Adipose-derived stem cells modified by TWIST1 silencing accelerates rat sciatic nerve repair and functional recovery.

IF 3.4 3区 生物学 Q3 CELL BIOLOGY
Human Cell Pub Date : 2024-09-01 Epub Date: 2024-06-21 DOI:10.1007/s13577-024-01087-6
Bo Chen, Leining Wang, Xiaogui Pan, Shuai Jiang, Yihe Hu
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Abstract

The regeneration of peripheral nerves after injury is often slow and impaired, which may be associated with weakened and denervated muscles subsequently leading to atrophy. Adipose-derived stem cells (ADSCs) are often regarded as cell-based therapeutic candidate due to their regenerative potential. The study aims to assess the therapeutic efficacy of gene-modified ADSCs on sciatic nerve injury. We lentivirally transduced ADSCs with shRNA-TWIST1 and transplanted modified cells to rats undergoing sciatic nerve transection and repair. Results showed that TWIST1 knockdown accelerated functional recovery of rats with sciatic nerve injury as faster nerve conduction velocity and higher wire hang scores obtained by rats transplanted with TWIST1-silenced ADSCs than scramble ADSCs. Although the rats experienced degenerated axons and decreased myelin sheath thickness after sciatic nerve injury 8 weeks after operation, those transplanted with TWIST1-silenced ADSCs exhibited more signs of regenerated nerve fibers surrounded by newly formed myelin sheaths than those with scramble ADSCs. The rats transplanted with TWIST1-silenced ADSCs presented increased expressions of neurotrophic factors including neurotrophin-3 (NT-3), brain-derived neurotrophic factor (BDNF), nerve growth factor (NGF), and glial cell line-derived neurotrophic factor (GDNF) in the sciatic nerves than those with scramble ADSCs. These results suggest that genetically modifying TWIST1 in ADSCs could facilitate peripheral nerve repair after injury in a more efficient way than that with ADSCs alone.

Abstract Image

经TWIST1沉默修饰的脂肪源性干细胞可加速大鼠坐骨神经的修复和功能恢复。
损伤后的周围神经再生通常缓慢且受损,这可能与肌肉衰弱和失去神经支配有关,进而导致肌肉萎缩。脂肪源性干细胞(ADSCs)因其再生潜力而常被视为细胞治疗的候选者。本研究旨在评估基因修饰的 ADSCs 对坐骨神经损伤的疗效。我们用 shRNA-TWIST1 慢病毒转导 ADSCs,并将修饰后的细胞移植给进行坐骨神经横断和修复的大鼠。结果表明,TWIST1 基因敲除加速了坐骨神经损伤大鼠的功能恢复,因为与混合 ADSCs 相比,移植了 TWIST1 基因沉默的 ADSCs 的大鼠获得了更快的神经传导速度和更高的挂线评分。虽然大鼠在坐骨神经损伤术后8周出现轴突退化和髓鞘厚度减少,但移植了TWIST1沉默的ADSCs的大鼠比移植了混杂ADSCs的大鼠表现出更多的神经纤维再生迹象,周围有新形成的髓鞘。与混合 ADSCs 相比,移植了 TWIST1 沉默 ADSCs 的大鼠坐骨神经中神经营养因子(包括神经营养素-3(NT-3)、脑源性神经营养因子(BDNF)、神经生长因子(NGF)和胶质细胞系源性神经营养因子(GDNF))的表达量增加。这些结果表明,与单独使用 ADSCs 相比,基因修饰 ADSCs 中的 TWIST1 能更有效地促进损伤后周围神经的修复。
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来源期刊
Human Cell
Human Cell CELL BIOLOGY-
CiteScore
5.90
自引率
2.30%
发文量
176
审稿时长
4.5 months
期刊介绍: Human Cell is the official English-language journal of the Japan Human Cell Society. The journal serves as a forum for international research on all aspects of the human cell, encompassing not only cell biology but also pathology, cytology, and oncology, including clinical oncology. Embryonic stem cells derived from animals, regenerative medicine using animal cells, and experimental animal models with implications for human diseases are covered as well. Submissions in any of the following categories will be considered: Research Articles, Cell Lines, Rapid Communications, Reviews, and Letters to the Editor. A brief clinical case report focusing on cellular responses to pathological insults in human studies may also be submitted as a Letter to the Editor in a concise and short format. Not only basic scientists but also gynecologists, oncologists, and other clinical scientists are welcome to submit work expressing new ideas or research using human cells.
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