HOMEPRODUCTSCOMPANYCONTACTFAQResearchDictionaryPharmaSign Up FREE or Login

Bioengineered models of Parkinson's disease using patient-derived dopaminergic neurons exhibit distinct biological profiles in a 3D microenvironment.

Abstract
Three-dimensional (3D) in vitro culture systems using human induced pluripotent stem cells (hiPSCs) are useful tools to model neurodegenerative disease biology in physiologically relevant microenvironments. Though many successful biomaterials-based 3D model systems have been established for other neurogenerative diseases, such as Alzheimer's disease, relatively few exist for Parkinson's disease (PD) research. We employed tissue engineering approaches to construct a 3D silk scaffold-based platform for the culture of hiPSC-dopaminergic (DA) neurons derived from healthy individuals and PD patients harboring LRRK2 G2019S or GBA N370S mutations. We then compared results from protein, gene expression, and metabolic analyses obtained from two-dimensional (2D) and 3D culture systems. The 3D platform enabled the formation of dense dopamine neuronal network architectures and developed biological profiles both similar and distinct from 2D culture systems in healthy and PD disease lines. PD cultures developed in 3D platforms showed elevated levels of α-synuclein and alterations in purine metabolite profiles. Furthermore, computational network analysis of transcriptomic networks nominated several novel molecular interactions occurring in neurons from patients with mutations in LRRK2 and GBA. We conclude that the brain-like 3D system presented here is a realistic platform to interrogate molecular mechanisms underlying PD biology.
AuthorsNicholas J Fiore, Yosif M Ganat, Kapil Devkota, Rebecca Batorsky, Ming Lei, Kyongbum Lee, Lenore J Cowen, Gist Croft, Scott A Noggle, Thomas J F Nieland, David L Kaplan
JournalCellular and molecular life sciences : CMLS (Cell Mol Life Sci) Vol. 79 Issue 2 Pg. 78 (Jan 19 2022) ISSN: 1420-9071 [Electronic] Switzerland
PMID35044538 (Publication Type: Journal Article)
Copyright© 2022. The Author(s), under exclusive licence to Springer Nature Switzerland AG.
Chemical References
  • Silk
Topics
  • Bioengineering
  • Cell Culture Techniques, Three Dimensional
  • Cells, Cultured
  • Dopaminergic Neurons (cytology, pathology)
  • Humans
  • Induced Pluripotent Stem Cells (cytology, pathology)
  • Neurogenesis
  • Parkinson Disease (pathology)
  • Silk (chemistry)
  • Tissue Scaffolds (chemistry)

Join CureHunter, for free Research Interface BASIC access!

Take advantage of free CureHunter research engine access to explore the best drug and treatment options for any disease. Find out why thousands of doctors, pharma researchers and patient activists around the world use CureHunter every day.
Realize the full power of the drug-disease research graph!


Choose Username:
Email:
Password:
Verify Password:
Enter Code Shown: