Potential Uses of Arginine in Dentistry.

Q1 Medicine
M M Nascimento
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引用次数: 0

Abstract

Carious lesions develop in tooth surfaces where there is an imbalance of the processes of acid and alkali production by supragingival biofilms. Since low pH is the main driving factor in the development of carious lesions, most efforts to identify an effective anticaries therapy have focused on targeting the acid-producing bacteria and their mechanisms of acid production. An expanding area of oral microbiology has now been devoted to explore microbial metabolic activities that help to neutralize biofilm pH and thus inhibit the caries process. Arginine metabolism via the arginine deiminase pathway (ADS) produces alkali in the form of ammonia that counteracts the effects of biofilm acidification from bacterial glycolysis. ADS also functions as an adaptive strategy used by certain bacteria to thrive in oral biofilms. Substantial evidence accumulated from laboratory and clinical observations supports the hypotheses that measurements of arginine metabolism via ADS may serve as an important caries risk assessment criterion and that providing arginine regularly to supragingival biofilms can be an effective therapy for caries intervention. This article reviews the potential of arginine-based therapies such as the use of arginine as prebiotic, ADS+ strains as probiotics, and oral care formulations containing arginine for prevention and management of dental caries.

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精氨酸在牙科中的潜在用途。
龋损发生在龈上生物膜产酸和产碱过程失衡的牙齿表面。由于低 pH 值是导致龋损发生的主要驱动因素,因此确定有效抗龋疗法的大多数努力都集中在针对产酸细菌及其产酸机制上。现在,口腔微生物学的一个不断扩大的领域已致力于探索微生物的代谢活动,这些活动有助于中和生物膜的 pH 值,从而抑制龋齿的形成。精氨酸代谢通过精氨酸脱亚胺酶途径(ADS)以氨的形式产生碱,从而抵消细菌糖酵解产生的生物膜酸化效应。ADS 也是某些细菌在口腔生物膜中繁衍生息的一种适应策略。实验室和临床观察积累的大量证据支持这样的假设:通过 ADS 测量精氨酸代谢可作为重要的龋病风险评估标准,定期向龈上生物膜提供精氨酸可作为龋病干预的有效疗法。本文综述了以精氨酸为基础的疗法的潜力,如将精氨酸作为益生菌、将 ADS+ 菌株作为益生菌以及将含有精氨酸的口腔护理配方用于龋齿的预防和管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Dental Research
Advances in Dental Research Medicine-Medicine (all)
CiteScore
8.20
自引率
0.00%
发文量
0
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