Brain-Derived Neurotrophic Factor Levels in Mesenchymal Stem Cell Culture Fluid Under Different Culture Conditions.

IF 0.9 Q3 MEDICINE, GENERAL & INTERNAL Eurasian Journal of Medicine Pub Date : 2023-02-01 DOI:10.5152/eurasianjmed.2021.0138
Gülsemin Çiçek, Muharrem Çiçek, Emine Utlu Özen, T Murad Aktan, Faik Özdengül, Selçuk Duman
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Abstract

Objective: Mesenchymal stem cells are used in various fields, such as cellular therapy, regeneration, or tissue engineering. It has been shown that they exhibit many protective factors and also work as a modulating chief within the region in which they are administered. There are studies on both the therapeutic and neuroprotective effects of brain-derived neurotrophic factor. Also, there are many studies on the improvement of culture conditions for in vitro reproduction of mesenchymal stem cells, which can be obtained from many sources in various bodies, such as adipose tissue and Wharton's jelly. Improving and standardizing these culture conditions will increase the effectiveness and reliability of stem cell therapies. Studies evaluating many culture conditions, such as O2 level, type of medium, monolayer culture, and the transition from in vitro 3D models, are ongoing.

Materials and methods: In our study, groups were formed by using stem cells originating from adipose tissue and Wharton's jelly. Stem cell cultures were made using Hillex-II and Pronectin-F microcarriers. Cell culture O2 level was adjusted as 1% and 5% for each group separately. Enzyme-linked immunosorbent assay was used to analyze brain-derived neurotrophic factor levels in stem cell culture fluid.

Results: The highest brain-derived neurotrophic factor level in mesenchymal stem cells culture medium was observed in an adipose-derived stem cell culture with an in vitro fertilization (non-treated) dish, using a Hillex microcarrier in a 1% O2 microenvironment.

Conclusion: As a result of our observations, we think that cells could exhibit greater therapeutic potential in a dynamic adhesion environment.

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不同培养条件下间充质干细胞培养液中脑源性神经营养因子水平的研究
目的:间充质干细胞被广泛应用于细胞治疗、再生和组织工程等领域。研究表明,他们表现出许多保护性因素,并在他们管理的地区内作为调节酋长发挥作用。脑源性神经营养因子的治疗作用和神经保护作用均有研究。此外,关于改善间充质干细胞体外繁殖的培养条件的研究也很多,间充质干细胞可以从各种各样的身体中获得,如脂肪组织和华氏胶质。改善和规范这些培养条件将提高干细胞治疗的有效性和可靠性。评估许多培养条件的研究正在进行中,如O2水平、培养基类型、单层培养以及从体外3D模型的过渡。材料和方法:在我们的研究中,使用来自脂肪组织和沃顿果冻的干细胞形成组。干细胞培养采用Hillex-II和Pronectin-F微载体。各组细胞培养O2水平分别调整为1%和5%。采用酶联免疫吸附法分析干细胞培养液中脑源性神经营养因子水平。结果:间充质干细胞培养基中脑源性神经营养因子水平最高的是脂肪源性干细胞培养皿(未处理),使用Hillex微载体在1% O2微环境中培养。结论:根据我们的观察,我们认为细胞在动态粘附环境中可以表现出更大的治疗潜力。
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来源期刊
Eurasian Journal of Medicine
Eurasian Journal of Medicine Medicine-Medicine (all)
CiteScore
1.90
自引率
6.70%
发文量
59
审稿时长
16 weeks
期刊介绍: Eurasian Journal of Medicine (Eurasian J Med) is an international, scientific, open access periodical published by independent, unbiased, and triple-blinded peer-review principles. The journal is the official publication of Atatürk University School of Medicine and published triannually in February, June, and October. The publication language of the journal is English. The aim of the Eurasian Journal of Medicine is to publish original research papers of the highest scientific and clinical value in all medical fields. The Eurasian J Med also includes reviews, editorial short notes and letters to the editor that either as a comment related to recently published articles in our journal or as a case report. The target audience of the journal includes researchers, physicians and healthcare professionals who are interested or working in in all medical disciplines.
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