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Bax deficiency in mice increases cartilage production during fracture repair through a mechanism involving increased chondrocyte proliferation without changes in apoptosis.

机译:小鼠中的Bax缺乏症通过涉及软骨细胞增生而不引起凋亡变化的机制增加了骨折修复过程中的软骨生成。

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This study sought to determine the role of the pro-apoptotic gene, Bax, in fracture healing by comparing femoral fracture healing in Bax knockout (KO) and wild-type C57BL/6J (background strain) mice. Bax KO fractures were larger, had more bone mineral content, had approximately 2-fold larger cartilage area per callus area in the first and second weeks of fracture healing, and showed an increased osteoclast surface area in the third and fourth weeks of fracture healing compared to C57BL/6J fractures. The increased cartilage area in the Bax KO fracture callus was due to increases in number of both pre-hypertropic and hypertropic chondrocytes. TUNEL analysis showed no significant differences in the number of either chondrocyte or non-chondrocyte apoptotic cells between Bax KO and C57BL/6J fractures at 7 or 14 days post-fracture, indicating that the increased number of chondrocytes in Bax KO fractures was not due to reduced apoptosis. Analysis of expression of apoptotic genes revealed that although the expression levels of Bcl-2 and Bcl-xL were not different between the Bax KO and C57BL/6J mice at 7 or 14 days post-fracture, the expression of BH3-domain only Bak and "Bik-like" pro-apoptotic gene increased approximately 1.5-fold and approximately 2-fold, respectively, in Bax KO fractures at 7 and 14 days post-fracture, compared to C57BL/6J fractures, suggesting that up-regulation of the Bak and Bik-like pro-apoptotic genes in Bax KO mice might compensate for the lack of Bax functions in the context of apoptosis. Analysis by in vivo incorporation of bromodeoxyuridine into chondrocytes within the fracture tissues indicated a highly significant increase in chondrocyte proliferation in Bax KO fractures compared to C57BL/6J fractures at day 7. The increased expression of collagen 2alpha1 and 9alpha1 gene in Bax KO fractures during early healing was consistent with an increased chondrocyte proliferation. In conclusion, this study demonstrates for the first time that Bax has an important role in the early stage of fracture healing, and that the increased callus size and cartilage area in Bax KO fractures was due to increased chondrocyte proliferation and not to reduced apoptosis or increased chondrocyte hypertrophy. The unexpected effect of Bax deficiency on chondrocyte proliferation implicates a novel regulatory function for Bax on chondrocyte proliferation during fracture repair.
机译:这项研究试图通过比较Bax基因敲除(KO)和野生型C57BL / 6J(背景品系)小鼠的股骨骨折愈合情况来确定促凋亡基因Bax在骨折愈合中的作用。 Bax KO骨折较大,具有更多的骨矿物质含量,在骨折愈合的第一周和第二周,每个愈伤组织区域的软骨面积约大2倍,并且在骨折愈合的第三周和第四周,破骨细胞表面积增加C57BL / 6J骨折。 Bax KO骨折愈伤组织中软骨面积的增加归因于早肥大和肥大软骨细胞的数量增加。 TUNEL分析显示,在骨折后7天或14天,Bax KO和C57BL / 6J骨折之间的软骨细胞或非软骨细胞凋亡细胞数量无显着差异,这表明Bax KO骨折中软骨细胞数量的增加并非由于减少凋亡。凋亡基因表达的分析显示,尽管在骨折后7或14天,Bax KO和C57BL / 6J小鼠之间Bcl-2和Bcl-xL的表达水平没有差异,但BH3结构域的表达仅Bak和B57。与C57BL / 6J骨折相比,在骨折后7天和14天,Bax KO骨折的“ Bik样”促凋亡基因分别增加了约1.5倍和约2倍,这表明Bak的上调Bax KO小鼠中的Bik样和Bik样促凋亡基因可能在细胞凋亡的背景下弥补了Bax功能的缺失。通过体内将溴脱氧尿苷掺入骨折组织内的软骨细胞进行的分析表明,与第7天的C57BL / 6J骨折相比,Bax KO骨折的软骨细胞增殖高度显着增加。早期,Bax KO骨折的胶原2alpha1和9alpha1基因表达增加愈合与软骨细胞增殖增加一致。总之,这项研究首次证明了Bax在骨折愈合的早期阶段起着重要作用,并且Bax KO骨折中愈伤组织的大小和软骨面积的增加是由于软骨细胞增殖的增加而不是由于凋亡的减少或增加所致。软骨细胞肥大。 Bax缺乏对软骨细胞增殖的出乎意料的影响暗示了Bax在骨折修复过程中对软骨细胞增殖的新调节功能。

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