Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul 02841, Republic of Korea.
Department of Biotechnology, College of Life Sciences and Biotechnology, Korea University, Seoul 02841, Republic of Korea; Institute of Animal Molecular Biotechnology, Korea University, Seoul 02841, Republic of Korea.
J Control Release. 2024 Jun;370:583-599. doi: 10.1016/j.jconrel.2024.05.009. Epub 2024 May 13.
Stem cells are recognized as an important target and tool in regenerative engineering. In this study, we explored the feasibility of engineering amniotic fluid-derived mesenchymal stem cell-secreted molecules (afMSC-SMs) as a versatile bioactive material for skin regenerative medicine applications in a time- and cost-efficient and straightforward manner. afMSC-SMs, obtained in powder form through ethanol precipitation, effectively contributed to preserving the self-renewal capacity and differentiation potential of primary human keratinocytes (pKCs) in a xeno-free environment, offering a potential alternative to traditional culture methods for their long-term in vitro expansion, and allowed them to reconstitute a fully stratified epithelium sheet on human dermal fibroblasts. Furthermore, we demonstrated the flexibility of afMSC-SMs in wound healing and hair regrowth through injectable hydrogel and nanogel-mediated transdermal delivery systems, respectively, expanding the pool of regenerative applications. This cell-free approach may offer several potential advantages, including streamlined manufacturing processes, scalability, controlled formulation, longer shelf lives, and mitigation of risks associated with living cell transplantation. Accordingly, afMSC-SMs could serve as a promising therapeutic toolbox for advancing cell-free regenerative medicine, simplifying their broad applicability in various clinical settings.
干细胞被认为是再生工程中的一个重要目标和工具。在这项研究中,我们探索了工程羊水来源间充质干细胞分泌的分子(afMSC-SMs)作为一种通用的生物活性材料,用于皮肤再生医学应用的可行性,这种方法具有时间和成本效益,并且简单直接。通过乙醇沉淀获得的 afMSC-SMs 粉末形式有效地促进了原代人角质形成细胞(pKCs)在无异种细胞环境中的自我更新能力和分化潜能,为其长期体外扩增提供了一种替代传统培养方法的潜在选择,并使它们能够在人真皮成纤维细胞上重新构建完全分层的上皮片。此外,我们通过可注射水凝胶和纳米凝胶介导的透皮传递系统,分别展示了 afMSC-SMs 在伤口愈合和头发生长方面的灵活性,扩展了再生应用的范围。这种无细胞方法可能具有几个潜在的优势,包括简化的制造工艺、可扩展性、配方控制、更长的保质期以及减轻与活细胞移植相关的风险。因此,afMSC-SMs 可以作为推进无细胞再生医学的有前途的治疗工具箱,简化其在各种临床环境中的广泛适用性。