骨关节炎中富含基质血管的三维结缔组织微碎片:临床前体内模型的软骨保护证据。

IF 4.6 2区 生物学 Q2 CELL BIOLOGY
Frontiers in Cell and Developmental Biology Pub Date : 2025-02-27 eCollection Date: 2025-01-01 DOI:10.3389/fcell.2025.1533405
Giovanna Desando, Matilde Tschon, Lucia Martini, Maria Sartori, Gianluca Giavaresi, Milena Fini, Antonella Cellamare, Carlo Soranzo, Cristina Longinotti, Martina D'Alessandro, Livia Roseti, Brunella Grigolo
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引用次数: 0

摘要

脂肪来源细胞疗法是最常见的再生治疗选择之一,以减轻骨关节炎(OA)的多组分损伤。脂肪基质血管组分(SVF)对关节微环境具有保护作用,已获得科学共识。最近,由于无酶组织处理系统能够产生富含SVF的结缔组织微移植物(mctSVF),因此广泛的无酶组织处理系统已经优于经典治疗方法。这项临床前体内研究评估了新生成的mctSVF与体外扩增脂肪基质细胞(ASC)在OA中的软骨保护潜力。方法:采用双侧前交叉韧带横断术(ACLT)诱导32只SPF (Specific Pathogen Free, SPF) Crl: KBL (NZW)公兔,切除腹股沟脂肪组织,形成轻度骨性关节炎。2个月后,OA关节接受关节内注射mctSVF或ASC治疗。局部生物分布分析测定1个月后pkh26标记细胞在膝关节内的迁移模式。通过骨软骨单元、滑膜和半月板的大体分析、组织学和免疫组化评价疗效。结果:我们阐明了基于机械分离mctSVF的一步法的有效性。通过表观荧光分析,我们发现细胞处理之间的细胞分布模式相似,主要是关节软骨。所有实验组均观察到类似的再生反应。这些影响包括:(i)骨软骨修复(促进典型的合成代谢标志物和减少分解代谢标志物);(ii)滑膜反应减少(滑膜肥大和炎症减轻,巨噬细胞表型向再生型转变);(三)减少半月板退行性改变(减少撕裂)。讨论:我们的研究证明了一种新型机械系统在中度OA临床前模型中产生具有软骨保护潜力的mctSVF微移植物的有效性。由此产生的最终产品可以抵消OA微环境之外的炎症过程,并通过其结构的定植保护软骨。mctSVF的完整和活跃的显微解剖使其成为转译医学治疗OA的合适人选,而不需要像ASC那样进行细胞操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D connective micro-fragment enriched with stromal vascular fraction in osteoarthritis: chondroprotective evidence in a preclinical in vivo model.

Introduction: Adipose-derived cell therapies are one of the most common regenerative therapeutic options to alleviate the multi-component damage of osteoarthritis (OA). Adipose stromal vascular fraction (SVF) has gained scientific consensus for its ability to interact protectively with the joint microenvironment. Recently, the wide range of enzyme-free tissue processing systems has outperformed classical treatments, because of their ability to produce connective micrografts enriched with the SVF (mctSVF). This preclinical in vivo study evaluates the chondroprotective potential of a newly generated mctSVF compared with in vitro expanded adipose stromal cells (ASC) in OA.

Methods: A mild grade of OA was induced through bilateral anterior cruciate ligament transection (ACLT) surgery in 32 Specific Pathogen Free (SPF) Crl: KBL (NZW) male rabbits followed by the surgical excision of inguinal adipose tissue. After 2 months, OA joints were treated with an intra-articular (IA) injection of mctSVF or ASC. Local biodistribution analysis was used to determine migration patterns of PKH26-labelled cells in the knee joint after 1 month. Efficacy was assessed by gross analysis, histology and immunohistochemistry on the osteochondral unit, synovial membrane and meniscus.

Results: We elucidate the effectiveness of a one-step approach based on mechanical isolation of mctSVF. Through epifluorescence analysis, we found a similar pattern of cell distribution between cell treatments, mainly towards articular cartilage. Similar regenerative responses were observed in all experimental groups. These effects included: (i) osteochondral repair (promotion of typical anabolic markers and reduction of catabolic ones); (ii) reduction of synovial reactions (reduced synovial hypertrophy and inflammation, and change of macrophage phenotype to a more regenerative one); and (iii) reduction of degenerative changes in the meniscus (reduction of tears).

Discussion: Our study demonstrates the validity of a novel mechanical system for the generation of the mctSVF micrograft with chondroprotective potential in a preclinical model of moderate OA. The resulting final product can counteract inflammatory processes beyond the OA microenvironment and protect cartilage through the colonization of its structure. The intact and active microanatomy of mctSVF makes it a suitable candidate for translational medicine to treat OA without the need for cell manipulation as with ASC.

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来源期刊
Frontiers in Cell and Developmental Biology
Frontiers in Cell and Developmental Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
9.70
自引率
3.60%
发文量
2531
审稿时长
12 weeks
期刊介绍: Frontiers in Cell and Developmental Biology is a broad-scope, interdisciplinary open-access journal, focusing on the fundamental processes of life, led by Prof Amanda Fisher and supported by a geographically diverse, high-quality editorial board. The journal welcomes submissions on a wide spectrum of cell and developmental biology, covering intracellular and extracellular dynamics, with sections focusing on signaling, adhesion, migration, cell death and survival and membrane trafficking. Additionally, the journal offers sections dedicated to the cutting edge of fundamental and translational research in molecular medicine and stem cell biology. With a collaborative, rigorous and transparent peer-review, the journal produces the highest scientific quality in both fundamental and applied research, and advanced article level metrics measure the real-time impact and influence of each publication.
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