» Articles » PMID: 26341268

Skeletal Muscle Perfusion and Stem Cell Delivery in Muscle Disorders Using Intra-femoral Artery Canulation in Mice

Overview
Journal Exp Cell Res
Specialty Cell Biology
Date 2015 Sep 6
PMID 26341268
Citations 6
Authors
Affiliations
Soon will be listed here.
Abstract

Muscular dystrophies are among major inherited muscle disorders characterized by progressive muscle damage and fibrosis with no definitive cure. Recently, gene or cell based therapies have been developed to restore the missing gene expression or replace the damaged tissues. In order to test the efficiency of these therapies in mice models of muscular dystrophies, the arterial route of delivery is very advantageous as it provides uniform muscle exposure to the therapeutic agents or cells. Although there are few reports of arterial delivery of the therapeutic agents or cells in mice, there is no in-depth description and evaluation of its efficacy in perfusion of downstream muscles. This study is aimed to develop a practical method for intra-femoral artery perfusion in mice and to evaluate perfusion efficiency using near-infrared-fluorescence (NIRF) imaging as well as histology following stem cell delivery. Our results provide a practical guide to perform this delicate method in mice. By using a sensitive fluorescent dye, different muscle groups of the hindlimb have been evaluated for proper perfusion. As the final step, we have validated the efficiency of arterial cell delivery into muscles using human iPS-derived myogenic cells in an immunodeficient mouse model for Duchenne muscular dystrophy (NSG-mdx(4cv)).

Citing Articles

Enhanced Diaphragm Muscle Function upon Satellite Cell Transplantation in Dystrophic Mice.

Azzag K, Gransee H, Magli A, Yamashita A, Tungtur S, Ahlquist A Int J Mol Sci. 2024; 25(5).

PMID: 38473751 PMC: 10931593. DOI: 10.3390/ijms25052503.


Duchenne muscular dystrophy disease severity impacts skeletal muscle progenitor cells systemic delivery.

Saleh K, Switzler C, Hicks M, Gane L, Gibbs D, Pyle A Front Physiol. 2023; 14:1190524.

PMID: 37228827 PMC: 10203213. DOI: 10.3389/fphys.2023.1190524.


Assessing and enhancing migration of human myogenic progenitors using directed iPS cell differentiation and advanced tissue modelling.

Choi S, Ferrari G, Moyle L, Mackinlay K, Naouar N, Jalal S EMBO Mol Med. 2022; 14(10):e14526.

PMID: 36161772 PMC: 9549733. DOI: 10.15252/emmm.202114526.


CCR2 improves homing and engraftment of adipose-derived stem cells in dystrophic mice.

Wang L, Li H, Lin J, He R, Chen M, Zhang Y Stem Cell Res Ther. 2021; 12(1):12.

PMID: 33413615 PMC: 7791736. DOI: 10.1186/s13287-020-02065-z.


iPSCs as a Platform for Disease Modeling, Drug Screening, and Personalized Therapy in Muscular Dystrophies.

Ortiz-Vitali J, Darabi R Cells. 2019; 8(1).

PMID: 30609814 PMC: 6356384. DOI: 10.3390/cells8010020.