首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Hydrostatic pressure differentially regulates outer and inner annulus fibrosus cell matrix production in 3D scaffolds.
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Hydrostatic pressure differentially regulates outer and inner annulus fibrosus cell matrix production in 3D scaffolds.

机译:静水压力差异性地调节3D支架中外和内环纤维细胞基质的产生。

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Mechanical stimulation may be used to enhance the development of engineered constructs for the replacement of load bearing tissues, such as the intervertebral disc. This study examined the effects of dynamic hydrostatic pressure (HP) on outer and inner annulus (OA, IA) fibrosus cells seeded on fibrous poly(glycolic acid)-poly(L-lactic acid) scaffolds. Constructs were pressurized (5 MPa, 0.5 Hz) for 4 h/day from day 3 to day 14 of culture and analyzed using ELISAs and immunohistochemistry (IHC) to assess extracellular matrix (ECM) production. Both cell types were viable, with OA cells exhibiting more infiltration into the scaffold, which was enhanced by HP. ELISA analyses revealed that HP had no effect on type I collagen production while a significant increase in type II collagen (COL II) was measured in pressurized OA constructs compared to day 14 unloaded controls. Both OA and IA dynamically loaded scaffolds exhibited more uniform COL II elaboration as shown by IHC analyses, which was most pronounced in OA-seeded scaffolds. Overall, HP resulted in enhanced ECM elaboration and organization by OA-seeded constructs, while IA-seeded scaffolds were less responsive. As such, hydrostatic pressurization may be beneficial in annulus fibrosus tissue engineering when applied in concert with an appropriate cell source and scaffold material.
机译:机械刺激可用于增强工程构造物的发展,以替换承重组织,例如椎间盘。这项研究检查了动态静水压(HP)对接种在纤维状聚(乙醇酸)-聚(L-乳酸)支架上的外环和内环(OA,IA)纤维细胞的影响。从培养的第3天到第14天,将构建体加压(5 MPa,0.5 Hz)每天4 h,并使用ELISA和免疫组织化学(IHC)进行分析以评估细胞外基质(ECM)的产生。两种细胞类型都是可行的,其中OA细胞表现出更多的渗透入支架,这被HP增强。 ELISA分析显示,与第14天空载对照相比,加压OA构建体中HP对I型胶原蛋白的产生没有影响,而II型胶原蛋白(COL II)的显着增加。如IHC分析所示,OA和IA动态加载的支架均表现出更均匀的COL II修饰,这在OA播种支架中最为明显。总体而言,HP通过OA播种的构建体增强了ECM的精细化和组织性,而IA播种的支架反应较慢。这样,当与适当的细胞源和支架材料一起使用时,静液压加压在纤维环组织工程中可能是有益的。

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