中国组织工程研究 ›› 2010, Vol. 14 ›› Issue (42): 7843-7848.doi: 10.3969/j.issn.1673-8225.2010.42.013

• 材料生物相容性 material biocompatibility • 上一篇    下一篇

掺锶聚磷酸钙的细胞相容性

宋炎成1,曾  春1,金文涛1,蔡道章1,万昌秀2,裴福兴3    

  1. 1中山大学附属第三医院骨科,广东省广州市 510630; 2四川大学高分子科学与工程学院,四川省成都市  610041;3四川大学华西医院骨科,四川省成都市  610041
  • 出版日期:2010-10-15 发布日期:2010-10-15
  • 通讯作者: 蔡道章,教授,中山大学附属第三医院骨科,广东省广州市 510630
  • 作者简介:宋炎成☆,男,1975年生,河北省邢台市人,汉族, 2006年四川大学毕业,博士,主治医师,主要从事骨与关节重建外科研究。 songyancheng@21cn.com
  • 基金资助:

    国家自然科学基金项目(50472091)。

Cellular compatibility of strontium-doped calcium polyphosphate

Song Yan-cheng1, Zeng Chun1, Jin Wen-tao1, Cai Dao-zhang1, Wan Chang-xiu2, Pei Fu-xing3    

  1. 1 Department of Orthopaedics, Third Hospital Affiliated to Sun Yat-sen University, Guangzhou   510630, Guangdong Province, China; 2 College of Polymer Science and Engineering, Sichuan University, Chengdu   610041, Sichuan Province, China; 3 Department of Orthopaedics, West China Hospital of Sichuan University, Chengdu   610041, Sichuan Province, China
  • Online:2010-10-15 Published:2010-10-15
  • Contact: Cai Dao-zhang, Professor, Department of Orthopaedics, Third Hospital Affiliated to Sun Yat-sen University, Guangzhou 510630, Guangdong Province, China
  • About author:Song Yan-cheng☆, Doctor, Attending physician, Department of Orthopaedics, Third Hospital Affiliated to Sun Yat-sen University, Guangzhou 510630, Guangdong Province, China songyancheng@21cn.com
  • Supported by:

     the National Natural Science Foundation of China, No. 50472091*

摘要:

背景:研究显示,以可降解生物陶瓷聚磷酸钙为基材,加入微量锶元素,通过调控材料结构如孔径、孔隙率等性能,可制备出有足够力学强度并可控降解的掺锶聚磷酸钙。
目的:观察成骨细胞与掺锶聚磷酸钙的细胞相容性。
方法:将兔成骨细胞与不同含锶质量分数(0~100%)的掺锶聚磷酸钙体外复合培养,进行形态学和功能测定。MTT法检测掺锶聚磷酸钙中成骨细胞的活力,并测定成骨细胞碱性磷酸酶活性。
结果与结论:在倒置显微镜、扫描电子显微镜和激光共聚焦显微镜下观察到成骨细胞在掺锶聚磷酸钙的表面和孔隙内大量黏附、增殖和生长,并且分泌细胞外基质及细胞表面的大量微绒毛,显示成骨细胞在掺锶聚磷酸钙材料上生长形态良好;同时通过MTT和碱性磷酸酶测定表明细胞功能良好,其中含锶1%掺锶聚磷酸钙细胞增殖活性及碱性磷酸酶活性最高,对成骨细胞无毒性,具有良好的细胞相容性。

关键词: 掺锶聚磷酸钙, 成骨细胞, 锶, 细胞相容性, 生物材料

Abstract:

BACKGROUND: It is reported that strontium-doped calcium polyphosphate with controllable degradability and enough mechanical strength could be synthesized by adding trace strontium into biodegradable calcium polyphosphate due to the modulation of material structure, such as pore size and porosity.
OBJECTIVE: To study the cellular compatibility of strontium-doped calcium polyphosphate to osteoblasts.
METHODS: The rabbit osteoblasts were co-cultured in vitro on the strontium-doped calcium polyphosphate, their morphology and biology were studied. MTT assay was applied to determine the osteoblast vitality in strontium-doped calcium polyphosphate and alkaline phosphatase activities were detected.
RESULTS AND CONCLUSION: Under inverted microscope, scanning electron microscopy and confocal laser microscopy, the co-cultured osteoblast adhered, proliferated and grew normally on the surface and pores of strontium-doped calcium polyphosphate, and secreted extracellular matrix and massive microvillus on the cell surface. The osteoblast grew well on strontium-doped calcium polyphosphate; meanwhile, cellular function was shown to be well by MTT assay and alkaline phosphatase activities, 1% strontium-doped calcium polyphosphate achieve the maximum of cellular proliferation activity and alkaline phosphatase activities, no toxicity on osteoblasts and good cellular compatibility.

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