A Living Microecological Hydrogel with Microbiota Remodeling and Immune Reinstatement for Diabetic Wound Healing

Author:

Yang Xiaopeng12,Che Tingting12,Tian Shasha12,Zhang Yuanyuan12,Zheng Yin34,Zhang Yufei5,Zhang Xinge5ORCID,Wu Zhongming1234

Affiliation:

1. NHC Key Laboratory of Hormones and Development, Chu Hsien‐I Memorial Hospital and Tianjin Institute of Endocrinology Tianjin Medical University Tianjin 300134 China

2. Tianjin Key Laboratory of Metabolic Diseases Tianjin Medical University Tianjin 300134 China

3. Key Laboratory of Endocrine Glucose & Lipids Metabolism and Brain Aging, Ministry of Education, Department of Endocrinology Shandong Provincial Hospital Affiliated to Shandong First Medical University Jinan Shandong 250021 China

4. Jinan Key Laboratory of Translational Medicine on Metabolic Diseases, Shandong Institute of Endocrine and Metabolic Diseases Endocrine and Metabolic Diseases Hospital of Shandong First Medical University Jinan Shandong 250012 China

5. Key Laboratory of Functional Polymer Materials of Ministry of Education, Institute of Polymer Chemistry, Tianjin Key Laboratory of Functional Polymer Materials, College of Chemistry Nankai University Tianjin 300071 China

Abstract

AbstractDysregulated skin microbiota and compromised immune responses are the major etiological factors for non‐healing diabetic wounds. Current antibacterial strategies fail to orchestrate immune responses and indiscriminately eradicate bacteria at the wound site, exacerbating the imbalance of microbiota. Drawing inspiration from the beneficial impacts that probiotics possess on microbiota, a living microecological hydrogel containing Lactobacillus plantarum and fructooligosaccharide (LP/FOS@Gel) is formulated to remodel dysregulated skin microbiota and reinstate compromised immune responses, cultivating a conducive environment for optimal wound healing. LP/FOS@Gel acts as an “evocator,” skillfully integrating the skin microecology, promoting the proliferation of Lactobacillus, Ralstonia, Muribaculum, Bacillus, and Allobaculum, while eradicating colonized pathogenic bacteria. Concurrently, LP/FOS@Gel continuously generates lactic acid to elicit a reparative macrophage response and impede the activation of the nuclear factor kappa‐B pathway, effectively alleviating inflammation. As an intelligent microecological system, LP/FOS@Gel reinstates the skin's sovereignty during the healing process and effectively orchestrates the harmonious dialogue between the host immune system and microorganisms, thereby fostering the healing of diabetic infectious wounds. These remarkable attributes render LP/FOS@Gel highly advantageous for pragmatic clinical applications.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shandong Province

Publisher

Wiley

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