Niazy Abdurahman A
Molecular and Cell Biology Laboratory, Prince Naif bin AbdulAziz Health Research Center, College of Dentistry, King Saud University Medical City, King Saud University, Riyadh, Saudi Arabia.
Department of Oral Medicine and Diagnostic Sciences, College of Dentistry, King Saud University, Riyadh, Saudi Arabia.
Saudi Dent J. 2021 Mar;33(3):116-123. doi: 10.1016/j.sdentj.2020.12.007. Epub 2020 Dec 31.
The LuxS quorum sensing system is considered as the main system that most of the oral bacteria use to communicate in order to create biofilms. Here we identified 11 of the most important biofilm formers that utilize the LuxS system and presented current and recent information regarding this system. Though different bacterial species are able to communicate thorough the LuxS system, it was also found that cross kingdom communication can occur between bacteria and fungi and bacteria and epithelial cells. Immune response also plays and important role in mitigating the effects of biofilms. Here we identified 6 of the most important molecules that are involved in the immune response to biofilms. These immune molecules maintain the stability in the oral cavity by preventing bacteria from overwhelming the space and simultaneously minimizing the immune response in order not to cause tissue damage. Here we also discuss current research being done in order to maintain the balance in the oral cavity via inhibiting biofilm formation without eradicating oral bacteria in order to prevent the overgrowth of other organisms such as . One approach being used is inhibiting AI-2 intermediates which leads to lack of quorum sensing communication between bacteria through the use of intermediate analogues. Another approach that found success is the utilization of D forms of sugars where D-ribose and D-galactose have been proven to inhibit the LuxS system and subsequently preventing the process of quorum sensing leading to the reduction in biofilm formation.
LuxS群体感应系统被认为是大多数口腔细菌用于交流以形成生物膜的主要系统。在此,我们鉴定了11种利用LuxS系统的最重要的生物膜形成菌,并呈现了有关该系统的当前及最新信息。尽管不同细菌物种能够通过LuxS系统进行交流,但也发现细菌与真菌以及细菌与上皮细胞之间可发生跨界交流。免疫反应在减轻生物膜的影响方面也起着重要作用。在此,我们鉴定了6种参与对生物膜免疫反应的最重要分子。这些免疫分子通过防止细菌占据过多空间并同时将免疫反应降至最低以避免造成组织损伤,从而维持口腔的稳定性。在此我们还讨论了当前为通过抑制生物膜形成来维持口腔平衡而开展的研究,同时不根除口腔细菌以防止其他生物体过度生长,比如。一种正在使用的方法是抑制AI-2中间体,这会导致细菌之间通过使用中间体类似物而缺乏群体感应交流。另一种取得成功的方法是利用D型糖,其中D-核糖和D-半乳糖已被证明可抑制LuxS系统,进而阻止群体感应过程,导致生物膜形成减少。