Activation of the renin-angiotensin system in mice aggravates mechanical loading-induced knee osteoarthritis

Epidemiological studies have shown an association between hypertension and knee osteoarthritis (OA). The purpose of this study was to investigate whether activation of the renin–angiotensin system (RAS) can aggravate mechanical loading-induced knee OA in mice. Eight-week-old male Tsukuba hypertensi...

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Main Authors: Kotaro Yamagishi, Ichiro Tsukamoto, Fumihisa Nakamura, Kazuhiko Hashimoto, Kazuhiro Ohtani, Masao Akagi
Format: Article
Language:English
Published: PAGEPress Publications 2018-07-01
Series:European Journal of Histochemistry
Subjects:
RAS
Online Access:https://ejh.it/index.php/ejh/article/view/2930
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spelling doaj-4aa754764d2a494680be375746c2bc202020-11-25T03:14:16ZengPAGEPress PublicationsEuropean Journal of Histochemistry 1121-760X2038-83062018-07-0162310.4081/ejh.2018.2930Activation of the renin-angiotensin system in mice aggravates mechanical loading-induced knee osteoarthritisKotaro Yamagishi0Ichiro Tsukamoto1Fumihisa Nakamura2Kazuhiko Hashimoto3Kazuhiro Ohtani4Masao Akagi5Kindai UniversityKindai UniversityKindai UniversityKindai UniversityKindai UniversityKindai University Epidemiological studies have shown an association between hypertension and knee osteoarthritis (OA). The purpose of this study was to investigate whether activation of the renin–angiotensin system (RAS) can aggravate mechanical loading-induced knee OA in mice. Eight-week-old male Tsukuba hypertensive mice (THM) and C57BL/6 mice were divided into running and non-running groups. Mice in the running group were forced to run (25 m/min, 30 min/day, 5 days/week) on a treadmill. All mice in the four groups (n=10 in each group) were euthanized after 0, 2, 4, 6, or 8 weeks of running or natural breeding. Cartilage degeneration in the left knees was histologically evaluated using the modified Mankin score. Expression of Col X, MMP-13, angiotensin type 1 receptor (AT1R), and AT2R was examined immunohistochemically. To study the effects of stimulation of the AT1R in chondrocytes by mechanical loading and/or Angiotensin II (AngII) on transduction of intracellular signals, phosphorylation levels of JNK and Src were measured in bovine articular chondrocytes cultured in three-dimensional agarose scaffolds. After 4 weeks, the mean Mankin score for the lateral femoral condylar cartilage was significantly higher in the THM running group than in the C57BL/6 running group and non-running groups. AT1R and AT2R expression was not detected at 0 weeks in any group but was noted after 4 weeks in the THM running group. AT1R expression was also noted at 8 weeks in the C57BL/6 running group. The expression levels of AT1R, COL X, and MMP-13 in chondrocytes were significantly higher in the THM running group than in the control groups. Positive significant correlations were noted between the Mankin score and the rate of AT1R-immunopositive cells, between the rates of AT1R- and Col X-positive cells, and between the rates of AT1R- and AT2R-positive cells. The phosphorylation level of JNK was increased by cyclic compression loading or addition of AngII to the cultured chondrocytes and was reversed by pretreatment with an AT1R blocker. A synergistic effect on JNK phosphorylation was observed between compression loading and AngII addition. Transgene activation of renin and angiotensinogen aggravated mechanical load-induced knee OA in mice. These findings suggest that AT1R expression in chondrocytes is associated with early knee OA and plays a role in the progression of cartilage degeneration. The RAS may be a common molecular mechanism involved in the pathogenesis of hypertension and knee OA. https://ejh.it/index.php/ejh/article/view/2930OsteoarthritishypertensionRASAT1Rmechanical stress.
collection DOAJ
language English
format Article
sources DOAJ
author Kotaro Yamagishi
Ichiro Tsukamoto
Fumihisa Nakamura
Kazuhiko Hashimoto
Kazuhiro Ohtani
Masao Akagi
spellingShingle Kotaro Yamagishi
Ichiro Tsukamoto
Fumihisa Nakamura
Kazuhiko Hashimoto
Kazuhiro Ohtani
Masao Akagi
Activation of the renin-angiotensin system in mice aggravates mechanical loading-induced knee osteoarthritis
European Journal of Histochemistry
Osteoarthritis
hypertension
RAS
AT1R
mechanical stress.
author_facet Kotaro Yamagishi
Ichiro Tsukamoto
Fumihisa Nakamura
Kazuhiko Hashimoto
Kazuhiro Ohtani
Masao Akagi
author_sort Kotaro Yamagishi
title Activation of the renin-angiotensin system in mice aggravates mechanical loading-induced knee osteoarthritis
title_short Activation of the renin-angiotensin system in mice aggravates mechanical loading-induced knee osteoarthritis
title_full Activation of the renin-angiotensin system in mice aggravates mechanical loading-induced knee osteoarthritis
title_fullStr Activation of the renin-angiotensin system in mice aggravates mechanical loading-induced knee osteoarthritis
title_full_unstemmed Activation of the renin-angiotensin system in mice aggravates mechanical loading-induced knee osteoarthritis
title_sort activation of the renin-angiotensin system in mice aggravates mechanical loading-induced knee osteoarthritis
publisher PAGEPress Publications
series European Journal of Histochemistry
issn 1121-760X
2038-8306
publishDate 2018-07-01
description Epidemiological studies have shown an association between hypertension and knee osteoarthritis (OA). The purpose of this study was to investigate whether activation of the renin–angiotensin system (RAS) can aggravate mechanical loading-induced knee OA in mice. Eight-week-old male Tsukuba hypertensive mice (THM) and C57BL/6 mice were divided into running and non-running groups. Mice in the running group were forced to run (25 m/min, 30 min/day, 5 days/week) on a treadmill. All mice in the four groups (n=10 in each group) were euthanized after 0, 2, 4, 6, or 8 weeks of running or natural breeding. Cartilage degeneration in the left knees was histologically evaluated using the modified Mankin score. Expression of Col X, MMP-13, angiotensin type 1 receptor (AT1R), and AT2R was examined immunohistochemically. To study the effects of stimulation of the AT1R in chondrocytes by mechanical loading and/or Angiotensin II (AngII) on transduction of intracellular signals, phosphorylation levels of JNK and Src were measured in bovine articular chondrocytes cultured in three-dimensional agarose scaffolds. After 4 weeks, the mean Mankin score for the lateral femoral condylar cartilage was significantly higher in the THM running group than in the C57BL/6 running group and non-running groups. AT1R and AT2R expression was not detected at 0 weeks in any group but was noted after 4 weeks in the THM running group. AT1R expression was also noted at 8 weeks in the C57BL/6 running group. The expression levels of AT1R, COL X, and MMP-13 in chondrocytes were significantly higher in the THM running group than in the control groups. Positive significant correlations were noted between the Mankin score and the rate of AT1R-immunopositive cells, between the rates of AT1R- and Col X-positive cells, and between the rates of AT1R- and AT2R-positive cells. The phosphorylation level of JNK was increased by cyclic compression loading or addition of AngII to the cultured chondrocytes and was reversed by pretreatment with an AT1R blocker. A synergistic effect on JNK phosphorylation was observed between compression loading and AngII addition. Transgene activation of renin and angiotensinogen aggravated mechanical load-induced knee OA in mice. These findings suggest that AT1R expression in chondrocytes is associated with early knee OA and plays a role in the progression of cartilage degeneration. The RAS may be a common molecular mechanism involved in the pathogenesis of hypertension and knee OA.
topic Osteoarthritis
hypertension
RAS
AT1R
mechanical stress.
url https://ejh.it/index.php/ejh/article/view/2930
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