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Study on biological safety of spider silk protein bilayer vascular scaffold

机译:蜘蛛丝蛋白双层血管支架的生物安全性研究

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The spider silk protein bilayer vascular scaffold (SSPBVS) based on RGD-recombinant spider silk protein (pNSRl6), gelatin (Gt), chitosan (CS), and polycaprolactone (PCL) was prepared using electrospinning method. To evaluate the biological safety of SSPBVS, which has potential application in tissue engineering blood vessel, acute toxicity test, skin irritation test, skin sensitization test, single cell gel electrophoresis test, pyrogeneous test, chromosomal aberration test, and micronucleus test were carried. The results demonstrated that distribution of scaffold fiber was dense, with high porosity and no adhesion phenomenon was found. When Mesenchymal stem cells (MSCs) were cultured with vascular scaffold extract, they proliferated rapidly with fusiform morphology. Statistics showed that there was no significant difference in rat organ index between SSPBVS extract group and control group. SSPBVS extract only had slight irritation on the standard deviation (SD) rat skin, and no sensitization was found. SSPBVS extract did not initiate DNA damage of MSCs, and nuclear DNA was complete. Body temperature elevation value of SD rat in SSPBVS extract group was less than 0.2 degrees C. The SSPBVS extract did not cause gene mutation of the chromosome. PCE ratio of SSPBVS extract group was 3.1 +/- 1.5 parts per thousand. This study suggested that SSPBVS did not bring significant toxic effect on MSCs in vitro and had potential as scaffold in tissue engineering blood vessel.
机译:采用静电纺丝法制备了基于RGD重组蜘蛛丝蛋白(pNSR16),明胶(Gt),壳聚糖(CS)和聚己内酯(PCL)的蜘蛛丝双层血管支架(SSPBVS)。为了评估SSPBVS的生物安全性,该SSPBVS在组织工程血管中具有潜在的应用,急性毒性试验,皮肤刺激性试验,皮肤致敏性试验,单细胞凝胶电泳试验,热原性试验,染色体畸变试验和微核试验。结果表明,脚手架纤维分布致密,孔隙率高,未发现粘附现象。间充质干细胞(MSCs)与血管支架提取物一起培养时,它们以梭形形态迅速增殖。统计表明,SSPBVS提取物组与对照组大鼠器官指标无明显差异。 SSPBVS提取物仅对标准差(SD)大鼠皮肤产生轻微刺激,未发现致敏作用。 SSPBVS提取物未引发MSC的DNA损伤,并且核DNA完整。 SSPBVS提取物组SD大鼠的体温升高值小于0.2摄氏度。SSPBVS提取物未引起染色体基因突变。 SSPBVS提取物组的PCE比为3.1 +/- 1.5份/千。这项研究表明SSPBVS不会对MSCs产生明显的毒性作用,并且在组织工程血管中具有作为支架的潜力。

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