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Shanzheng Yang

Showing results (11-20 of 18) with videos related to

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Development (Cambridge, England)|October 25, 2013
Cxcl12/Cxcr4 signaling controls the migration and process orientation of A9-A10 dopaminergic neuronsShanzheng Yang, Linda C Edman, Juan Antonio Sánchez-Alcañiz, et al.
The Journal of Biological Chemistry|January 19, 2019
24(<i>S</i>),25-Epoxycholesterol and <i>cholesterol 24S-hydroxylase</i> (<i>CYP46A1</i>) overexpression promote midbrain dopaminergic neurogenesis <i>in vivo</i>Spyridon Theofilopoulos, Willy Antoni Abreu de Oliveira, Shanzheng Yang, et al.
Cell Reports|May 7, 2020
Srebf1 Controls Midbrain Dopaminergic NeurogenesisEnrique M Toledo, Shanzheng Yang, Daniel Gyllborg, et al.
Neurobiology of Disease|September 4, 2012
Efficient expansion and dopaminergic differentiation of human fetal ventral midbrain neural stem cells by midbrain morphogensDiogo Ribeiro, Rocio Laguna Goya, Geeta Ravindran, et al.
Stem Cell Reports|November 18, 2022
Single-cell transcriptomics reveals correct developmental dynamics and high-quality midbrain cell types by improved hESC differentiationKaneyasu Nishimura, Shanzheng Yang, Ka Wai Lee, et al.
The EMBO Journal|June 30, 2016
A PBX1 transcriptional network controls dopaminergic neuron development and is impaired in Parkinson's diseaseJ Carlos Villaescusa, Bingsi Li, Enrique M Toledo, et al.
Cell Stem Cell|October 28, 2025
3D-generation of high-purity midbrain dopaminergic progenitors and lineage-guided refinement of grafts supports Parkinson's disease cell therapyXinyue Zhang, Ziyan Wu, Hui He, et al.
The Journal of Clinical Investigation|October 2, 2014
Cholestenoic acids regulate motor neuron survival via liver X receptorsSpyridon Theofilopoulos, William J Griffiths, Peter J Crick, et al.
Pageof 2

Showing results (11-20 of 18) with videos related to

Sort By:
Pageof 2
You have reached the last page of results.This site can display upto 18 results.
Development (Cambridge, England)|October 25, 2013
Cxcl12/Cxcr4 signaling controls the migration and process orientation of A9-A10 dopaminergic neuronsShanzheng Yang, Linda C Edman, Juan Antonio Sánchez-Alcañiz, et al.
The Journal of Biological Chemistry|January 19, 2019
24(<i>S</i>),25-Epoxycholesterol and <i>cholesterol 24S-hydroxylase</i> (<i>CYP46A1</i>) overexpression promote midbrain dopaminergic neurogenesis <i>in vivo</i>Spyridon Theofilopoulos, Willy Antoni Abreu de Oliveira, Shanzheng Yang, et al.
Cell Reports|May 7, 2020
Srebf1 Controls Midbrain Dopaminergic NeurogenesisEnrique M Toledo, Shanzheng Yang, Daniel Gyllborg, et al.
Neurobiology of Disease|September 4, 2012
Efficient expansion and dopaminergic differentiation of human fetal ventral midbrain neural stem cells by midbrain morphogensDiogo Ribeiro, Rocio Laguna Goya, Geeta Ravindran, et al.
Stem Cell Reports|November 18, 2022
Single-cell transcriptomics reveals correct developmental dynamics and high-quality midbrain cell types by improved hESC differentiationKaneyasu Nishimura, Shanzheng Yang, Ka Wai Lee, et al.
The EMBO Journal|June 30, 2016
A PBX1 transcriptional network controls dopaminergic neuron development and is impaired in Parkinson's diseaseJ Carlos Villaescusa, Bingsi Li, Enrique M Toledo, et al.
Cell Stem Cell|October 28, 2025
3D-generation of high-purity midbrain dopaminergic progenitors and lineage-guided refinement of grafts supports Parkinson's disease cell therapyXinyue Zhang, Ziyan Wu, Hui He, et al.
The Journal of Clinical Investigation|October 2, 2014
Cholestenoic acids regulate motor neuron survival via liver X receptorsSpyridon Theofilopoulos, William J Griffiths, Peter J Crick, et al.
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