半固体脱钙对骨性材料内部绿色荧光蛋白标记骨髓间充质干细胞的研究
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国家自然科学基金资助项目(30600643);广东省自然科学基金骨髓瘤课题(06107503);南方医院院长基金(2006034)


Study of GFP modified bone marrow mesenchyma stem cells in bone bio-scaffold by semi-solid decalcification system
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    摘要:

    目的:通过试制半固体脱钙体系,建立在坚硬-透光性差的骨性材料内部观察-研究荧光基因标记细胞的方法-方法:靶细胞以携带绿色荧光蛋白的重组慢病毒载体标记后,接种于骨性生物支架材料内部;负载荧光细胞的生物材料经多聚甲醛固定后,研究不同脱钙剂对细胞荧光的影响;负载荧光细胞的生物材料经自创的半固体脱钙体系脱钙后,制备冰冻切片,并与塑料包埋切片-常规石蜡切片比较-结果:荧光倒置显微镜可以观察到在生物材料内部生长的绿色荧光细胞-骨性材料在半固体脱钙过程中,荧光倒置显微镜可以观察到,材料中不透光的坚硬钙质成分逐渐消失,而细胞在原位保持形态和荧光;以不脱钙塑料包埋切片为对照,半固体脱钙和随后的冰冻切片可原位精细保持细胞的荧光和形态,且可适用于大块骨性组织-结论:本研究采用自行试制的半固体脱钙体系,可原位保留骨性材料内部生长细胞的位置-形态和荧光,为进行骨性材料内部结构及功能的相关研究提供依据-

    Abstract:

    Objective:It is an interesting challenge to study green fluorescence protein(GFP) labled cells in osseous stuff(including bone bioscaffolds and nature bone), for osseous stuff is very hard and with poor lucency. To solve this problem, the authors tried to establish a semi-solid decalcification system. Methods:①Primary Mesenchyma stem cells were separated from rabbit bone marrow, modified with recombined lentivirus with GFP gene(BMSC-GFP). ②BMSC-GFP were inoculated in bone bio-scaffold of β-tricalcium phosphate(β-TCP); bio-scaffold with cells were fixed with 4% paraformaldehyde phosphate buffered saline(PBS). ③Different agents for decalcification were tested, after that agents selected were added into semi-solid system to find proper combination. ④Frozen sections were made after decalcification in semi-solid system for 1~4w, paraffin sections and plastic embedding sections were used as controls. Results:①GFP+ cells can be found growing on internal side of the holes of bio-scaffold by fluorescence invert microscope. ②BMSC-GFP cells remain at the site where they grow during decalcification in semi-solid system, discovered by fluorescence invert microscope. ③Comparing with plastic embedding sections, semi-solid system and frozen sections can keep the fluorescence and original modality, however, plastic embedding section can only be applied when scaffold is very small, while paraffin sections do not work to scaffold. Conclusion:With the own-made semi-solid decalcification system, GFP+ cells growing inside bone bio-scaffolds can keep fluorescence, modality in situ. It will be great help to the study of mechanism in many fields such as bone and cartilage tissue engineering, bone marrow transplantation and so on.

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江 汕,江千里,裴国献,赵培冉.半固体脱钙对骨性材料内部绿色荧光蛋白标记骨髓间充质干细胞的研究[J].南京医科大学学报(自然科学版),2009,29(4):450-453482

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