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1.
Cell Prolif ; 57(4): e13563, 2024 Apr.
Article de Anglais | MEDLINE | ID: mdl-37881164

RÉSUMÉ

Human midbrain dopaminergic progenitors (mDAPs) are one of the most representative cell types in both basic research and clinical applications. However, there are still many challenges for the preparation and quality control of mDAPs, such as the lack of standards. Therefore, the establishment of critical quality attributes and technical specifications for mDAPs is largely needed. "Human midbrain dopaminergic progenitor" jointly drafted and agreed upon by experts from the Chinese Society for Stem Cell Research, is the first guideline for human mDAPs in China. This standard specifies the technical requirements, test methods, inspection rules, instructions for usage, labelling requirements, packaging requirements, storage requirements, transportation requirements and waste disposal requirements for human mDAPs, which is applicable to the quality control for human mDAPs. It was originally released by the China Society for Cell Biology on 30 August 2022. We hope that the publication of this guideline will facilitate the institutional establishment, acceptance and execution of proper protocols, and accelerate the international standardization of human mDAPs for clinical development and therapeutic applications.


Sujet(s)
Neurones dopaminergiques , Mésencéphale , Humains , Chine , Neurones dopaminergiques/métabolisme
2.
Cell Prolif ; 57(4): e13564, 2024 Apr.
Article de Anglais | MEDLINE | ID: mdl-37853840

RÉSUMÉ

'Human neural stem cells' jointly drafted and agreed upon by experts from the Chinese Society for Stem Cell Research, is the first guideline for human neural stem cells (hNSCs) in China. This standard specifies the technical requirements, test methods, test regulations, instructions for use, labelling requirements, packaging requirements, storage requirements, transportation requirements and waste disposal requirements for hNSCs, which is applicable to the quality control for hNSCs. It was originally released by the China Society for Cell Biology on 30 August 2022. We hope that publication of the guideline will facilitate institutional establishment, acceptance and execution of proper protocols, and accelerate the international standardization of hNSCs for clinical development and therapeutic applications.


Sujet(s)
Cellules souches neurales , Transplantation de cellules souches , Humains , Différenciation cellulaire , Chine
3.
Stem Cell Reports ; 11(1): 171-182, 2018 07 10.
Article de Anglais | MEDLINE | ID: mdl-29910127

RÉSUMÉ

Clinical application of stem cell derivatives requires clinical-grade cells and sufficient preclinical proof of safety and efficacy, preferably in primates. We previously successfully established a clinical-grade human parthenogenetic embryonic stem cell (hPESC) line, but the suitability of its subtype-specific progenies for therapy is not clear. Here, we compared the function of clinical-grade hPESC-derived midbrain dopaminergic (DA) neurons in two canonical protocols in a primate Parkinson's disease (PD) model. We found that the grafts did not form tumors and produced variable but apparent behavioral improvement for at least 24 months in most monkeys in both groups. In addition, a slight DA increase in the striatum correlates with significant functional improvement. These results demonstrated that clinical-grade hPESCs can serve as a reliable source of cells for PD treatment. Our proof-of-concept findings provide preclinical data for China's first ESC-based phase I/IIa clinical study of PD (ClinicalTrials.gov number NCT03119636).


Sujet(s)
Neurones dopaminergiques/cytologie , Neurones dopaminergiques/physiologie , Cellules souches embryonnaires/cytologie , Locomotion , Maladie de Parkinson/physiopathologie , Maladie de Parkinson/thérapie , Animaux , Comportement animal , Marqueurs biologiques , Encéphale/cytologie , Encéphale/métabolisme , Différenciation cellulaire , Lignée cellulaire , Mouvement cellulaire , Survie cellulaire , Transformation cellulaire néoplasique , Thérapie cellulaire et tissulaire , Modèles animaux de maladie humaine , Dopamine/métabolisme , Humains , Cellules souches neurales/cytologie , Cellules souches neurales/métabolisme , Maladie de Parkinson/étiologie , Phénotype , Primates , Putamen/métabolisme , Putamen/physiopathologie
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