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首页> 外文期刊>Odontology >Sustained release of calcium hydroxide from poly(DL-lactide-co-glycolide) acid microspheres for apexification
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Sustained release of calcium hydroxide from poly(DL-lactide-co-glycolide) acid microspheres for apexification

机译:从聚(DL-丙交酯-共-乙交酯)酸微球中持续释放氢氧化钙以进行尖锐化

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Calcium hydroxide (CH) loaded poly(dl-lactide-co-glycolide) acid (PLGA) microspheres (MS) might be used for apexification requiring a sustained release of Ca2+. The aim of this study was to formulate and characterize CH-PLGA-MS. The CH-loaded MS were prepared by either oil-in-water (O/W) or water-in-oil/in-water (W/O/W) emulsion solvent evaporation technique. MS produced by the O/W technique exhibited a larger diameter (18.63 +/- A 7.23 mu m) than the MS produced by the W/O/W technique (15.25 +/- A 7.37 mu m) (Mann-Whitney U test P < 0.001). The CH encapsulation efficiency (E (e)) and Ca2+ release were calculated from data obtained by absorption techniques. Ca2+ release profile was evaluated for 30 days. To know the E (e), the CH-loaded MS were dissolved in 1 M NaOH to release all its content and a Ca2+ colorimetric marker was added to this solution. The reagent marked the Ca2+ in blue color, which was then measured by a UV-Vis system (650 nm). The percentage of E (e) was calculated on the basis of the theoretical loading. The E (e) of the O/W-produced MS was higher (24 %) than the corresponding percentage of the W/O/W-produced MS (11 %). O/W- and W/O/W-produced MS released slower and lower Ca2+ than a control CH paste with polyethylene glycol 400 (Kruskal-Wallis test). O/W-produced MS released higher Ca2+ than W/O/W-produced MS (statistically significant differences; P < 0.05). In conclusion, the CH-PLGA-MS were successfully formulated; the technique of formulation influenced the size, encapsulation efficiency and release profile. The MS were better sustained release system than the CH paste.
机译:载有氢氧化钙(CH)的聚(dl-丙交酯-乙交酯)酸(PLGA)微球(MS)可用于需要持续释放Ca2 +的尖锐化。这项研究的目的是制定和表征CH-PLGA-MS。通过水包油(O / W)或油包水/水包(W / O / W)乳液溶剂蒸发技术制备CH负载的MS。通过O / W技术生产的MS的直径(18.63 +/- A 7.23μm)比通过W / O / W技术生产的MS(15.25 +/- A 7.37μm)更大(Mann-Whitney U测试P <0.001)。从吸收技术获得的数据计算CH的包封效率(E(e))和Ca2 +释放。评估了Ca2 +释放曲线30天。要知道E(e),将CH负载的MS溶解在1 M NaOH中以释放其所有内容,然后向该溶液中添加Ca2 +比色标记。试剂将Ca2 +标记为蓝色,然后通过UV-Vis系统(650 nm)对其进行测量。 E(e)的百分比是根据理论载荷计算得出的。 O / W生产的MS的E(e)比W / O / W生产的MS的相应百分比(11%)高(24%)。 O / W和W / O / W产生的MS释放速度比带有聚乙二醇400的对照CH糊剂释放得更慢且Ca2 +更低(Kruskal-Wallis测试)。 O / W产生的MS释放的Ca2 +高于W / O / W产生的MS(统计学差异; P <0.05)。综上所述,CH-PLGA-MS的研制成功。配方技术影响尺寸,包封效率和释放特性。 MS比CH糊剂具有更好的缓释系统。

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