Advani Dia, Farid Nouran, Tariq Muhammad Hamza, Kohli Nupur
Department of Biomedical Engineering and Biotechnology, Khalifa University of Science and Technology, Abu Dhabi 127788, United Arab Emirates.
Department of Biomedical Engineering and Biotechnology, Khalifa University of Science and Technology, Abu Dhabi 127788, United Arab Emirates; Healthcare Engineering Innovation Center, Khalifa University of Science and Technology, Abu Dhabi 127788, United Arab Emirates.
Bone. 2025 Jan;190:117269. doi: 10.1016/j.bone.2024.117269. Epub 2024 Oct 4.
The regenerative capacity of mesenchymal stem cells (MSCs) is now attributed to their ability to release paracrine factors into the extracellular matrix that boost tissue regeneration, reduce inflammation and encourage healing. Understanding the MSC secretome is crucial for shifting the prototypic conventional cell-based therapies to cell-free regenerative treatments. This systematic review aimed to analyse the functional annotations of the secretome of human adult adipose tissue and bone marrow MSCs and unveil the gene clusters responsible for bone formation. Bioinformatics tools were used to identify the biological processes, molecular functions, hallmarks and KEGG pathways of adipose and bone marrow MSC secretome proteins. We found a substantial overlap in the functional annotations and protein compositions of both adipose and bone marrow MSC secretome indicating that MSC source may be noninfluencial with regards to tissue regeneration. Additionally, a novel network pharmacology-based analysis of the secreted proteins revealed that the commonly secreted proteins within a single source interact with multiple drugable targets of bone diseases and regulate various KEGG pathway. This study unravels the secretome profile of human adult adipose and bone marrow MSCs based on the current literature and provides valuable insights into the therapeutic use of the MSC secretome for cell-free therapies.
间充质干细胞(MSCs)的再生能力现在归因于它们向细胞外基质释放旁分泌因子的能力,这些因子可促进组织再生、减轻炎症并促进愈合。了解MSCs的分泌组对于将原型传统细胞疗法转变为无细胞再生疗法至关重要。本系统综述旨在分析成人脂肪组织和骨髓MSCs分泌组的功能注释,并揭示负责骨形成的基因簇。使用生物信息学工具来识别脂肪和骨髓MSCs分泌组蛋白的生物学过程、分子功能、特征和KEGG途径。我们发现脂肪和骨髓MSCs分泌组的功能注释和蛋白质组成有大量重叠,这表明就组织再生而言,MSCs来源可能没有影响。此外,基于网络药理学对分泌蛋白的新分析表明,单一来源中常见的分泌蛋白与多种骨疾病的可药物作用靶点相互作用,并调节各种KEGG途径。本研究根据当前文献揭示了成人脂肪和骨髓MSCs的分泌组概况,并为MSCs分泌组在无细胞疗法中的治疗应用提供了有价值的见解。