Literature DB >> 26083652

Mechanisms of Cachexia in Chronic Disease States.

Tadashi Yoshida1, Patrice Delafontaine.   

Abstract

Sarcopenia and cachexia are muscle wasting syndromes associated with aging and with many chronic diseases, such as congestive heart failure (CHF), diabetes, cancer, chronic obstructive pulmonary disease and chronic kidney disease (CKD). While mechanisms are complex, these conditions are often accompanied by elevated angiotensin II (Ang II). Patients with advanced CHF or CKD often have increased Ang II levels and cachexia, and angiotensin-converting enzyme inhibitor treatment improves weight loss. It was found that Ang II infusion in rodents leads to skeletal muscle wasting. Ang II increases cytokines and circulating hormones, such as tumor necrosis factor-α, interleukin-6, serum amyloid-A and glucocorticoids, which regulate muscle protein synthesis and degradation. Ang II-induced muscle wasting is caused by alterations in insulin-like growth factor-1 signaling, enhanced muscle protein breakdown via the ubiquitin-proteasome system and decreased appetite resulting from the downregulation of hypothalamic orexigenic neuropeptides, such as Npy and orexin. Ang II also inhibits 5' adenosine monophosphate-activated protein kinase activity and disrupts normal energy balance via the activation of 5' adenosine monophosphate-activated protein kinase phosphatase PP2Cα. Furthermore, Ang II inhibits skeletal muscle stem (satellite) cell proliferation, leading to lowered muscle regenerative capacity. Distinct satellite cell angiotensin receptor subtypes have different effects on different stages of differentiation and are critical for the regulation of muscle regeneration. These data suggest that the renin-angiotensin system plays a critical role in mechanisms underlying cachexia in chronic disease states, and it is a promising target for the treatment of muscle atrophy in patients with diseases such as CHF and CKD.

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Year:  2015        PMID: 26083652      PMCID: PMC4587350          DOI: 10.1097/MAJ.0000000000000511

Source DB:  PubMed          Journal:  Am J Med Sci        ISSN: 0002-9629            Impact factor:   2.378


  91 in total

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Journal:  Cell       Date:  2010-08-20       Impact factor: 41.582

2.  Angiotensin II-induced NADPH oxidase activation impairs insulin signaling in skeletal muscle cells.

Authors:  Yongzhong Wei; James R Sowers; Ravi Nistala; Heping Gong; Grace M-E Uptergrove; Suzanne E Clark; E Matthew Morris; Nicholas Szary; Camila Manrique; Craig S Stump
Journal:  J Biol Chem       Date:  2006-09-17       Impact factor: 5.157

3.  IGF-1 prevents ANG II-induced skeletal muscle atrophy via Akt- and Foxo-dependent inhibition of the ubiquitin ligase atrogin-1 expression.

Authors:  Tadashi Yoshida; Laura Semprun-Prieto; Sergiy Sukhanov; Patrice Delafontaine
Journal:  Am J Physiol Heart Circ Physiol       Date:  2010-03-12       Impact factor: 4.733

4.  TNF-alpha acts via p38 MAPK to stimulate expression of the ubiquitin ligase atrogin1/MAFbx in skeletal muscle.

Authors:  Yi-Ping Li; Yuling Chen; Joseph John; Jennifer Moylan; Bingwen Jin; Douglas L Mann; Michael B Reid
Journal:  FASEB J       Date:  2005-03       Impact factor: 5.191

5.  Muscle wasting and impaired myogenesis in tumor bearing mice are prevented by ERK inhibition.

Authors:  Fabio Penna; Domiziana Costamagna; Alessandro Fanzani; Gabriella Bonelli; Francesco M Baccino; Paola Costelli
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Review 6.  The renin angiotensin aldosterone system in hypertension: roles of insulin resistance and oxidative stress.

Authors:  Camila Manrique; Guido Lastra; Michael Gardner; James R Sowers
Journal:  Med Clin North Am       Date:  2009-05       Impact factor: 5.456

7.  Denervation-induced skeletal muscle atrophy is associated with increased mitochondrial ROS production.

Authors:  Florian L Muller; Wook Song; Youngmok C Jang; Yuhong Liu; Marian Sabia; Arlan Richardson; Holly Van Remmen
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2007-06-20       Impact factor: 3.619

8.  Lisinopril administration improves insulin action in aged patients with hypertension.

Authors:  G Paolisso; V Balbi; A Gambardella; G Varricchio; R Tortoriello; F Saccomanno; L Amato; M Varricchio
Journal:  J Hum Hypertens       Date:  1995-07       Impact factor: 3.012

9.  Regulation of muscle satellite cell activation and chemotaxis by angiotensin II.

Authors:  Adam P W Johnston; Jeff Baker; Leeann M Bellamy; Bryon R McKay; Michael De Lisio; Gianni Parise
Journal:  PLoS One       Date:  2010-12-21       Impact factor: 3.240

10.  S6 kinase deletion suppresses muscle growth adaptations to nutrient availability by activating AMP kinase.

Authors:  Victor Aguilar; Samira Alliouachene; Athanassia Sotiropoulos; Andrew Sobering; Yoni Athea; Fatima Djouadi; Sylvain Miraux; Eric Thiaudière; Marc Foretz; Benoit Viollet; Philippe Diolez; Jean Bastin; Paule Benit; Pierre Rustin; David Carling; Marco Sandri; Renée Ventura-Clapier; Mario Pende
Journal:  Cell Metab       Date:  2007-06       Impact factor: 27.287

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  38 in total

Review 1.  Pay attention to cardiac remodeling in cancer cachexia.

Authors:  Yawen Zheng; Han Chen; Xiaoqing Li; Yuping Sun
Journal:  Support Care Cancer       Date:  2016-04-23       Impact factor: 3.603

Review 2.  Sarcopenia in gastric cancer: when the loss costs too much.

Authors:  Elena Ongaro; Vanessa Buoro; Marika Cinausero; Riccardo Caccialanza; Annalisa Turri; Valentina Fanotto; Debora Basile; Maria Grazia Vitale; Paola Ermacora; Giovanni Gerardo Cardellino; Laura Nicoletti; Lorenzo Fornaro; Andrea Casadei-Gardini; Giuseppe Aprile
Journal:  Gastric Cancer       Date:  2017-05-05       Impact factor: 7.370

3.  ActRIIB:ALK4-Fc alleviates muscle dysfunction and comorbidities in murine models of neuromuscular disorders.

Authors:  Jia Li; Maureen Fredericks; Marishka Cannell; Kathryn Wang; Dianne Sako; Michelle C Maguire; Rosa Grenha; Katia Liharska; Lavanya Krishnan; Troy Bloom; Elitza P Belcheva; Pedro A Martinez; Roselyne Castonguay; Sarah Keates; Mark J Alexander; Hyunwoo Choi; Asya V Grinberg; R Scott Pearsall; Paul Oh; Ravindra Kumar; Rajasekhar Nvs Suragani
Journal:  J Clin Invest       Date:  2021-02-15       Impact factor: 14.808

4.  Dietary intake of probiotic kimchi ameliorated IL-6-driven cancer cachexia.

Authors:  Jeong Min An; Eun A Kang; Young-Min Han; Ji Young Oh; Dong Yoon Lee; Seung Hye Choi; Duk Hwan Kim; Ki Baik Hahm
Journal:  J Clin Biochem Nutr       Date:  2019-07-27       Impact factor: 3.114

Review 5.  Cancer- and cardiac-induced cachexia: same fate through different inflammatory mediators?

Authors:  Rita Nogueira-Ferreira; Fábio Sousa-Nunes; Adelino Leite-Moreira; Liliana Moreira-Costa; Rui Vitorino; Lúcio Lara Santos; Daniel Moreira-Gonçalves; Rita Ferreira
Journal:  Inflamm Res       Date:  2022-06-09       Impact factor: 6.986

6.  An Intronic Enhancer Element Regulates Angiotensin II Type 2 Receptor Expression during Satellite Cell Differentiation, and Its Activity Is Suppressed in Congestive Heart Failure.

Authors:  Tadashi Yoshida; Patrice Delafontaine
Journal:  J Biol Chem       Date:  2016-10-18       Impact factor: 5.157

Review 7.  Sarcopenia in cases of chronic and acute illness. A mini-review.

Authors:  Peter Dovjak
Journal:  Z Gerontol Geriatr       Date:  2015-11-26       Impact factor: 1.281

8.  Skeletal muscle heme oxygenase-1 activity regulates aerobic capacity.

Authors:  Rodrigo W Alves de Souza; David Gallo; Ghee Rye Lee; Eri Katsuyama; Alexa Schaufler; Janick Weber; Eva Csizmadia; George C Tsokos; Lauren G Koch; Steven L Britton; Ulrik Wisløff; Patricia C Brum; Leo E Otterbein
Journal:  Cell Rep       Date:  2021-04-20       Impact factor: 9.423

9.  Low urine pH associated with sarcopenia in the elderly: A multi-center observational study.

Authors:  Akihiro Saitsu; Yoshitaka Iwazu; Haruka Matsushita; Hirotaka Hayashi; Yumiko Mizuhashi; Kazuhiko Kotani
Journal:  Medicine (Baltimore)       Date:  2021-05-28       Impact factor: 1.817

Review 10.  NRF2 in Cardiovascular Diseases: a Ray of Hope!

Authors:  Ruju Vashi; Bhoomika M Patel
Journal:  J Cardiovasc Transl Res       Date:  2020-11-25       Impact factor: 4.132

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