Advanced human iPSC-based preclinical model for Parkinson’s disease with optogenetic alpha-synuclein aggregation

  • Kim, Min Seong
  • Ra, Eun A.
  • Kweon, Sin Ho
  • Seo, Bo Am
  • Ko, Han Seok
  • ... Oh, Yohan
  • 외 1명
Citations

WEB OF SCIENCE

59
Citations

SCOPUS

62

초록

Human induced pluripotent stem cells (hiPSCs) offer advantages for disease modeling and drug discovery. However, recreating innate cellular pathologies, particularly in late-onset neurodegenerative diseases with accumulated protein aggregates including Parkinson's disease (PD), has been challenging. To overcome this barrier, we developed an optogenetics-assisted α-synuclein (α-syn) aggregation induction system (OASIS) that rapidly induces α-syn aggregates and toxicity in PD hiPSC-midbrain dopaminergic neurons and midbrain organoids. Our OASIS-based primary compound screening with SH-SY5Y cells identified 5 candidates that were secondarily validated with OASIS PD hiPSC-midbrain dopaminergic neurons and midbrain organoids, leading us to finally select BAG956. Furthermore, BAG956 significantly reverses characteristic PD phenotypes in α-syn preformed fibril models in vitro and in vivo by promoting autophagic clearance of pathological α-syn aggregates. Following the FDA Modernization Act 2.0's emphasis on alternative non-animal testing methods, our OASIS can serve as an animal-free preclinical test model (newly termed "nonclinical test") for the synucleinopathy drug development.

키워드

Parkinson’s diseasealpha-synucleindopaminergic neuronshuman pluripotent stem cellopto-alpha-synucleinoptogeneticsorganoidprotein aggregationα-syn PFFsα-synuclein preformed fibrilsMITOCHONDRIAL DYSFUNCTIONSIGNAL INTEGRATIONLEWY BODIESBRAINPATHOLOGYAUTOPHAGYNEURONSCELLSMECHANISMSCANCER
제목
Advanced human iPSC-based preclinical model for Parkinson’s disease with optogenetic alpha-synuclein aggregation
저자
Kim, Min SeongRa, Eun A.Kweon, Sin HoSeo, Bo AmKo, Han SeokOh, YohanLee, Gabsang
DOI
10.1016/j.stem.2023.05.015
발행일
2023-07
유형
Article
저널명
Cell Stem Cell
30
7
페이지
973 ~ 986