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用木瓜蛋白酶进行脱蛋白处理可改善自酸蚀粘结剂与侵蚀牙本质的粘结性能。

Deproteinization with Papain enzyme improves the bonding performance of self-etch adhesives to eroded dentin.

作者信息

Sirirangsee Pharsiri, Tagami Junji, Sanon Kittisak, Botta Raju, Ngernsutivorakul Thitaphat, Kusumasari Citra, Hiraishi Noriko, Shimada Yasushi, Thongthai Pasiree

机构信息

Department of Operative Dentistry, Faculty of Dentistry, Chulalongkorn University, 34 Henri Dunant Road, Pathumwan, Bangkok, 10330, Thailand.

Department of Cariology and Operative Dentistry, Graduate School of Medical and Dental sciences, Institute of Science Tokyo, 1-5-45, Yushima, Bunkyo-ku, Yushima, Bunkyoku, Tokyo, 113-8549, Japan.

出版信息

Sci Rep. 2025 Mar 28;15(1):10825. doi: 10.1038/s41598-025-92975-w.

Abstract

To evaluate the effect of papain enzyme pretreatment on the bonding performance of self-etch adhesives (SEAs) to eroded dentin, assess its proteinizing effect, and examine the ultrastructure of the pretreated eroded dentin surface and resin-dentin interface. Artificially eroded dentin surfaces were created and pretreated with papain enzyme, while untreated eroded dentin surface served as a control. The treated dentin surfaces were bonded with Clearfil SE Bond 2 (SEB) and Clearfil Universal Bond Quick (UBQ). Microtensile bond strength (µTBS) was measured after 24-hour storage and after 10,000 thermocycles, between 5 °C and 55 °C. Additionally, the deproteinizing effect was evaluated by comparing changes in the amide-to-phosphate ratio using Raman microscopy. Dentin morphology and resin-dentin interface were investigated using scanning electron microscopy. Statistical analysis was performed using three-way ANOVA with Tukey's post hoc tests, and t-tests (p < 0.05). Pretreatment with papain enzyme slightly increased the initial µTBS of SEB, while significantly increasing the initial µTBS of UBQ (p < 0.05). Furthermore, papain enzyme could stabilize the µTBS of both adhesives after thermocycles (p > 0.05). It also significantly reduced the amide-to-phosphate ratio (p < 0.05) altered the surface morphology and improved the structure of resin-eroded dentin interfaces. Deproteinization with papain enzyme dissolved the organic components on the eroded dentin surface, leading to the improvement of resin infiltration, increased thickness of the hybrid layer, and improved the bond durability of SEAs to eroded dentin. The application of the papain enzyme as a pretreatment has the potential to enhance and maintain the bonding performance of self-etch adhesives to eroded dentin. This leads to improved adhesion and restoration quality on compromised eroded dentin surfaces.

摘要

为评估木瓜蛋白酶预处理对自酸蚀粘结剂(SEAs)与侵蚀牙本质粘结性能的影响,评估其蛋白化作用,并检查预处理后侵蚀牙本质表面及树脂 - 牙本质界面的超微结构。制备人工侵蚀的牙本质表面并用木瓜蛋白酶进行预处理,未处理的侵蚀牙本质表面作为对照。将处理后的牙本质表面分别与Clearfil SE Bond 2(SEB)和Clearfil Universal Bond Quick(UBQ)进行粘结。在5℃至55℃之间储存24小时和进行10000次热循环后测量微拉伸粘结强度(µTBS)。此外,使用拉曼显微镜通过比较酰胺与磷酸盐比率的变化来评估去蛋白化效果。使用扫描电子显微镜研究牙本质形态和树脂 - 牙本质界面。采用三因素方差分析及Tukey事后检验和t检验进行统计分析(p <0.05)。木瓜蛋白酶预处理使SEB的初始µTBS略有增加,而使UBQ的初始µTBS显著增加(p <0.05)。此外,木瓜蛋白酶可使两种粘结剂在热循环后的µTBS稳定(p> 0.05)。它还显著降低了酰胺与磷酸盐比率(p <0.05),改变了表面形态,改善了树脂 - 侵蚀牙本质界面的结构。木瓜蛋白酶去蛋白化溶解了侵蚀牙本质表面的有机成分,从而改善了树脂浸润,增加了混合层厚度,并提高了SEAs与侵蚀牙本质的粘结耐久性。将木瓜蛋白酶作为预处理应用有可能增强并维持自酸蚀粘结剂与侵蚀牙本质的粘结性能。这导致在受损的侵蚀牙本质表面上的粘结和修复质量得到改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f669/11953454/4c5263e8723b/41598_2025_92975_Fig1_HTML.jpg

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