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April 1, 2026Pharmaceutical Nanotechnology2 citations

Biogenic Silver Nanoparticles: Revolutionizing Diabetic Wound Therapy

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MKMohammad Sameer KhanSSShaheen ShabbirSKS.M. Kawish

Key Points

  • This review aims to evaluate the role of biogenic silver nanoparticles in diabetic wound management and their mechanism of action.
  • Analysis of existing literature on silver nanoparticles in wound healing
  • Review of marketed silver nanoparticle formulations
  • Assessment of toxicity issues associated with biogenic silver nanoparticles
  • Discussion of clinical trials related to silver nanoparticles in wound care.
  • Biogenic silver nanoparticles demonstrate significant antibacterial and anti-inflammatory effects.
  • AgNPs enhance the healing phases by improving cellular and molecular interactions.
  • Reported toxicity issues could limit the clinical application of AgNPs in wound therapy.
  • Promising outcomes are observed with the use of AgNPs in various wound dressings.

Abstract

Abstract: Wounds associated with diabetes mellitus are among the most serious complications, with the potential to progress to cell necrosis and, in severe cases, necessitate amputation. Current statistics indicate that diabetic wounds affect approximately 15% of patients with diabetes, and 20% of these cases lead to limb amputation. Conventional therapies often prove ineffective due to molecular and structural alterations in the injured tissue, highlighting the need for innovative delivery methods to enhance treatment efficacy. Recent research has focused on developing advanced materials for wound management, particularly through phyto-nanotechnology. Topical applications of nanoscaffolds and nanofibers have shown promising outcomes in promoting wound healing. Nano-sized particles facilitate smooth progression through the healing phases by enhancing cellular and molecular interactions. Among these, silver nanoparticles (AgNPs) have attracted attention for diabetic wound treatment due to their potent antibacterial and anti-inflammatory properties. AgNPs also stimulate cellular mechanisms that support the repair of chronic wounds; however, potential toxicities remain a concern. This review examines the role and mechanisms of biogenic AgNPs in diabetic wound management, with a focus on their efficacy in wound dressings. Additionally, it examines marketed AgNP formulations for wound care, highlights reported toxicity issues, and discusses clinical trials and future prospects for their application in wound healing.

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Cite This Study

Khan et al. (2026) studied this question.

synapsesocial.com/papers/69ccb78416edfba7beb898echttps://doi.org/10.2174/0122117385394646251111112131
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