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首页> 外文期刊>RSC Advances >Quantum curcumin mediated inhibition of gingipains and mixed-biofilm of Porphyromonas gingivalis causing chronic periodontitis
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Quantum curcumin mediated inhibition of gingipains and mixed-biofilm of Porphyromonas gingivalis causing chronic periodontitis

机译:量子姜黄素介导的牙龈卟啉菌和牙龈卟啉单胞菌的混合生物膜对慢性牙周炎的抑制作用

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Periodontitis is a biofilm-associated irreversible inflammation of the periodontal tissues. Reports suggest the role of Porphyromonas gingivalis specific Arg- and Lys-specific proteinases in the orchestration of the initiation and progression of periodontal diseases. These proteinases are precisely termed as gingipains R and K. Curcumin is an active polyphenol that is extracted from the rhizomes of Curcuma longa . However, the molecule curcumin owing to its high hydropathy index and poor stability has not been able to justify its role as frontline drug modality in the treatment of infectious and non-infectious diseases as claimed by several investigators. In the present study, at first, we synthesized and characterized quantum curcumin, and investigated its biocompatibility. This was subsequently followed by the evaluation of the role of quantum curcumin as an antimicrobial, anti-gingipains and antibiofilm agent against Porphyromonas gingivalis and select reference strains. We have successfully synthesized the quantum curcumin utilizing a top-down approach with the average size of 3.5?nm. Apart from its potent antimicrobial as well as antibiofilm properties, it also significantly inhibited the gingipains in a dose-dependent manner. At the minimal concentration of 17.826 μM, inhibition up to 98.7% and 89.4% was noted for gingipain R and K respectively. The data was also supported by the in silico docking experiments which revealed high exothermic enthalpies (?7.01 and ?7.02 cal mol ~(?1) ). Besides, the inhibition constant was found to be 7.24 μM and 7.1 μM against gingipains R and K respectively. The results suggest that quantum curcumin is a potential drug candidate which needs further clinical validation.
机译:牙周炎是与生物膜相关的牙周组织不可逆的炎症。报告表明牙龈卟啉单胞菌特异性Arg-和Lys特异性蛋白酶在牙周疾病的发生和发展过程中的作用。这些蛋白酶精确地称为gingipains R和K。姜黄素是一种活性多酚,从姜黄的根茎中提取。然而,分子姜黄素由于其亲水性指数高和稳定性差而不能证明其作为治疗传染性和非传染性疾病的一线药物形式的作用,正如一些研究者所声称的那样。在本研究中,首先,我们合成并表征了量子姜黄素,并研究了其生物相容性。随后随后评估了量子姜黄素作为针对牙龈卟啉单胞菌和选择参考菌株的抗菌剂,抗齿龈蛋白酶和抗生物膜剂的作用。我们已经使用自顶向下的方法成功地合成了平均尺寸为3.5nm的量子姜黄素。除了其有效的抗微生物和生物膜特性外,它还以剂量依赖的方式显着抑制了姜黄素。在最低浓度17.826μM下,对姜黄素R和K的抑制作用分别达到98.7%和89.4%。计算机对接实验也显示了较高的放热焓(?7.01和?7.02 cal mol〜(?1)),也支持了该数据。此外,对姜黄素R和K的抑制常数分别为7.24μM和7.1μM。结果表明量子姜黄素是潜在的候选药物,需要进一步的临床验证。

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