以脂肪基质细胞为基础的辐射诱导纤维化疗法。

IF 5.8 3区 医学 Q1 DERMATOLOGY Advances in wound care Pub Date : 2024-05-01 Epub Date: 2022-12-09 DOI:10.1089/wound.2022.0103
Charlotte E Berry, Darren B Abbas, Hendrik A Lintel, Andrew A Churukian, Michelle Griffin, Jason L Guo, Asha C Cotterell, Jennifer B Laufey Parker, Mauricio A Downer, Michael T Longaker, Derrick C Wan
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引用次数: 0

摘要

意义重大:半数癌症患者在治疗过程中都会接受放射治疗,最常见的并发症是皮肤和软组织的放射诱导纤维化(RIF)。这种真皮层的增厚和血管的减少导致了功能上的限制和美观上的问题,并在考虑手术探查或重建时带来了独特的挑战。现有的皮肤 RIF 治疗方案在范围和疗效上都很有限。以细胞为基础的疗法已经成为利用再生细胞群改善功能和美观效果,甚至预防 RIF 的一种有前途的方法。最新进展:作为细胞疗法研究的领先领域之一,脂肪来源基质细胞(ADSCs)在治疗 RIF 方面展现出巨大的治疗潜力。ADSC 增强脂肪移植的引入已显示出其临床实用性。最近专门针对特定 ADSC 亚群特征的研究表明,脂肪移植疗法的临床疗效已得到广泛认可,而对其驱动机制的理解也将进一步细化。关键问题:各种 RIF 动物模型在接受细胞疗法治疗后,临床疗效均有所改善,但人们对这些疗效的细胞和分子基础仍知之甚少。未来方向:最近的文献主要关注如何提高细胞疗法的疗效,最显著的方法是:(1)用富血小板血浆增强脂肪移植;(2)通过表转录组学修改表达的 RNA。就后者而言,新的、有前景的基因靶点不断被发现,它们有可能通过增加血管生成、减少炎症和促进脂肪生成来逆转纤维化的影响。
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Adipose-Derived Stromal Cell-Based Therapies for Radiation-Induced Fibrosis.

Significance: Half of all cancer patients receive radiation therapy as a component of their treatment regimen, and the most common resulting complication is radiation-induced fibrosis (RIF) of the skin and soft tissue. This thickening of the dermis paired with decreased vascularity results in functional limitations and esthetic concerns and poses unique challenges when considering surgical exploration or reconstruction. Existing therapeutic options for RIF of the skin are limited both in scope and efficacy. Cell-based therapies have emerged as a promising means of utilizing regenerative cell populations to improve both functional and esthetic outcomes, and even as prophylaxis for RIF. Recent Advances: As one of the leading areas of cell-based therapy research, adipose-derived stromal cells (ADSCs) demonstrate significant therapeutic potential in the treatment of RIF. The introduction of the ADSC-augmented fat graft has shown clinical utility. Recent research dedicated to characterizing specific ADSC subpopulations points toward further granularity in understanding of the mechanisms driving the well-established clinical outcomes seen with fat grafting therapy. Critical Issues: Various animal models of RIF demonstrated improved clinical outcomes following treatment with cell-based therapies, but the cellular and molecular basis underlying these effects remains poorly understood. Future Directions: Recent literature has focused on improving the efficacy of cell-based therapies, most notably through (1) augmentation of fat grafts with platelet-rich plasma and (2) the modification of expressed RNA through epitranscriptomics. For the latter, new and promising gene targets continue to be identified which have the potential to reverse the effects of fibrosis by increasing angiogenesis, decreasing inflammation, and promoting adipogenesis.

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来源期刊
Advances in wound care
Advances in wound care Medicine-Emergency Medicine
CiteScore
12.10
自引率
4.10%
发文量
62
期刊介绍: Advances in Wound Care rapidly shares research from bench to bedside, with wound care applications for burns, major trauma, blast injuries, surgery, and diabetic ulcers. The Journal provides a critical, peer-reviewed forum for the field of tissue injury and repair, with an emphasis on acute and chronic wounds. Advances in Wound Care explores novel research approaches and practices to deliver the latest scientific discoveries and developments. Advances in Wound Care coverage includes: Skin bioengineering, Skin and tissue regeneration, Acute, chronic, and complex wounds, Dressings, Anti-scar strategies, Inflammation, Burns and healing, Biofilm, Oxygen and angiogenesis, Critical limb ischemia, Military wound care, New devices and technologies.
期刊最新文献
Alginate Formulation for Wound Healing Applications. Local Treatment of Wound Infections: A Review of Clinical Trials from 2013 to 2024. A Prospective Observational Study to Evaluate the Effectiveness of Platelet-Rich Plasma Therapy for Complex Wounds: Influential Clinical Variables on Wound Healing Outcomes. Prediction of Healing Trajectory of Chronic Wounds Using a Machine Learning Approach. Topical Reconstituted High-Density Lipoproteins Elicit Anti-Inflammatory Effects in Diabetic Wounds.
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