制备精油胶囊用明胶团组成的实验证实

Q3 Pharmacology, Toxicology and Pharmaceutics Drug Development and Registration Pub Date : 2021-12-24 DOI:10.33380/2305-2066-2021-10-4(1)-63-68
E. Molokhova, E. Ponomareva, Y. Sorokina, I. V. Alekseeva, T. E. Ryumina, V. Novikova, A. L. Golovanenko, E. Berezina, Yu. M. Ladutko
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Pharmaceutical active substances \"Lipovitol\" and \"Limoneol\" obtained in the Republic of Tajikistan were used as active substances introduced into the composition of soft gelatin capsules. Sunflower oil was used as the solvent. Gelatin samples were used to obtain gelatin masses: 1 – Foodchem (China), 2 – Brodnickie Zaklady Zelatyny Sp. zo.o. (Poland), 3 - Italgelatine s.p.a. (Italy), 4 – Ewald-Gelatine GmbH (Germany), 5 – Weishardt International (France); glycerol; sunflower oil. Gelatin mass for manufacturing soft capsules was prepared in a closed reactor. Capsules were prepared on an automatic encapsulation line RJWJ – 115 Soft Gelatin Encapsulator Machine (China). The structural and mechanical properties of soft gelatin masses were determined on a rotary viscometer RV type \"Reotest 2\" (Germany). The dynamics of the process of migration of essential oils and its components were studied by changing their amount in a capsule by chromato-mass spectrometry method on a chromatograph Varian CP 3800 with a quadrupole mass spectrometer 4000 MS as a detector (USA).Results and discussion. When studying the rheological properties of model compositions, it was found that for all samples of gelatin masses there is a decrease in values of effective viscosity when the shear rate increases, which characterizes the tested samples as a structured dispersion system. Additional studies have shown that the gelatin masses have thixotropic properties. Samples of gelatin masses 3–5 had narrower hysteresis loops, while sample 5 the narrowest, restoration of the structure took place quite quickly. Capsules obtained from gelatin mass 3 and 4 samples had a strong seam and were well cut out of the tape. From the mass of sample 5, high strength ribbons were obtained, a high temperature was required to seal the capsules, in some capsules the seam was not glued on one side, as a result, the capsules were rigid and brittle. As a result of the study, the rheological optimum of the gelatin mass suitable for preparing capsules by a rotary matrix method was determined, which has boundaries in the ranges of shear rates of 0.556–243 s-1 and viscosity ranges of 11.46-5028.76 Pa ⋅ s and shear stress of 2788–2808 Pa developing at these rates. When studying the migration of active substances through the capsule shell, it was found that over three years of storage of capsules in a closed polymer can, the content of essential oil in Lipovitol capsules decreased by 4.88 %, in Limoneol capsules by 5 %, which indicates partial migration of oil through the gelatin shell. The content remained within the permissible deviations (±10 %). 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引用次数: 0

摘要

介绍软明胶胶囊是一种很有前途的剂型,含有精油作为活性剂。彼尔姆国家制药学院、塔吉克斯坦共和国能源和工业部营养研究所工作人员的联合研究提出了通过旋转基质法封装的明胶块的组成。确定了在生产过程和储存过程中保持胶囊外壳强度和弹性所需的机械和物理技术参数。目标研究基于不同等级明胶的明胶块的流变特性,以及精油通过胶囊壳的迁移。材料和方法。在塔吉克斯坦共和国获得的药物活性物质“Lipovitol”和“Limoneol”被用作引入软明胶胶囊组合物的活性物质。使用向日葵油作为溶剂。明胶样品用于获得明胶块:1–Foodchem(中国),2–Brodnickie Zaklady Zelatyny Sp.zo.o.(波兰),3–Italgelatine s.p.a.(意大利),4–Ewald明胶有限公司(德国),5–Weishardt International(法国);甘油;向日葵油。在封闭反应器中制备用于制造软胶囊的明胶块。胶囊是在自动胶囊生产线RJWJ–115软明胶胶囊机(中国)上制备的。软明胶块的结构和机械性能在RV型“Reotest 2”(德国)旋转粘度计上测定。在Varian CP 3800色谱仪上,以四极质谱仪4000MS为检测器,采用色谱-质谱法,通过改变胶囊中精油及其成分的含量,研究了精油及其成分迁移过程的动力学。结果与讨论。在研究模型组合物的流变特性时,发现对于所有明胶质量的样品,当剪切速率增加时,有效粘度值都会降低,这将测试样品表征为结构化分散体系。另外的研究表明,明胶块具有触变性质。明胶块3-5的样品具有较窄的磁滞回线,而样品5是最窄的,结构的恢复发生得相当快。从明胶块3和4样品获得的胶囊具有牢固的接缝,并且从胶带上很好地切下。从样品5的质量中,获得了高强度的条带,需要高温来密封胶囊,在一些胶囊中,接缝没有粘在一侧,因此,胶囊是刚性和脆性的。作为研究的结果,确定了适用于通过旋转基质法制备胶囊的明胶块的流变学最佳值,其边界在0.556–243 s-1的剪切速率范围内,粘度范围为11.46–5028.76 Pa·s,在这些速率下产生的剪切应力为2788–2808 Pa。当研究活性物质通过胶囊壳的迁移时,发现胶囊在封闭的聚合物罐中储存三年后,Lipovitol胶囊中的精油含量下降了4.88%,Limoneol胶囊中精油含量下降5%,这表明油部分通过明胶壳迁移。含量保持在允许偏差(±10%)内。在整个保质期内,精油成分的含量也保持在可接受的偏差范围内。结论证明了用旋转基质法生产软胶囊的最佳外壳组成。研究发现,明胶的流变最佳粘度范围为11.46~5028.76 Pa·s,剪切应力为2788~2808 Pa。根据精油在外壳中迁移的研究结果,确定了软明胶胶囊在深色玻璃制成的玻璃罐中的保质期为15~25°C~3年。
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Experimental substantiation of the composition of gelatin mass for obtaining capsules with essential oils
Introduction. Soft gelatin capsules are a promising dosage form comprising essential oils as active agents. Joint research of the staff of the Perm State Pharmaceutical Academy, the Research Institute of Nutrition of the Ministry of Energy and Industry of the Republic of Tajikistan have proposed the composition of gelatin mass for encapsulation by the rotary matrix method. The mechanical and physical-technological parameters required to preserve the strength and elasticity of the capsule shell during the production process and storage are determined.Aim. Study of the rheological properties of gelatin masses based on gelatin of different grades, as well as the migration of essential oils through capsule shells.Materials and methods. Pharmaceutical active substances "Lipovitol" and "Limoneol" obtained in the Republic of Tajikistan were used as active substances introduced into the composition of soft gelatin capsules. Sunflower oil was used as the solvent. Gelatin samples were used to obtain gelatin masses: 1 – Foodchem (China), 2 – Brodnickie Zaklady Zelatyny Sp. zo.o. (Poland), 3 - Italgelatine s.p.a. (Italy), 4 – Ewald-Gelatine GmbH (Germany), 5 – Weishardt International (France); glycerol; sunflower oil. Gelatin mass for manufacturing soft capsules was prepared in a closed reactor. Capsules were prepared on an automatic encapsulation line RJWJ – 115 Soft Gelatin Encapsulator Machine (China). The structural and mechanical properties of soft gelatin masses were determined on a rotary viscometer RV type "Reotest 2" (Germany). The dynamics of the process of migration of essential oils and its components were studied by changing their amount in a capsule by chromato-mass spectrometry method on a chromatograph Varian CP 3800 with a quadrupole mass spectrometer 4000 MS as a detector (USA).Results and discussion. When studying the rheological properties of model compositions, it was found that for all samples of gelatin masses there is a decrease in values of effective viscosity when the shear rate increases, which characterizes the tested samples as a structured dispersion system. Additional studies have shown that the gelatin masses have thixotropic properties. Samples of gelatin masses 3–5 had narrower hysteresis loops, while sample 5 the narrowest, restoration of the structure took place quite quickly. Capsules obtained from gelatin mass 3 and 4 samples had a strong seam and were well cut out of the tape. From the mass of sample 5, high strength ribbons were obtained, a high temperature was required to seal the capsules, in some capsules the seam was not glued on one side, as a result, the capsules were rigid and brittle. As a result of the study, the rheological optimum of the gelatin mass suitable for preparing capsules by a rotary matrix method was determined, which has boundaries in the ranges of shear rates of 0.556–243 s-1 and viscosity ranges of 11.46-5028.76 Pa ⋅ s and shear stress of 2788–2808 Pa developing at these rates. When studying the migration of active substances through the capsule shell, it was found that over three years of storage of capsules in a closed polymer can, the content of essential oil in Lipovitol capsules decreased by 4.88 %, in Limoneol capsules by 5 %, which indicates partial migration of oil through the gelatin shell. The content remained within the permissible deviations (±10 %). The content of essential essential oil components also remained within acceptable deviations throughout the shelf life.Conclusion. The optimal composition of the shell for producing soft capsules by a rotary matrix method is justified. It was found that the rheological optimum of gelatin mass is characterized by viscosity ranges of 11.46-5028.76 Pa ⋅ s and shear stress of 2788–2808 Pa. According to the results of the study of the migration of essential oils through the shell, has been established the shelf life of soft gelatin capsules in glass jars made of dark glass and a temperature of 15 to 25 °C – 3 years.
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Drug Development and Registration
Drug Development and Registration Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
1.20
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0.00%
发文量
61
审稿时长
8 weeks
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