首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Degradable and highly porous polyesterurethane foam as biomaterial: effects and phagocytosis of degradation products in osteoblasts.
【24h】

Degradable and highly porous polyesterurethane foam as biomaterial: effects and phagocytosis of degradation products in osteoblasts.

机译:可降解且高度多孔的聚酯聚氨酯泡沫作为生物材料:成骨细胞中降解产物的作用和吞噬作用。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Recently, a new class of biodegradable PHB-based polyesterurethane (DegraPol/btc) has been prepared and found to exhibit favorable cell and tissue compatibility. The present study has been designed to evaluate the response of primary isolated rat tibia osteoblasts to small crystalline particles of short-chain poly[(R)-3-hydroxybutyric acid] (PHB-P diameter: 2-20 microm), of fluorescent-labeled analogs (DPHP-P), and of lysine methyl ester as possible degradation products of DegraPol/btc. Observations made using confocal microscopy clearly indicate that osteoblasts have the capability of taking up PHB-P particles. Although in single-cell analysis the number of DPHB-P-positive osteoblasts gradually increased up to 16 days, the fluorescence intensity per osteoblast increased only during the first 4 h after DPHB-P incubation, and then it retained the 4 h level up to 16 days. No significant change in the production levels of collagen type I and osteocalcin was detectable after treatment with low concentrations of PHB-P for up to 32 days. In contrast, a time- and dose-dependent alteration of the alkaline phosphatase (ALP) activity was found. Maximal activity was measured after 4 days of treatment with 2 microg of PHB-P/mL (170% of control cells). Rat peritoneal macrophages co-cultured with osteoblasts in a transwell culture system mimicked the observed PHB-P induced ALP elevation. Therefore, the PHB-P-induced ALP increase could be the result of direct or indirect stimulation of osteoblasts, possibly via soluble factors produced by contaminating osteoclasts. Taken collectively, the data demonstrate that osteoblasts are capable of phagocytosing PHB-P and that this process is accompanied at low PHB-P concentrations by dose- and time-dependent alteration of alkaline phosphatase activity but not of collagen type I or osteocalcin.
机译:最近,已经制备了新型的可生物降解的基于PHB的聚酯氨基甲酸酯(DegraPol / btc),发现它具有良好的细胞和组织相容性。本研究旨在评估初级分离的大鼠胫骨成骨细胞对短链聚[(R)-3-羟基丁酸](PHB-P直径:2-20微米),荧光-标记的类似物(DPHP-P)和赖氨酸甲酯作为DegraPol / btc的可能降解产物。使用共聚焦显微镜进行的观察清楚地表明,成骨细胞具有吸收PHB-P颗粒的能力。尽管在单细胞分析中,DPHB-P阳性成骨细胞的数量逐渐增加,直至16天,但每个成骨细胞的荧光强度仅在DPHB-P孵育后的前4小时内增加,然后保持4 h的水平直至16天用低浓度的PHB-P处理长达32天后,未检测到I型胶原和骨钙素的生产水平有显着变化。相反,发现碱性磷酸酶(ALP)活性随时间和剂量的变化。用2微克PHB-P / mL(170%的对照细胞)处理4天后,测量最大活性。在成孔培养系统中与成骨细胞共培养的大鼠腹膜巨噬细胞模拟了观察到的PHB-P诱导的ALP升高。因此,PHB-P诱导的ALP升高可能是直接或间接刺激成骨细胞的结果,可能是通过污染破骨细胞产生的可溶性因子引起的。总体而言,数据表明成骨细胞能够吞噬PHB-P,并且在低PHB-P浓度下,该过程伴随着碱性磷酸酶活性的剂量和时间依赖性变化,但不是I型胶原或骨钙蛋白的变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号