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人血小板裂解液培养的脂肪来源干细胞片通过调节 CCL5 促进血管生成并加速伤口愈合。

Human platelet lysate-cultured adipose-derived stem cell sheets promote angiogenesis and accelerate wound healing via CCL5 modulation.

机构信息

Department of Surgery, National Taiwan University Hospital and College of Medicine, 7 Chung-Shan S. Rd, Taipei, 100, Taiwan.

International Ph.D. Program in Biomedical Engineering, Graduate Institute of Biomedical Materials and Tissue Engineering, Taipei Medical University, Taipei, Taiwan.

出版信息

Stem Cell Res Ther. 2024 Jun 9;15(1):163. doi: 10.1186/s13287-024-03762-9.


DOI:10.1186/s13287-024-03762-9
PMID:38853252
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11163789/
Abstract

BACKGROUND: A rising population faces challenges with healing-impaired cutaneous wounds, often leading to physical disabilities. Adipose-derived stem cells (ASCs), specifically in the cell sheet format, have emerged as a promising remedy for impaired wound healing. Human platelet lysate (HPL) provides an attractive alternative to fetal bovine serum (FBS) for culturing clinical-grade ASCs. However, the potential of HPL sheets in promoting wound healing has not been fully investigated. This study aimed to explore the anti-fibrotic and pro-angiogenic capabilities of HPL-cultured ASC sheets and delve into the molecular mechanism. METHODS: A rat burn model was utilized to evaluate the efficacy of HPL-cultured ASC sheets in promoting wound healing. ASC sheets were fabricated with HPL, and those with FBS were included for comparison. Various analyses were conducted to assess the impact of HPL sheets on wound healing. Histological examination of wound tissues provided insights into aspects such as wound closure, collagen deposition, and overall tissue regeneration. Immunofluorescence was employed to assess the presence and distribution of transplanted ASCs after treatment. Further in vitro studies were conducted to decipher the specific factors in HPL sheets contributing to angiogenesis. RESULTS: HPL-cultured ASC sheets significantly accelerated wound closure, fostering ample and organized collagen deposition in the neo-dermis. Significantly more retained ASCs were observed in wound tissues treated with HPL sheets compared to the FBS counterparts. Moreover, HPL sheets mitigated macrophage recruitment and decreased subsequent wound tissue fibrosis in vivo. Immunohistochemistry also indicated enhanced angiogenesis in the HPL sheet group. The in vitro analyses showed upregulation of C-C motif chemokine ligand 5 (CCL5) and angiogenin in HPL sheets, including both gene expression and protein secretion. Culturing endothelial cells in the conditioned media compared to media supplemented with CCL5 or angiogenin suggested a correlation between CCL5 and the pro-angiogenic effect of HPL sheets. Additionally, through neutralizing antibody experiments, we further validated the crucial role of CCL5 in HPL sheet-mediated angiogenesis in vitro. CONCLUSIONS: The present study underscores CCL5 as an essential factor in the pro-angiogenic effect of HPL-cultured ASC sheets during the wound healing process. These findings highlight the potential of HPL-cultured ASC sheets as a promising therapeutic option for healing-impaired cutaneous wounds in clinical settings. Furthermore, the mechanism exploration yields valuable information for optimizing regenerative strategies with ASC products. BRIEF ACKNOWLEDGMENT: This research was supported by the National Science and Technology Council, Taiwan (NSTC112-2321-B-002-018), National Taiwan University Hospital (111C-007), and E-Da Hospital-National Taiwan University Hospital Joint Research Program (111-EDN0001, 112-EDN0002).

摘要

背景:人口增长给治疗受损皮肤伤口带来了挑战,这常常导致身体残疾。脂肪干细胞(ASCs),特别是在细胞片形式下,已成为治疗受损伤口愈合的有希望的方法。人血小板裂解液(HPL)为培养临床级 ASC 提供了一种有吸引力的替代胎牛血清(FBS)的选择。然而,HPL 片在促进伤口愈合方面的潜力尚未得到充分研究。本研究旨在探索 HPL 培养的 ASC 片的抗纤维化和促血管生成能力,并深入研究其分子机制。 方法:利用大鼠烧伤模型评估 HPL 培养的 ASC 片促进伤口愈合的效果。用 HPL 制备 ASC 片,并与含有 FBS 的 ASC 片进行比较。进行了各种分析以评估 HPL 片对伤口愈合的影响。对伤口组织进行组织学检查,了解伤口闭合、胶原沉积和整体组织再生等方面。免疫荧光用于评估治疗后移植 ASC 的存在和分布。进一步进行体外研究以解析 HPL 片中促进血管生成的特定因素。 结果:HPL 培养的 ASC 片显著加速了伤口闭合,在新真皮中促进了充足且有组织的胶原沉积。与 FBS 对照组相比,在用 HPL 片处理的伤口组织中观察到更多保留的 ASC。此外,HPL 片减轻了体内巨噬细胞募集和随后的伤口组织纤维化。免疫组织化学还表明 HPL 片组的血管生成增强。体外分析显示 HPL 片中 C-C 基序趋化因子配体 5(CCL5)和血管生成素的基因表达和蛋白分泌上调。与补充 CCL5 或血管生成素的培养基相比,将内皮细胞在条件培养基中培养表明 CCL5 与 HPL 片的促血管生成作用之间存在相关性。此外,通过中和抗体实验,我们进一步验证了 CCL5 在 HPL 片介导的体外血管生成中的关键作用。 结论:本研究强调了 CCL5 作为 HPL 培养的 ASC 片在伤口愈合过程中促血管生成作用的重要因素。这些发现突显了 HPL 培养的 ASC 片在临床环境中治疗受损皮肤伤口的潜在应用价值。此外,机制探索为 ASC 产品的再生策略优化提供了有价值的信息。 简要致谢:本研究得到了国家科学技术委员会(NSTC)、台湾(NSTC112-2321-B-002-018)、台湾大学医院(111C-007)和 E-Da 医院-台湾大学医院联合研究计划(111-EDN0001、112-EDN0002)的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c62/11163789/1bc68d37eab9/13287_2024_3762_Fig8_HTML.jpg
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https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c62/11163789/1bc68d37eab9/13287_2024_3762_Fig8_HTML.jpg

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本文引用的文献

[1]
Enhanced angiogenic potential of adipose-derived stem cell sheets by integration with cell spheroids of the same source.

Stem Cell Res Ther. 2022-6-28

[2]
Systematic review and meta-analysis on the use of human platelet lysate for mesenchymal stem cell cultures: comparison with fetal bovine serum and considerations on the production protocol.

Stem Cell Res Ther. 2022-4-4

[3]
clusterProfiler 4.0: A universal enrichment tool for interpreting omics data.

Innovation (Camb). 2021-7-1

[4]
Exosomes derived from adipose-derived stem cells overexpressing glyoxalase-1 protect endothelial cells and enhance angiogenesis in type 2 diabetic mice with limb ischemia.

Stem Cell Res Ther. 2021-7-15

[5]
Adipose-Derived Stromal Cell-Sheets Sandwiched, Book-Shaped Acellular Dermal Matrix Capable of Sustained Release of Basic Fibroblast Growth Factor Promote Diabetic Wound Healing.

Front Cell Dev Biol. 2021-3-25

[6]
Enzyme-Crosslinked Gelatin Hydrogel with Adipose-Derived Stem Cell Spheroid Facilitating Wound Repair in the Murine Burn Model.

Polymers (Basel). 2020-12-16

[7]
Influence of Human Platelet Lysate on Extracellular Matrix Deposition and Cellular Characteristics in Adipose-Derived Stem Cell Sheets.

Front Cell Dev Biol. 2020-10-22

[8]
Angiogenesis Analyzer for ImageJ - A comparative morphometric analysis of "Endothelial Tube Formation Assay" and "Fibrin Bead Assay".

Sci Rep. 2020-7-14

[9]
Immunomodulatory Effect of Adipose-Derived Stem Cells: The Cutting Edge of Clinical Application.

Front Cell Dev Biol. 2020-4-17

[10]
Enhancement of human adipose-derived stem cell spheroid differentiation in an in situ enzyme-crosslinked gelatin hydrogel.

J Mater Chem B. 2019-1-18

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