The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei-MOST) and Key Laboratory of Oral Biomedicine Engineering Ministry of Education, School and Hospital of Stomatology, Wuhan University, Wuhan, China.
mSphere. 2023 Apr 20;8(2):e0067922. doi: 10.1128/msphere.00679-22. Epub 2023 Feb 28.
Caries are chronic infections in which the cariogenic biofilm plays a critical role in disease occurrence and progression. Photodynamic therapy (PDT) is a new effective treatment that is receiving wide attention in the antibacterial field, but it can lead to the upregulation of heat shock proteins (HSPs), which enhances bacterial resistance. Herein, we incorporated HSP inhibitors with PDT to evaluate the effect on Streptococcus mutans, Streptococcus sobrinus, and Streptococcus sanguinis under planktonic conditions and on cariogenic biofilms. Additionally, a model of caries was established in 2-week-old rats, and anticaries properties were evaluated by Keyes' scoring. Importantly, the combination of HSP inhibitors and PDT had outstanding efficiency in inhibiting the growth of tested Streptococcus strains and the formation of either monomicrobial or multispecies biofilms . In addition, the quantity of colonized streptococci and the severity of carious lesions were also distinctly suppressed in vivo. Overall, the synergistic application of HSP inhibitors and PDT has promising potential in the prevention and treatment of dental caries. Effective therapies for the prevention and control of caries are urgently needed. Cariogenic streptococci play a key role in the occurrence and progression of caries. Recently, photodynamic therapy has been demonstrated to have good antibacterial efficiency, but it can cause a heat shock response in bacteria, which may weaken its practical effects. We indicate here an effective therapeutic strategy of combining heat shock protein inhibitors and photodynamic therapy, which shows excellent inhibition toward three dominant streptococci related to caries and suppression of carious progression in a rat model. Further development for clinical application is promising.
龋齿是一种慢性感染,其中致龋生物膜在疾病发生和进展中起着关键作用。光动力疗法(PDT)是一种新的有效治疗方法,在抗菌领域受到广泛关注,但它会导致热休克蛋白(HSPs)的上调,从而增强细菌的耐药性。在此,我们将 HSP 抑制剂与 PDT 结合,评估其对浮游状态下变形链球菌、远缘链球菌和血链球菌的影响,以及对致龋生物膜的影响。此外,我们在 2 周龄大鼠中建立了龋齿模型,并通过 Keyes 评分评估抗龋齿特性。重要的是,HSP 抑制剂和 PDT 的联合应用在抑制测试的链球菌菌株生长和单种或多种生物膜形成方面具有出色的效率。此外,体内定植链球菌的数量和龋齿病变的严重程度也明显受到抑制。总的来说,HSP 抑制剂和 PDT 的协同应用在预防和治疗龋齿方面具有很大的潜力。迫切需要有效的预防和控制龋齿的治疗方法。致龋链球菌在龋齿的发生和发展中起着关键作用。最近,光动力疗法已被证明具有良好的抗菌效率,但它会引起细菌的热休克反应,这可能会削弱其实际效果。我们在这里提出了一种有效的治疗策略,即结合热休克蛋白抑制剂和光动力疗法,该策略对三种与龋齿相关的主要链球菌具有出色的抑制作用,并在大鼠模型中抑制了龋齿的进展。进一步的临床应用开发具有广阔的前景。