedavisi. Ankara Eğitim ve Araştırma Hastanesi Tıp Dergisi; 2021; 54 (2) :341-351. Doi: 10.20492/aeahtd.931499

Mirasoğlu B. Yara bakım ürünleri. TOTBİD Dergisi; 2015; 14: 456-461.

Kazancı Göğüş DÖ, Tüzüm Demir, AP. Hidrojel Temelli Yara örtülerinde kullanılan doğal biyopolimerler. Plastik & Ambalaj Teknolojisi Dergisi; Erişim tarihi: 08.11.2023. https://www.plastik-ambalaj.com/tr/katilacagimiz-fuarlar/160-plastik-ambalaj-makale/makale2/3135-hidrojel-temelli-yara-oertuelerinde-kullan-lan-dogal-biyopolimerler

Burç Deşer S. Medikal Tedavi. In: Yıldız CE, Karpuzoğlu E, Uğur M. (ed.) Kalp Damar Cerrahisinde Yara Bakım Ortak Görüş. Türk Kalp Damar Cerrahisi Derneği. 2021; 63-76.

Perry AG, Potter PA. Klinik Uygulama Becerileri ve Yöntemleri. Atabek Aştı T, Karadağ A. (Edit.). Pansumanlar ve Yara Bakımı 2011; 1256-1305.

Akhmetova A, Saliev T, Allan IU, et al. A comprehensive review of topical odor-controlling treatment options for chronic wounds. Journal Of Wound, Ostomy and Continence Nursing; 2016; 43 (6): 598–609. https://doi.org/10.1097/WON.0000000000000273

Barrett S, Rippon MG, Rogers AA. Effectiveness of wound contact layers in enabling undisturbed wound management: a case series. Journal of Wound Care; 2023; 32 (3):134-144. https://doi.org/10.12968/jowc.2023.32.3.134

King B, Barrett S, Welch D. A clinical evaluation of 21 patients using Kliniderm silicone wound contact layer. Wounds UK; 2021; 17 (1): 98-103.

Rızalar S, Tural Büyük E, Kaplan Uzunkaya G, et al. Hemşirelerin yara bakım uygulamaları; Üniversite hastanesi örneği. DEUHFED; 2019;12 (3):163-169.

Şanlı D, Sarıkaya A. Santral venöz kateterde kanıta dayalı hemşirelik bakım yönetimi. Yoğun Bakım Hemşireliği Dergisi; 2016; 20: 84-97.

Tito A, Minale M, Riccio S, et al. A triticum vulgare extract exhibits regenerating activity during the wound healing process. Clinical, Cosmetic and Investigational Dermatology; 2020; 13: 21–30. https://doi.org/10.2147/CCID.S216391

Ahmed AS, Taher M, Mandal, UK, et al. Pharmacological properties of Centella asiatica hydrogel in accelerating wound healing in rabbits. BMC Complement Altern Med; 2019; 19 (1): 213. https://doi.org/10.1186/s12906-019-2625-2

DiDomenico LA, Orgill DP, Galiano RD, et al. Use of an aseptically processed, dehydrated human amnion and chorion membrane improves likelihood and rate of healing in chronic diabetic foot ulcers: a prospective, randomised, multi‐centre clinical trial in 80 patients. International Wound Journal; 2018;15 (6): 950-957. Doi:10.1111/iwj.12954.

Peng W, Li D, Dai K, et al. International Journal of Biological Macromolecules; 2022; 208: 400–408. https://doi.org/10.1016/j.ijbiomac.2022.03.002

Şahin İ, Alhan D, Eski M, et al. Deri grefti alma eğitimi için pratik bir çözüm: domuz derisinden greft alma modeli. Türk Plastik Rekonstrüktif Ve Estetik Cerrahi Dergisi; 2009; 17 (2): 61-64.

Cui R, Zhang L, Ou R, et al. Polysaccharide-based hydrogels for wound dressing: design considerabons and clinical applicabons. Front Bioeng Biotechnol; 2022; (10): 845735.

Jayakumar R, Sudhessh Kumar PT, et al. The art, method, manner, process and system of chitosan hydrogel/nano zinc oxide membranes for wound dressing applications. U.S. Patent 1025/CHE/20102010. https://www.amrita.edu/publication/artmethod-manner-process-and-system-chitosan-hydrogel-nano-zinc-oxidemembranes-wound. Access: 20.01.2020.

Demir O. Acil servise üst ekstremite kesisi ile başvuran hastalarda primer süturasyon öncesi yapılan lokal anesteziklerin uygulanış şekli açısından yara yeri enfeksiyonu gelişimi ile ilişkisi. Tıpta Uzmanlık Tezi. Marmara Üniversitesi Tıp Fakültesi, Acil Tıp Anabilim Dalı, İstanbul, 2018.

Osman S, Umar H, Hashmi Y, et al. The efficacy of honey compared to silver sulfadiazine for burn wound dressing in superficial and partial thickness burns—a systematic review and meta-analysis. Trauma Care; 2022, 2: 523–534.

Norman G, Dumville JC, Moore ZEH, et al. Antibiotics and antiseptics for pressure ulcers. Cochrane Database of Systematic Reviews; 2016; (4): CD011586. Doi: 10.1002/14651858.CD011586.pub2

Norman G, Christie J, Liu Z, et al. Antiseptics for burns. Cochrane Database of Systematic Reviews; 2017; (7): CD011821. Doi: 10.1002/14651858.CD011821.pub2

Akalın B, İrban A., Özargun G. Türkiye’de Geleneksel ve Tamamlayıcı Tıp Uygulamalarının Mevcut Standartları ve İyileştirme Önerileri. J Pro Health Res; 2023; 5 (1): 49-69.

Adhikari BN, Khatiwada S. Comparison of the nanocrystalline silver (ncs) dressing over paraffin gauze dressing on split-thickness skin graft donor site. International Journal of Health Sciences & Research; 2017; 7 (12): 63-67.

Heiro H, Sandven I, Berents, TL. Glove-related hand urticaria. Tidsskr Nor Legeforen; 2021; 141: 14. Doi: 10.4045/tidsskr.21.0050

Kon Y, Ichikawa-Shigeta Y, Iuchi T, et al. Effects of a skin barrier cream on management of ıncontinence-associated dermatitis in older women: a cluster randomized controlled trial. Journal of Wound, Ostomy And Continence Nursing; 2017; 44 (5): 481–486. https://doi.org/10.1097/WON.0000000000000353

Pancur S, Bilensoy E, Çalış S. Biyoparçalanır Doğal ve sentetik polimerlerin yara örtülerinde kullanımı. FABAD J Pharm. Sci; 2022; 47 (3): 419-442. Doi: 10.55262/fabadeczacilik.1185870

El-Rashidy AA, Gad A, Abu-Hussein AEG, et al. Chemical and biological evaluation of egyptian nile tilapia (oreochromis niloticas) fish scale collagen. International Journal of Biological Macromolecules; 2015; 79: 618–626.

Sahana TG, Rekha PD. Biopolymers: Applications in wound healing and skin tissue engineering. Molecular Biology Reports; 2018; 45 (6): 28572867. https://doi.org/10.1007/s11033-018-4296-3

Liu Y, Liu Y, Deng J, Li W and Nie X (2021) Fibroblast Growth Factor in Diabetic Foot Ulcer: Progress and Therapeutic Prospects. Front. Endocrinol. 12:744868. doi: 10.3389/fendo.2021.744868

Greer N, Foman NA, MacDonald R, et al. Advanced wound care therapies for nonhealing diabetic, venous, and arterial ulcers. Annals of Internal Medicine; 2013; 159: 532-542.

Mutlu S, Yılmaz E. Yara yönetiminde güncel yaklaşımlar. GÜSBD; 2019; 8 (4): 481 – 494.

Cortes H, Caballero-Florán IH, Mendoza-Muñoz N, et al. Hyaluronic acid in wound dressings. Cellular and Molecular Biology (Noisy-le-Grand, France); 2020; 66 (4): 191–198.

Graça MFP, Miguel SP, Cabral CSD, et al. Hyaluronicacid—based wound dressings: A review. Carbohydrate Polymers; 2020; 241: 116364.

Robert N. Negative pressure wound therapy in orthopaedic surgery. Orthop Traumatol Surg Res; 2017;103 (1S): 99–103.

Cwaliński J, Hermann J, Banasiewicz T. Healing peristomal wounds around retracted stomas with negative-pressure wound therapy: a case series. Advances in Skin & Wound Care; 2023; 36(8), 435–440.

Ud-Din S, Sebastian A, Giddings P, et al. Angiogenesis is ınduced and wound size is reduced by electrical stimulation in an acute wound healing model in human skin. Plos One; 2015; 10 (4): 1-22.

Ozan F, Altay T, Kayalı C. Hiperbarik oksijen tedavisi. TOTBİD Dergisi; 2017; 16: 187–195. Doi: 10.14292/totbid.dergisi.2017.28

Vural F, Savcı A. Yara bakımında yeni uygulamalar. Turkiye Klinikleri J Surg Nurs-Special Topics; 2017; 3 (3): 224-32

Kaufman H, Gurevich M, Tamir E, et al. Topical oxygen therapy stimulates healing in difficult, chronic wounds: a tertiary centre experience. Journal of Wound Care; 2018; 27 (7): 426-433. https://doi.org/10.12968/jowc.2018.27.7.426

Serena TE, Bullock NM, Cole W, et al. Patricia PriceTopical oxygen therapy in the treatment of diabetic foot ulcers: a multicentre, open, randomised controlled clinical trial. Journal of Wound; 2021; 30 (5): 7-14. https://doi.org/10.12968/jowc.2021.30.Sup5.S7

Chandra PK, Ross CL, Smith LC, et al. Peroxide-based oxygen generating topical wound dressing for enhancing healing of dermal wounds. Wound Repair Regen; 2015; 23 (6): 830-841.

Choi H., Ryu H., Woon Lee D. Case of Treatment of Snakebite on Finger with Topical Oxygen Therapy Arch Hand Microsurg 2020;25(4):292-296

Sezer D, Aktaş M. Açık Yara Tedavilerine Son Yaklaşımlar. Turk Vet J; 2020; 2 (1) : 24-28

Karakaya E, Akdur A, Soy EA, et al. Effect of subcutaneous topical ozone therapy on second-degree burn wounds in rats: an experimental study. J Burn Care Res; 2021; 42 (6): 1243-1253.

Liu L, Zeng L, Gao L, et al. Ozone therapy for skin diseases: Cellular and molecular mechanisms. Int Wound J; 2023; 20 (6): 2376-2385. Doi:10.1111/iwj.14060

Gazi U, Özkan AT, Mumcuoğlu KY. Larval terapi ve kronik yaralar. J Biotechnol and Strategic Health Res; 2019; 3 (Özel Sayı): 55-60.

Mohd Zubir MZ, Holloway S, Mohd Noor N. Maggot Therapy in Wound Healing: A Systematic Review. International Journal Of Environmental Research And Public Health; 2020; 17(17): 6103. https://doi.org/10.3390/ijerph17176103

İstanbul Üniversitesi. Cerrahpaşa Geleneksel ve Tamamlayıcı Tıp Uygulama ve Araştırma Merkezi. Erişim adresi: https://getat.iuc.edu.tr/tr/content/uygulamalar/larva

Stiehl JB. Jet lavage ırrigation resolves stage 4 pelvic pressure ınjury undermining. Advances in Skin and Wound Care; 2023; 36 (8): 441-446. Doi: 10.1097/ASW.0000000000000007

Vees T, Hofmann GO. Early periprosthetic infection: dilution, jet dilution or local antibiotics. Which way to go? A meta-analysis on 575 patients. GMS Interdisciplinary Plastic And Reconstructive Surgery DGPW; 2020; 9: Doc03. https://doi.org/10.3205/iprs000147

Jackson WM, Nesti LJ, Tuan RS. Concise review: Clinical Translation of wound healing therapies based on mesenchymal stem cells. Stem Cells Trans Med; 2012; 1: 44-50.

Suter VGA, Sjölund S, Bornstein MM. Tekrarlayan aftöz stomatitte lazerin ağrının giderilmesi ve yara iyileşmesi üzerindeki etkisi: sistematik bir inceleme. Lasers Med Sci; 2017; 32: 953–963. https://doi.org/10.1007/s10103-017-2184-z

Boyraz İ, Yıldız A. Lazer çeşitleri ve yüksek yoğunluklu lazer kullanımı. J Contemp Med; 2016; 6: 104-109. Doi: 10.16899/ctd. 55797

Bavaresco T, Lucena AF. Low-laser light therapy in venous ulcer healing: a randomized clinical trial. Rev Bras Enferm; 2022; 75 (3): 1-7. https://doi.org/10.1590/0034-7167-2021-0396

Taşçı Bozbaş G, Güler G. Bası Yaralarında Güncel Tedavi Yaklaşımları. Sakarya Medical Journal; 2011; (4): 118-125. Doi:10.5505/sakaryamj.2011.24633

Mostafa J, Ali Y, Zohre R, et al. Electromagnetic fields and ultrasound waves in wound treatment: a comparative review of therapeutic outcomes. Biosciences Biotechnology Research Asia; 2015; 12 (1): 185–195.

Baba-Akbari Sari A, Flemming K, Cullum NA, et al. Therapeutic ultrasound for pressure ulcers. Cochrane Database of Systematic Reviews; 2006; 3: pub2.

Pita-Vilar M, Concheiro A, Alvarez-Lorenzo C, et al. Recent advances in 3D printed cellulose-based wound dressings: A review on in vitro and in vivo achievements. Carbohydrate Polymers; 2023; 321 (1): 121298

Feng Z, Su Q, Zhang C, et al. Bioinspired nanofibrous glycopeptide hydrogel dressing for accelerating wound healing: A Cytokine-free, M2-type macrophage polarization approach. Adv. Funct. Mater; 2020; 30: 2006454. https://doi.org/10.1002/adfm.202006454

Uchida DT, Bruschi ML. 3D printing as a technological strategy for the personalized treatment of wound healing. AAPS Pharm Sci Tech; 2023; 24 (1): 41. https://doi.org/10.1208/s12249-023-02503-0

Las Heras K, Igartua M, Santos-Vizcaino E, et al. Chronic wounds: Current status, available strategies and emerging therapeutic solutions. Journal of Controlled Release; 2020; 328: 532-550

Sun Y, AD. Juncos Bombin AD, Boyd P et al. Application of 3D printing and 3D bioprinting for promoting cutaneous wound regeneration. Bioprinting; 2022; 28: 00230.

Demiral A, Mert F. Polimerik Yara örtülerinde üç boyutlu (3B) baskı teknolojisi uygulamaları. Gazi Üniversitesi Fen Bilimleri Dergisi Part C; 2022; 10 (2): 348-359.

Visscher, DO, te Slaa S, Jaspers ME, et al. 3D printing of patient-specific neck splints for the treatment of post-burn neck contractures. Burns & Trauma; 2018; 6:15. https://doi.org/10.1186/s41038-018-0116-1

Maver T, Smrke DM, Kurečič M, et al. Combining 3D printing and electrospinning for preparation of pain-relieving wound-dressing materials. Journal of Sol-Gel Science and Technology; 2018; 88 (1): 33-48.

Diaz-Gomez L, Gonzalez-Prada I, Millan R, et al. 3D printed carboxymethyl cellulose scaffolds for autologous growth factors delivery in wound healing Carbohydrate Polymers; 2022; 278:118924

Hafezi F, Scoutaris N, Douroumis D, et al. 3D printed chitosan dressing crosslinked with genipin for potential healing of chronic wounds. Int. J. Pharm; 2019; 560: 406–415. Doi: 10.1016/j.ijpharm.2019.02.020

Teoh JH, Tay SM, Fuh J, et al. Fabricating scalable, personalized wound dressings with customizable drug loadings via 3D printing. J. Control. Release; 2021; 341: 80–94. Doi: 10.1016/j.jconrel.2021.11.017

Wong AYW, Ong BSY, Lee A, et al. Topical biological agents as adjuncts to improve wound healing in chronic diabetic wounds: A systematic review of clinical evidence and future directions. Cureus; 2022;14 (7): 27180.

Long J, Etxeberria AE, Nand AV, et al. A 3D printed chitosan-pectin hydrogel wound dressing for lidocaine hydrochloride delivery. Materials science and engineering C; 2019; 109873. https://doi.org/10.1016/j.msec.2019.109873

Customised hydrogel mask starts with 3D scan. University of Waterloo. Access: https://www.theengineer.co.uk/content/news/3d-printed-wound-dressing-could-improve-treatment-for-burns-and-cancer-patients/

Levin A, Gong S, Cheng W. Wearable smart bandage-based bio-sensors. Biosensors; 2023; 13: 462. https://doi.org/10.3390/bios13040462

Farooqui MF, Shamim A. low cost ınkjet printed smart bandage for wireless monitoring of chronic wounds. Sci. Rep; 2016; 6: 28949.

Kassal P, Zubak M, Scheipl G, et al. Smart bandage with wireless connectivity for optical monitoring of pH. Sensors and Actuators B: Chemical; 2017; 246: 455-460.

Ribeiro AM, Flores-Sahagun THS. Application of stimulus-sensitive polymers in wound healing formulation. Int. J. Polym. Mater. Polym. Biomater; 2020; 69:979.

Percival SL, Hill KE, Williams DW, et al. A review of the scientific evidence for biofilms in wounds. Wound Repair and Regen; 2012; 20 (5): 647–657. https://doi.org/10.1111/j.1524-475X.2012.00836.x

Kassal P, Kim J, Kumar R, et al. Smart bandage with wireless connectivity for uric acid biosensing as an indicator of wound status. Electrochem. Commun; 2015; 56: 6–10.

Mostafalu P, Gita K, Giatsidis G, et al. A textile dressing for temporal and dosage controlled drug delivery. Advanced Functional Material; 2017; 27 (41): 1702399. https://doi.org/10.1002/adfm.201702399

Landsman A, Agnew P, Parish L, Joseph, et al. Diabetic foot ulcers treated with becaplermin and TheraGauze, a moisture-controlling smart dressing: a randomized, multicenter, prospective analysis. Journal of the American Podiatric Medical Association; 2010; 100 (3): 155–160. https://doi.org/10.7547/1000155

Pang Q, Lou D, Li S, et al. Smart flexible electronics‐integrated wound dressing for real‐time monitoring and on‐demand treatment of infected wounds. Advanced Science; 2020; 7(6), 1902673.

Khatib M, Zohar O, Saliba W, et al. A multifunctional electronic skin empowered with damage mapping and autonomic acceleration of self-healing in designated locations. Advanced Materials; 2020; 32 (17): e2000246. https://doi.org/10.1002/adma.202000246

Ochoa M, Rahimi R, Zhou J, et al. Integrated sensing and delivery of oxygen for next-generation smart wound dressings. Microsystems & Nanoengineering; 2020; 6: 46. https://doi.org/10.1038/s41378-020-0141-7

Long Y, Wei H, Li J, et al. Effective wound healing enabled by discrete alternative electric fields from wearable nanogenerators. ACS Nano; 2018; 12 (12): 12533-12540 Doi: 10.1021/acsnano.8b07038Long

Ghassemi JW, Shupp TE, Travis AJ. A portable automatic pressure delivery system for scar compression therapy in large animals. Rev. Sci. Instrum; 2015; 86: 015101.

Nardini M, Perteghella S, Mastracci L, et al. Growth factors delivery system for skin regeneration: an advanced wound dressing. Pharmaceutics; 2020; 12: 120.

Sharifuzzaman M, Chhetry A, Zahed MA, et al. Smart bandage with integrated multifunctional sensors based on MXene-functionalized porous graphene scaffold for chronic wound care management. Biosens. Bioelectron; 2020; 169: 112637.

Tamayol A, Hassani Najafabadi A, Mostafalu P, et al. Biodegradable elastic nanofibrous platforms with integrated flexible heaters for on-demand drug delivery. Scientific Reports; 2017; 7 (1): 9220.

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