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How to reprogram human fibroblasts to neurons. | LitMetric

How to reprogram human fibroblasts to neurons.

Cell Biosci

The Key Laboratory of Pathobiology, Ministry of Education, College of Basic Medical Sciences, Jilin University, Changchun, 130021 People's Republic of China.

Published: October 2020

AI Article Synopsis

  • Neurodegenerative diseases result from the destruction and death of neurons, and cell transplantation could potentially restore lost functions by replacing these neurons.
  • Recent studies focus on reprogramming human fibroblasts into neurons, highlighting the importance of small molecules, transcription factors, and various physiological factors in this process.
  • The paper emphasizes the advantages of using physical factors for neuron reprogramming, suggesting they offer safer, minimally invasive methods with promising application prospects for treating neurological diseases.

Article Abstract

Destruction and death of neurons can lead to neurodegenerative diseases. One possible way to treat neurodegenerative diseases and damage of the nervous system is replacing damaged and dead neurons by cell transplantation. If new neurons can replace the lost neurons, patients may be able to regain the lost functions of memory, motor, and so on. Therefore, acquiring neurons conveniently and efficiently is vital to treat neurological diseases. In recent years, studies on reprogramming human fibroblasts into neurons have emerged one after another, and this paper summarizes all these studies. Scientists find small molecules and transcription factors playing a crucial role in reprogramming and inducing neuron production. At the same time, both the physiological microenvironment in vivo and the physical and chemical factors in vitro play an essential role in the induction of neurons. Therefore, this paper summarized and analyzed these relevant factors. In addition, due to the unique advantages of physical factors in the process of reprogramming human fibroblasts into neurons, such as safe and minimally invasive, it has a more promising application prospect. Therefore, this paper also summarizes some successful physical mechanisms of utilizing fibroblasts to acquire neurons, which will provide new ideas for somatic cell reprogramming.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7549215PMC
http://dx.doi.org/10.1186/s13578-020-00476-2DOI Listing

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