文石与磷酸二钙的反应性有助于去除牙石

IF 4.5 3区 医学 Q2 ENGINEERING, BIOMEDICAL
Amir Elhadad, Tayebeh Basiri, Ashwaq Al-Hashedi, Sophia Smith, Hanan Moussa, Sadiya Veettil, Eva Mª Pérez Soriano, Faleh Tamimi
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引用次数: 0

摘要

牙石是牙周疾病的主要诱因,主要由无机磷酸钙组成,如磷酸二钙、白脱石、磷酸八钙和羟基磷灰石。在生理pH值7.4下,磷酸二钙可逐渐与碳酸钙相互作用形成羟基磷灰石。因此,我们假设文石(Arg)可以与牙结石反应,促进其清除。为了评估精氨酸与牙石的反应性,我们检测了精氨酸和牙石在水环境中相互暴露后表面形态、组成和形貌的变化。通过用精氨酸浆液刷抛光后的牙结石、牙釉质和牙本质部分,并使用触笔轮廓仪测量磨损深度,来评估精氨酸对牙结石去除的影响。结果表明,精氨酸在水环境下可与牙石发生反应。这种反应增加了牙石表面的粗糙度,从而有利于通过刷牙去除牙石。文石是一种很有前途的用于牙石治疗牙膏的磨料。摘要本研究提出了一种基于文石的软化和去除牙结石的创新方法。这种新方法利用了文石和牙石中矿物质之间的化学反应性,为开发家庭护理产品打开了大门,这些产品可以帮助患者和临床医生更有效地控制和管理牙石沉积物。Anti-calculus行动。焦磷酸盐和羧酸盐通过防止斑块中的磷酸钙沉积来抑制结石的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reactivity of aragonite with dicalcium phosphate facilitates removal of dental calculus

Dental calculus, a main contributor of periodontal diseases, is mostly composed of inorganic calcium phosphate species such as dicalcium phosphate, whitlockite, octa calcium phosphate, and hydroxyapatite. Under physiological pH 7.4, dicalcium phosphates can gradually interact with calcium carbonate to form hydroxyapatite. Therefore, we hypothesized that aragonite (Arg) could react with dental calculus, facilitating its removal. To assess the reactivity of Arg with dental calculus, we examined the changes in surface morphology, composition, and topography of Arg and dental calculus upon exposure to each other in an aqueous environment. The impact of Arg on the removal of dental calculus was assessed by brushing polished sections of dental calculus, enamel, and dentin with slurries of Arg and measuring the depth of abrasion using a stylus profilometer. Our results demonstrate that Arg can react with dental calculus in aqueous environment. This reaction increases calculus surface roughness which in turn facilitate dental calculus removal by brushing. Aragonite could be a promising abrasive for toothpaste design for management of dental calculus.

Graphical Abstract

This study proposes an innovative approach for the softening and removal of dental calculus based on the use of aragonite. This novel approach, which takes advantage of the chemical reactivity between aragonite and the minerals found in dental calculus, opens the door for developing homecare products that could help patients and clinicians more effectively control and manage dental calculus deposits. Anti-calculus Action. Pyrophosphate and carboxylate inhibit calculus formation by preventing calcium phosphate deposition in plaque.

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来源期刊
Journal of Materials Science: Materials in Medicine
Journal of Materials Science: Materials in Medicine 工程技术-材料科学:生物材料
CiteScore
8.00
自引率
0.00%
发文量
73
审稿时长
3.5 months
期刊介绍: The Journal of Materials Science: Materials in Medicine publishes refereed papers providing significant progress in the application of biomaterials and tissue engineering constructs as medical or dental implants, prostheses and devices. Coverage spans a wide range of topics from basic science to clinical applications, around the theme of materials in medicine and dentistry. The central element is the development of synthetic and natural materials used in orthopaedic, maxillofacial, cardiovascular, neurological, ophthalmic and dental applications. Special biomedical topics include biomaterial synthesis and characterisation, biocompatibility studies, nanomedicine, tissue engineering constructs and cell substrates, regenerative medicine, computer modelling and other advanced experimental methodologies.
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