000 02722nab a2200349 a 4500
003 AR-ReUNN
005 20260702004710.0
008 260701s2021 ag |||||||||||||||||eng
041 0 _aeng
100 1 _aIto, Yuki
_9197031
700 1 _aIto, Takashi
_9197032
700 1 _aYamashiro, Keisuke
_9197033
700 1 _aMineshiba, Fumi
_9197034
700 1 _aHirai, Kimito
_9197035
700 1 _aOmori, Kazuhiro
_9197036
700 1 _aYamamoto, Tadashi
_9197037
700 1 _aTakashiba, Shogo
_9195807
245 1 0 _aEfectos antimicrobianos y antibiofilm del ácido abiético sobre Streptococcus mutans cariogénico
246 1 3 _aAntimicrobial and antibiofilm effects of abietic acid on cariogenic streptococcus mutans
264 1 _c2021
300 _a9 páginas
520 _aDental caries is a type of oral microbiome dysbiosis and biofilm infection that affects oral and systemic conditions. For healthy life expectancy, natural bacteriostatic products are ideal for daily and lifetime use as anti-oral infection agents. This study aimed to evaluate the inhibitory effects of abietic acid, a diterpene derived from pine rosin, on the in vitro growth of cariogenic bacterial species, Streptococcus mutans. The effective minimum inhibitory concentration of abietic acid was determined through observation of S. mutans growth, acidification, and biofilm formation. The inhibitory effects of abietic acid on the bacterial membrane were investigated through the use of in situ viability analysis and scanning electron microscopic analysis. Cytotoxicity of abietic acid was also examined in the context of several human cell lines using tetrazolium reduction assay. Abietic acid was found to inhibit key bacterial growth hallmarks such as colony forming ability, adenosine triphosphate activity (both planktonic and biofilm), acid production, and biofilm formation. Abietic acid was identified as bacteriostatic, and this compound caused minimal damage to the bacterial membrane. This action was different from that of povidone-iodine or cetylpyridinium chloride. Additionally, abietic acid was significantly less cytotoxic compared to povidone-iodine, and it exerted lower toxicity towards epithelial cells and fibroblasts compared to that against monocytic cells. These data suggest that abietic acid may prove useful as an antibacterial and antibiofilm agent for controlling S. mutans infection.
650 4 _aAcido Abietico
_9197038
650 4 _aStreptococcus Mutans
_910290
650 4 _aAntimicrobiano
_9195431
650 4 _aBiofilm Oral
_9197039
650 4 _aTerpenos
_9197040
773 0 _tOdontology
_x1618-1247
_gv. 108 n. 1 (2020)
_w257190
942 _cART
035 _a(ODN)64309
001 265441
999 _c265441
_d265441
040 _aAR-ReUNN
_bspa
_cAR-ReUNN
_eaacr2