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l-carnitine tartrate androgen receptors extenuates endocrine disruption, inflammatory burst and oxidative stress in carbendazim-challenged male rats via upregulation of testicular StAR and FABP9, and downregulation of P38-MAPK pathways L-Carnitine-L-tartrate | 36687-82-8

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l-carnitine tartrate androgen receptors extenuates endocrine disruption, inflammatory burst and oxidative stress in carbendazim-challenged male rats via upregulation of testicular StAR and FABP9, and downregulation of P38-MAPK pathways L-Carnitine-L-tartrate | 36687-82-8

[13] Most mammalian isoenzymes have affinity for the substrate 1-chloro-2,4-dinitrobenzene, and spectrophotometric assays utilising this substrate are commonly used to report GST activity

l-carnitine tartrate androgen receptors extenuates endocrine disruption, inflammatory burst and oxidative stress in carbendazim-challenged male rats via upregulation of testicular StAR and FABP9, and downregulation of P38-MAPK pathways L-Carnitine-L-tartrate | 36687-82-8

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l-carnitine tartrate androgen receptors extenuates endocrine disruption, inflammatory burst and oxidative stress in carbendazim-challenged male rats via upregulation of testicular StAR and FABP9, and downregulation of P38-MAPK pathways L-Carnitine-L-tartrate | 36687-82-8

Targeting both may improve therapeutic outcomes, indicating a promising option for future cancer therapies

l-carnitine tartrate androgen receptors extenuates endocrine disruption, inflammatory burst and oxidative stress in carbendazim-challenged male rats via upregulation of testicular StAR and FABP9, and downregulation of P38-MAPK pathways L-Carnitine-L-tartrate | 36687-82-8

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