Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Calpain Activation Contributes to Endotoxin-Induced Diaphragmatic Dysfunction

View through CrossRef
Abstract Calpain activation occurs in skeletal muscle in response to infection, but it is unknown if calpain inhibition improves muscle functional capacity. We hypothesized that infection induces diaphragm calpain activation, that calpain activation results in cleavage of important diaphragm cytoskeletal proteins, and that inhibition of calpain attenuates infection-induced diaphragm dysfunction. Mice (n = 4–6/group) were given: (1) saline (intraperitoneal); (2) endotoxin (12 mg/kg intraperitoneal); (3) calpain inhibitor peptide III (12 mg/kg intraperitoneal); and (4) endotoxin (12 mg/kg) plus calpain inhibitor peptide III (12 mg/kg). At 24 hours, diaphragms were removed and the following determined: (1) calpain activity by fluorogenic assay; (2) calpain I and II protein levels; (3) talin protein levels; and (4) the force–frequency relationship. Endotoxin significantly increased diaphragm calpain activity (P < 0.001), active calpain I protein (P < 0.001), active calpain II protein (P < 0.01), levels of a calpain-specific cleavage talin degradation product (P < 0.003), and reduced diaphragm force (P < 0.001). Calpain inhibitor III administration prevented endotoxin-induced increases in calpain activity, reduced talin degradation, and attenuated reductions in diaphragm force. Diaphragm-specific force at 150 Hz stimulation was significantly higher in control, endotoxin plus calpain inhibitor III, and calpain inhibitor III alone groups (23 ± 1, 20 ± 1 and 23 ± 1 N/cm2, respectively) than in the endotoxin alone group (15 ± 1 N/cm2) (P < 0.01). This model of sepsis results in significant diaphragm calpain activation and calpain-dependent diaphragm cytoskeletal protein cleavage. Moreover, calpain inhibition attenuates endotoxin-induced diaphragm weakness, suggesting that such inhibitors may be a potential treatment to improve respiratory muscle function in infected patients.
Title: Calpain Activation Contributes to Endotoxin-Induced Diaphragmatic Dysfunction
Description:
Abstract Calpain activation occurs in skeletal muscle in response to infection, but it is unknown if calpain inhibition improves muscle functional capacity.
We hypothesized that infection induces diaphragm calpain activation, that calpain activation results in cleavage of important diaphragm cytoskeletal proteins, and that inhibition of calpain attenuates infection-induced diaphragm dysfunction.
Mice (n = 4–6/group) were given: (1) saline (intraperitoneal); (2) endotoxin (12 mg/kg intraperitoneal); (3) calpain inhibitor peptide III (12 mg/kg intraperitoneal); and (4) endotoxin (12 mg/kg) plus calpain inhibitor peptide III (12 mg/kg).
At 24 hours, diaphragms were removed and the following determined: (1) calpain activity by fluorogenic assay; (2) calpain I and II protein levels; (3) talin protein levels; and (4) the force–frequency relationship.
Endotoxin significantly increased diaphragm calpain activity (P < 0.
001), active calpain I protein (P < 0.
001), active calpain II protein (P < 0.
01), levels of a calpain-specific cleavage talin degradation product (P < 0.
003), and reduced diaphragm force (P < 0.
001).
Calpain inhibitor III administration prevented endotoxin-induced increases in calpain activity, reduced talin degradation, and attenuated reductions in diaphragm force.
Diaphragm-specific force at 150 Hz stimulation was significantly higher in control, endotoxin plus calpain inhibitor III, and calpain inhibitor III alone groups (23 ± 1, 20 ± 1 and 23 ± 1 N/cm2, respectively) than in the endotoxin alone group (15 ± 1 N/cm2) (P < 0.
01).
This model of sepsis results in significant diaphragm calpain activation and calpain-dependent diaphragm cytoskeletal protein cleavage.
Moreover, calpain inhibition attenuates endotoxin-induced diaphragm weakness, suggesting that such inhibitors may be a potential treatment to improve respiratory muscle function in infected patients.

Related Results

Differential Activation of Calpain-1 and Calpain-2 following Kainate-Induced Seizure Activity in Rats and Mice
Differential Activation of Calpain-1 and Calpain-2 following Kainate-Induced Seizure Activity in Rats and Mice
Systemic injection of kainate produces repetitive seizure activity in both rats and mice. It also results in short-term synaptic modifications as well as delayed neurodegeneration....
GW24-e2975 Over-expression of calpastatin aggravates in vitro and in vivo cardiotoxicity induced by doxorubicin
GW24-e2975 Over-expression of calpastatin aggravates in vitro and in vivo cardiotoxicity induced by doxorubicin
Objectives Doxorubicin often causes damage to the heart, which may present as cardiomyopathy. However, the mechanisms by which doxorubicin induces cardiotoxicity ...
Eicosapentaenoic acid preserves diaphragm force generation following endotoxin administration
Eicosapentaenoic acid preserves diaphragm force generation following endotoxin administration
Abstract Introduction Infections produce severe respiratory muscle weakness, which contributes to the development of respiratory fai...
Recent advances in endotoxin tolerance
Recent advances in endotoxin tolerance
AbstractEndotoxin tolerance is defined as a reduced capacity of a cell to respond endotoxin (lipopolysaccharide, LPS) challenge after an initial encounter with endotoxin in advance...
MDCT OF ABDOMINAL WALL LUMBAR HERNIAS
MDCT OF ABDOMINAL WALL LUMBAR HERNIAS
Purpose:To review the anatomical landmarks of the abdominal wall lumbar region and its normal appearance on multidetector computed tomography (MDCT) and to briefly describe the MDC...
Calpain induces TNFα expression and cardiac dysfunction by IκB/NF-κB system in septic mice
Calpain induces TNFα expression and cardiac dysfunction by IκB/NF-κB system in septic mice
Objective In septic models, recent studies showed that both myocardial calpain activity and TNFα expression increased, and inhibition of calpain downregulated myo...
Overexpression of m-Calpain in Human Colorectal Adenocarcinomas
Overexpression of m-Calpain in Human Colorectal Adenocarcinomas
Abstract Background: Calpains represent a well-conserved family of Ca2+-dependent proteolytic enzymes. Recently, the importance of calpain in the metastatic process ...

Back to Top