Department of Maxillofacial Surgery and Diagnostic Sciences, Division of Oral Pathology, College of Dentistry, Jazan University, Jazan 45412, Saudi Arabia.
Department of Prosthetic Dental Sciences, College of Dentistry, Jazan University, Jazan 45412, Saudi Arabia.
Int J Mol Sci. 2021 Aug 25;22(17):9162. doi: 10.3390/ijms22179162.
We evaluated the role of allicin in periodontitis using an in silico and in vitro design. An in silico docking analysis was performed to assess the plausible interactions between allicin and . The cytokine profile of gingival crevicular fluid (GCF) samples obtained from periodontitis patients was estimated by cytometric bead array. CD3+ lymphocytes isolated from the peripheral blood were sorted and characterized using immunomagnetic techniques. Cultured and expanded lymphocytes were treated with the GCF samples to induce T-cell exhaustion. Optimum concentrations of allicin were added to exhausted lymphocytes to compare the expression of and gene expression at baseline and post-treatment. Allicin was found to bind to the molecule as revealed by the in-silico experiment, which is possibly an inhibitory interaction although not proven. GCF from periodontitis patients had significantly higher concentrations of TNF-α, CCL2, IL-6, IFN-γ, and CXCL8 than controls. GCF treatment of CD3+ lymphocytes from the periodontitis patients significantly increased expression of T-cell exhaustion markers and . Allicin administration with GCF treatment resulted in significant lowering of the expression of exhaustion markers. Allicin may exert an immunostimulatory role and reverse immune-destructive mechanisms such as T-cell exhaustion.
我们使用计算机模拟和体外设计来评估大蒜素在牙周炎中的作用。进行了计算机对接分析,以评估大蒜素与 之间可能存在的相互作用。通过细胞因子微珠阵列分析评估来自牙周炎患者龈沟液(GCF)样本的细胞因子谱。使用免疫磁珠技术从外周血中分离和表征 CD3+淋巴细胞。用 GCF 样本处理培养和扩增的淋巴细胞以诱导 T 细胞耗竭。向耗竭的淋巴细胞中添加最佳浓度的大蒜素,以比较基线和治疗后 和 基因表达的变化。计算机模拟实验表明,大蒜素与 分子结合,尽管尚未证明,但这可能是一种抑制性相互作用。与对照组相比,牙周炎患者的 GCF 中 TNF-α、CCL2、IL-6、IFN-γ 和 CXCL8 的浓度明显更高。来自牙周炎患者的 GCF 处理 CD3+淋巴细胞显著增加 T 细胞耗竭标志物 和 的表达。用 GCF 处理联合大蒜素治疗可显著降低耗竭标志物的表达。大蒜素可能发挥免疫刺激作用,并逆转 T 细胞耗竭等免疫破坏机制。