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glutathione-dependent formaldehyde oxidation pathway metabolism and formaldehyde‐induced stimulation of lactate production and glutathione export in cultured neurons - Tulpule - 2013 - Journal of Neurochemistry Deciphering Functions of Intracellular Formaldehyde:

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glutathione-dependent formaldehyde oxidation pathway metabolism and formaldehydeinduced stimulation of lactate production and glutathione export in cultured neurons - Tulpule - 2013 - Journal of Neurochemistry Deciphering Functions of Intracellular Formaldehyde:

In our study, the affinity of sensor was calculated on the basis of FRET ratio change in the chimeric sensor protein at various concentrations of GSH

glutathione-dependent formaldehyde oxidation pathway metabolism and formaldehydeinduced stimulation of lactate production and glutathione export in cultured neurons - Tulpule - 2013 - Journal of Neurochemistry Deciphering Functions of Intracellular Formaldehyde:

Normal stimuli that shouldn't cause a response suddenly do

glutathione-dependent formaldehyde oxidation pathway metabolism and formaldehydeinduced stimulation of lactate production and glutathione export in cultured neurons - Tulpule - 2013 - Journal of Neurochemistry Deciphering Functions of Intracellular Formaldehyde:

Previous research has indicated that certain polyphenols, such as resveratrol, chlorogenic acid, and hesperetin, enhance intestinal barrier function

glutathione-dependent formaldehyde oxidation pathway metabolism and formaldehydeinduced stimulation of lactate production and glutathione export in cultured neurons - Tulpule - 2013 - Journal of Neurochemistry Deciphering Functions of Intracellular Formaldehyde:

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glutathione-dependent formaldehyde oxidation pathway metabolism and formaldehydeinduced stimulation of lactate production and glutathione export in cultured neurons - Tulpule - 2013 - Journal of Neurochemistry Deciphering Functions of Intracellular Formaldehyde:

Inhibitors like FK866 and CHS828, which are based on heterocyclic structures and act by binding to the active site of NAMPT 215,216 , are being investigated for their potential to selectively target cancer cells by exploiting their high NAD + turnover 214

glutathione-dependent formaldehyde oxidation pathway metabolism and formaldehydeinduced stimulation of lactate production and glutathione export in cultured neurons - Tulpule - 2013 - Journal of Neurochemistry Deciphering Functions of Intracellular Formaldehyde:

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