Author:
Chen Shuai-dong,Chu Chen-yu,Wang Chen-bing,Man Yi
Abstract
AbstractExtracellular matrix (ECM) scaffold membranes have exhibited promising potential to better the outcomes of wound healing by creating a regenerative microenvironment around. However, when compared to the application in younger individuals, the performance of the same scaffold membrane in promoting re-epithelialization and collagen deposition was observed dissatisfying in aged mice. To comprehensively elucidate the mechanisms underlying this age-related disparity, we conducted an integrated analysis, combing single-cell RNA sequencing (scRNA-Seq) with spatial transcriptomics, to explore the complex cellular niches surrounding the ECM scaffolds. Through intergroup comparative analysis and cell-cell communication, we identified and characterized the senescent SPP1+ macrophages may impede the activation of the type L immune response, thus inhibiting the repair ability of epidermal cells and fibroblasts around the ECM scaffolds. These findings contribute to a deeper understanding of biomaterial applications in varied physiological contexts, thereby paving the way for the development of precision-based biomaterials tailored specifically for aged individuals in future therapeutic strategies.
Publisher
Cold Spring Harbor Laboratory