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甲状旁腺激素相关蛋白过表达部分抑制软骨细胞机械应变诱导的关节炎表型。

PTHrP overexpression partially inhibits a mechanical strain-induced arthritic phenotype in chondrocytes.

机构信息

Cartilage Biology and Orthopaedics Branch, National Institute of Arthritis, and Musculoskeletal and Skin Diseases, National Institutes of Health, Department of Health and Human Services Bethesda, MD 20892, USA.

出版信息

Osteoarthritis Cartilage. 2011 Feb;19(2):213-21. doi: 10.1016/j.joca.2010.11.003. Epub 2010 Nov 16.

Abstract

OBJECTIVE

Cell-based tissue engineering strategies are currently in clinical use and continue to be developed at a rapid pace for the repair of cartilage defects. Regardless of the repair methodology, chondrocytes within newly regenerated cartilage remain susceptible to the abnormal inflammatory and mechanical environments that underlie osteoarthritic disease, likely compromising the implant's integration, function, and longevity. The present study investigates the use of parathyroid hormone-related peptide (PTHrP) overexpression for chondroprotection.

DESIGN

Bovine articular chondrocytes were transfected with human PTHrP (hPTHrP) constructs (1-141 or 1-173) and subjected to injurious cyclic tensile strain (CTS; 0.5 Hz and 16% elongation) for 48 h. mRNA expression of matrix remodeling, inflammatory signaling, hypertrophic, and apoptotic genes were examined with real-time reverse transcription polymerase chain reaction. Nitric oxide (NO) and prostaglandin E₂ (PGE₂) production were measured using the Griess assay and enzyme immunoassay (EIA), respectively.

RESULTS

CTS-induced an arthritic phenotype in articular chondrocytes as indicated by increased gene expression of collagenases and aggrecanases and increased production of NO and PGE₂. Additionally, CTS increased collagen type X (Col10a1) mRNA expression, whereas overexpression of either hPTHrP isoform inhibited CTS-induced Col10a1 gene expression. However, hPTHrP 1-141 augmented CTS-induced NO and PGE₂ production, and neither hPTHrP isoform had any significant effect on apoptotic genes.

CONCLUSIONS

Our results suggest that chondrocytes overexpressing PTHrP resist mechanical strain-induced hypertrophic-like changes. Therapeutic PTHrP gene transfer may be considered for chondroprotection applications in newly regenerated cartilage.

摘要

目的

基于细胞的组织工程策略目前已在临床中应用,并在快速发展,用于修复软骨缺损。无论修复方法如何,新再生软骨内的软骨细胞仍然容易受到导致骨关节炎疾病的异常炎症和机械环境的影响,这可能会损害植入物的整合、功能和寿命。本研究探讨了甲状旁腺激素相关肽(PTHrP)过表达在软骨保护中的应用。

设计

用含有人 PTHrP(hPTHrP)构建体(1-141 或 1-173)的转染牛关节软骨细胞,并进行损伤性循环拉伸应变(CTS;0.5 Hz 和 16%伸长)48 小时。实时逆转录聚合酶链反应检测基质重塑、炎症信号、肥大和凋亡基因的 mRNA 表达。使用格里斯测定法和酶免疫测定法(EIA)分别测量一氧化氮(NO)和前列腺素 E₂(PGE₂)的产生。

结果

CTS 诱导关节软骨细胞出现关节炎表型,表现为胶原酶和聚集酶的基因表达增加,以及 NO 和 PGE₂的产生增加。此外,CTS 增加了胶原 X 型(Col10a1)mRNA 的表达,而两种 hPTHrP 同工型的过表达均抑制了 CTS 诱导的 Col10a1 基因表达。然而,hPTHrP 1-141 增强了 CTS 诱导的 NO 和 PGE₂的产生,两种 hPTHrP 同工型对凋亡基因均无显著影响。

结论

我们的结果表明,过表达 PTHrP 的软骨细胞抵抗机械应变诱导的肥大样变化。在新再生软骨中,治疗性 PTHrP 基因转移可用于软骨保护应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8069/3031753/4472570fb12b/nihms253686f1.jpg

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