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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Biocompatibility of synthetic ultraviolet radiation cross-linked polymers Subcutaneous implantation study
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Biocompatibility of synthetic ultraviolet radiation cross-linked polymers Subcutaneous implantation study

机译:合成紫外线辐射交联聚合物皮下植入研究的生物相容性

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Photo-cross-linked polymers have attracted a lot of attention in the biomedical field. The main benefits of these materials are related to the fact that they are most of the time viscous liquids or pastes that adapt a custom and fixed shape on demand of the user. Present study deals specifically with the biological response upon subcutaneous implantation of four different materials in rabbits. In the study 20 rabbits were divided into four groups (each five rabbits): Groups 1-3 were implanted with tested new obtained by us macromonomers (P1838-DMA; P1838-UR; PDEGA-UR -respectively), while group 4 (control) was implanted with the mesh (PLA) routinely used for surgical treatment of a hernia. The new compounds were polarized earlier using ultraviolet radiation to obtain cross-linked networks. The polymers in the form of discs were then implanted subcutaneously in dorsal region of rabbits. After 28 days polymers were explanted and examined. Microscopic observation evaluated: thickness of the connective tissue capsule around the discs, cells of inflammatory response, disc surface erosion, spectroscopic analysis. The examined materials cause no chronic inflammation, abscesses or tissue necrosis, and the biological response is similar to observed in control group. Therefore, new synthetic materials could be considered as biocompatible and safe. Materials undergo slow degradation of ester bonds and surface erosion and degradation products could be eliminated probably by phagocytosis. On the basis on the afore mentioned knowledge, we formulated hypothesis, that the new polymers are well tolerated by the adjacent tissues. The aim of the following study was to examine reaction of the tissue on new types of prepolymerized material implanted subcutaneously. The obtained results suggest, that the new UV crosslinked polymers do not affect negatively on the connective tissue that is in the contact with the implants. Furthermore, the used materials are in the liquid form, thus they could be easily performed in in minimally invasive laparoscopic treatment of abdominal hernias. (C) 2018 Wiley Periodicals, Inc.
机译:光交联聚合物在生物医学领域引起了很多关注。这些材料的主要好处与他们是大多数时间粘性液体或浆料,以适应定制和固定形状的用户的需求。目前的研究具体涉及在皮下植入兔中的四种不同材料的生物反应。在研究中,将20只兔子分为四组(每五只兔子):将组1-3植入由美国大分子单体获得的测试(P1838-DMA; P1838-UR; PDEGA-UR批评),而第4组(控制植入常规用于疝气的手术治疗的网状物(PLA)。使用紫外线辐射以提前偏振新化合物以获得交联网络。然后将圆盘形式的聚合物皮下植入兔背部区域。 28天后,将聚合物进行突出并检查。微观观察评价:圆盘周围的结缔组织胶囊的厚度,炎症反应,盘表面腐蚀,光谱分析。检查的材料不会导致慢性炎症,脓肿或组织坏死,并且在对照组中观察到生物反应类似。因此,新的合成材料可以被认为是生物相容性和安全的。材料经历缓慢降解酯键,表面腐蚀和降解产物可能通过吞噬作用消除。在上述知识的基础上,我们制定了假设,即新的聚合物被相邻组织良好耐受。以下研究的目的是检查组织对皮下植入的新型预聚物的反应。所得的结果表明,新的UV交联聚合物不会对与植入物接触的结缔组织产生负面影响。此外,使用的材料是液体形式的,因此它们可以容易地在腹部疝的微创腹腔镜治疗中进行。 (c)2018 Wiley期刊,Inc。

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