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N-allyl-N-((S)-1-((2S,3S)-2-(hydroxymethyl)-6-((2-methoxyethoxy)methoxy)-2,3-dihydrobenzofuran-3-ylamino)-4-methyl-1-oxopentan-2-yl)-4-nitrobenzamide is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1592907-65-7

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    Cas No: 1592907-65-7

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1592907-65-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1592907-65-7 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,5,9,2,9,0 and 7 respectively; the second part has 2 digits, 6 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 1592907-65:
(9*1)+(8*5)+(7*9)+(6*2)+(5*9)+(4*0)+(3*7)+(2*6)+(1*5)=207
207 % 10 = 7
So 1592907-65-7 is a valid CAS Registry Number.

1592907-65-7Relevant articles and documents

Prevention of mitochondrial membrane permeabilization and pancreatic β-cell death by an enantioenriched, macrocyclic small molecule

Jimmidi, Ravikumar,Shroff, Govardhan K.,Satyanarayana,Reddy, B. Ramesh,Kapireddy, Jahnavi,Sawant, Mithila A.,Sitaswad, Sandhya L.,Arya, Prabhat,Mitra, Prasenjit

, p. 1151 - 1156 (2014/03/21)

Mitochondria produce the majority of cellular energy through the process of oxidative phosphorylation and play a central role in regulating the functionality and survival of eukaryotic cells. Under physiological stress, mitochondrial membrane permeabilization results in the release of apoptogenic material such as cytochrome c in the cytoplasm, which thereby initiates caspase activation and the consequent cell death. In our present study, we screened a series of compounds for their ability to inhibit mitochondrial membrane permeabilization and to prevent cytochrome c release during the endoplasmic reticulum stress in cultured pancreatic β-cells. Three benzofuran-based macrocyclic small molecules, that is, 2.4c, c104, and c108, were found to restore the depolarization of mitochondrial membrane potential and to prevent the release of cytochrome c from mitochondria. Interestingly, the acyclic precursor of 2.4c (i.e., 2.3c) did not show any effect, whereas the macrocyclic derivative obtained by utilizing ring-closing metathesis as the "stitching technology" led to this function. The macrocyclic architecture seems to play a crucial role in presenting various functional moieties in the right orientation to observe this effect. A series of compounds for their ability to inhibit mitochondrial membrane permeabilization and to prevent cytochrome c release during endoplasmic reticulum stress in cultured pancreatic β-cells is screened. Three benzofuran-based macrocyclic small molecules were found to restore the depolarization of the mitochondrial membrane potential and to prevent the release of cytochrome c from mitochondria. MPTP = Mitochondrial Permeability Transition Pore. Copyright

Prevention of Mitochondrial Membrane Permeabilization and Pancreatic β-Cell Death by an Enantioenriched, Macrocyclic Small Molecule

Jimmidi, Ravikumar,Shroff, Govardhan K.,Satyanarayana,Reddy, B. Ramesh,Kapireddy, Jahnavi,Sawant, Mithila A.,Sitaswad, Sandhya L.,Arya, Prabhat,Mitra, Prasenjit

, p. 1151 - 1156 (2015/10/05)

Mitochondria produce the majority of cellular energy through the process of oxidative phosphorylation and play a central role in regulating the functionality and survival of eukaryotic cells. Under physiological stress, mitochondrial membrane permeabilization results in the release of apoptogenic material such as cytochrome c in the cytoplasm, which thereby initiates caspase activation and the consequent cell death. In our present study, we screened a series of compounds for their ability to inhibit mitochondrial membrane permeabilization and to prevent cytochrome c release during the endoplasmic reticulum stress in cultured pancreatic β-cells. Three benzofuran-based macrocyclic small molecules, that is, 2.4c, c104, and c108, were found to restore the depolarization of mitochondrial membrane potential and to prevent the release of cytochrome c from mitochondria. Interestingly, the acyclic precursor of 2.4c (i.e., 2.3c) did not show any effect, whereas the macrocyclic derivative obtained by utilizing ring-closing metathesis as the "stitching technology" led to this function. The macrocyclic architecture seems to play a crucial role in presenting various functional moieties in the right orientation to observe this effect.

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