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褪黑素:在口腔中的潜在功能。

Melatonin: potential functions in the oral cavity.

作者信息

Cutando Antonio, Gómez-Moreno Gerardo, Arana Carlos, Acuña-Castroviejo Darío, Reiter Russel J

机构信息

Department of Special Care in Dentistry, School of Dentistry, University of Granada, Granada, Spain.

出版信息

J Periodontol. 2007 Jun;78(6):1094-102. doi: 10.1902/jop.2007.060396.

Abstract

BACKGROUND

Melatonin is synthesized and secreted by the pineal gland and other organs. The pattern of melatonin secretion is controlled by an endogenous circadian timing system and conveys information about the light-dark cycle to the organism, thereby organizing its seasonal and circadian rhythms. Melatonin has powerful antioxidant effects, functions in an immunomodulatory role, may protect against certain cancers, delays some age-related processes, stimulates the synthesis of type I collagen fibers, and promotes bone formation.

METHODS

An extensive review was made (e.g., using PubMed, Science Direct, and Web of Knowledge) of the literature.

RESULTS

Melatonin, which is released into the saliva, may have important implications for dental disorders, especially in periodontal disease. Diseases of the periodontium are known to be aggravated by free radicals and by alterations in the immune response to microorganisms that are present in plaque. In response to periodontal inflammation, the blood and salivary levels of melatonin may increase.

CONCLUSION

Melatonin may play a role in protecting the oral cavity from tissue damage that is due to oxidative stress, and it may contribute to the regeneration of alveolar bone through the stimulation of type I collagen fiber production and the modulation of osteoblastic and osteoclastic activity.

摘要

背景

褪黑素由松果体及其他器官合成与分泌。褪黑素的分泌模式受内源性昼夜节律系统控制,并将光暗周期信息传递给机体,从而调节其季节性和昼夜节律。褪黑素具有强大的抗氧化作用,发挥免疫调节功能,可能预防某些癌症,延缓一些与年龄相关的进程,刺激I型胶原纤维的合成,并促进骨形成。

方法

对文献进行了广泛的综述(例如,使用PubMed、Science Direct和Web of Knowledge)。

结果

分泌到唾液中的褪黑素可能对牙齿疾病具有重要意义,尤其是在牙周疾病方面。已知牙周疾病会因自由基以及对菌斑中微生物免疫反应的改变而加重。作为对牙周炎症的反应,血液和唾液中的褪黑素水平可能会升高。

结论

褪黑素可能在保护口腔免受氧化应激导致的组织损伤方面发挥作用,并且可能通过刺激I型胶原纤维生成以及调节成骨细胞和破骨细胞活性,促进牙槽骨再生。

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