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基于明胶的水凝胶的免疫相容性和非血栓形成性。

Immunocompatibility and non-thrombogenicity of gelatin-based hydrogels.

机构信息

Institute of Biomaterial Science and Berlin-Brandenburg Centre for Regenerative Therapies (BCRT), Helmholtz Zentrum Geesthacht, Teltow, Germany.

Department of Radiopharmaceutical and Chemical Biology, Institute of Radiopharmaceutical Cancer Research, Helmholtz-Zentrum Dresden-Rossendorf, Dresden, Germany.

出版信息

Clin Hemorheol Microcirc. 2021;77(3):335-350. doi: 10.3233/CH-201028.

DOI:10.3233/CH-201028
PMID:33337355
Abstract

Immunocompatibility and non-thrombogenicity are important requirements for biomedical applications such as vascular grafts. Here, gelatin-based hydrogels formed by reaction of porcine gelatin with increasing amounts of lysine diisocyanate ethyl ester were investigated in vitro in this regard. In addition, potential adverse effects of the hydrogels were determined using the "Hen's egg test on chorioallantoic membrane" (HET-CAM) test and a mouse model.The study revealed that the hydrogels were immunocompatible, since complement activation was absent and a substantial induction of reactive oxygen species generating monocytes and neutrophils could not be observed in whole human blood. The density as well as the activation state of adherent thrombocytes was comparable to medical grade polydimethylsiloxane, which was used as reference material. The HET-CAM test confirmed the compatibility of the hydrogels with vessel functionality since no bleedings, thrombotic events, or vessel destructions were observed. Only for the samples synthesized with the highest LDI amount the number of growing blood vessels in the CAM was comparable to controls and significantly higher than for the softer materials. Implantation into mice showed the absence of adverse or toxic effects in spleen, liver, or kidney, and only a mild lymphocytic activation in the form of a follicular hyperplasia in draining lymph nodes (slightly increased after the implantation of the material prepared with the lowest LDI content). These results imply that candidate materials prepared with mid to high amounts of LDI are suitable for the coating of the blood contacting surface of cardiovascular implants.

摘要

免疫相容性和非血栓形成性是血管移植物等生物医学应用的重要要求。在这里,通过猪明胶与赖氨酸二异氰酸酯乙酯的比例增加反应形成的明胶基水凝胶在这方面进行了体外研究。此外,还使用“鸡胚绒毛尿囊膜试验”(HET-CAM 试验)和小鼠模型来确定水凝胶的潜在不良影响。研究表明,水凝胶具有免疫相容性,因为不存在补体激活,并且在全人血液中也观察不到产生活性氧物质的单核细胞和中性粒细胞的大量诱导。粘附血小板的密度和激活状态与用作参考材料的医用级聚二甲基硅氧烷相当。HET-CAM 试验证实了水凝胶与血管功能的相容性,因为没有观察到出血、血栓形成或血管破坏。只有用最高 LDI 量合成的样品,CAM 中生长的血管数量与对照相当,明显高于较软的材料。植入小鼠后,脾、肝或肾中均未观察到不良反应或毒性作用,仅在引流淋巴结中以滤泡增生的形式出现轻度淋巴细胞激活(在植入用最低 LDI 含量制备的材料后略有增加)。这些结果表明,用中至高量 LDI 制备的候选材料适用于心血管植入物与血液接触表面的涂层。

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