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From an assessment of multiple chelators, clodronate has potential for use in continuous chelation

机译:从评估多个螯合剂,克莱膦酸盐具有连续螯合剂的可能性

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Abstract Aim To identify chelators which when mixed with sodium hypochlorite (Na OC l) are stable, exhibiting minimal loss of free available chlorine ( FAC ) over 80?min and to further investigate potential mixtures by assessing FAC over 18?h and the capacity to remove smear layer. Methodology 0.25?mol?L ?1 EDTA (10%), 0.25?mol?L ?1 EGTA (egtazic acid), 0.25?mol?L ?1 CDTA (cyclohexanediaminetetraacetic acid), 0.25?mol?L ?1 DTPA (pentetic acid), 0.5?mol?L ?1 ATMP (aminotri(methylene phosphonic acid)) and 1?mol?L ?1 HPAA , (hydroxyphosphonoacetic acid), all at alkaline pH , were mixed equally with 5% Na OC l. 0.5?mol?L ?1 alkaline clodronate and 0.5?mol?L ?1 Na 4 etidronate (15%) were mixed equally with 10% Na OC l. For all mixtures, the pH and temperature were measured over 80?min and additionally for the clodronate mixture over 18?h. Iodometric titration was used to measure the FAC of all mixtures except for HPAA . The following were compared with respect to their ability to remove smear layer: 1?mol?L ?1 clodronate?+?10% Na OC l, 0.5?mol?L ?1 clodronate?+?10% Na OC l, 1?mol?L ?1 etidronate?+?10% Na OC l, 0.5?mol?L ?1 clodronate?+?10% Na OC l and the sequences 5% Na OC l/17% EDTA /5% Na OC l and 5% Na OC l/17% EDTA . The area fraction occupied by open dentinal tubules as a percentage of the total area (% AF ) from scanning electron microscopy micrographs was calculated using Image J. The results were statistically analysed with alpha set at 0.05. Results Compared to its control, the mixture 0.5?mol?L ?1 clodronate?+?10% Na OC l lost no FAC over 18?h ( P ??0.05). The FAC of 0.25?mol?L ?1 CDTA mixed with 5% Na OC l fell to 96%, 92%, 75% and 4.9% at 20, 40, 60 and 80?min, respectively. Temperature rises were observed in all cases except in the etidronate and clodronate mixtures. Only in the clodronate mixture did the pH remain above pH 12 for the whole experiment. Although smear layer was removed, the % AF in 1?mol?L ?1 clodronate?+?10% Na OC l, 0.5?mol?L ?1 clodronate?+?10% Na OC l, 1?mol?L ?1 etidronate?+?10% Na OC l was less than for 0.5?mol?L ?1 etidronate?+?10% Na OC l and 5% Na OC l/17% EDTA /5% Na OC l and 5% Na OC l/17% EDTA. Conclusion Alkaline 0.5?mol?L ?1 clodronate mixed equally with 10% Na OC l has potential for use in continuous chelation, based on this assessment of stability and smear layer removal. Further research is needed to establish its efficacy and safety.
机译:摘要旨在识别与次氯酸钠(Na OC L)混合时稳定的螯合剂,表现出超过80Ω·min的最小损失(FAC),并进一步通过评估超过18°H和容量来研究潜在混合物去除涂片层。方法0.25?摩尔·Δ1?1 EDTA(10%),0.25?摩尔·λ1,0.25Ω,0.25·摩尔·λ1,0.25Ω·摩尔·Δ1,0.25Ω摩尔Δ1?1 DTPA(液体酸),0.5?摩尔·λ1?1 atmp(氨管(亚氨基膦酸))和1?摩尔·λ1?1 HPAA,(羟基膦酰基乙酸),所有在碱性pH下都与5%Na OC L相同。 0.5?摩尔·摩尔α1?1碱霉氧膦酸盐和0.5·摩尔·摩尔·λ1→1 Na 4的异烯酸(15%)与10%Na OC L相同。对于所有混合物,pH和温度超过80Ω分钟,另外用于超过18℃的克莱膦酸克膦混合物。碘量滴定用于测量除HPAA之外的所有混合物的FAC。比较以下它们的去除涂片层的能力:1?摩尔Δ1?1克莱克兰酸克兰酸盐?+?10%Na oc L,0.5?摩尔·λ1克莱膦酸盐?+?10%Na OC L,1? mol?l?1 etidronate?+?10%na oc l,0.5?mol?l?1克莱克兰酸盐?+ 10%na oc l和序列5%na oc l / 17%EDTA / 5%Na OC L和5%Na OC L / 17%EDTA。使用图像J计算由扫描电子显微镜显微镜显微照片的总面积(%AF)的百分比所占据的面部级分。用0.05的α谱分析结果。结果与其控制相比,混合物0.5?摩尔·λ1?1克莱克兰酸盐?+?10%Na OC L没有超过18°(P +& 05)。 0.25?摩尔·摩尔·λ1?1 CDTA与5%Na OC L混合,分别为20,40,60和80℃的96%,92%,75%和4.9%。除了Etidronate和Clodronate混合物的所有情况下,在所有情况下都观察到温度升高。只有在克莱膦酸盐混合物中,全实验仅在pH 12中保持高于pH 12。虽然除去涂片层,但是1〜摩尔·1克洛克膦酸盐的%AF 1克莱替膦酸盐α+?10%Na oc L,0.5Ω·Δ1?1克莱克兰酸盐?+?10%Na OC L,1?摩尔·λ1? 1个ron ronate?+?10%Na OC L小于0.5?摩尔·Δ1?1个异烯酸盐?+?10%Na OC L和5%Na OC L / 17%EDTA / 5%Na OC L和5%NA OC L / 17%EDTA。结论碱性0.5?摩尔·摩尔·摩尔·λ1?1克莱克伦膦酸盐同等地用10%Na OC L混合,具有连续螯合的可能性,基于这种稳定性和涂片层去除的评估。需要进一步研究来建立其疗效和安全性。

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