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Dual release of dexamethasone and TGF-β3 from polymeric microspheres for stem cell matrix accumulation in a rat disc degeneration model

机译:地塞米松和TGF-β3从聚合物微球中的双重释放用于大鼠椎间盘退变模型中干细胞基质的积累

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摘要

Low back pain is frequently caused by nucleus pulposus (NP) degeneration. Tissue engineering is a powerful therapeutic strategy which could restore the normal biomechanical motion of the human spine. Previously we reported that a new nanostructured three-dimensional poly(lactide-co-glycolide) (PLGA) microsphere, which is loaded with dexamethasone and growth factor embedded heparin/poly(l-lysine) nanoparticles via a layer-by-layer system, was an effective cell carrier in vitro for NP tissue engineering. This study aimed to investigate whether the implantation of adipose-derived stem cell (ADSC)-seeded PLGA microspheres into the rat intervertebral disc could regenerate the degenerated disc. Changes in disc height by plain radiograph, T2-weighted signal intensity in magnetic resonance imaging (MRI), histology, immunohistochemistry and matrix-associated gene expression were evaluated in normal controls (NCs) (without operations), a degeneration control (DC) group (with needle puncture, injected only with Dulbecco's modified Eagle's medium), a PLGA microspheres (PMs) treatment group (with needle puncture, PLGA microspheres only injection), and PLGA microspheres loaded with ADSCs treatment (PMA) group (with needle puncture, PLGA microspheres loaded with ADSC injection) for a 24-week period. The results showed that at 24 weeks post-transplantation, the PM and PMA groups regained disc height values of ~63% and 76% and MRI signal intensities of ~47% and 76%, respectively, compared to the NC group. Biochemistry, immunohistochemistry and gene expression analysis also indicated the restoration of proteoglycan accumulation in the discs of the PM and PMA groups. However, there was almost no restoration of proteoglycan accumulation in the discs of the DC group compared with the PM and PMA groups. Taken together, these data suggest that ADSC-seeded PLGA microspheres could partly regenerate the degenerated disc in vivo after implantation into the rat degenerative intervertebral disc.
机译:下腰痛通常是由髓核(NP)变性引起的。组织工程学是一种强大的治疗策略,可以恢复人体脊柱的正常生物力学运动。之前我们曾报道过一种新型的纳米结构三维聚乳酸-乙交酯(PLGA)微球,其通过逐层系统装载了地塞米松和生长因子嵌入的肝素/聚(1-赖氨酸)纳米颗粒,是体外用于NP组织工程的有效细胞载体。这项研究旨在调查是否有脂肪干细胞(ADSC)播种的PLGA微球植入大鼠椎间盘是否可以再生退化的椎间盘。在正常对照(NC)(无手术),变性对照(DC)组中,通过普通X射线照片,T2加权信号强度,磁共振成像(MRI),组织学,免疫组化和基质相关基因表达对椎间盘高度的变化进行了评估。 (针刺,仅用Dulbecco改良的Eagle介质注射),PLGA微球(PMs)治疗组(针刺,仅PLGA微球注射),负载ADSCs治疗(PMA)的PLGA微球组(针刺,PLGA装有ADSC注射液的微球)持续24周。结果显示,与NC组相比,移植后24周,PM和PMA组分别恢复了椎间盘高度值〜63%和76%和MRI信号强度〜47%和76%。生物化学,免疫组织化学和基因表达分析还表明,在PM和PMA组的椎间盘中蛋白聚糖积累得以恢复。但是,与PM和PMA组相比,DC组椎间盘中几乎没有蛋白聚糖积累的恢复。综上所述,这些数据表明,植入ADSC的PLGA微球在植入大鼠变性椎间盘后可以在体内部分再生变性椎间盘。

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