Pinheiro Ericka T, Karygianni Lamprini, Attin Thomas, Thurnheer Thomas
Department of Dentistry, School of Dentistry, University of São Paulo, São Paulo 01000-000, Brazil.
Clinic of Conservative and Preventive Dentistry, Center of Dental Medicine, University of Zurich, CH-8032 Zürich, Switzerland.
Antibiotics (Basel). 2021 Feb 2;10(2):149. doi: 10.3390/antibiotics10020149.
New strategies to eradicate endodontic biofilms are needed. Therefore, we evaluated the effect of high-purity nisin alone and in combination with D-amino acids (D-AAs) or chlorhexidine (CHX) against an "endodontic-like" biofilm model. Biofilms were grown on hydroxyapatite discs for 64 h and treated with nisin, eight D-AAs mixture, nisin + eight D-AAs, 2% CHX, and nisin + 2% CHX. After the 5 min and 24 h treatments, biofilm cells were harvested and total colony-forming units were counted. Differences between groups were tested by two-way ANOVA followed by Tukey's multiple comparisons test ( < 0.05). Nisin and D-AAs, alone or in combination, were not effective in reducing bacteria after short or long exposure times. After 5 min, treatment with 2% CHX and nisin + 2% CHX resulted in 2 and 2.4-log cell reduction, respectively, compared with the no treatment control ( < 0.001). After 24 h, 2% CHX and nisin + 2% CHX drastically reduced bacterial counts. In conclusion, high-purity nisin alone or in combination with D-AAs did not show antibacterial activity against multispecies biofilms. Moreover, combined treatment using nisin and CHX showed similar antibiofilm activity compared with the use of CHX alone.
需要新的策略来根除牙髓生物膜。因此,我们评估了高纯度乳酸链球菌素单独使用以及与D-氨基酸(D-AAs)或氯己定(CHX)联合使用对“类牙髓”生物膜模型的影响。生物膜在羟基磷灰石圆盘上生长64小时,然后分别用乳酸链球菌素、八种D-氨基酸混合物、乳酸链球菌素+八种D-氨基酸、2%氯己定以及乳酸链球菌素+2%氯己定进行处理。在处理5分钟和24小时后,收集生物膜细胞并计数总菌落形成单位。通过双向方差分析,然后进行Tukey多重比较检验来检验组间差异(P<0.05)。乳酸链球菌素和D-氨基酸单独或联合使用,在短时间或长时间暴露后,对减少细菌数量均无效。处理5分钟后,与未处理对照组相比,2%氯己定和乳酸链球菌素+2%氯己定处理分别导致细胞减少2个对数和2.4个对数(P<0.001)。处理24小时后,2%氯己定和乳酸链球菌素+2%氯己定大幅减少了细菌数量。总之,高纯度乳酸链球菌素单独使用或与D-氨基酸联合使用,对多物种生物膜均未显示出抗菌活性。此外,与单独使用氯己定相比,乳酸链球菌素和氯己定联合处理显示出相似的抗生物膜活性。