Adapala Naga Suresh, Kim Harry K W
Center for Excellence in Hip Disorders, Texas Scottish Rite Hospital for Children, Dallas, Texas, 75219, United States of America.
Department of Orthopedic Surgery, University of Texas Southwestern Medical Center, Dallas, Texas, 75390-8883, United States of America.
PLoS One. 2016 Apr 5;11(4):e0153174. doi: 10.1371/journal.pone.0153174. eCollection 2016.
Ischemic osteonecrosis of the femoral head (ONFH) in piglets results in an ischemic injury to the immature articular cartilage. The molecular changes in the articular cartilage in response to ONFH have not been investigated using a transcriptomic approach. The purpose of this study was to perform a genome-wide transcriptomic analysis to identify genes that are upregulated in the immature articular cartilage following ONFH.
ONFH was induced in the right femoral head of 6-week old piglets. The unoperated femoral head was used as the normal control. At 24 hours (acute ischemic-hypoxic injury), 2 weeks (avascular necrosis in the femoral head) and 4 weeks (early repair) after surgery (n = 4 piglets/time point), RNA was isolated from the articular cartilage of the femoral head. A microarray analysis was performed using Affymetrix Porcine GeneChip Array. An enrichment analysis and functional clustering of the genes upregulated due to ONFH were performed using DAVID and STRING software, respectively. The increased expression of selected genes was confirmed by a real-time qRTPCR analysis.
Induction of ONFH resulted in the upregulation of 383 genes at 24 hours, 122 genes at 2 weeks and 124 genes at 4 weeks compared to the normal controls. At 24 hours, the genes involved in oxidoreductive, cell-survival, and angiogenic responses were significantly enriched among the upregulated genes. These genes were involved in HIF-1, PI3K-Akt, and MAPK signaling pathways. At 2 weeks, secretory and signaling proteins involved in angiogenic and inflammatory responses, PI3K-Akt and matrix-remodeling pathways were significantly enriched. At 4 weeks, genes that represent inflammatory cytokines and chemokine signaling pathways were significantly enriched. Several index genes (genes that are upregulated at more than one time point following ONFH and are known to be important in various biological processes) including HIF-1A, VEGFA, IL-6, IL6R, IL-8, CCL2, FGF2, TGFB2, MMP1, MMP3, ITGA5, FN and Col6A1 were upregulated in the immature articular cartilage following ONFH. A qRTPCR analysis of selected genes confirmed the upregulated expression observed in the microarray analysis.
Immature articular cartilage responds to ONFH by the upregulation of genes involved in hypoxic stress response, angiogenesis, matrix remodeling and inflammation. This study provides novel insights into the multi-faceted role of immature articular cartilage, with inflammation as a key component, following ONFH in piglets.
仔猪股骨头缺血性坏死(ONFH)会导致未成熟关节软骨发生缺血性损伤。尚未采用转录组学方法研究关节软骨对ONFH的分子变化。本研究的目的是进行全基因组转录组分析,以鉴定ONFH后未成熟关节软骨中上调的基因。
对6周龄仔猪的右侧股骨头诱导ONFH。将未手术的股骨头用作正常对照。在术后24小时(急性缺血缺氧损伤)、2周(股骨头缺血性坏死)和4周(早期修复)时(每个时间点n = 4头仔猪),从股骨头的关节软骨中分离RNA。使用Affymetrix猪基因芯片阵列进行微阵列分析。分别使用DAVID和STRING软件对因ONFH而上调的基因进行富集分析和功能聚类。通过实时qRTPCR分析确认所选基因的表达增加。
与正常对照相比,ONFH诱导导致在24小时时有383个基因上调,2周时有122个基因上调,4周时有124个基因上调。在24小时时,上调基因中参与氧化还原、细胞存活和血管生成反应的基因显著富集。这些基因参与HIF-1、PI3K-Akt和MAPK信号通路。在2周时,参与血管生成和炎症反应、PI3K-Akt和基质重塑途径的分泌和信号蛋白显著富集。在4周时,代表炎症细胞因子和趋化因子信号通路的基因显著富集。几个指标基因(在ONFH后多个时间点上调且已知在各种生物学过程中很重要的基因),包括HIF-1A、VEGFA、IL-6、IL6R、IL-8、CCL2、FGF2、TGFB2、MMP1、MMP3、ITGA5、FN和Col6A1,在ONFH后的未成熟关节软骨中上调。对所选基因的qRTPCR分析证实了微阵列分析中观察到的上调表达。
未成熟关节软骨通过上调参与缺氧应激反应、血管生成、基质重塑和炎症的基因来应对ONFH。本研究为仔猪ONFH后未成熟关节软骨的多方面作用提供了新见解,其中炎症是关键组成部分。