scholarly article | Q13442814 |
P2093 | author name string | Gerald S Supinski | |
Leigh A Callahan | |||
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Is weaning failure caused by low-frequency fatigue of the diaphragm? | Q43562350 | ||
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Cytokines induce nitric oxide-mediated mtDNA damage and apoptosis in oligodendrocytes. Protective role of targeting 8-oxoguanine glycosylase to mitochondria | Q46423498 | ||
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Spectrin breakdown products in the cerebrospinal fluid in severe head injury--preliminary observations | Q48879615 | ||
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Bcl-2 inhibits gut epithelial apoptosis induced by acute lung injury in mice but has no effect on survival. | Q51648765 | ||
P433 | issue | 6 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | endotoxins | Q319997 |
P304 | page(s) | 1770-1777 | |
P577 | publication date | 2006-02-16 | |
P1433 | published in | Journal of Applied Physiology | Q1091719 |
P1476 | title | Caspase activation contributes to endotoxin-induced diaphragm weakness | |
P478 | volume | 100 |
Q37110291 | Activation of the ubiquitin-proteasome pathway in the diaphragm in chronic obstructive pulmonary disease |
Q35744028 | Antiapoptotic signaling via MCL1 confers resistance to caspase-3-mediated apoptotic cell death in the pregnant human uterine myocyte |
Q28572937 | Antioxidant administration attenuates mechanical ventilation-induced rat diaphragm muscle atrophy independent of protein kinase B (PKB Akt) signalling |
Q48610174 | Apoptosis and Id2 expression in diaphragm and soleus muscle from the emphysematous hamster |
Q33866884 | Apoptosis in skeletal muscle and its relevance to atrophy |
Q42443337 | Autophagic flux and oxidative capacity of skeletal muscles during acute starvation |
Q36684324 | Bacterial-excreted small volatile molecule 2-aminoacetophenone induces oxidative stress and apoptosis in murine skeletal muscle |
Q37677121 | Bortezomib inhibits C2C12 growth by inducing cell cycle arrest and apoptosis |
Q36976588 | Calcium-dependent phospholipase A2 modulates infection-induced diaphragm dysfunction |
Q41836187 | Calpain activation contributes to endotoxin-induced diaphragmatic dysfunction |
Q37422187 | Caspase and calpain activation both contribute to sepsis-induced diaphragmatic weakness |
Q35632625 | Circulating levels of cytochrome c after resuscitation from cardiac arrest: a marker of mitochondrial injury and predictor of survival |
Q35273916 | Contractile dysfunction in muscle may underlie androgen-dependent motor dysfunction in spinal bulbar muscular atrophy. |
Q33790261 | Critical diaphragm failure in sudden infant death syndrome |
Q27028093 | Dexmedetomidine May Produce Extra Protective Effects on Sepsis-induced Diaphragm Injury |
Q37343222 | Diaphragm weakness in mechanically ventilated critically ill patients |
Q35658078 | Double-stranded RNA-dependent protein kinase activation modulates endotoxin-induced diaphragm weakness |
Q26749263 | Dysfunction of respiratory muscles in critically ill patients on the intensive care unit |
Q37218019 | Effect of proteasome inhibitors on endotoxin-induced diaphragm dysfunction |
Q41129584 | Eicosapentaenoic acid preserves diaphragm force generation following endotoxin administration |
Q35124104 | Elevated levels of uterine anti-apoptotic signaling may activate NFKB and potentially confer resistance to caspase 3-mediated apoptotic cell death during pregnancy in mice |
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Q42471596 | Functional, morphological, and apoptotic alterations in skeletal muscle of ARC deficient mice. |
Q37071161 | High-fat feeding does not induce an autophagic or apoptotic phenotype in female rat skeletal muscle |
Q33751226 | Hyperglycemia-induced diaphragm weakness is mediated by oxidative stress |
Q38119766 | Impact of diaphragm muscle fiber atrophy on neuromotor control. |
Q35757416 | Inhibition of caspase mediated apoptosis restores muscle function after crush injury in rat skeletal muscle |
Q36791453 | Lack of caspase-3 attenuates immobilization-induced muscle atrophy and loss of tension generation along with mitigation of apoptosis and inflammation. |
Q41316270 | Levosimendan affects oxidative and inflammatory pathways in the diaphragm of ventilated endotoxemic mice |
Q36454351 | Loss of muscle strength during sepsis is in part regulated by glucocorticoids and is associated with reduced muscle fiber stiffness |
Q37391879 | MitoQ administration prevents endotoxin-induced cardiac dysfunction |
Q37188213 | Modulation of caspase activity regulates skeletal muscle regeneration and function in response to vasopressin and tumor necrosis factor |
Q26775701 | Muscle dysfunction in chronic obstructive pulmonary disease: update on causes and biological findings |
Q36066471 | Neutral sphingomyelinase 2 is required for cytokine-induced skeletal muscle calpain activation |
Q39016673 | Pharmacological strategies in lung cancer-induced cachexia: effects on muscle proteolysis, autophagy, structure, and weakness |
Q58734285 | Preconditioning the uterine unfolded protein response maintains non-apoptotic Caspase 3-dependent quiescence during pregnancy |
Q46162452 | Progesterone-regulated caspase 3 action in the mouse may play a role in uterine quiescence during pregnancy through fragmentation of uterine myocyte contractile proteins. |
Q54351308 | Protein metabolism and gene expression in skeletal muscle of critically ill patients with sepsis. |
Q37033537 | Regulation of caspase-3 activity by insulin in skeletal muscle cells involves both PI3-kinase and MEK-1/2 |
Q27015002 | Role of autophagy in COPD skeletal muscle dysfunction |
Q37666348 | Sepsis-induced myopathy |
Q37115925 | Skeletal muscle dysfunction in patients with chronic obstructive pulmonary disease |
Q37794087 | Statin‐associated myopathy and its exacerbation with exercise |
Q37337616 | The JNK MAP kinase pathway contributes to the development of endotoxin-induced diaphragm caspase activation |
Q44554972 | The extrinsic caspase pathway modulates endotoxin-induced diaphragm contractile dysfunction |
Q39806280 | p38 Mitogen-activated protein kinase modulates endotoxin-induced diaphragm caspase activation |
Q33725222 | β-hydroxy-β-methylbutyrate (HMB) prevents sepsis-induced diaphragm dysfunction in mice |
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