ent-Kaurenoic acid-rich extract from Mikania glomerata: In vitro activity against bacteria responsible for dental caries

Many studies have reported that medicinal plant extracts can inhibit oral pathogen growth or adhesion to surfaces and therefore reduce dental caries formation. The addition of these extracts to oral products like mouthwashes and dentifrices is considered an important strategy in caries control. In t...

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Veröffentlicht in:Fitoterapia 2016-07, Vol.112, p.211-216
Hauptverfasser: Moreira, Monique Rodrigues, Souza, Ariana Borges, Soares, Sandra, Bianchi, Thamires Chiquini, de Souza Eugênio, Daniele, Lemes, Danieli Cristina, Martins, Carlos Henrique Gomes, da Silva Moraes, Thaís, Tavares, Denise Crispim, Ferreira, Natália Helen, Ambrósio, Sergio Ricardo, Veneziani, Rodrigo Cassio Sola
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Sprache:eng
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Zusammenfassung:Many studies have reported that medicinal plant extracts can inhibit oral pathogen growth or adhesion to surfaces and therefore reduce dental caries formation. The addition of these extracts to oral products like mouthwashes and dentifrices is considered an important strategy in caries control. In this sense, we have developed a Mikania glomerata extract with high ent-kaurenoic acid content (KAMg). So, this work describes the preparation of such extract and the development of a validated HPLC-DAD method to determine its ent-kaurenoic acid (KA) content. Herein it is also described the KAMg in vitro antibacterial evaluation against several cariogenic bacteria in comparison with KA and the investigation of further aspects of the KAMg activity. Toxicological aspects of the developed extract were evaluated by assessing its cytotoxicity and genotoxicity. KA and a KA-rich extract like KAMg showed to inhibit the growth of microorganisms responsible for dental caries at relatively low MIC (Minimum inhibitory concentration) values, albeit not as low as the MIC value obtained for chlorhexidine digluconate (CHD), the golden anticariogenic standard approved by the American Dental Association Council on Dental Therapeutics. However, KAMg was more effective to inhibit the formation of a Streptococcus mutans biofilm with four times lower MICB50 (minimum inhibitory concentration that reduces 50% of the biofilm) value as compared with CHD. Taking into account all these data and considering the absence of genotoxic and cytotoxic activity under the tested conditions, it is suggested that KAMg is a natural product to be considered as active ingredient in oral care products. [Display omitted] ent-kaurenoic acid (PubChem CID: 73062).
ISSN:0367-326X
1873-6971
DOI:10.1016/j.fitote.2016.06.007