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LAPONITE?-pilocarpine hybrid material: experimental and theoretical evaluation of pilocarpine conformation

机译:LAPONITE?-毛果芸香碱杂化材料:毛果芸香碱构象的实验和理论评价

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The intercalation of protonated pilocarpine (Pilo+) into model LAPONITE? (Lap) is here investigated in order to address its conformational properties upon entrapment. Pilo is an alkaloid available as a drug for the treatment of glaucoma and xerostomia, and clays are potential candidates for drug delivery. Therefore, the physico-chemical characterization of the Pilo-Lap material is here studied through chemical elementary analysis, X-ray diffraction, mass spectrometry coupled to thermogravimetric analysis (TGA-MS), solid state 13C nuclear magnetic resonance (NMR) and Raman spectroscopy. The experimental spectroscopic data are confronted with performed calculations which confirmed the presence of pilocarpine, while the XRD data also show the immobilization of Pilo+ into the clay. TGA-MS analyses indicated a significant modification in the thermal decomposition profile of the organic species after intercalation. A DTG peak associated with the release of carbon dioxide and water molecules is observed at 315 °C for PiloHCl and at 378 °C for Pilo-Lap. Supported by the theoretical calculations, the experimental XRD, vibrational and NMR spectra suggest that pilocarpine may undergo geometrical changes upon the intercalation process. A characteristic fingerprint was observed as a vibrational change in the band at 768 cm?1 for PiloHCl (assigned mainly to the lactone ring breathing vibrational mode) and a band at 782 cm?1 for Pilo-Lap (assigned mainly to the imidazole ring bending in the plane) in the Raman spectra.
机译:将质子化毛果芸香碱(Pilo + )插入模型LAPONITE中?为了研究其在包裹时的构象特性,本文研究了(搭接)。 Pilo是一种生物碱,可作为治疗青光眼和口干症的药物,粘土是药物输送的潜在候选人。因此,本文通过化学元素分析,X射线衍射,质谱联用热重分析(TGA-MS),固态 13 C核磁共振(NMR)和拉曼光谱。实验光谱数据与进行的计算相面对,这些计算证实了毛果芸香碱的存在,而XRD数据也显示了将毛果 + 固定在粘土中。 TGA-MS分析表明,插层后有机物的热分解曲线发生了显着变化。对于PiloHCl,在315°C下观察到与二氧化碳和水分子释放相关的DTG峰;对于Pilo-Lap,在378°C下观察到了DTG峰。在理论计算的支持下,实验X射线衍射,振动和NMR光谱表明,毛果芸香碱在插入过程中可能发生几何变化。观察到特征指纹是PiloHCl(主要分配给内酯环呼吸振动模式)在768 cm ?1 的谱带和782 cm的谱带的振动变化。拉曼光谱中Pilo-Lap的 ?1 (主要归因于平面上的咪唑环弯曲)。

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