The Different Molecular Code in Generation of Dopaminergic Neurons from Astrocytes and Mesenchymal Stem Cells

Int J Mol Sci. 2021 Nov 9;22(22):12141. doi: 10.3390/ijms222212141.

Abstract

Transplantation of exogenous dopaminergic (DA) neurons is an alternative strategy to replenish DA neurons that have lost along the course of Parkinson's disease (PD). From the perspective of ethical acceptation, the source limitations, and the intrinsic features of PD pathology, astrocytes (AS) and mesenchymal stem cells (MSCs) are the two promising candidates of DA induction. In the present study, we induced AS or MSCs primary culture by the combination of the classical transcription-factor cocktails Mash1, Lmx1a, and Nurr1 (MLN), the chemical cocktails (S/C/D), and the morphogens SHH, FGF8, and FGF2 (S/F8/F2); the efficiency of induction into DA neurons was further analyzed by using immunostaining against the DA neuronal markers. AS could be efficiently converted into the DA neurons in vitro by the transcriptional regulation of MLN, and the combination with S/C/D or S/F8/F2 further increased the conversion efficiency. In contrast, MSCs from umbilical cord (UC-MSCs) or adipose tissue (AD-MSCs) showed moderate TH immunoreactivity after the induction with S/F8/F2 instead of with MLN or S/C/D. Our data demonstrated that AS and MSCs held lineage-specific molecular codes on the induction into DA neurons and highlighted the unique superiority of AS in the potential of cell replacement therapy for PD.

Keywords: AS; DA candidate; MSCs; PD; morphogens; small molecules; transcription factors.

MeSH terms

  • Animals
  • Astrocytes / metabolism
  • Astrocytes / transplantation*
  • Cell Differentiation / genetics
  • Dopamine / metabolism
  • Dopaminergic Neurons / metabolism*
  • Dopaminergic Neurons / pathology
  • Dopaminergic Neurons / transplantation
  • Humans
  • Mesenchymal Stem Cell Transplantation
  • Mesenchymal Stem Cells / metabolism*
  • Parkinson Disease / genetics
  • Parkinson Disease / pathology
  • Parkinson Disease / therapy*
  • Primary Cell Culture
  • Rats
  • Transcription Factors / genetics
  • Umbilical Cord / metabolism
  • Umbilical Cord / transplantation

Substances

  • Transcription Factors
  • Dopamine