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Next-generation smart wound dressings: AI integration, biosensors, and electrospun nanofibers for chronic wound therapy

delete2025-08-06
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PRE
AI
N
Naveen Palani
K
Keren Celestina Mendonce
R
Rabiya Riffath Syed Altaf
A
Agilandeswari Mohan
P
Parthasarathy Surya *
K
Kaladhar Radhakrishnan
S
Suriyaprakash Rajadesingu *
DOI:10.1080/09205063.2025.2540362delete
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Abstract

Abstract

En 中文
Polymeric biomaterials, particularly electrospun nanofibers, are increasingly central to the development of advanced wound dressings capable of supporting tissue regeneration while enabling real-time physiological monitoring. Chronic wounds associated with diabetes, vascular diseases, and cancer require continuous and personalized management, prompting the convergence of electrospun polymeric scaffolds with wearable biosensors and artificial intelligence (AI). These next-generation smart wound dressings utilize biocompatible polymer matrices functionalized with responsive sensing elements to monitor pH, temperature, moisture, oxygen saturation, and inflammatory biomarkersin situ. Molecular-level interactions between polymeric components and biological tissues facilitate both therapeutic delivery and diagnostic functionality. AI, including deep and federated learning, enhances these systems by enabling data-driven prediction of healing trajectories and personalized interventions. Key advances in flexible electronics, self-powered systems, and closed-loop feedback mechanisms further enhance clinical applicability. However, challenges remain, including the biochemical stability of sensors in enzyme-rich environments, secure wireless communication, and the lack of standardized datasets and clinical validation frameworks. This review critically examines recent progress in AI-integrated polymeric wound care systems, emphasizing the design of functional polymeric scaffolds, biosensor-polymer interfaces, and future directions, including biosensor miniaturization, multi-omics data integration, and scalable cloud-based platforms. A collaborative roadmap is proposed to advance these intelligent biomaterial systems toward clinical translation in chronic wound care.
Keywords:
Chronic wound monitoring
functionalized nanofibers
AI smart sensor
wound scaffolds
smart biomaterials

Journal

J
Journal of Biomaterials Science and Polymer Edition
IF:
3.6
Papers:
3.4K
Citations:
5.7K

Organization

S
Saveetha University
Scholars:
682
Papers: 618
Citations: 1.1W
S
Sri Sarada College for Women
Scholars:
1
Papers: 1
Citations: 0
C
Centre for Material Chemistry
Scholars:
4
Papers: 4
Citations: 0
S
srm institute of science and technology
Scholars:
1.9K
Papers: 1.0K
Citations: 1
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