3 research outputs found

    More insights into approachs with potential effect against pathogenic Fusarium species

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    Fusarim species are a group of pathogenic fungi responsible for different plant diseases as well as damage of stored products like banana, rice and cereals. They are characterized by a widspread distribution because of their capacity to grow in different substrates. Against these pathogenic fungi, many approachs have been tried to protect crops and stored products from their devastating effects. Chemical molecules are widely used for their effective activity as fungicides, but they may cause important damage to crops, human and environment. For this reason, researchers are trying to find an alternative allowing the farmer to ovoid these negative effects of chemical fungicides. Among these potential alternatives, we find the use of natural products (monoterpenes, flavonoids etc), plant extracts (including essential oils), biological control agents (bacteria and fungi), antimicrobial nanomaterials and approachs aiming to improve plant resitance and defence.&nbsp

    Hemisynthesis and evaluation of pharmacological activities of carvacrol-derivatives

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    Hemi-synthesis, a process widely used in pharmacological research, consists of a modification in the chemical structure of a natural product in order to improve its activity and/or to reduce its side effects. Two carvacrol-derivatives (P1 and P2) have been synthetized using reactions of alkylation by binding alkan groups at the hydroxyl group of carvacrol. NMR analysis was performed for synthetized derivatives to confirm the success of the reactions. Then, cytotoxic activity, against two tumour cell lines (P-815 and MCF-7), and antibacterial activity of carvacrol, P1 and P2 were performed. Cytotoxicity was measured using the colourimetric methyl tetrazolium test (MTT) and antimicrobial activity was measured using the diffusion technique on solid media and the determination of CMI on liquid media. Our results show that chemical modifications made on carvacrol have no effect on its antitumor activity. However, an important decrease of its antibacterial activity was observed, especially for P1. Our results suggest that hydroxyl group at this position of the molecule may be responsible for carvacrol antibacterial activity, while the other parts of the molecule may be responsible for its antitumor activity. On the other hand, introduced modifications may affect mechanism of action of the molecules as well as its pharmacokinetics properties

    Hemisynthesis and evaluation of pharmacological activities of carvacrolderivatives

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    537-542Hemi-synthesis, a process widely used in pharmacological research, consists of a modification in the chemical structure of a natural product in order to improve its activity and/or to reduce its side effects. Two carvacrol-derivatives (P1 and P2) have been synthetized using reactions of alkylation by binding alkan groups at the hydroxyl group of carvacrol. NMR analysis was performed for synthetized derivatives to confirm the success of the reactions. Then, cytotoxic activity, against two tumour cell lines (P-815 and MCF-7), and antibacterial activity of carvacrol, P1 and P2 were performed. Cytotoxicity was measured using the colourimetric methyl tetrazolium test (MTT) and antimicrobial activity was measured using the diffusion technique on solid media and the determination of CMI on liquid media. Our results show that chemical modifications made on carvacrol have no effect on its antitumor activity. However, an important decrease of its antibacterial activity was observed, especially for P1. Our results suggest that hydroxyl group at this position of the molecule may be responsible for carvacrol antibacterial activity, while the other parts of the molecule may be responsible for its antitumor activity. On the other hand, introduced modifications may affect mechanism of action of the molecules as well as its pharmacokinetics properties
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