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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 Androgen receptor-dependent mechanisms of resistance

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Cell 54 , 447454.e444 (2020)

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 Androgen receptor-dependent mechanisms of resistance

The activated lipase breaks down stored triglycerides into free fatty acids that can be released into the bloodstream and oxidized for energy

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 Androgen receptor-dependent mechanisms of resistance

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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 Androgen receptor-dependent mechanisms of resistance

Devarajan, E

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 Androgen receptor-dependent mechanisms of resistance

Ben J, Zhang Y, Zhou R, Zhang H, Zhu X, Li X, Zhang H, Li N, Zhou X, Bai H, Yang Q, Li D, Xu Y, Chen Q

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 Androgen receptor-dependent mechanisms of resistance

[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 Androgen receptor-dependent mechanisms of resistance

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