Scaffold-based synergistic enhancement of stem cell effects for therapeutic angiogenesis in critical limb ischemia: an experimental animal study.

IF 1.2 4区 医学 Q3 SURGERY Annals of Surgical Treatment and Research Pub Date : 2024-07-01 Epub Date: 2024-06-28 DOI:10.4174/astr.2024.107.1.50
Hyung Sub Park, Geum Hee Choi, Tae Woo Jung, Taeseung Lee
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Abstract

Purpose: Stem cell-based therapies are considered an alternative approach for critical limb ischemia (CLI) patients with limited or exhausted options, yet their clinical use is limited by the lack of sustainability and unclear mechanism of action. In this study, a substance P-conjugated scaffold was injected with mesenchymal stem cells (MSCs) into an animal model of CLI to verify whether angiogenesis could be enhanced.

Methods: A self-assembling peptide (SAP) was conjugated with substance P, known to have the ability to recruit host stem cells into the site of action. This SAP was injected with MSCs into ischemic hindlimbs of rats, and the presence of MSCs was verified by immunohistochemical (IHC) staining of MSC-specific markers at days 7, 14, and 28. The degree of angiogenesis, cell apoptosis, and fibrosis was also quantified.

Results: Substance P-conjugated SAP was able to recruit intrinsic MSCs into the ischemic site of action. When injected in combination with MSCs, the presence of both injected and recruited MSCs was found in the ischemic tissues by double IHC staining. This in turn led to a higher degree of angiogenesis, less cell apoptosis, and less tissue fibrosis compared to the other groups at all time points.

Conclusion: The combination of substance P-conjugated SAP and MSCs was able to enhance angiogenesis and tissue repair, which was achieved by the additive effect from exogenously administered and intrinsically recruited MSCs. This scaffold-based intrinsic recruitment approach could be a viable option to enhance the therapeutic effects in patients with CLI.

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基于支架的干细胞协同增强效应,用于治疗严重肢体缺血的血管生成:一项动物实验研究。
目的:干细胞疗法被认为是治疗严重肢体缺血(CLI)患者的一种替代方法,但由于缺乏可持续性和作用机制不明确,干细胞疗法的临床应用受到限制。在这项研究中,我们将间质干细胞(MSCs)与P物质结合的支架注射到CLI动物模型中,以验证是否能促进血管生成:方法:一种自组装肽(SAP)与P物质共轭,P物质具有将宿主干细胞募集到作用部位的能力。将这种SAP与间充质干细胞一起注射到大鼠缺血的后肢中,并在第7、14和28天时通过间充质干细胞特异性标记物的免疫组化(IHC)染色来验证间充质干细胞的存在。此外,还对血管生成、细胞凋亡和纤维化的程度进行了量化:结果:与物质 P 结合的 SAP 能够将固有间充质干细胞募集到缺血作用部位。当与间充质干细胞联合注射时,通过双重 IHC 染色发现缺血组织中同时存在注射和招募的间充质干细胞。这反过来又导致在所有时间点上,与其他组相比,血管生成程度更高,细胞凋亡更少,组织纤维化更少:结论:结合了 P 物质的 SAP 和间充质干细胞能促进血管生成和组织修复,这是通过外源给药和内在招募的间充质干细胞的叠加效应实现的。这种基于支架的内在募集方法可能是增强CLI患者治疗效果的一种可行选择。
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来源期刊
CiteScore
2.30
自引率
7.10%
发文量
75
期刊介绍: Manuscripts to the Annals of Surgical Treatment and Research (Ann Surg Treat Res) should be written in English according to the instructions for authors. If the details are not described below, the style should follow the Uniform Requirements for Manuscripts Submitted to Biomedical Journals: Writing and Editing for Biomedical Publications available at International Committee of Medical Journal Editors (ICMJE) website (http://www.icmje.org).
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