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最小化处理的骨髓源性细胞可用于原位组织工程和同时形成个性化组织模型。

Minimally Manipulated Bone Marrow-Derived Cells Can Be Used for Tissue Engineering In Situ and Simultaneous Formation of Personalized Tissue Models.

机构信息

National Medical Research Center of Radiology, Ministry of Health of the Russian Federation, Moscow, Russia.

Peoples' Friendship University of Russia, Moscow, Russia.

出版信息

Bull Exp Biol Med. 2022 May;173(1):139-145. doi: 10.1007/s10517-022-05509-z. Epub 2022 May 27.

Abstract

Red bone marrow and autologous bone tissue (bone fragments and bone chips) of the donor were harvested intraoperatively during autoplasty of talus bone defect. Titanium chips were obtained by grinding a fragment of a microporous titanium-coated hip arthroplasty (Zimmer). Bone marrow mononuclear cells were isolated in the operating room, and bone and titanium fragments were incubated with a suspension of mononuclear cells. The quality of revitalization was assessed by fluorescence microscopy and histological examination after culturing of adherent cells on the bone and titanium fragments. During culturing on bone chips, bone marrow mononuclear fraction cells demonstrated significantly higher metabolic activity than bone marrow cells (p=0.04). Mononuclear fraction cells were also capable of stable colonization of titanium fragments with the formation of composite tissue model.

摘要

术中取自体距骨骨缺损成形术时,采集供体的红骨髓和自体骨组织(骨片和骨屑)。通过研磨微孔钛涂层髋关节置换术(Zimmer)的一个碎片获得钛屑。在手术室分离骨髓单核细胞,将骨和钛碎片与单核细胞混悬液孵育。通过荧光显微镜观察和培养贴壁细胞后对骨和钛碎片的组织学检查评估再生活力。在骨屑培养过程中,骨髓单核细胞亚群的代谢活性明显高于骨髓细胞(p=0.04)。单核细胞亚群也能够稳定定植于钛碎片上,形成复合组织模型。

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