Departamento de Morfología, Universidad Autónoma de Aguascalientes, Avenida Universidad 940, Colonia Ciudad Universitaria, Edificio 202, 20100, Aguascalientes, Mexico.
Departamento de Química, Universidad Autónoma de Aguascalientes, Aguascalientes, Mexico.
Vet Res Commun. 2022 Jun;46(2):459-470. doi: 10.1007/s11259-021-09871-7. Epub 2022 Jan 8.
Secretions of beneficial intestinal bacteria can inhibit the growth and biofilm formation of a wide range of microorganisms. Curcumin has shown broad spectrum antioxidant, anti-inflammatory, and antimicrobial potential. It is important to evaluate the influence of these secretions with bioactive peptides, in combination with curcumin, to limit growth and inhibit biofilm formation of pathogenic bacteria of importance in aquaculture. In the present study, the supernatants of Lactoccocus lactis NZ9000, Lactobacillus rhamnosus GG and Pediococcus pentosaceus NCDO 990, and curcumin (0,1,10,25 and 50 μM) were used to evaluate their efficacy in growth, inhibition biofilm and membrane permeability of Aeromonas hydrophila CAIM 347 (A. hydrophila). The supernatants of probiotics and curcumin 1,10 and 25 μM exerted similar effects in reducing the growth of A. hydrophila at 12 h of interaction. The supernatants of the probiotics and curcumin 25 and 50 μM exerted similar effects in reducing the biofilm of A. hydrophila. There is a significant increase in the membrane permeability of A. hydrophila in interaction with 50 μM curcumin at two hours of incubation and with the supernatants separately in the same period. Different modes of action of curcumin and bacteriocins separately were demonstrated as effective substitutes for antibiotics in containing A. hydrophila and avoiding the application of antibiotics. The techniques implemented in this study provide evidence that there is no synergy between treatments at the selected concentrations and times.
有益肠道细菌的分泌物可以抑制多种微生物的生长和生物膜形成。姜黄素具有广泛的抗氧化、抗炎和抗菌潜力。评估这些分泌物与生物活性肽、姜黄素联合使用对限制水产养殖中重要致病菌生长和抑制生物膜形成的影响非常重要。在本研究中,使用了乳球菌 NZ9000、鼠李糖乳杆菌 GG 和戊糖片球菌 NCDO 990 的上清液以及姜黄素(0、1、10、25 和 50 μM)来评估它们在抑制水栖气单胞菌 CAIM 347(A. hydrophila)生长、抑制生物膜和膜通透性方面的效果。益生菌上清液和 1、10 和 25 μM 姜黄素在 12 小时的相互作用中对减少 A. hydrophila 的生长具有相似的效果。益生菌上清液和 25 和 50 μM 姜黄素对减少 A. hydrophila 的生物膜具有相似的效果。在孵育两小时时,50 μM 姜黄素与单独的上清液相互作用会导致 A. hydrophila 的膜通透性显著增加。姜黄素和细菌素分别作用模式的不同被证明是替代抗生素控制 A. hydrophila 和避免抗生素应用的有效方法。本研究中采用的技术提供了证据,表明在所选浓度和时间下,处理之间没有协同作用。