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首要原则是不伤害 - 次氯酸钠在牙髓病学中应用于牙本质的影响。

Primum non nocere - The effects of sodium hypochlorite on dentin as used in endodontics.

机构信息

Department of Operative Dentistry and Endodontics, Guanghua School of Stomatology & Guangdong Provincial Key Laboratory of Stomatology, Sun Yat-sen University, Guangzhou, PR China.

Department of Prosthodontics, Guanghua School and Hospital of Stomatology & Guangdong Provincial Key Laboratory of Stomatology, Sun Yat-sen University, Guangzhou, Guangdong, PR China.

出版信息

Acta Biomater. 2017 Oct 1;61:144-156. doi: 10.1016/j.actbio.2017.08.008. Epub 2017 Aug 8.

Abstract

UNLABELLED

The medical literature is replete with the maxim 'primum non nocere', cautioning health care providers to avoid doing any harm to human subjects in their delivery of medical care. Sodium hypochlorite (NaOCl) is a well-established irrigant for root canal treatment because of its antimicrobial and organic tissue remnant dissolution capability. However, little is known about the deleterious effect of this strong oxidizing agent on the integrity of human mineralized dentin. Iatrogenically-induced loss of dentin integrity may precipitate post-treatment root fracture and has potential medico-legal complications. In the present work, transmission electron microscopy provided evidence for collagen destruction in the surface/subsurface of dentin treated with high NaOCl concentrations and long contact times. Size exclusion chromatography showed that the hypochlorite anion, because of its small size, penetrated the water compartments of apatite-encapsulated collagen fibrils, degraded the collagen molecules and produced a 25-35µm thick, non-uniform "ghost mineral layer" with enlarged, coalesced dentinal tubules and their lateral branches. Fourier transform-infrared spectroscopy identified increases in apatite/collagen ratio in NaOCl-treated dentin. The apatite-rich, collagen-sparse dentin matrix that remained after NaOCl treatment is more brittle, as shown by the reductions in flexural strength. Understanding the deleterious effects of NaOCl on mineralized dentin enables one to balance the risks and benefits in using high NaOCl concentrations for lengthy periods in root canal debridement. Delineating the mechanism responsible for such a phenomenon enables high molecular weight, polymeric antimicrobial and tissue dissolution irrigants to be designed that abides by the maxim of 'primum non nocere' in contemporary medical practices.

STATEMENT OF SIGNIFICANCE

The antimicrobial and tissue-dissolution capacities of NaOCl render it a well-accepted agent for root canal debridement. These highly desirable properties, however, appear to be intertwined with the untoward effect of collagen matrix degradation within mineralized dentin. Because of its small size, the hypochlorite anion is capable of infiltrating mineralized collagen and destroying the collagen fibrils, producing a mineral-rich, collagen sparse ghost mineral matrix with reduced flexural strength. Findings from the present work challenge the biosafety of NaOCl when it is used in high concentrations and for lengthy time periods during root canal treatment, and laid the background work for future biomaterials design in debridement of the canal space.

摘要

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医学文献中充斥着“首先不要造成伤害”这一准则,告诫医疗保健提供者在提供医疗服务时避免对人体造成任何伤害。次氯酸钠(NaOCl)因其具有抗菌和有机组织残留溶解能力,是一种成熟的根管冲洗剂。然而,人们对这种强氧化剂对人矿化牙本质完整性的有害影响知之甚少。医源性牙本质完整性丧失可能会导致治疗后根折,并可能引发潜在的医疗法律并发症。在本工作中,透射电子显微镜提供的证据表明,高浓度 NaOCl 和长时间接触会导致牙本质表面/次表面的胶原破坏。尺寸排阻色谱表明,次氯酸根阴离子由于其体积小,渗透到磷灰石包裹的胶原纤维的水隔室中,降解胶原分子,并产生一个 25-35μm 厚的非均匀“鬼矿层”,扩大了合并的牙本质小管及其侧支。傅里叶变换-红外光谱法确定了 NaOCl 处理牙本质中磷灰石/胶原比值的增加。NaOCl 处理后剩余的富含磷灰石、胶原稀疏的牙本质基质更脆,表现为弯曲强度降低。了解 NaOCl 对矿化牙本质的有害影响,可以在根管清创中平衡使用高浓度 NaOCl 进行长时间治疗的风险和益处。阐明导致这种现象的机制,可以设计出符合当代医学实践中“首先不要造成伤害”准则的高分子量、聚合抗菌和组织溶解冲洗剂。

意义声明

NaOCl 的抗菌和组织溶解能力使其成为一种公认的根管清创剂。然而,这些非常理想的特性似乎与矿化牙本质内胶原基质降解的不良影响交织在一起。由于次氯酸根阴离子体积小,能够渗透到矿化的胶原中并破坏胶原纤维,产生富含矿物质、胶原稀疏的鬼矿基质,弯曲强度降低。本工作的结果挑战了 NaOCl 在根管治疗中高浓度和长时间使用时的生物安全性,并为未来根管空间清创的生物材料设计奠定了基础。

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