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l carnitine pathway L-Carnitine and acetyl-L-carnitine roles and neuroprotection in developing brain L-Carnitine functions as a cofactor

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We find that toxic benzaldehyde exposure induces LRO autofluorescence, stimulates the expression of LRO-specific genes and enhances LRO transport capacity as well as increases tolerance to benzaldehyde, heat and oxidative stresses, while these responses are impaired in glo-1 /Rab32 and pgp- 2 ABC transporter LRO biogenesis mutants

l carnitine pathway L-Carnitine and acetyl-L-carnitine roles and neuroprotection in developing brain L-Carnitine functions as a cofactor

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l carnitine pathway L-Carnitine and acetyl-L-carnitine roles and neuroprotection in developing brain L-Carnitine functions as a cofactor

doi: 10.1186/1742-2094-11-50

l carnitine pathway L-Carnitine and acetyl-L-carnitine roles and neuroprotection in developing brain L-Carnitine functions as a cofactor

[DOI] [PubMed] [Google Scholar] 87.Cutone A., Rosa L., Ianiro G., Lepanto M.S., Bonaccorsi di Patti M.C., Valenti P., Musci G

l carnitine pathway L-Carnitine and acetyl-L-carnitine roles and neuroprotection in developing brain L-Carnitine functions as a cofactor

[Abstract]2024 May 21;5(5):101523

l carnitine pathway L-Carnitine and acetyl-L-carnitine roles and neuroprotection in developing brain L-Carnitine functions as a cofactor

In addition, we have noticed a very recent bioinformatics analysis by Singh et al

l carnitine pathway L-Carnitine and acetyl-L-carnitine roles and neuroprotection in developing brain L-Carnitine functions as a cofactor

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