Michael A. Rudnicki

Michael A. Rudnicki

Ottawa University

H-index: 109

North America-United States

About Michael A. Rudnicki

Michael A. Rudnicki, With an exceptional h-index of 109 and a recent h-index of 66 (since 2020), a distinguished researcher at Ottawa University, specializes in the field of regenerative myogenesis, skeletal muscle, satellite cells, muscle stem cells.

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

The satellite cell in skeletal muscle: A story of heterogeneity

Isolation of small extracellular vesicles from regenerating muscle tissue using Tangential Flow Filtration and Size Exclusion Chromatography

Wnt7a is Required for Regeneration of Dystrophic Skeletal Muscle

Method of stimulating asymmetric division of satellite stem cells

Wnt binding to Coatomer proteins directs secretion on exosomes independently of palmitoylation

Satellite cell contribution to disease pathology in Duchenne muscular dystrophy

Quantification of Muscle Satellite Stem Cell Divisions by High-Content Analysis

Carm1 and the epigenetic control of stem cell function

Michael A. Rudnicki Information

University

Position

Ottawa Hospital Research Institute

Citations(all)

59763

Citations(since 2020)

17352

Cited By

48855

hIndex(all)

109

hIndex(since 2020)

66

i10Index(all)

215

i10Index(since 2020)

166

Email

University Profile Page

Google Scholar

Michael A. Rudnicki Skills & Research Interests

regenerative myogenesis

skeletal muscle

satellite cells

muscle stem cells

Top articles of Michael A. Rudnicki

The satellite cell in skeletal muscle: A story of heterogeneity

2024/2/19

Isolation of small extracellular vesicles from regenerating muscle tissue using Tangential Flow Filtration and Size Exclusion Chromatography

bioRxiv

2024

Wnt7a is Required for Regeneration of Dystrophic Skeletal Muscle

bioRxiv

2024

Method of stimulating asymmetric division of satellite stem cells

2023/4/13

Wnt binding to Coatomer proteins directs secretion on exosomes independently of palmitoylation

bioRxiv

2023

Satellite cell contribution to disease pathology in Duchenne muscular dystrophy

2023/5/30

Quantification of Muscle Satellite Stem Cell Divisions by High-Content Analysis

2022/11/19

Carm1 and the epigenetic control of stem cell function

2022/11/1

P. 196 Rebuilding muscle in Duchenne by correcting stem cell polarity

Neuromuscular Disorders

2022/10/1

Immunofluorescence Labeling of Skeletal Muscle in Development, Regeneration, and Disease

2022/9/25

The mitochondrial protein OPA1 regulates the quiescent state of adult muscle stem cells

Cell Stem Cell

2022/9/1

Transplantation to study satellite cell heterogeneity in skeletal muscle

2022/8/24

GLI3 regulates muscle stem cell entry into GAlert and self-renewal

Nature Communications

2022/7/8

KDR signaling in muscle stem cells promotes asymmetric division and progenitor generation for efficient regeneration

bioRxiv

2022/6/27

Analysis of human satellite cell dynamics on cultured adult skeletal muscle myofibers

Skeletal Muscle

2021/12

Acetylation of PAX7 controls muscle stem cell self-renewal and differentiation potential in mice

Nature Communications

2021/5/31

Negative elongation factor regulates muscle progenitor expansion for efficient myofiber repair and stem cell pool repopulation

Developmental cell

2021/4/5

GLI3 Processing by the Primary Cilium Regulates Muscle Stem Cell Entry into GAlert

bioRxiv

2020/12/7

Compositions and methods for modulating stem cells and uses thereof

2020/11/10

H19 lncRNA to dystrophin’s rescue

Nature Cell Biology

2020/11

See List of Professors in Michael A. Rudnicki University(Ottawa University)

Co-Authors

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