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1.
J Nanobiotechnology ; 18(1): 89, 2020 Jun 11.
Artigo em Inglês | MEDLINE | ID: mdl-32527262

RESUMO

BACKGROUND: Farnesol is a sesquiterpene from propolis and citrus fruit that shows promising anti-bacterial activity for caries treatment and prevention, but its hydrophobicity limits the clinical application. We aimed to develop the novel polymeric micelles (PMs) containing a kind of derivative of farnesol and a ligand of pyrophosphate (PPi) that mediated PMs to adhere tightly with the tooth enamel. RESULTS: Farnesal (Far) was derived from farnesol and successfully linked to PEG via an acid-labile hydrazone bond to form PEG-hyd-Far, which was then conjugated to PPi and loaded into PMs to form the aimed novel drug delivery system, PPi-Far-PMs. The in vitro test about the binding of PPi-Far-PMs to hydroxyapatite showed that PPi-Far-PMs could bind rapidly to hydroxyapatite and quickly release Far under the acidic conditions. Results from the mechanical testing and the micro-computed tomography indicated that PPi-Far-PMs could restore the microarchitecture of teeth with caries. Moreover, PPi-Far-PMs diminished the incidence and severity of smooth and sulcal surface caries in rats that were infected with Streptococcus mutans while being fed with a high-sucrose diet. The anti-caries efficacy of free Far can be improved significantly by PPi-Far-PMs through the effective binding of it with tooth enamel via PPi. CONCLUSIONS: This novel drug-delivery system may be useful for the treatment and prevention of dental caries as well as the targeting therapy of anti-bacterial drugs in the oral disease.


Assuntos
Cariostáticos , Cárie Dentária , Durapatita , Farneseno Álcool/análogos & derivados , Micelas , Animais , Cariostáticos/química , Cariostáticos/farmacocinética , Cariostáticos/farmacologia , Cárie Dentária/tratamento farmacológico , Cárie Dentária/metabolismo , Cárie Dentária/patologia , Difosfatos/química , Difosfatos/farmacocinética , Difosfatos/farmacologia , Portadores de Fármacos , Durapatita/química , Durapatita/metabolismo , Farneseno Álcool/química , Farneseno Álcool/farmacocinética , Farneseno Álcool/farmacologia , Interações Hidrofóbicas e Hidrofílicas , Dente Molar/efeitos dos fármacos , Dente Molar/ultraestrutura , Polietilenoglicóis/química , Ratos , Streptococcus mutans/efeitos dos fármacos
2.
Molecules ; 23(11)2018 Nov 21.
Artigo em Inglês | MEDLINE | ID: mdl-30469331

RESUMO

Hop-derived compounds have been subjected to numerous biomedical studies investigating their impact on a wide range of pathologies. Isomerised bitter acids (isoadhumulone, isocohumulone and isohumulone) from hops, used in the brewing process of beer, are known to inhibit members of the aldo-keto-reductase superfamily. Aldo-keto-reductase 1B10 (AKR1B10) is upregulated in various types of cancer and has been reported to promote carcinogenesis. Inhibition of AKR1B10 appears to be an attractive means to specifically treat RAS-dependent malignancies. However, the closely related reductases AKR1A1 and AKR1B1, which fulfil important roles in the detoxification of endogenous and xenobiotic carbonyl compounds oftentimes crossreact with inhibitors designed to target AKR1B10. Accordingly, there is an ongoing search for selective AKR1B10 inhibitors that do not interact with endogeneous AKR1A1 and AKR1B1-driven detoxification systems. In this study, unisomerised α-acids (adhumulone, cohumulone and n-humulone) were separated and tested for their inhibitory potential on AKR1A1, AKR1B1 and AKR1B10. Also AKR1B10-mediated farnesal reduction was effectively inhibited by α-acid congeners with Ki-values ranging from 16.79 ± 1.33 µM (adhumulone) to 3.94 ± 0.33 µM (n-humulone). Overall, α-acids showed a strong inhibition with selectivity (115⁻137 fold) for AKR1B10. The results presented herein characterise hop-derived α-acids as a promising basis for the development of novel and selective AKR1B10-inhibitors.


Assuntos
Aldeído Redutase/antagonistas & inibidores , Cicloexanonas/farmacologia , Cicloexenos/farmacologia , Terpenos/farmacologia , Aldeído Redutase/metabolismo , Aldo-Ceto Redutases , Avaliação Pré-Clínica de Medicamentos , Ensaios de Seleção de Medicamentos Antitumorais , Farneseno Álcool/análogos & derivados , Farneseno Álcool/química , Regulação Enzimológica da Expressão Gênica/efeitos dos fármacos , Humanos , Humulus/química
3.
Insect Biochem Mol Biol ; 43(8): 675-82, 2013 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-23639754

RESUMO

The juvenile hormones (JHs) play a central role in insect reproduction, development and behavior. Interrupting JH biosynthesis has long been considered a promising strategy for the development of target-specific insecticides. Using a combination of RNAi, in vivo and in vitro studies we characterized the last unknown biosynthetic enzyme of the JH pathway, a fatty aldehyde dehydrogenase (AaALDH3) that oxidizes farnesal into farnesoic acid (FA) in the corpora allata (CA) of mosquitoes. The AaALDH3 is structurally and functionally a NAD(+)-dependent class 3 ALDH showing tissue- and developmental-stage-specific splice variants. Members of the ALDH3 family play critical roles in the development of cancer and Sjögren-Larsson syndrome in humans, but have not been studies in groups other than mammals. Using a newly developed assay utilizing fluorescent tags, we demonstrated that AaALDH3 activity, as well as the concentrations of farnesol, farnesal and FA were different in CA of sugar and blood-fed females. In CA of blood-fed females the low catalytic activity of AaALDH3 limited the flux of precursors and caused a remarkable increase in the pool of farnesal with a decrease in FA and JH synthesis. The accumulation of the potentially toxic farnesal stimulated the activity of a reductase that converted farnesal back into farnesol, resulting in farnesol leaking out of the CA. Our studies indicated AaALDH3 plays a key role in the regulation of JH synthesis in blood-fed females and mosquitoes seem to have developed a "trade-off" system to balance the key role of farnesal as a JH precursor with its potential toxicity.


Assuntos
Aedes/enzimologia , Aldeído Desidrogenase/metabolismo , Corpora Allata/enzimologia , Farneseno Álcool/análogos & derivados , Ácidos Graxos Insaturados/metabolismo , Fatores Etários , Aldeído Oxirredutases/metabolismo , Animais , Farneseno Álcool/metabolismo , Feminino , Homeostase , Hormônios Juvenis/biossíntese , RNA Mensageiro/metabolismo
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