在水凝中嵌入肌肉纤维可以提高活力,并在长时间的活体培养过程中保持收缩功能
Leander A Vonk1, Osman Esen1, Daan Hoomoedt1
1Department of Physiology, Amsterdam University Medical Center, Vrije Universiteit Amsterdam, Amsterdam, the Netherlands.
bioRxiv : the preprint server for biology
|September 18, 2025
概括
活体肌肉纤维培养通过3D水凝得到改善,保持收缩性和活力. 这种3D培养方法通过随着时间的推移保持纤维结构和功能来增强骨肌肉研究.
科学领域:
- 肌肉生理学 肌肉生理学
- 生物材料科学是生物材料的科学.
背景情况:
- 隔离的肌肉纤维的ex vivo培养对于体外研究至关重要.
- 目前的培养方法在长期研究中面临着保护肌肉纤维结构和功能的局限性.
研究的目的:
- 为了研究ex vivo培养对肌肉纤维收缩的影响.
- 增强培养系统,以保护肌肉纤维形态和瘤细胞功能.
- 为了识别影响肌肉纤维收缩的培养诱导的变化.
主要方法:
- 在各种条件下,分离的flexor digitorum brevis (FDB) 肌肉纤维在长达7天的时间内进行培养.
- 评估的是可行性,形态,未加载的瘤缩短,以及透纤维中的力生成.
- 研究了微管网的变化.
主要成果:
- 在拉米林上进行二维 (2D) 培养,显示在7天内收缩性和活力下降.
- 在低血清,纤维素/Geltrex水凝中进行三维 (3D) 培养,保持了生命力和收缩性.
- 3D培养减少了脱差标记,例如发芽.
- 收缩能力的丧失与微管网的变化有关,而不是直接的瘤瘤功能障碍.
结论:
- 在ex vivo培养过程中提供3D环境对于保持肌肉纤维活力和收缩功能至关重要.
- 3D水凝培养系统为研究骨肌肉提供了卓越的模型.
- 这种改进的模型对药理学和基因干预研究有价值.
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