All Relations between hypertrophic and matrix compartment

Publication Sentence Publish Date Extraction Date Species
Harel Dan, Stav Simsa-Maziel, Adi Reich, Dalit Sela-Donenfeld, Efrat Monsonego-Orna. The role of matrix gla protein in ossification and recovery of the avian growth plate. Frontiers in endocrinology. vol 3. 2012-08-23. PMID:22787455. extracellular matrix mineralization is an essential physiologic process in bone, teeth, and hypertrophic cartilage. 2012-08-23 2023-08-12 Not clear
Martin Hellström, Anna Engström-Laurent, Stellan Mörner, Bengt Johansso. Hyaluronan and collagen in human hypertrophic cardiomyopathy: a morphological analysis. Cardiology research and practice. vol 2012. 2012-08-23. PMID:22900226. the hypertrophic cardiomyopathy (hcm) disease process is not only limited to cardiomyocyte abnormalities but also engages the extracellular matrix. 2012-08-23 2023-08-12 human
C C van Donkelaar, W Wilso. Mechanics of chondrocyte hypertrophy. Biomechanics and modeling in mechanobiology. vol 11. issue 5. 2012-08-22. PMID:21847614. this paper shows that matrix turnover by metabolically active chondrocytes, together with externally applied mechanical conditions, can explain quantitatively the volumetric change of chondrocytes during hypertrophy. 2012-08-22 2023-08-12 mouse
Thor Ueland, Arne Yndestad, Christen P Dahl, Lars Gullestad, Pål Aukrus. TNF revisited: osteoprotegerin and TNF-related molecules in heart failure. Current heart failure reports. vol 9. issue 2. 2012-08-14. PMID:22453763. by activating the nuclear factor-κb (nf-κb) and death-related pathways, tnf ligands can induce a variety of effects within the myocardium, including apoptosis, hypertrophy, inflammation, and extracellular matrix remodeling. 2012-08-14 2023-08-12 Not clear
Muneaki Ishijima, Nobuharu Suzuki, Kentaro Hozumi, Tomoya Matsunobu, Keisuke Kosaki, Haruka Kaneko, John R Hassell, Eri Arikawa-Hirasawa, Yoshihiko Yamad. Perlecan modulates VEGF signaling and is essential for vascularization in endochondral bone formation. Matrix biology : journal of the International Society for Matrix Biology. vol 31. issue 4. 2012-08-13. PMID:22421594. hypertrophic chondrocytes were differentiated in hspg2(-/-) growth plates; however, removal of the hypertrophic matrix and calcified cartilage was inhibited. 2012-08-13 2023-08-12 mouse
Jochen G Hofstaetter, Stephane Blouin, Ingeborg Friehs, Klaus Klaushofer, Paul Roschge. No effect of short-term hypertension on bone matrix mineralization in a surgical animal model in immature rabbits. Clinical and experimental hypertension (New York, N.Y. : 1993). vol 34. issue 2. 2012-08-09. PMID:21967032. our study indicates that short-term elevation of blood pressure has no effects on bone matrix mineralization in this surgical model of pressure-overload cardiac hypertrophy in immature rabbits. 2012-08-09 2023-08-12 Not clear
Alan L James, John G Elliot, Robyn L Jones, Mark L Carroll, Thais Mauad, Tony R Bai, Michael J Abramson, Karen O McKay, Francis H Gree. Airway smooth muscle hypertrophy and hyperplasia in asthma. American journal of respiratory and critical care medicine. vol 185. issue 10. 2012-07-27. PMID:22403800. increased thickness of the airway smooth muscle (asm) layer in asthma may result from hyperplasia or hypertrophy of muscle cells or increased extracellular matrix (ecm). 2012-07-27 2023-08-12 Not clear
Meenalakshmi M Mariappa. Signaling mechanisms in the regulation of renal matrix metabolism in diabetes. Experimental diabetes research. vol 2012. 2012-07-26. PMID:22454628. renal hypertrophy and accumulation of extracellular matrix proteins are among cardinal manifestations of diabetic nephropathy. 2012-07-26 2023-08-12 Not clear
Liming Bian, David Y Zhai, Emily C Zhang, Robert L Mauck, Jason A Burdic. Dynamic compressive loading enhances cartilage matrix synthesis and distribution and suppresses hypertrophy in hMSC-laden hyaluronic acid hydrogels. Tissue engineering. Part A. vol 18. issue 7-8. 2012-07-23. PMID:21988555. dynamic compressive loading enhances cartilage matrix synthesis and distribution and suppresses hypertrophy in hmsc-laden hyaluronic acid hydrogels. 2012-07-23 2023-08-12 human
Liming Bian, David Y Zhai, Emily C Zhang, Robert L Mauck, Jason A Burdic. Dynamic compressive loading enhances cartilage matrix synthesis and distribution and suppresses hypertrophy in hMSC-laden hyaluronic acid hydrogels. Tissue engineering. Part A. vol 18. issue 7-8. 2012-07-23. PMID:21988555. in this study we investigated the effect of dynamic compressive loading on chondrogenesis, the production and distribution of cartilage specific matrix, and the hypertrophic differentiation of human mscs encapsulated in hyaluronic acid (ha) hydrogels during long term culture. 2012-07-23 2023-08-12 human
Alexandra V Finsen, Ida G Lunde, Ivar Sjaastad, Even K Østli, Marianne Lyngra, Hilde O Jarstadmarken, Almira Hasic, Ståle Nygård, Sarah A Wilcox-Adelman, Paul F Goetinck, Torstein Lyberg, Biljana Skrbic, Geir Florholmen, Theis Tønnessen, William E Louch, Srdjan Djurovic, Cathrine R Carlson, Geir Christense. Syndecan-4 is essential for development of concentric myocardial hypertrophy via stretch-induced activation of the calcineurin-NFAT pathway. PloS one. vol 6. issue 12. 2012-07-20. PMID:22164265. we have investigated the hypothesis that the transmembrane z-disc proteoglycan syndecan-4, a co-receptor for integrins, connecting extracellular matrix proteins to the cytoskeleton, is an important signal transducer in cardiomyocytes during development of concentric myocardial hypertrophy following pressure overload. 2012-07-20 2023-08-12 mouse
Shaoping Xu, Amy S Shriver, Dammanahalli K Jagadeesha, Ali H Chamseddine, Katalin Szőcs, Neal L Weintraub, Kathy K Griendling, Ramesh C Bhalla, Francis J Mille. Increased expression of Nox1 in neointimal smooth muscle cells promotes activation of matrix metalloproteinase-9. Journal of vascular research. vol 49. issue 3. 2012-07-19. PMID:22433789. vascular injury causes neointimal hypertrophy, which is characterized by redox-mediated matrix degradation and smooth muscle cell (smc) migration and proliferation. 2012-07-19 2023-08-12 Not clear
Hanna E Abbou. Mesangial cell biology. Experimental cell research. vol 318. issue 9. 2012-07-13. PMID:22414873. in response to metabolic, immunologic or hemodynamic injury, these cells undergo apoptosis or acquire an activated phenotype and undergo hypertrophy, proliferation with excessive production of matrix proteins, growth factors, chemokines and cytokines. 2012-07-13 2023-08-12 Not clear
Mitsuo Kato, Jung Tak Park, Rama Nataraja. MicroRNAs and the glomerulus. Experimental cell research. vol 318. issue 9. 2012-07-13. PMID:22421514. increased expansion (hypertrophy) and accumulation of extracellular matrix (ecm) proteins such as collagen (fibrosis) in the glomerular mesangium along with glomerular podocyte dysfunction are major features of dn. 2012-07-13 2023-08-12 human
John P Burand, Woojin Kim, Claudio L Afonso, Edan R Tulman, Gerald F Kutish, Zhiqiang Lu, Daniel L Roc. Analysis of the genome of the sexually transmitted insect virus Helicoverpa zea nudivirus 2. Viruses. vol 4. issue 1. 2012-07-10. PMID:22355451. these included a presumed juvenile hormone esterase gene, a gene coding for a putative zinc-dependent matrix metalloprotease, and a major facilitator superfamily protein gene; all of which are believed to play a role in the cellular proliferation and the tissue hypertrophy observed in the malformation of reproductive organs observed in hznv-2 infected corn earworm moths, helicoverpa zea. 2012-07-10 2023-08-12 Not clear
Rusella Mirza, Shanlou Qiao, Keisuke Tateyama, Takeshi Miyamoto, Lu Xiuli, Hisao Se. 3β-Hydroxysterol-Delta24 reductase plays an important role in long bone growth by protecting chondrocytes from reactive oxygen species. Journal of bone and mineral metabolism. vol 30. issue 2. 2012-07-03. PMID:21845517. hypertrophic differentiation was evidenced by higher expression of indian hedgehog, alkaline phosphatase, and matrix metalloproteinase 13. 2012-07-03 2023-08-12 mouse
Stav Simsa-Maziel, Efrat Monsonego-Orna. Interleukin-1β promotes proliferation and inhibits differentiation of chondrocytes through a mechanism involving down-regulation of FGFR-3 and p21. Endocrinology. vol 153. issue 5. 2012-06-29. PMID:22492305. here we show that il-1β affects bone growth by directly disturbing the normal sequence of events in the growth plate, resulting in increased proliferation and widening of the proliferative zone, whereas the hypertrophic zone becomes disorganized, with impaired matrix structure and increased apoptosis and osteoclast activity. 2012-06-29 2023-08-12 Not clear
Lanyu Zhang, Shanshan Pang, Bo Deng, Lihua Qian, Juan Chen, Junjie Zou, Jiaoyang Zheng, Linghui Yang, Chunyang Zhang, Xiangfang Chen, Zhimin Liu, Yingying L. High glucose induces renal mesangial cell proliferation and fibronectin expression through JNK/NF-κB/NADPH oxidase/ROS pathway, which is inhibited by resveratrol. The international journal of biochemistry & cell biology. vol 44. issue 4. 2012-06-15. PMID:22245600. renal hypertrophy and extracellular matrix accumulation are early features of diabetic nephropathy. 2012-06-15 2023-08-12 rat
Donghong Fang, Hongyu Guan, Juan Liu, Guohong Wei, Weijian Ke, Bin Yao, Haipeng Xiao, Yanbing L. Early intensive insulin therapy attenuates the p38 pathway in the renal cortex and indices of nephropathy in diabetic rats. Endocrine journal. vol 59. issue 1. 2012-06-04. PMID:22068113. glomerular hypertrophy and mesangial matrix expansion were prominent in the 16wdm and li groups while the ei groups remained normal and similar to the 16wnc group. 2012-06-04 2023-08-12 rat
Donghong Fang, Hongyu Guan, Juan Liu, Guohong Wei, Weijian Ke, Bin Yao, Haipeng Xiao, Yanbing L. Early intensive insulin therapy attenuates the p38 pathway in the renal cortex and indices of nephropathy in diabetic rats. Endocrine journal. vol 59. issue 1. 2012-06-04. PMID:22068113. however, late insulin therapy did not abrogate the increased renal cortical p38 mapk pathway activation in diabetic rats and led to glomerular hypertrophy and extracellular matrix expansion. 2012-06-04 2023-08-12 rat