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A new method for chlorhexidine (CHX) determination: CHX release after application of differently concentrated CHX-containing preparations on artificial fissures

机译:一种测定氯己定(CHX)的新方法:将不同浓度的含CHX的制剂应用于人工裂缝后释放CHX

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摘要

Aims of the study were (1) to establish a method for quantification of chlorhexidine (CHX) in small volumes and (2) to determine CHX release from differently concentrated CHX-containing preparations, varnishes, and a CHX gel applied on artificial fissures. CHX determination was conducted in a microplate reader using polystyrene wells. The reduced intensity of fluorescence of the microplates was used for CHX quantification. For verification of the technique, intra- and inter-assay coefficients of variation were calculated for graded series of CHX concentrations, and the lower limit of quantification (LLOQ) was determined. Additionally, artificial fissures were prepared in 50 bovine enamel samples, divided into five groups (A–E, n = 10) and stored in distilled water (7 days); A: CHX-varnish EC40; B: CHX-varnish Cervitec; C: CHX-gel Chlorhexamed; D: negative control, no CHX application; and E: CXH-diacetate standard (E1, n = 5) or CHX-digluconate (E2, n = 5) in the solution. The specimens were brushed daily, and CHX in the solution was measured. The method showed intra- and inter-assay coefficients of variation of <10 and <20%, respectively; LLOQ was 0.91–1.22 nmol/well. The cumulative CHX release (mean ± SD) during the 7 days was: EC40 (217.2 ± 41.8 nmol), CHX-gel (31.3 ± 8.5 nmol), Cervitec (18.6 ± 1.7 nmol). Groups A–C revealed a significantly higher CHX release than group D and a continuous CHX-release with the highest increase from day 0 to 7 for EC40 and the lowest for Chlorhexamed. The new method is a reliable tool to quantify CHX in small volumes. Both tested varnishes demonstrate prolonged and higher CHX release from artificial fissures than the CHX-gel tested.
机译:该研究的目的是(1)建立定量分析小体积洗必泰(CHX)的方法,以及(2)确定从不同浓度的含CHX的制剂,清漆和应用于人工裂缝的CHX凝胶释放的CHX。 CHX测定是在微孔板读数器中使用聚苯乙烯孔进行的。微板的荧光强度降低用于CHX定量。为了验证该技术,计算了CHX浓度分级系列的测定内和测定间变异系数,并确定了定量下限(LLOQ)。此外,在50个牛牙釉质样品中制备了人工裂缝,分为5组(AE,n = 10),并保存在蒸馏水中(7天)。 A:CHX清漆EC40; B:CHX清漆Cervitec; C:CHX-凝胶氯六甲基; D:阴性对照,无CHX应用; E:溶液中的CXH-二乙酸酯标准品(E1,n = 5)或CHX-二葡萄糖酸酯(E2,n = 5)。每天刷样品,并测量溶液中的CHX。该方法的批内和批间变异系数分别<10%和<20%。 LLOQ为0.91-1.22 nmol /孔。在7天内累积的CHX释放量(平均值±SD)为:EC40(217.2±41.8 nmol),CHX凝胶(31.3±8.5)nmol,Cervitec(18.6±1.7 nmol)。 A–C组显示CHX释放量明显高于D组,CHX持续释放量,EC40从第0天到第7天的增幅最高,而氯己定的则最低。新方法是定量分析小体积CHX的可靠工具。两种测试清漆均显示出比人工测试的CHX凝胶更长久且更高的CHX从人造裂缝中的释放。

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