Department of Biomedical Engineering, Faculty of Engineering, Universiti Malaya, 50603, Kuala Lumpur, Malaysia.
Centre for Innovation in Medical Engineering, Department of Biomedical Engineering, Faculty of Engineering, Universiti Malaya, 50603, Kuala Lumpur, Malaysia.
Cell Tissue Res. 2024 Mar;395(3):227-250. doi: 10.1007/s00441-023-03857-4. Epub 2024 Jan 20.
The promising field of regenerative medicine is thrilling as it can repair and restore organs for various debilitating diseases. Mesenchymal stem cells are one of the main components in regenerative medicine that work through the release of secretomes. By adopting the use of the secretome in cell-free-based therapy, we may be able to address the challenges faced in cell-based therapy. As one of the components of cell-free-based therapy, secretome has the advantage of a better safety and efficacy profile than mesenchymal stem cells. However, secretome has its challenges that need to be addressed, such as its bioprocessing methods that may impact the secretome content and its mechanisms of action in clinical settings. Effective and standardization of bioprocessing protocols are important to ensure the supply and sustainability of secretomes for clinical applications. This may eventually impact its commercialization and marketability. In this review, the bioprocessing methods and their impacts on the secretome profile and treatment are discussed. This improves understanding of its fundamental aspects leading to potential clinical applications.
再生医学领域令人兴奋,因为它可以修复和恢复各种衰弱性疾病的器官。间充质干细胞是再生医学的主要成分之一,通过分泌组的释放发挥作用。通过在无细胞治疗中采用分泌组,我们也许能够解决细胞治疗中面临的挑战。作为无细胞治疗的组成部分之一,分泌组比间充质干细胞具有更好的安全性和疗效特征。然而,分泌组也有其需要解决的挑战,例如其生物加工方法可能会影响分泌组的含量及其在临床环境中的作用机制。有效的和标准化的生物加工方案对于确保分泌组的供应和可持续性用于临床应用非常重要。这可能最终会影响其商业化和市场性。在这篇综述中,讨论了生物加工方法及其对分泌组谱和治疗的影响。这提高了对其基本方面的理解,从而为潜在的临床应用提供了可能性。