chondrogenesis信息详情

chondrogenesis发音

意思翻译

n.[胚]软骨形成

相似词语短语

chondrogeneses───软骨基因

androgenesis───n.雄性单性生殖;[胚]雄核发育

caenogenesis───n.[生物]新性发生

cainogenesis───沉淀物形成

cenogenesis───n.新性发生;新生性变态

chondromatosis───软骨瘤病

cladogenesis───n.系枝发生;分枝进化

cyanogenesis───生氰作用

endogenesis───n.内生;内源;内生性形成

双语使用场景

Articular chondrogenesis can be induced when DPB is covered with pedicle periosteum.───蒂骨膜包裹dpb后能诱发关节软骨生成。

Abstract: Objective to discussion the feasibility of mixed culture muscle-derived stem cells and chondrocytes to chondrogenesis in vitro.───摘要:目的探讨肌源性干细胞与软骨细胞混和培养体外成软骨的可行性。

healing and the chondrogenesis of the implant with the receptors were observed with X-ray, electron and optical microscopes 2, 4, 6 and 8 weeks after operation.───术后2,4,6,8周通过大体形态X线、光镜和电镜检查评判移植物与受床愈合及软骨生长情况。

However, a relatively few transcription factors have been proven to be involved in chondrogenesis.───然而,相对较少的转录因子已被证明是参与软骨。

Regulation of chondrogenesis and clinical application deserves further investigation.───成软骨分化的调控机制和应用值得进一步研究。

GDF-5 acts as a signal for chondrogenesis, growth, and patterning of the developing vertebrate skeleton.───5是作为软骨形成、生长及脊椎骨架发育模式的一种信号,其位置是在发育的关节区域间。

Bone marrow-derived stem cells showed potency to chondrogenesis in various culture conditions.───骨髓源性干细胞在多种条件下均能表现出软骨形成的潜能。

Experimental study of in vitro chondrogenesis by co-culture of bone marrow stromal cells and chondrocytes───软骨细胞与骨髓基质细胞共培养体外软骨形成的实验研究

Preliminary study of in vitro chondrogenesis by co-culture of bone marrow stromal cells and chondrocytes───软骨细胞与骨髓基质细胞共培养体外构建软骨的初步研究

英语使用场景

Role of BMP-2 on the simvastatin-induced chondrogenesis of IVD cells was also investigated.

CONCLUSION: The construction of a tissue-engineered cartilage is possible with chondrogenesis induced BMSC seeding on rapid prototyping porous poly scaffolds in a non-joint environment.

Abstract: Objective To discussion the feasibility of mixed culture muscle-derived stem cells and chondrocytes to chondrogenesis in vitro.

To overcome the limiting autogenous chondrocyte populations available in cartilage repair, various methods have been developed to maximize chondrogenesis of hMSCs in vitro.

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BMP signaling dominates chondrogenesis through initiating the chondrocytic commitment of mesenchymal cells and maintaining the chondrocytic phenotype.

AIM:To investigate the feasibility of chondrogenesis by alginate gelatin as the scaffold and rats' bone marrow mesenchymal stromal cells (BMSCs) as seed cells chondrogenicly induced in vitro.

Bone marrow-derived stem cells showed potency to chondrogenesis in various culture conditions.

The bone healing and the chondrogenesis of the implant with the receptors were observed with X-ray, electron and optical microscopes 2, 4, 6 and 8 weeks after operation.