Opportunities for Optimizing Chronic Wound Management in a Pharmacy Setting
References
- Bowers S, Franco E. Chronic Wounds: Evaluation and Management. Am Fam Physician. 2020;101(3):159-166.
- Macedo AS, Mendes F, Filipe P, Reis S, Fonte P. Nanocarrier-Mediated Topical Insulin Delivery for Wound Healing. Materials. 2021; 14(15):4257.
- Cologne, Germany: Institute for Quality and Efficiency in Health Care (IQWiG); 2006. Overview: Chronic wounds. [Updated 2022 Aug 8].
- Wang L, Yang B, Jiang H, et al. The molecular mechanism study of insulin in promoting wound healing under high-glucose conditions. J Cell Biochem. 2019;120(9):16244-16253.
- Sridharan K, Sivaramakrishnan G. Efficacy of topical insulin in wound healing: A preliminary systematic review and meta-analysis of randomized controlled trials. Wound Repair Regen. 2017;25(2):279-287.
- Prasad A, Nunes AP, Jesdale BM, et al. Differential associations of the stages of pressure and stasis ulcers and social engagement among nursing home residents. Aging Health Res. 2025;5(2):100230.
- Li S, Vu H, Senkowsky J, Hu W, Tang L. A near-infrared fluorescent pH sensing film for wound milieu pH monitoring. Exp Dermatol. 2020;29(1):107-111.
- Gethin G. The significance of surface pH in chronic wounds. Wounds. 2007;5(3): 52-56.
- Guo J, Cao Y, Wu QY, Zhou YM, Cao YH, Cen LS. Implications of pH and Ionic Environment in Chronic Diabetic Wounds: An Overlooked Perspective. Clin Cosmet Investig Dermatol. 2024;17:2669-2686. Published 2024 Nov 22.
- De Piano R, Barra F, Caccavo D, Barba AA, Lamberti G. Design of pH sensitive alginate–carbopol hydrogel patches for wound healing applications. International Journal of Pharmaceutics. 2026;688:126469.
- Zong Y, Zong B, Zha R, et al. An Antibacterial and Anti-Oxidative Hydrogel Dressing for Promoting Diabetic Wound Healing and Real-Time Monitoring Wound pH Conditions with a NIR Fluorescent Imaging System. Adv Healthc Mater. 2023;12(24):e2300431.
- Ma T, Wei C, Piao B, et al. Alkaline pH-responsive polymeric swelling in chronic wound identification and on-demand healing. Applied Materials Today. 2026;50:103211.
- Pan S, Zhou J, Su X, et al. Machine learning assisted dual-modal microneedle for infected wound pH monitoring and photothermal treatment. Sensors and Actuators B: Chemical. 2026;458:139815.
- Zaidi SRH, Sharma S. Pressure Ulcer. StatPearls Publishing; 2024.
- Képek forrása: https://universe.roboflow.com/stage2-n7xya/pressure-ulcer-sxitf/dataset/1 (Utolsó megtekintés: 2025. 05. 04)
- Farmacopeea Română, ed. a X-a., Editura Medicală, 1993.
- Lee CH, Moturi V, Lee Y. Thixotropic property in pharmaceutical formulations. Journal of Controlled Release. 2009;136(2):88-98.
- Jones V, Grey JE, Harding KG. Wound dressings. BMJ. 2006;332(7544):777-780.
- Oosterhaven JAF. Anatomical location differences in sodium lauryl sulfate-induced irritation. Br J Dermatol. 2019;181(1):19-20.
- Chuang AH, Bordlemay J, L Goodin J, C McPherson J. Effect of Sodium Lauryl Sulfate (SLS) on Primary Human Gingival Fibroblasts in an In Vitro Wound Healing Model. Military Medicine. 2019;184(Supplement 1):97-101.
DOI: https://doi.org/10.2478/orvtudert-2025-0008 | Journal eISSN: 2537-5059 | Journal ISSN: 1453-0953
Language: English
Page range: 101 - 112
Published on: Jul 2, 2026
Published by: Transylvanian Museum Society
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year
Keywords:
Related subjects:
© 2026 Kecseti Kinda Andrea, Májai Erzsébet, Barabás Enikő, Kecseti István, Fülöp Ibolya, Sipos Emese, published by Transylvanian Museum Society
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.