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LINK . SPRINGER . COM {}

  1. Analyzed Page
  2. Matching Content Categories
  3. CMS
  4. Monthly Traffic Estimate
  5. How Does Link.springer.com Make Money
  6. Keywords
  7. Topics
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We are analyzing https://link.springer.com/article/10.1007/s10541-005-0102-7.

Title:
Mitochondrial metabolism of reactive oxygen species | Biochemistry (Moscow)
Description:
Oxidative stress is considered a major contributor to etiology of both โ€œnormalโ€ senescence and severe pathologies with serious public health implications. Mitochondria generate reactive oxygen species (ROS) that are thought to augment intracellular oxidative stress. Mitochondria possess at least nine known sites that are capable of generating superoxide anion, a progenitor ROS. Mitochondria also possess numerous ROS defense systems that are much less studied. Studies of the last three decades shed light on many important mechanistic details of mitochondrial ROS production, but the bigger picture remains obscure. This review summarizes the current knowledge about major components involved in mitochondrial ROS metabolism and factors that regulate ROS generation and removal. An integrative, systemic approach is applied to analysis of mitochondrial ROS metabolism, which is now dissected into mitochondrial ROS production, mitochondrial ROS removal, and mitochondrial ROS emission. It is suggested that mitochondria augment intracellular oxidative stress due primarily to failure of their ROS removal systems, whereas the role of mitochondrial ROS emission is yet to be determined and a net increase in mitochondrial ROS production in situ remains to be demonstrated.
Website Age:
28 years and 1 months (reg. 1997-05-29).

Matching Content Categories {๐Ÿ“š}

  • Education
  • Science
  • Fitness & Wellness

Content Management System {๐Ÿ“}

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 {๐Ÿ“ˆ}

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

๐ŸŒ  Phenomenal Traffic: 5M - 10M visitors per month


Based on our best estimate, this website will receive around 7,625,932 visitors per month in the current month.

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How Does Link.springer.com Make Money? {๐Ÿ’ธ}

We don't see any clear sign of profit-making.

Some websites aren't about earning revenue; they're built to connect communities or raise awareness. There are numerous motivations behind creating websites. This might be one of them. Link.springer.com could be getting rich in stealth mode, or the way it's monetizing isn't detectable.

Keywords {๐Ÿ”}

google, scholar, cas, pubmed, article, biol, biochem, chem, biophys, ros, lett, med, febs, mitochondrial, arch, free, rad, starkov, res, physiol, neurochem, fiskum, acta, huang, kushnareva, mitochondria, biochim, epstein, usa, andreyev, skulachev, cadenas, bioenerg, biomembr, commun, van, remmen, privacy, cookies, content, biochemistry, moscow, metabolism, reactive, oxygen, species, beal, boveris, turrens, mol,

Topics {โœ’๏ธ}

month download article/chapter reactive oxygen species article mitochondrial metabolism physico-chemical biology generating superoxide anion full article pdf mitochondrial ros metabolism privacy choices/manage cookies steady state levels mitochondrial ros emission mitochondrial ros production ๏ฟฝnormalโ€ senescence cellular sources mitochondrial ros removal ros removal systems mitochondria possess regulate ros generation european economic area scope submit manuscript public health implications decades shed light important mechanistic details related subjects blood flow metab naia da silva van remmen torrey pines road mitochondrial metabolism conditions privacy policy major components involved st pierre accepting optional cookies article biochemistry article log check access instant access redox signal main content log starkov university article cite journal finder publish author correspondence article andreyev genome redox rep springer verlag de groot ros production mitochondria privacy policy

Schema {๐Ÿ—บ๏ธ}

WebPage:
      mainEntity:
         headline:Mitochondrial metabolism of reactive oxygen species
         description:Oxidative stress is considered a major contributor to etiology of both โ€œnormalโ€ senescence and severe pathologies with serious public health implications. Mitochondria generate reactive oxygen species (ROS) that are thought to augment intracellular oxidative stress. Mitochondria possess at least nine known sites that are capable of generating superoxide anion, a progenitor ROS. Mitochondria also possess numerous ROS defense systems that are much less studied. Studies of the last three decades shed light on many important mechanistic details of mitochondrial ROS production, but the bigger picture remains obscure. This review summarizes the current knowledge about major components involved in mitochondrial ROS metabolism and factors that regulate ROS generation and removal. An integrative, systemic approach is applied to analysis of mitochondrial ROS metabolism, which is now dissected into mitochondrial ROS production, mitochondrial ROS removal, and mitochondrial ROS emission. It is suggested that mitochondria augment intracellular oxidative stress due primarily to failure of their ROS removal systems, whereas the role of mitochondrial ROS emission is yet to be determined and a net increase in mitochondrial ROS production in situ remains to be demonstrated.
         datePublished:
         dateModified:
         pageStart:200
         pageEnd:214
         sameAs:https://doi.org/10.1007/s10541-005-0102-7
         keywords:
            mitochondria
            reactive oxygen species
            superoxide
            antioxidants
            oxidative stress
            Biochemistry
            general
            Bioorganic Chemistry
            Microbiology
            Biomedicine
         image:
         isPartOf:
            name:Biochemistry (Moscow)
            issn:
               1608-3040
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         author:
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ScholarlyArticle:
      headline:Mitochondrial metabolism of reactive oxygen species
      description:Oxidative stress is considered a major contributor to etiology of both โ€œnormalโ€ senescence and severe pathologies with serious public health implications. Mitochondria generate reactive oxygen species (ROS) that are thought to augment intracellular oxidative stress. Mitochondria possess at least nine known sites that are capable of generating superoxide anion, a progenitor ROS. Mitochondria also possess numerous ROS defense systems that are much less studied. Studies of the last three decades shed light on many important mechanistic details of mitochondrial ROS production, but the bigger picture remains obscure. This review summarizes the current knowledge about major components involved in mitochondrial ROS metabolism and factors that regulate ROS generation and removal. An integrative, systemic approach is applied to analysis of mitochondrial ROS metabolism, which is now dissected into mitochondrial ROS production, mitochondrial ROS removal, and mitochondrial ROS emission. It is suggested that mitochondria augment intracellular oxidative stress due primarily to failure of their ROS removal systems, whereas the role of mitochondrial ROS emission is yet to be determined and a net increase in mitochondrial ROS production in situ remains to be demonstrated.
      datePublished:
      dateModified:
      pageStart:200
      pageEnd:214
      sameAs:https://doi.org/10.1007/s10541-005-0102-7
      keywords:
         mitochondria
         reactive oxygen species
         superoxide
         antioxidants
         oxidative stress
         Biochemistry
         general
         Bioorganic Chemistry
         Microbiology
         Biomedicine
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      author:
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                     type:PostalAddress
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                  name:University of California
                  address:
                     name:University of California, San Diego, La Jolla, USA
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            type:Person
            name:Yu. E. Kushnareva
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                  name:Lomonosov Moscow State University
                  address:
                     name:Alumni of Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
                     type:PostalAddress
                  type:Organization
                  name:Del E. Webb Center for Neuroscience and Aging
                  address:
                     name:The Burnham Institute, Del E. Webb Center for Neuroscience and Aging, La Jolla, USA
                     type:PostalAddress
                  type:Organization
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            name:A. A. Starkov
            affiliation:
                  name:Lomonosov Moscow State University
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                     name:Alumni of Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
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                  name:Weill Medical College Cornell University
                  address:
                     name:Weill Medical College Cornell University, New York, USA
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         name:Alumni of Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
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         name:The Burnham Institute, Del E. Webb Center for Neuroscience and Aging, La Jolla, USA
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         name:Alumni of Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
         type:PostalAddress
      name:Weill Medical College Cornell University
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               type:PostalAddress
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               name:University of California, San Diego, La Jolla, USA
               type:PostalAddress
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      name:Yu. E. Kushnareva
      affiliation:
            name:Lomonosov Moscow State University
            address:
               name:Alumni of Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
               type:PostalAddress
            type:Organization
            name:Del E. Webb Center for Neuroscience and Aging
            address:
               name:The Burnham Institute, Del E. Webb Center for Neuroscience and Aging, La Jolla, USA
               type:PostalAddress
            type:Organization
      name:A. A. Starkov
      affiliation:
            name:Lomonosov Moscow State University
            address:
               name:Alumni of Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
               type:PostalAddress
            type:Organization
            name:Weill Medical College Cornell University
            address:
               name:Weill Medical College Cornell University, New York, USA
               type:PostalAddress
            type:Organization
      email:[email protected]
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      name:Alumni of Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
      name:University of California, San Diego, La Jolla, USA
      name:Alumni of Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
      name:The Burnham Institute, Del E. Webb Center for Neuroscience and Aging, La Jolla, USA
      name:Alumni of Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia
      name:Weill Medical College Cornell University, New York, USA
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