Does the pH of the grape seed extract interfere in the biomodification capacity of dentin collagen?

Brazilian dental journal Pub Date : 2024-12-16 eCollection Date: 2024-01-01 DOI:10.1590/0103-6440202406048
Marcelo Victor Sidou Lemos, Gabriela Araújo Lourenço, Samuel Chillavert Dias Pascoal, Talita Arrais Daniel Mendes, Sérgio Lima Santiago
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Abstract

The aim of this study was to verify the biomodifying action of 6.5% grape seed extract solutions, with different pH, when applied on dentin collagen. Dentin bars (1.7 mm x 6.0 mm x 0.5 mm) were demineralized for 5 hours in 10% phosphoric acid, and distributed into the following groups: acid solution (pH=4.42); neutral (pH=6.96); alkaline (pH=11.92) and distilled water (pH=6.75). Three-point flexural test (n=10) and mass variation (n=10) were assessed at different periods (baseline, after biomodification, 7 and 14 days of remineralizing solution storage). For qualitative analysis, similar dentin bars were prepared and analyzed using Fourier transform infrared spectroscopy (FT-IR) and Raman Spectroscopy (FT-Raman) before and after 1 hour of immersion in biomodifying solution with different pH. Data were subjected to Shapiro-Wilk normality tests, followed by two-way ANOVA for repeated measures and Tukey's post-test (p<0.05). Alkaline solution was effective in increasing the modulus of elasticity, showing a decrease after 7 days and subsequent stabilization after 14 days of storage. Acid solution group showed a greater increase in the modulus of elasticity immediately after biomodification, but it was not stable over storage. Regarding mass variation, only the acid solution showed an increase in mass after biomodification and 14 days of storage. In relation to FT-IR and FT-Raman, all solutions showed interaction with collagen at some level. Therefore, pH of the solution directly influences the action of the grape seed extract, with satisfactory results being found in both acidic and alkaline solutions.

葡萄籽提取物的pH值是否会干扰牙本质胶原蛋白的生物修饰能力?
本研究的目的是验证不同 pH 值的 6.5% 葡萄籽提取物溶液对牙本质胶原蛋白的生物调节作用。将牙本质棒(1.7 毫米 x 6.0 毫米 x 0.5 毫米)在 10%的磷酸中脱矿 5 小时,并分成以下几组:酸性溶液(pH=4.42);中性(pH=6.96);碱性(pH=11.92)和蒸馏水(pH=6.75)。在不同时期(基线、生物改良后、再矿化溶液储存 7 天和 14 天)对三点弯曲测试(10 个样本)和质量变化(10 个样本)进行评估。为了进行定性分析,制备了类似的牙本质棒,并使用傅立叶变换红外光谱(FT-IR)和拉曼光谱(FT-Raman)对其在不同 pH 值的生物改性溶液中浸泡 1 小时前后的情况进行了分析。数据进行 Shapiro-Wilk 正态性检验,然后进行重复测量的双向方差分析和 Tukey 后检验(p
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