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  1. Analyzed Page
  2. Matching Content Categories
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We are analyzing https://link.springer.com/article/10.1007/s10735-021-09990-0.

Title:
Selective inhibition of PKCβ2 improves Caveolin-3/eNOS signaling and attenuates lipopolysaccharide-induced injury by inhibiting autophagy in H9C2 cardiomyocytes | Journal of Molecular Histology
Description:
Lipopolysaccharide (LPS)-induced autophagy is involved in sepsis-associated myocardial injury with increased PKCβ2 activation. We previously found hyperglycemia-induced PKCβ2 activation impaired the expression of caveolin-3 (Cav-3), the dominant isoform to form cardiomyocytes caveolae which modulate eNOS signaling to confer cardioprotection in diabetes. However, little is known about the roles of PKCβ2 in autophagy and Cav-3/eNOS signaling in cardiomyocytes during LPS exposure. We hypothesize LPS-induced PKCβ2 activation promotes autophagy and impairs Cav-3/eNOS signaling in LPS-treated cardiomyocytes. H9C2 cardiomyocytes were treated with LPS (10 Āµg/mL) in the presence or absence of PKCβ2 inhibitor CGP53353 (CGP, 1 ĀµM) or autophagy inhibitor 3-methyladenine (3-MA, 10 ĀµM). LPS stimulation induced cytotoxicity overtime in H9C2 cardiomyocytes, accompanied with excessive PKCβ2 activation. Selective inhibition of PKCβ2 with CGP significantly reduced LPS-induced cytotoxicity and autophagy (measured by LC-3II, Beclin-1, p62 and autophagic flux). In addition, CGP significantly attenuated LPS-induced oxidative injury, and improved Cav-3 expression and eNOS activation, similar effects were shown by the treatment of autophagy inhibitor 3-MA. LPS-induced myocardial injury is associated with excessive PKCβ2 activation, which contributes to elevated autophagy and impaired Cav-3/eNOS signaling. Selective inhibition of PKCβ2 improves Cav-3/eNOS signaling and attenuates LPS-induced injury through inhibiting autophagy in H9C2 cardiomyocytes.
Website Age:
28 years and 1 months (reg. 1997-05-29).

Matching Content Categories {šŸ“š}

  • Education
  • Health & Fitness
  • Fitness & Wellness

Content Management System {šŸ“}

What CMS is link.springer.com built with?

Custom-built

No common CMS systems were detected on Link.springer.com, and no known web development framework was identified.

Traffic Estimate {šŸ“ˆ}

What is the average monthly size of link.springer.com audience?

🌠 Phenomenal Traffic: 5M - 10M visitors per month


Based on our best estimate, this website will receive around 5,000,019 visitors per month in the current month.
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How Does Link.springer.com Make Money? {šŸ’ø}

The income method remains a mystery to us.

While many websites aim to make money, others are created to share knowledge or showcase creativity. People build websites for various reasons. This could be one of them. Link.springer.com could have a money-making trick up its sleeve, but it's undetectable for now.

Keywords {šŸ”}

article, pubmed, google, scholar, cas, autophagy, signaling, injury, myocardial, cell, central, pkcβ, cardiomyocytes, heart, inhibition, attenuates, physiol, med, zhang, lpsinduced, lipopolysaccharideinduced, expression, cardiac, dysfunction, rats, yang, activation, oxidative, mol, wang, lei, caveolin, overexpression, mitochondrial, cardiomyopathy, privacy, cookies, content, journal, selective, improves, inhibiting, june, zhou, access, protects, diabetic, biol, res, httpsdoiorgs,

Topics {āœ’ļø}

pten/pi3k/akt signaling pathway month download article/chapter myocardial ischaemia/reperfusion injury calcium-dependent pkcalpha-beta1 induces ros-mediated apoptosis attenuates lps-induced injury attenuates lipopolysaccharide-induced injury lps-induced myocardial injury impaired cav-3/enos signaling hyperglycemia-induced protein kinase restoring caveolin-3/akt signaling zhong-yuan xia restoring caveolin-3/enos signaling lipopolysaccharide-induced mitochondrial damage impairs cav-3/enos signaling lps-induced oxidative stress lipopolysaccharide-induced endotoxemic model left ventricular dysfunction akt/enos signaling full article pdf increased pkcβ2 activation block insulin signaling related subjects cav-3/enos signaling lps-induced autophagy excessive pkcβ2 activation endotoxin-induced sepsis privacy choices/manage cookies modulate enos signaling cardiac-specific overexpression molecular histology aims alveolar epithelial cells human neuroblastoma cells cardiomyocyte-specific overexpression lipopolysaccharide-induced inhibition tfeb mediated autophagy lipopolysaccharideinduced cardiac dysfunction inos protects cardiomyocytes article yang prkcb/protein kinase alamandine attenuates sepsis sepsis-induced cardiomyopathy pkcβ2 inhibitor cgp53353 streptozotocin-induced diabetes reduces compensatory hypertrophy improved cav-3 expression shaoqing lei programmed cell death impairing caveolin-3 expression nat rev nephrol

Schema {šŸ—ŗļø}

WebPage:
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         headline:Selective inhibition of PKCβ2 improves Caveolin-3/eNOS signaling and attenuates lipopolysaccharide-induced injury by inhibiting autophagy in H9C2 cardiomyocytes
         description:Lipopolysaccharide (LPS)-induced autophagy is involved in sepsis-associated myocardial injury with increased PKCβ2 activation. We previously found hyperglycemia-induced PKCβ2 activation impaired the expression of caveolin-3 (Cav-3), the dominant isoform to form cardiomyocytes caveolae which modulate eNOS signaling to confer cardioprotection in diabetes. However, little is known about the roles of PKCβ2 in autophagy and Cav-3/eNOS signaling in cardiomyocytes during LPS exposure. We hypothesize LPS-induced PKCβ2 activation promotes autophagy and impairs Cav-3/eNOS signaling in LPS-treated cardiomyocytes. H9C2 cardiomyocytes were treated with LPS (10 µg/mL) in the presence or absence of PKCβ2 inhibitor CGP53353 (CGP, 1 µM) or autophagy inhibitor 3-methyladenine (3-MA, 10 µM). LPS stimulation induced cytotoxicity overtime in H9C2 cardiomyocytes, accompanied with excessive PKCβ2 activation. Selective inhibition of PKCβ2 with CGP significantly reduced LPS-induced cytotoxicity and autophagy (measured by LC-3II, Beclin-1, p62 and autophagic flux). In addition, CGP significantly attenuated LPS-induced oxidative injury, and improved Cav-3 expression and eNOS activation, similar effects were shown by the treatment of autophagy inhibitor 3-MA. LPS-induced myocardial injury is associated with excessive PKCβ2 activation, which contributes to elevated autophagy and impaired Cav-3/eNOS signaling. Selective inhibition of PKCβ2 improves Cav-3/eNOS signaling and attenuates LPS-induced injury through inhibiting autophagy in H9C2 cardiomyocytes.
         datePublished:2021-06-08T00:00:00Z
         dateModified:2021-06-08T00:00:00Z
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            Cell Biology
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      headline:Selective inhibition of PKCβ2 improves Caveolin-3/eNOS signaling and attenuates lipopolysaccharide-induced injury by inhibiting autophagy in H9C2 cardiomyocytes
      description:Lipopolysaccharide (LPS)-induced autophagy is involved in sepsis-associated myocardial injury with increased PKCβ2 activation. We previously found hyperglycemia-induced PKCβ2 activation impaired the expression of caveolin-3 (Cav-3), the dominant isoform to form cardiomyocytes caveolae which modulate eNOS signaling to confer cardioprotection in diabetes. However, little is known about the roles of PKCβ2 in autophagy and Cav-3/eNOS signaling in cardiomyocytes during LPS exposure. We hypothesize LPS-induced PKCβ2 activation promotes autophagy and impairs Cav-3/eNOS signaling in LPS-treated cardiomyocytes. H9C2 cardiomyocytes were treated with LPS (10 µg/mL) in the presence or absence of PKCβ2 inhibitor CGP53353 (CGP, 1 µM) or autophagy inhibitor 3-methyladenine (3-MA, 10 µM). LPS stimulation induced cytotoxicity overtime in H9C2 cardiomyocytes, accompanied with excessive PKCβ2 activation. Selective inhibition of PKCβ2 with CGP significantly reduced LPS-induced cytotoxicity and autophagy (measured by LC-3II, Beclin-1, p62 and autophagic flux). In addition, CGP significantly attenuated LPS-induced oxidative injury, and improved Cav-3 expression and eNOS activation, similar effects were shown by the treatment of autophagy inhibitor 3-MA. LPS-induced myocardial injury is associated with excessive PKCβ2 activation, which contributes to elevated autophagy and impaired Cav-3/eNOS signaling. Selective inhibition of PKCβ2 improves Cav-3/eNOS signaling and attenuates LPS-induced injury through inhibiting autophagy in H9C2 cardiomyocytes.
      datePublished:2021-06-08T00:00:00Z
      dateModified:2021-06-08T00:00:00Z
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         PKCβ2
         Lipopolysaccharide
         Autophagy
         Cav-3
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         Developmental Biology
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External Links {šŸ”—}(215)

Analytics and Tracking {šŸ“Š}

  • Google Tag Manager

Libraries {šŸ“š}

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