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The solute-rich mesoscopic precursors of crystal nuclei of olanzapine solid forms

机译:奥氮平固体形式晶核的富溶质介观前体

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摘要

Olanzapine (OZPN) is a BCS class II drug used to treat schizophrenia (bipolar disorder). OZPN exhibits rich solid-state diversity. To date, 60 distinct forms have been identified, including 3 polymorphs (I, II, III), 52 crystalline solvates, 3 dihydrates (DB, DD, DE), a disordered higher hydrate, plus an amorphous form. Atomic Force Microscopy (AFM) results suggest that the nucleation of OZPN DD on the surface of OZPN I in water may follow a non-classical mechanisms that includes formation of solute-rich mesoscopic clusters [1]. Since the solubility of OZPN I in water is very low, the kinetics of transformation are difficult to monitor. To increase the solubility of OZPN I, we added different ratios of a co-solvent, ethanol. AFM observations revealed that clusters similar to those seen in purely aqueous environments are present on the surface of OZPN:EtOH:H2O crystals in contact with both supersaturated and undersaturated EtOH/H2O solutions. To establish the mechanism of cluster formation, we monitored the dependence of the cluster size and volume fraction on time, OZPN concentration, and co-solvent concentration using Brownian Microscopy (BM). The characteristics of the cluster population were correlated with the standard enthalpy, entropy and free energy of crystallization obtained from temperature dependence of the solubility of OZPN:EtOH:H2O crystals. We verified, using small angle x-ray scattering, that the crystal form was preserved at all solvent compositions. We observed that the cluster radius was constant, at R ≈ 37 nm, in all solvent compositions tested and at all times. The volume of the cluster population φ mapped the non-monotonic dependence of the crystallization enthalpy on the EtOH content, indicating that φ is determined by the thermodynamics of the solute-solvent interactions. The decoupled behaviour of R suggests that, in contrast to φ, the cluster size is kinetically determined. These conclusions comply with the prediction of a model of mesoscopic solvent rich clusters, based on formation of transient solute oligomers in the solutions [3]. These are the first observations of solute-rich clusters in solutions of pharmaceutically active compounds and of their role in the nucleation of crystals and the transformations between crystal forms. The suggested cluster formation mechanism may point to means to control these behaviours that are crucial for the properties of pharmaceutical preparations.  References:[1] M. Warzecha, R. Guo, R. M. Bhardwaj, S. M. Reutzel-Edens, S. L. Price, D. Lamprou and A. J. Florence, In preparation 2017.[2] Gebauer, D., Kellermeier, M., Gale, J. D., Bergström, L. & Cölfen, H. Pre-nucleation clusters as solute precursors in crystallisation. Chem. Soc. Rev. 2014, 43, 2348 [3] Vekilov, P. G. The two-step mechanism of nucleation of crystals in solution. Nanoscale, 2010, 2, 2346.
机译:奥氮平(OZPN)是BCS II类药物,用于治疗精神分裂症(双相情感障碍)。 OZPN具有丰富的固态多样性。迄今为止,已鉴定出60种不同形式,包括3种多晶型物(I,II,III),52种结晶溶剂化物,3种二水合物(DB,DD,DE),无序的高级水合物以及无定形形式。原子力显微镜(AFM)结果表明,水中OZPN I表面的OZPN DD成核可能遵循非经典机理,包括形成富溶质的介观簇[1]。由于OZPN I在水中的溶解度非常低,因此很难监测转化动力学。为了增加OZPN I的溶解度,我们添加了不同比例的助溶剂乙醇。 AFM观察表明,与过饱和和不饱和EtOH / H2O溶液接触的OZPN:EtOH:H2O晶体表面都存在类似于在纯水环境中观察到的簇。为了建立团簇形成的机制,我们使用布朗显微镜(BM)监测了团簇大小和体积分数对时间,OZPN浓度和助溶剂浓度的依赖性。 OZPN:EtOH:H2O晶体的溶解度与温度相关,因此簇群的特征与标准焓,熵和结晶自由能相关。我们使用小角度X射线散射验证了在所有溶剂组成下均保留了晶型。我们观察到,在所有测试的溶剂组合物中以及任何时候,簇半径在R≈37 nm处都是恒定的。簇群的体积φ映射了结晶焓对EtOH含量的非单调依赖性,表明φ由溶质-溶剂相互作用的热力学确定。 R的解耦行为表明,与φ相反,簇的大小是动力学确定的。这些结论符合在溶液中形成瞬时溶质低聚物的基础上,介观富溶剂簇的模型的预测[3]。这些是药物活性化合物溶液中富含溶质的簇的首次观察,以及它们在晶体成核和晶体形式之间转化中的作用。建议的簇形成机制可能指向控制这些行为的手段,这些行为对于药物制剂的特性至关重要。参考文献:[1] M. Warzecha,R。Guo,R.M。Bhardwaj,S。M. Reutzel-Edens,S.L。Price,D。Lamprou和A.J. Florence,准备于2017年。[2] Gebauer,D.,Kellermeier,M.,Gale,J.D.,Bergström,L.&Cölfen,H.预成核簇是结晶中的溶质前体。化学Soc。 Rev. 2014,43,2348 [3] Vekilov,P. G.溶液中晶体成核的两步机制。纳米尺度,2010,2,2346。

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