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首页> 外文期刊>American Journal of Veterinary Research >Use of a centrifugation-based, point-of-care device for production of canine autologous bone marrow and platelet concentrates
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Use of a centrifugation-based, point-of-care device for production of canine autologous bone marrow and platelet concentrates

机译:使用基于离心的即时护理设备生产犬自体骨髓和血小板浓缩液

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摘要

OBJECTIVE: To analyze a centrifugation-based, point-of-care device that concentrates canine platelets and bone marrow-derived cells. ANIMALS: 19 adult sexually intact dogs. PROCEDURES: Anticoagulated peripheral blood (60 mL) and 60 mL of anticoagulated bone marrow aspirate (BMA) were concentrated by centrifugation with the centrifugation-based, point-of-care device to form a platelet and a bone marrow concentrate (BMC) from 11 dogs. Blood samples were analyzed on the basis of hemograms, platelet count, and PCV. The BMA and BMC were analyzed to determine PCV, total nucleated cell count, RBC count, and differential cell counts. The BMC stromal cells were cultured in an osteoinductive medium. Eight additional dogs were used to compare the BMC yield with that in which heparin was infused into the bone marrow before aspiration. RESULTS: The centrifugation-based, point-of-care device concentrated platelets by 6-fold over baseline (median recovery, 63.1%) with a median of 1,336 x 10(3) platelets/microL in the 7-mL concentrate. The nucleated cells in BMCs increased 7-fold (median recovery, 42.9%) with a median of 720 x 10(3) cells/microL in the 4-mL concentrate. The myeloid nucleated cells and mononuclear cells increased significantly in BMCs with a significant decrease in PCV, compared with that of BMAs. Stromal cell cultures expressed an osteoblastic phenotype in culture. Infusion of heparin into the bone marrow eliminated clot formation and created less variation in the yield (median recovery, 61.9%). CONCLUSIONS AND CLINICAL RELEVANCE: Bone marrow-derived cell and platelet-rich concentrates may form bone if delivered in an engineered graft, thus decreasing the need for cancellous bone grafts.
机译:目的:分析一种基于离心的即时护理设备,该设备可浓缩犬血小板和骨髓来源的细胞。动物:19只成年性完整的狗。程序:将抗凝的外周血(60 mL)和60 mL的抗凝骨髓抽吸液(BMA)通过基于离心的即时护理装置进行离心浓缩,从11中形成血小板和骨髓浓缩液(BMC)小狗。根据血象图,血小板计数和PCV对血样进行分析。分析BMA和BMC以确定PCV,总有核细胞数,RBC数和差异细胞数。在骨诱导培养基中培养BMC基质细胞。使用另外八只狗来比较BMC的产量和在抽吸前将肝素注入骨髓的BMC的产量。结果:基于离心的即时护理设备将血小板浓缩至基线的6倍(中位数回收率为63.1%),在7 mL浓缩物中的中位数为1,336 x 10(3)血小板/ microL。 BMC中的有核细胞增加了7倍(中位数回收率为42.9%),在4-mL浓缩物中的中位数为720 x 10(3)细胞/微升。与BMA相比,BMC中的髓样有核细胞和单核细胞显着增加,而PCV则显着下降。基质细胞培养物在培养物中表达成骨细胞表型。向骨髓中输注肝素可消除血凝块形成,并减少产量变化(中位数恢复率为61.9%)。结论和临床意义:如果将骨髓来源的细胞和富含血小板的浓缩物以工程移植物的形式递送,则可能形成骨骼,从而减少了对松质骨移植物的需求。

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