CB-MNCs@ CS/HEC/GP promote wound healing in aged murine pressure ulcer model

31 7月 2025
Author :  

Zhi‑cheng Yang1,3, He Lin1 , Guo‑jun Liu2 , Hui Pan1 , Jun‑lu Zhu3 , Xiao‑hong Zhang3 , Feng Gao2 , Zhong Wang2 and Zhi‑hao Wang1* *Correspondence: Zhi‑hao Wang 该Email地址已收到反垃圾邮件插件保护。要显示它您需要在浏览器中启用JavaScript。 1 Department of Geriatric Medicine & Laboratory of Gerontology and Anti‑Aging Research, Qilu Hospital of Shandong University, Jinan 250012, Shandong, China 2 Shandong Qilu Stem Cell Engineering Co., Ltd, Jinan 250012, Shandong, China 3 School of Nursing and Rehabilitation, Shandong University, Jinan 250012, Shandong, China

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Abstract

Background Non-healing pressure ulcers impose heavy burdens on patients and clinicians. Cord blood mononu‑ clear cells (CB-MNCs) are a novel type of tissue repair seed cells. However, their clinical application is restricted by low retention and survival rates post-transplantation. This study aims to investigate the role of thermo-sensitive chitosan/ hydroxyethyl cellulose/glycerophosphate (CS/HEC/GP) hydrogel encapsulated CB-MNCs in pressure ulcer wound

Methods Pressure ulcers were induced on the backs of aged mice. After construction and validation of the charac‑ terization of thermo-sensitive CS/HEC/GP hydrogel, CB-MNCs are encapsulated in the hydrogel, called CB-MNCs@ CS/HEC/GP which was locally applied to the mouse wounds. Mouse skin tissues were harvested for histological and molecular biology analyses.

Results CB-MNCs@CS/HEC/GP therapy accelerated pressure ulcer wound healing, attenuated inflammatory responses, promoted cell proliferation, angiogenesis, and collagen synthesis. Further investigation revealed that CB MNCs@CS/HEC/GP exerted therapeutic effects by promoting changes in cell types, including fibroblasts, endothelial cells, keratinocytes, and smooth muscle cells.

Conclusion CB-MNCs@CS/HEC/GP enhanced the delivery efficiency of CB-MNCs, preserved the cell viability, and contributed to pressure ulcer wound healing. Thus, CB-MNCs@CS/HEC/GP represents a novel therapeutic approach for skin regeneration of chronic wounds.

Keywords Wound healing, Aged, Pressure ulcers, Cord blood mononuclear cells, Thermo-sensitive hydrogel

 

Introduction

Pressure ulcers (PUs) are a frequent public health prob lem worldwide, growing prevalence as the population ages in recent years [1]. PUs are torturous, costly and negatively impacts the quality of life of the patient and their caregivers. There are more cases as life expectancy increases. Despite numerous measures used to prevent and cure pressure ulcers, either some cases are resist ant to treatment, or the healing process is slower than expected, prevalent among the elderly and critically ill patients [2]. Thus, effective management of PUs is crucial. CB-MNCs, harvested from neonatal umbilical cord blood, are composed mainly of lymphocytes and mono cytes, and are rich in various types of stem cells includ ing hematopoietic stem cells, endothelial progenitor cells, lymphoid progenitor cells, embryonic-like stem cells, and mesenchymal stem cells [3]. Due to their low immuno genicity, allogeneic CB-MNCs do not trigger an immune

 

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