Poly (ɛ-Caprolactone-co-l,l-Lactide) Vascular External Sheath Carrying Prednisone for Improving Patency Rate of the Vein Graft.

Tissue Engineering Part A Pub Date : 2022-05-01 Epub Date: 2022-01-04 DOI:10.1089/ten.TEA.2021.0118
Yang Wang, Meihan Tao, Huan Wei, Muhammad Arslan Ahmad, Yizhan Ma, Xiaoyan Mao, Liang Hao, Qiang Ao
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引用次数: 2

Abstract

Coronary artery bypass graft (CABG) surgery is an impactful treatment for coronary heart disease. Intimal hyperplasia is the central reason for the restenosis of vein grafts (VGs) after CABG. The introduction of external vascular sheaths around VGs can effectively inhibit intimal hyperplasia and ensure the patency of VGs. In this study, the well-known biodegradable copolymer poly (ɛ-caprolactone-co-l,l-lactide) (PLCL) was electrospun into high porosity external sheaths. The prednisone loaded in the PLCL sheath was slowly released during the degradation process of PLCL. Under the combined effects of sheath and prednisone, intimal hyperplasia was inhibited. For the cell experiments, all sheaths show low cytotoxicity to L929 cells at different concentrations at different time intervals. The ultrasonography and histological results showed prominent dilation and intimal hyperplasia of VG without sheath after 2 months of surgery. But there was no dilation in PLCL and PLCLPrednisone groups. Of note, the prednisone-loaded sheath group exhibited efficacy in inhibiting intimal hyperplasia and ensured graft patency. Impact statement To inhibit intimal hyperplasia after coronary artery bypass graft, the use of external vascular sheaths can prevent vein graft (VG) dilatation, then reduce turbulent blood flow shear stress to vessel wall, and lower the stimulation of shear stress to smooth muscle cells (SMCs), so as to prevent the proliferation and migration of vascular SMC. We provide a biodegradable sheath electrospun by poly (ɛ-caprolactone-co-l,l-lactide) (PLCL) loading prednisone and utilize it around VG in animal models. Vascular ultrasound examinations show strong evidence of vascular patency. The histological alterations of VGs in PLCLPrednisone group gave a narrower intima layer owing to the inhibition effect of prednisone.

聚(i -己内酯-co-l,l-丙交酯)血管外鞘携带强的松提高移植静脉通畅率。
冠状动脉旁路移植术(CABG)是治疗冠心病的有效方法。血管内膜增生是冠脉搭桥后静脉移植物再狭窄的主要原因。在VGs周围引入外血管鞘,可以有效抑制内膜增生,保证VGs通畅。在这项研究中,众所周知的可生物降解共聚物聚(i -己内酯-co-l,l-丙交酯)(PLCL)被静电纺丝制成高孔隙率的外护套。在PLCL降解过程中,装载在PLCL鞘中的强的松缓慢释放。在鞘和强的松的联合作用下,内膜增生受到抑制。在细胞实验中,所有鞘在不同浓度、不同时间间隔下对L929细胞均表现出较低的细胞毒性。术后2个月超声及组织学检查显示无鞘VG明显扩张及内膜增生。PLCL组和plcl强的松组均未见扩张。值得注意的是,强的松负载的鞘组在抑制内膜增生和确保移植物通畅方面表现出有效的效果。为了抑制冠状动脉搭桥术后的内膜增生,使用外血管鞘可以防止静脉移植物(VG)扩张,从而减少湍流血流对血管壁的剪切应力,降低剪切应力对血管平滑肌细胞(SMCs)的刺激,从而防止血管SMC的增殖和迁移。我们提供了一种可生物降解的由聚己内酯-co-l,l-丙交酯(PLCL)负载强的松的电纺丝鞘,并在动物模型中应用于VG周围。血管超声检查显示血管通畅。plcl强的松组由于强的松的抑制作用,VGs的组织学改变使内膜变窄。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Tissue Engineering Part A
Tissue Engineering Part A CELL & TISSUE ENGINEERING-BIOTECHNOLOGY & APPLIED MICROBIOLOGY
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