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土霉素多晶型物溶解度的再探讨。鉴于新结果的一个老问题。

Revisit of solubility of oxytetracycline polymorphs. An old story in the light of new results.

作者信息

Tempfli Dóra, Borbás Enikő, Pataki Hajnalka, Csicsák Dóra, Völgyi Gergely, Sinkó Bálint, Takács-Novák Krisztina

机构信息

Department of Pharmaceutical Chemistry, Semmelweis University, Hőgyes Endre u. 9., Budapest H-1092 Hungary.

Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, Műegyetem rakpart 3., Budapest, H-1111, Hungary.

出版信息

Eur J Pharm Sci. 2020 Jun 15;149:105328. doi: 10.1016/j.ejps.2020.105328. Epub 2020 Apr 5.

Abstract

In the literature the therapeutic nonequivalence of oxytetracycline hydrochloride (OTCH) capsules and tablets was attributed to the different aqueous solubility of polymorphs without their comprehensive study. Our aim was to reveal the effects of polymorphism on equilibrium solubility, dissolution kinetics and the supersaturation of two OTCH polymorphs (stable Form A and metastable Form B).The equilibrium solubility was measured in biorelevant pH range 4-7.4 by the standardized saturation shake-flask method. We also studied the solubility in SGF at pH 1.2 and the effect of the pH change from 1.2 to 5.0 on solubility. The dissolution was studied using real-time concentration monitoring with an ATR probe attached to a UV spectrophotometer (µDISS Profiler). A wide spectrum of solid phase analysis methods (SEM, IR, XRPD, Raman) was applied for characterization of polymorphs and to identify which form is present at the equilibrium solubility. Identical equilibrium solubility values were obtained at the same pHs in region 4.0-7.4 using the two polymorphs as starting materials. The XRPD analysis of the isolated solid phases proved that both polymorphic forms were converted to dihydrate form. In situ monitoring of the dissolution at pH 5.0 showed immediate dissolution, no difference in supersaturation, and short equilibration time for both forms indicating the immediate conversion. In SGF (pH 1.2) Form B dissolved better than Form A and showed significantly different dissolution kinetic and stability. A long-lasting, false chain-citation stating that Form B dissolves 28x better in water than Form A, was cut by the present study (i) revealing that the cited data was measured in IPA not in water, and (ii) proving that only the intrinsic solubility of OTC dihydrate can be measured in water due to conversion of polymorphs under the experimental conditions of solubility measurement. However this conversion is inhibited below pH 1.5, so the differences in solubility and dissolution kinetic found at pH 1.2 may contribute to the interpretation of the different serum-levels reported at solid formulations.

摘要

在文献中,盐酸土霉素(OTCH)胶囊和片剂的治疗不等效性归因于多晶型物不同的水溶解度,但未对其进行全面研究。我们的目的是揭示多晶型对两种OTCH多晶型物(稳定的A型和亚稳的B型)的平衡溶解度、溶解动力学和过饱和度的影响。通过标准化的饱和摇瓶法在生物相关pH范围4 - 7.4内测量平衡溶解度。我们还研究了在pH 1.2的模拟胃液(SGF)中的溶解度以及pH从1.2变为5.0对溶解度的影响。使用连接到紫外分光光度计的衰减全反射(ATR)探头进行实时浓度监测来研究溶解情况(µDISS Profiler)。应用了广泛的固相分析方法(扫描电子显微镜(SEM)、红外光谱(IR)、X射线粉末衍射(XRPD)、拉曼光谱)来表征多晶型物,并确定在平衡溶解度下存在哪种晶型。使用两种多晶型物作为起始原料,在4.0 - 7.4区域的相同pH值下获得了相同的平衡溶解度值。对分离出的固相进行的XRPD分析证明,两种多晶型形式均转化为二水合物形式。在pH 5.0下对溶解情况的原位监测表明,两种晶型均立即溶解,过饱和度无差异,平衡时间短,表明立即转化。在模拟胃液(pH 1.2)中,B型比A型溶解得更好,并且显示出明显不同的溶解动力学和稳定性。本研究纠正了一个长期存在的、错误的连锁引用,即声称B型在水中的溶解度比A型高28倍,(i)揭示所引用的数据是在异丙醇中测量的而非水中,(ii)证明由于在溶解度测量的实验条件下多晶型物的转化,在水中只能测量土霉素二水合物的固有溶解度。然而,这种转化在pH低于1.5时受到抑制,因此在pH 1.2时发现的溶解度和溶解动力学差异可能有助于解释固体剂型报道的不同血清水平。

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