Hassan pathy architecture poor pdf5/29/2023 In this approach, the physiochemical features of nanomaterials allow researchers to employ different methods for diabetic wound healing applications. They have greater benefits compared to traditional wound dressing approaches. ![]() Nanomaterial-based innovative approaches have tremendous potential for preventing and treating wound infections of bacterial origin. Hence, it is essential to develop and improve DFU-specific therapies. ![]() Furthermore, the lack of targeted therapy and efficient wound dressings for diabetic wounds often results in extended hospitalization and limb amputations. The major challenges in treating DFUs are associated with wound infections, alterations to inflammatory responses, angiogenesis and lack of extracellular matrix (ECM) components. ![]() Approximately 15–30% of diabetic patients suffer from DFUs, which is expected to increase annually. Diabetes mellitus (DM) is a predominant chronic metabolic syndrome, resulting in various complications and high mortality associated with diabetic foot ulcers (DFUs).
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