Effect of Blood Gel Derivatives on Wound Healing in Mouse Injured Tissue Models

Author:

Le Tuyet Thi Vi123,Lam Hoang Minh23ORCID,Nguyen My Thi Ngoc123ORCID,Phan Nghia Thi Hieu123,Huynh Trang Nguyen Khanh4ORCID,Le Hien Nguyen Trong4,Pham Chau Thi Hai4,Tang Van Kim Hoang4,Hoang Trang Thi Thuy4,Hoang Tuyet Thi Diem4,Tran Ha Le Bao123ORCID

Affiliation:

1. Department of Physiology and Animal Biotechnology, Faculty of Biology and Biotechnology, University of Science, VNU-HCM, Ho Chi Minh City 700000, Vietnam

2. Laboratory of Tissue Engineering and Biomedical Materials, University of Science, VNU-HCM, Ho Chi Minh City 700000, Vietnam

3. Vietnam National University, Ho Chi Minh City 700000, Vietnam

4. Hung Vuong Hospital, Ho Chi Minh City 700000, Vietnam

Abstract

Several previous studies in the field of assisted reproduction have focused on the use of blood gel derivatives, such as platelet-rich fibrin (PRF), as a treatment for endometrial rehabilitation. However, the ability to release growth factors and the gel form of this product led to the evolution of platelet lysates. In this study, blood gel derivatives, including PRF lysate, which was in liquid form, and PRF gel, were collected and evaluated for growth factors. It was shown to be effective in endometrial wound healing and regeneration in mouse injured uterine tissue models through structure and function (pinopode expression, embryo implantation) evaluation. The results demonstrated that the concentrations of growth factors, including PDGF-AB and VEGF-A, were higher in the PRF lysate compared to the PRF gel (p < 0.05). PRF lysate could release these growth factors for 8 days. Furthermore, both PRF gel and PRF lysate restored the morphology of injured endometrial tissues in terms of luminal and glandular epithelia, as well as uterine gland secretory activity. However, the presence of pinopodes and embryonic implantation were only observed in the PRF lysate group. It can be concluded that PRF lysate promotes wound healing in mouse injured tissue models in vitro, which can act as healing products in tissue repair.

Funder

Department of Science and Technology, Ho Chi Minh City

Publisher

MDPI AG

Subject

Polymers and Plastics,Organic Chemistry,Biomaterials,Bioengineering

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