用葡萄糖预处理的纳米脂肪播种真皮代用品加速体内血管化和组织整合。

IF 5.2 3区 医学 Q1 ENGINEERING, BIOMEDICAL
Valeria Pruzzo, Francesca Bonomi, Ettore Limido, Andrea Weinzierl, Yves Harder, Matthias W Laschke
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引用次数: 0

摘要

暴露于高葡萄糖浓度的内皮细胞促进血管生成。本研究调查了葡萄糖的这种促血管生成作用是否适用于提高纳米脂肪血管化植入式真皮替代品的能力。纳米脂肪来源于绿色荧光蛋白(GFP)+ C57BL/6J供体小鼠的白色脂肪组织,并在Hank’s平衡盐溶液中添加或不添加(对照)高水平葡萄糖(30 mM)孵育1小时。将预处理后的纳米脂肪植入真皮代用品中,在GFP- C57BL/6J小鼠背侧皮肤褶腔中通过活体荧光显微镜、组织学和免疫组织化学分析其14天的体内性能。与对照组相比,高水平的葡萄糖预处理纳米脂肪并没有引起更强的免疫反应。然而,它改善了植入物的血管化,其表现为植入物边界区血液灌注微血管密度明显增加(增加约3.6倍),植入物内CD31+/GFP+微血管增加(增加约3倍)。因此,高葡萄糖预处理的纳米脂肪水平也增强了真皮替代品的组织整合,如沉积更多的I型胶原(增加约2.9倍)所示。这些发现表明,纳米脂肪短期暴露于高水平的葡萄糖中是一种有希望的、临床可行的策略,可以增强其在真皮替代品上的再生特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seeding of Dermal Substitutes with Glucose-Pretreated Nanofat Accelerates In Vivo Vascularization and Tissue Integration.

The exposure of endothelial cells to high glucose concentrations promotes angiogenesis. The present study investigated whether this pro-angiogenic effect of glucose is suitable to improve the capability of nanofat to vascularize implanted dermal substitutes. Nanofat was processed from white adipose tissue originating from green fluorescent protein (GFP)+ C57BL/6J donor mice and incubated for 1 h in Hank's Balanced Salt Solution with or without (control) a high level of glucose (30 mM). The pretreated nanofat was seeded onto dermal substitutes, which were analyzed by intravital fluorescence microscopy, histology and immunohistochemistry in dorsal skinfold chambers of GFP- C57BL/6J mice to assess their vivo performance over a period of 14 days. A high level of glucose-pretreated nanofat did not induce a stronger immune response when compared to the control. However, it improved the vascularization of the implants, as shown by a significantly higher density of blood-perfused microvessels in the border zones (~3.6-fold increase) and more CD31+/GFP+ microvessels (~3-fold increase) inside the implants. Accordingly, high glucose-pretreated nanofat levels also enhanced the tissue integration of the dermal substitutes, as indicated by the deposition of more type I collagen (~2.9-fold increase). These findings suggest that the short-term exposure of nanofat to a high level of glucose represents a promising and clinically feasible strategy to enhance its regenerative properties when seeded onto dermal substitutes.

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来源期刊
Journal of Functional Biomaterials
Journal of Functional Biomaterials Engineering-Biomedical Engineering
CiteScore
4.60
自引率
4.20%
发文量
226
审稿时长
11 weeks
期刊介绍: Journal of Functional Biomaterials (JFB, ISSN 2079-4983) is an international and interdisciplinary scientific journal that publishes regular research papers (articles), reviews and short communications about applications of materials for biomedical use. JFB covers subjects from chemistry, pharmacy, biology, physics over to engineering. The journal focuses on the preparation, performance and use of functional biomaterials in biomedical devices and their behaviour in physiological environments. Our aim is to encourage scientists to publish their results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Several topical special issues will be published. Scope: adhesion, adsorption, biocompatibility, biohybrid materials, bio-inert materials, biomaterials, biomedical devices, biomimetic materials, bone repair, cardiovascular devices, ceramics, composite materials, dental implants, dental materials, drug delivery systems, functional biopolymers, glasses, hyper branched polymers, molecularly imprinted polymers (MIPs), nanomedicine, nanoparticles, nanotechnology, natural materials, self-assembly smart materials, stimuli responsive materials, surface modification, tissue devices, tissue engineering, tissue-derived materials, urological devices.
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