Chun-Li Zhang

About Chun-Li Zhang

Chun-Li Zhang, With an exceptional h-index of 46 and a recent h-index of 35 (since 2020), a distinguished researcher at University of Texas Southwestern Medical Center, specializes in the field of neural stem cells, neurogenesis, cellular plasticity, reprogramming, epigenetic regulation.

His recent articles reflect a diverse array of research interests and contributions to the field:

MAP4K 抑制作为肌萎缩侧索硬化的潜在治疗方法

MAP4K inhibition as a potential therapy for amyotrophic lateral sclerosis

NG2 glia reprogramming induces robust axonal regeneration after spinal cord injury

Screens in aging-relevant human ALS-motor neurons identify MAP4Ks as therapeutic targets for the disease

Temporal-spatial Generation of Astrocytes in the Developing Diencephalon

In vivo cell fate reprogramming for spinal cord repair

Use of fate modulators to improve nerve regeneration

Therapeutic potential of PTBP1 inhibition, if any, is not attributed to glia-to-neuron conversion

Chun-Li Zhang Information

University

Position

___

Citations(all)

14599

Citations(since 2020)

4251

Cited By

11869

hIndex(all)

46

hIndex(since 2020)

35

i10Index(all)

67

i10Index(since 2020)

65

Email

University Profile Page

Google Scholar

Chun-Li Zhang Skills & Research Interests

neural stem cells

neurogenesis

cellular plasticity

reprogramming

epigenetic regulation

Top articles of Chun-Li Zhang

MAP4K 抑制作为肌萎缩侧索硬化的潜在治疗方法

中国神经再生研究 (英文版)

2024/8/15

Shuaipeng Ma
Shuaipeng Ma

H-Index: 6

Chun-Li Zhang
Chun-Li Zhang

H-Index: 31

MAP4K inhibition as a potential therapy for amyotrophic lateral sclerosis

Neural Regeneration Research

2023/12/11

Shuaipeng Ma
Shuaipeng Ma

H-Index: 6

Chun-Li Zhang
Chun-Li Zhang

H-Index: 31

NG2 glia reprogramming induces robust axonal regeneration after spinal cord injury

Iscience

2024/2/16

Screens in aging-relevant human ALS-motor neurons identify MAP4Ks as therapeutic targets for the disease

Cell Death & Disease

2024/1/4

Temporal-spatial Generation of Astrocytes in the Developing Diencephalon

Neuroscience Bulletin

2024/1

In vivo cell fate reprogramming for spinal cord repair

2023/10/1

Wenjiao Tai
Wenjiao Tai

H-Index: 9

Chun-Li Zhang
Chun-Li Zhang

H-Index: 31

Use of fate modulators to improve nerve regeneration

2023/9/7

Therapeutic potential of PTBP1 inhibition, if any, is not attributed to glia-to-neuron conversion

2023/7/10

Chun-Li Zhang
Chun-Li Zhang

H-Index: 31

Chemical screens in aging-relevant human motor neurons identify MAP4Ks as therapeutic targets for amyotrophic lateral sclerosis

bioRxiv

2023/4/24

Neuronal regeneration after injury: a new perspective on gene therapy

Frontiers in neuroscience

2023/4/21

Chun-Li Zhang
Chun-Li Zhang

H-Index: 31

New AAV tools fail to detect Neurod1-mediated neuronal conversion of Müller glia and astrocytes in vivo

EBioMedicine

2023/4/1

Simple and Highly Specific Targeting of Resident Microglia with Adeno-Associated Virus

bioRxiv

2023

Carolina Serrano
Carolina Serrano

H-Index: 12

Chun-Li Zhang
Chun-Li Zhang

H-Index: 31

SOX2 is essential for astrocyte maturation and its deletion leads to hyperactive behavior in mice

Cell reports

2022/12/20

Resolution doubling in light-sheet microscopy via oblique plane structured illumination

Nature Methods

2022/10/24

In vivo glia‐to‐neuron conversion: pitfalls and solutions

2022/7

A single factor elicits multilineage reprogramming of astrocytes in the adult mouse striatum

Proceedings of the National Academy of Sciences

2022/3/15

Reply to in vivo confusion over in vivo conversion

Molecular therapy: the journal of the American Society of Gene Therapy

2022/3/2

Chun-Li Zhang
Chun-Li Zhang

H-Index: 31

NEK6 is an injury‐responsive kinase cooperating with STAT3 in regulation of reactive astrogliosis

Glia

2022/2

Revisiting astrocyte to neuron conversion with lineage tracing in vivo

Cell

2021/9/27

In vivo reprogramming of NG2 glia enables adult neurogenesis and functional recovery following spinal cord injury

Cell stem cell

2021/5/6

See List of Professors in Chun-Li Zhang University(University of Texas Southwestern Medical Center)

Co-Authors

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