Transdifferentiation of Human Hair Follicle Mesenchymal Stem Cells into Red Blood Cells by OCT4

Author:

Liu Zhijing1,Lu Shi-Jiang2,Lu Yan1,Tan Xiaohua3,Zhang Xiaowei1,Yang Minlan1,Zhang Fuming4,Li Yulin1ORCID,Quan Chengshi1

Affiliation:

1. The Key Laboratory of Pathobiology, Ministry of Education, Department of Pathology, College of Basic Medical Sciences, Jilin University, 126 Xinmin Avenue, Changchun 130021, China

2. Advanced Cell Technology, 33 Locke Drive, Marlborough, MA 01752, USA

3. Key Laboratory of Biotechnology and Pharmaceutical Engineering, College of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou 325000, China

4. Morphology Center of Hematology Department, Cancer Center, the First Clinical Hospital of Jilin University, Changchun 130000, China

Abstract

Shortage of red blood cells (RBCs, erythrocytes) can have potentially life-threatening consequences for rare or unusual blood type patients with massive blood loss resulting from various conditions. Erythrocytes have been derived from human pluripotent stem cells (PSCs), but the risk of potential tumorigenicity cannot be ignored, and a majority of these cells produced from PSCs express embryonicε- and fetalγ-globins with little or no adultβ-globin and remain nucleated. Here we report a method to generate erythrocytes from human hair follicle mesenchymal stem cells (hHFMSCs) by enforcing OCT4 gene expression and cytokine stimulation. Cells generated from hHFMSCs expressed mainly the adultβ-globin chain with minimum level of the fetalγ-globin chain. Furthermore, these cells also underwent multiple maturation events and formed enucleated erythrocytes with a biconcave disc shape. Gene expression analyses showed that OCT4 regulated the expression of genes associated with both pluripotency and erythroid development during hHFMSC transdifferentiation toward erythroid cells. These findings show that mature erythrocytes can be generated from adult somatic cells, which may serve as an alternative source of RBCs for potential autologous transfusion.

Funder

Industrial Technology Research and Development Program in Jilin Province of China

Publisher

Hindawi Limited

Subject

Cell Biology,Molecular Biology

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