Difference between revisions of "Taurine"

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(Created page with "Information on nutritional supplements people with ALS have been taking == Source collection == [http://alsanesthetics.org/research/solving-the-puzzle/source-material-co...")
 
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[[Information on nutritional supplements people with ALS have been taking]]
 
[[Information on nutritional supplements people with ALS have been taking]]
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== Effects on ALS ==
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Taurine inhibits apoptotic caspase-9 [1].
  
 
== Source collection ==
 
== Source collection ==
  
 
[http://alsanesthetics.org/research/solving-the-puzzle/source-material-collections/62-taurine Studies on ALS]
 
[http://alsanesthetics.org/research/solving-the-puzzle/source-material-collections/62-taurine Studies on ALS]
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== References ==
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[1]
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<bibtex>
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@article{Takatani2004,
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abstract = {Cardiomyocyte apoptosis contributes to cell death during myocardial infarction. One of the factors that regulate the degree of apoptosis during ischemia is the amino acid taurine. To study the mechanism underlying the beneficial effect of taurine, we examined the interaction between taurine and mitochondria-mediated apoptosis using a simulated ischemia model with cultured rat neonatal cardiomyocytes sealed in closed flasks. Exposure to medium containing 20 mM taurine reduced the degree of apoptosis following periods of ischemia varying from 24 to 72 h. In the untreated group, simulated ischemia for 24 h led to mitochondrial depolarization accompanied by cytochrome c release. The apoptotic cascade was also activated, as evidenced by the activation of caspase-9 and -3. Taurine treatment had no effect on mitochondrial membrane potential and cytochrome c release; however, it inhibited ischemia-induced cleavage of caspase-9 and -3. Taurine loading also suppressed the formation of the Apaf-1/caspase-9 apoptosome and the interaction of caspase-9 with Apaf-1. These findings demonstrate that taurine effectively prevents myocardial ischemia-induced apoptosis by inhibiting the assembly of the Apaf-1/caspase-9 apoptosome.},
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author = {Takatani, Tomoka and Takahashi, Kyoko and Uozumi, Yoriko and Shikata, Eriko and Yamamoto, Yasuhiro and Ito, Takashi and Matsuda, Takahisa and Schaffer, Stephen W and Fujio, Yasushi and Azuma, Junichi},
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doi = {10.1152/ajpcell.00042.2004},
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issn = {0363-6143},
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journal = {American journal of physiology. Cell physiology},
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keywords = {Animals,Animals, Newborn,Apoptosis,Apoptosis: drug effects,Apoptotic Protease-Activating Factor 1,Blotting, Western,Caspase 9,Caspases,Caspases: drug effects,Cells, Cultured,Disease Models, Animal,Enzyme Activation,Enzyme Activation: drug effects,Enzyme Activation: physiology,In Situ Nick-End Labeling,Ischemia,Ischemia: drug therapy,Ischemia: physiopathology,Membrane Potentials,Membrane Potentials: drug effects,Membrane Potentials: physiology,Mitochondria, Heart,Mitochondria, Heart: drug effects,Mitochondria, Heart: pathology,Myocytes, Cardiac,Myocytes, Cardiac: drug effects,Myocytes, Cardiac: pathology,Precipitin Tests,Proteins,Proteins: drug effects,Rats,Rats, Wistar,Taurine,Taurine: pharmacology},
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mendeley-groups = {taurine},
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month = oct,
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number = {4},
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pages = {C949--53},
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pmid = {15253891},
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title = {{Taurine inhibits apoptosis by preventing formation of the Apaf-1/caspase-9 apoptosome.}},
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url = {http://ajpcell.physiology.org/content/287/4/C949},
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volume = {287},
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year = {2004}
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}
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</bibtex>

Revision as of 18:51, 16 December 2015

Information on nutritional supplements people with ALS have been taking

Effects on ALS

Taurine inhibits apoptotic caspase-9 [1].

Source collection

Studies on ALS

References

[1] <bibtex> @article{Takatani2004, abstract = {Cardiomyocyte apoptosis contributes to cell death during myocardial infarction. One of the factors that regulate the degree of apoptosis during ischemia is the amino acid taurine. To study the mechanism underlying the beneficial effect of taurine, we examined the interaction between taurine and mitochondria-mediated apoptosis using a simulated ischemia model with cultured rat neonatal cardiomyocytes sealed in closed flasks. Exposure to medium containing 20 mM taurine reduced the degree of apoptosis following periods of ischemia varying from 24 to 72 h. In the untreated group, simulated ischemia for 24 h led to mitochondrial depolarization accompanied by cytochrome c release. The apoptotic cascade was also activated, as evidenced by the activation of caspase-9 and -3. Taurine treatment had no effect on mitochondrial membrane potential and cytochrome c release; however, it inhibited ischemia-induced cleavage of caspase-9 and -3. Taurine loading also suppressed the formation of the Apaf-1/caspase-9 apoptosome and the interaction of caspase-9 with Apaf-1. These findings demonstrate that taurine effectively prevents myocardial ischemia-induced apoptosis by inhibiting the assembly of the Apaf-1/caspase-9 apoptosome.}, author = {Takatani, Tomoka and Takahashi, Kyoko and Uozumi, Yoriko and Shikata, Eriko and Yamamoto, Yasuhiro and Ito, Takashi and Matsuda, Takahisa and Schaffer, Stephen W and Fujio, Yasushi and Azuma, Junichi}, doi = {10.1152/ajpcell.00042.2004}, issn = {0363-6143}, journal = {American journal of physiology. Cell physiology}, keywords = {Animals,Animals, Newborn,Apoptosis,Apoptosis: drug effects,Apoptotic Protease-Activating Factor 1,Blotting, Western,Caspase 9,Caspases,Caspases: drug effects,Cells, Cultured,Disease Models, Animal,Enzyme Activation,Enzyme Activation: drug effects,Enzyme Activation: physiology,In Situ Nick-End Labeling,Ischemia,Ischemia: drug therapy,Ischemia: physiopathology,Membrane Potentials,Membrane Potentials: drug effects,Membrane Potentials: physiology,Mitochondria, Heart,Mitochondria, Heart: drug effects,Mitochondria, Heart: pathology,Myocytes, Cardiac,Myocytes, Cardiac: drug effects,Myocytes, Cardiac: pathology,Precipitin Tests,Proteins,Proteins: drug effects,Rats,Rats, Wistar,Taurine,Taurine: pharmacology}, mendeley-groups = {taurine}, month = oct, number = {4}, pages = {C949--53}, pmid = {15253891}, title = Template:Taurine inhibits apoptosis by preventing formation of the Apaf-1/caspase-9 apoptosome., url = {http://ajpcell.physiology.org/content/287/4/C949}, volume = {287}, year = {2004} } </bibtex>