| Literature DB >> 32928306 |
Byung-Chul Lee1, Kyung-Sun Kang2.
Abstract
Mesenchymal stem cells (MSCs) have recently been considered a promising alternative treatment for diverse immune disorders due to their unique biomedical potentials including the immunomodulatory property and ability to promote tissue regeneration. However, despite many years of pre-clinical studies in the research field, results from clinical trials using these cells have been diverse and conflicting. This discrepancy is caused by several factors such as poor engraftment, low survival rate, and donor-dependent variation of the cells. Enhancement of consistency and efficacy of MSCs remains a challenge to overcome the current obstacles to MSC-based therapy and subsequently achieve an improved therapeutic outcome. In this review, we investigated function enhancement strategies by categorizing as preconditioning, genetic manipulation, usage of supportive materials, and co-administration with currently used drugs. Preconditioning prior to MSC application makes up a large proportion of improvement strategies and preconditioning reagents include bioactive substances (cytokines, growth factors, and innate immune receptor agonists), hypoxia, and modification in culture method. With the piled results from previous studies using each method, disease- or patient-specific therapy has become more important than ever. On the other hand, genetic manipulation targeting therapeutic-associated factors or co-administration of biocompatible materials has also arisen as other therapeutic strategies. Thus, we summarized several specialized tactics by analyzing up-to-date results in the field and proposed some promising enhancement methods to improve the clinical outcomes for MSC therapy.Entities:
Keywords: 3D culture; Co-administration; Genetic modification; Hypoxia; Mesenchymal stem cells; Preconditioning
Mesh:
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Year: 2020 PMID: 32928306 PMCID: PMC7491075 DOI: 10.1186/s13287-020-01920-3
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
Fig. 1Isolation sources and therapeutic function of MSCs. A schematogram illustrating various sources for the isolation of MSCs and biological properties associated with their therapeutic effects. For decades of MSC research, alternative sources for cell isolation have been developed to avoid invasiveness mediated by bone marrow aspiration. MSCs have various and unique therapeutic potentials, which could be pleiotropic or adjustable to each disease target
Fig. 2Comprehensive management of the production of hMSCs for transplantation. Isolated MSCs should be selected based on the analysis of the gene-wide profile. Selected MSCs are cultured with preconditioning factors, especially key molecules in the pathogenesis of the target disease, and during the period, the property of the selected cells has to be maintained. Also, the therapeutic function of MSCs can be enhanced by genetic modification. The therapeutic function is repeatedly validated with proper disease models. To improve the therapeutic outcomes, optimizing the condition of administration such as the adequate time point is important, and MSCs are able to be applied with biocompatible substances or advanced medical technologies
Priming effect of cytokines and growth factors on MSCs
Priming effect of immune receptor agonists on MSCs