Wharton’s Jelly-Derived Mesenchymal Stem Cells with High Aurora Kinase A Expression Show Improved Proliferation, Migration, and Therapeutic Potential

Author:

Kim Sun Jeong12ORCID,Park Sang Eon12ORCID,Jeong Jang Bin12ORCID,Oh Shin Ji123ORCID,Choi Alee1ORCID,Kim Yun Hee1ORCID,Choi Suk-joo4ORCID,Oh Soo-young4ORCID,Ryu Gyu Ha56ORCID,Jeon Hong Bae1ORCID,Chang Jong Wook125ORCID

Affiliation:

1. Stem Cell Institute, ENCell Co. Ltd, Seoul 06072, Republic of Korea

2. Cell and Gene Therapy Institute, Samsung Medical Center, Seoul 06351, Republic of Korea

3. Department of Health Sciences and Technology, SAIHST, Sungkyunkwan University, Seoul 06351, Republic of Korea

4. Department of Obstetrics and Gynecology, Samsung Medical Center, Seoul 06351, Republic of Korea

5. Department of Medical Device Management and Research, SAIHST, Sungkyunkwan University School of Medicine, Seoul 06351, Republic of Korea

6. The Office of R&D Strategy & Planning, Samsung Medical Center, Seoul 06351, Republic of Korea

Abstract

Mesenchymal stem cells (MSCs) are effective therapeutic agents that contribute to tissue repair and regeneration by secreting various factors. However, donor-dependent variations in MSC proliferation and therapeutic potentials result in variable production yields and clinical outcomes, thereby impeding MSC-based therapies. Hence, selection of MSCs with high proliferation and therapeutic potentials would be important for effective clinical application of MSCs. This study is aimed at identifying the upregulated genes in human Wharton’s jelly-derived MSCs (WJ-MSCs) with high proliferation potential using mRNA sequencing. Aurora kinase A (AURKA) and dedicator of cytokinesis 2 (DOCK2) were selected as the upregulated genes, and their effects on proliferation, migration, and colony formation of the WJ-MSCs were verified using small interfering RNA (siRNA) techniques. mRNA expression levels of both the genes were positively correlated with the proliferation capacity of WJ-MSCs. Moreover, AURKA from human WJ-MSCs regulated the antiapoptotic effect of skeletal muscle cells by upregulating the chemokine (C motif) ligand (XCL1); this was further confirmed in the mdx mouse model. Taken together, the results indicated that AURKA and DOCK2 can be used as potential biomarkers for proliferation and migration of human WJ-MSCs. In particular, human WJ-MSCs with high expression of AURKA might have therapeutic efficacy against muscle diseases, such as Duchenne muscular dystrophy (DMD).

Funder

Samsung Medical Center

Publisher

Hindawi Limited

Subject

Cell Biology,Molecular Biology

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