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羟基磷灰石涂层结晶度对生物溶解性、细胞附着效率及体外增殖的影响

Effects of hydroxylapatite coating crystallinity on biosolubility, cell attachment efficiency and proliferation in vitro.

作者信息

Chou L, Marek B, Wagner W R

机构信息

Department of Biomaterials, Goldman School of Dental Medicine, Boston University, MA 02118, USA.

出版信息

Biomaterials. 1999 May;20(10):977-85. doi: 10.1016/s0142-9612(98)00254-3.

Abstract

A hydroxylapatite (HA) coating with approximately 97% crystalline HA content (MP-1 treated HA coating, MP-HA) was tested in vitro for its biosolubility and cellular biocompatibility. The MP-HA coating was compared with a standard HA coating with approximately 63% crystallinity (SHA) and an amorphous HA coating with approximately 25% crystallinity (AHA), as well as a titanium (Ti) surface without HA coating as a control. The topographic study with scanning electron microscopy indicated that MP-HA appeared more coarse, with projected nodules which altered the shape of cells attached to the substrate. Biosolubility study indicated that MP-HA had the least effect on the culture medium pH, while AHA (P < 0.01) and SHA (P < 0.05) significantly raised the medium pH up to 8.2 and 7.75, respectively. X-ray diffraction (XRD) analysis showed essentially unchanged levels of the total soluble phases of all coatings after incubation with culture medium, except that the CaO phase was rapidly dissolved from AHA coatings and completely eliminated from SHA coatings. Cultures of human gingival fibroblasts on these HA coatings showed that MP-HA and SHA had about the same cell attachment efficiency which was relatively lower than that of AHA coatings. MP-HA generated significant higher cell proliferation rate relative to AHA (P < 0.01) and SHA (P < 0.05). This study indicated that surface chemistry and topography of lower crystallinity might be favorable to cell attachment, but that elevated medium pH might result in a cytotoxic effect that inhibits the proliferation of attached cells on coating surfaces.

摘要

对一种晶体 HA 含量约为 97% 的羟基磷灰石(HA)涂层(MP - 1 处理的 HA 涂层,MP - HA)进行了体外生物溶解性和细胞生物相容性测试。将 MP - HA 涂层与结晶度约为 63% 的标准 HA 涂层(SHA)、结晶度约为 25% 的无定形 HA 涂层(AHA)以及未涂覆 HA 的钛(Ti)表面作为对照进行比较。扫描电子显微镜的形貌研究表明,MP - HA 显得更粗糙,有突出的结节,这些结节改变了附着在基底上的细胞形状。生物溶解性研究表明,MP - HA 对培养基 pH 的影响最小,而 AHA(P < 0.01)和 SHA(P < 0.05)分别使培养基 pH 显著升高至 8.2 和 7.75。X 射线衍射(XRD)分析显示,所有涂层与培养基孵育后,总可溶性相的水平基本不变,只是 CaO 相从 AHA 涂层中迅速溶解,并从 SHA 涂层中完全消除。在这些 HA 涂层上培养人牙龈成纤维细胞表明,MP - HA 和 SHA 的细胞附着效率大致相同,相对低于 AHA 涂层。与 AHA(P < 0.01)和 SHA(P < 0.05)相比,MP - HA 产生的细胞增殖率显著更高。这项研究表明,较低结晶度的表面化学和形貌可能有利于细胞附着,但培养基 pH 的升高可能会产生细胞毒性作用,抑制附着在涂层表面的细胞增殖。

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