Apoptosis and myostatin mRNA are upregulated in the skeletal muscle of patients with chronic kidney disease.

scientific article

Apoptosis and myostatin mRNA are upregulated in the skeletal muscle of patients with chronic kidney disease. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1038/KI.2010.494
P698PubMed publication ID21228768

P50authorGiacomo GaribottoQ42844178
Alice BonanniQ55602759
Daniela VerzolaQ59194445
P2093author name stringBarbara Villaggio
Antonella Sofia
Ezio Gianetta
Irene Mannucci
Stefano Saffioti
Alice Tarroni
Franco De Cian
Vanessa Procopio
P2860cites workOrganization of the human myostatin gene and expression in healthy men and HIV-infected men with muscle wastingQ22008491
Endonuclease G is an apoptotic DNase when released from mitochondriaQ28206238
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Protein degradation by the ubiquitin-proteasome pathway in normal and disease statesQ28243121
Skeletal muscle hypertrophy and atrophy signaling pathwaysQ28266345
Antioxidant administration attenuates mechanical ventilation-induced rat diaphragm muscle atrophy independent of protein kinase B (PKB Akt) signallingQ28572937
Role of muscle c-Jun NH2-terminal kinase 1 in obesity-induced insulin resistanceQ33558164
Satellite cell dysfunction and impaired IGF-1 signaling cause CKD-induced muscle atrophyQ33702390
Apoptosis in skeletal muscle and its relevance to atrophyQ33866884
Why is protein-energy wasting associated with mortality in chronic kidney disease?Q33882103
Myostatin, insulin-like growth factor-1, and leukemia inhibitory factor mRNAs are upregulated in chronic human disuse muscle atrophy.Q33951825
Protein metabolism in patients with chronic renal failure: role of uremia and dialysisQ33962272
Myogenic satellite cells: physiology to molecular biologyQ34084128
Apoptotic signaling in skeletal muscle fibers during atrophyQ34601311
Review of muscle wasting associated with chronic kidney diseaseQ34617148
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Apoptosis in muscle atrophy: relevance to sarcopeniaQ36151387
Muscle-fiber apoptosis in neuromuscular diseasesQ36152972
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Involvement of oxidative stress and caspase 2-mediated intrinsic pathway signaling in age-related increase in muscle cell apoptosis in miceQ36519843
Neural regulation of muscle acetylcholine receptor epsilon- and alpha-subunit gene promoters in transgenic miceQ36534824
Protein kinase B/Akt: a nexus of growth factor and cytokine signaling in determining muscle massQ36749035
Nuclear domains during muscle atrophy: nuclei lost or paradigm lost?Q37149122
Muscle inflammatory response and insulin resistance: synergistic interaction between macrophages and fatty acids leads to impaired insulin action.Q37216733
Muscle in defense.Q37666361
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Hemodialysis modulates gene expression profile in skeletal muscleQ38309296
Nuclear domains in muscle cellsQ38730178
Malnutrition: a frequent misdiagnosis for hemodialysis patientsQ39735985
Involvement of c-Jun NH2-terminal kinase and nitric oxide-mediated mitochondria-dependent intrinsic pathway signaling in cardiotoxin-induced muscle cell death: role of testosteroneQ40084937
Activation of caspase-3 is an initial step triggering accelerated muscle proteolysis in catabolic conditionsQ40364656
Regulation of muscle protein degradation: coordinated control of apoptotic and ubiquitin-proteasome systems by phosphatidylinositol 3 kinaseQ40553857
Taurine prevents apoptosis induced by high ambient glucose in human tubule renal cells.Q40691127
The protein kinase PKB/Akt regulates cell survival and apoptosis by inhibiting Bax conformational changeQ40761363
Monoclonal antibody to single-stranded DNA is a specific and sensitive cellular marker of apoptosisQ41179786
Mechanisms of muscle wasting. The role of the ubiquitin-proteasome pathwayQ41249327
Chronic kidney disease causes defects in signaling through the insulin receptor substrate/phosphatidylinositol 3-kinase/Akt pathway: implications for muscle atrophyQ42493294
Wasting, but not malnutrition, predicts cardiovascular mortality in end-stage renal diseaseQ43840488
Phosphorylation of insulin receptor substrate‐1 serine 307 correlates with JNK activity in atrophic skeletal muscleQ44612469
Aging influences cellular and molecular responses of apoptosis to skeletal muscle unloadingQ44905793
Modulation of melanocortin signaling ameliorates uremic cachexia.Q45947127
Apoptosis: a mechanism contributing to remodeling of skeletal muscle in response to hindlimb unweighting.Q45985895
Work-induced changes in skeletal muscle IGF-1 and myostatin gene expression in uremiaQ46259720
Skeletal muscle mRNA for IGF-IEa, IGF-II, and IGF-I receptor is decreased in sedentary chronic hemodialysis patientsQ46495923
Effect of exercise on mRNA levels for growth factors in skeletal muscle of hemodialysis patients.Q54575820
Relationship between nutritional status and the glomerular filtration rate: results from the MDRD studyQ73664764
Apoptosis of myofibres and satellite cells: exercise-induced damage in skeletal muscle of the mouseQ77793920
Nuclear translocation of EndoG at the initiation of disuse muscle atrophy and apoptosis is specific to myonucleiQ80010995
Aging increases the susceptibility of skeletal muscle derived satellite cells to apoptosisQ80191463
Regulation of myostatin signaling by c-Jun N-terminal kinase in C2C12 cellsQ80775366
Apoptosis in the kidneys of patients with type II diabetic nephropathyQ81241290
Peripheral tissue release of interleukin-6 in patients with chronic kidney diseases: effects of end-stage renal disease and microinflammatory stateQ83948327
P433issue7
P407language of work or nameEnglishQ1860
P921main subjectpatientQ181600
P304page(s)773-782
P577publication date2011-01-12
P1433published inKidney InternationalQ6404823
P1476titleApoptosis and myostatin mRNA are upregulated in the skeletal muscle of patients with chronic kidney disease
P478volume79