Academic Journal
Development of Suppositories Silicone Molds Using Additive Technologies ; Разработка силиконовых форм, полученных с применением аддитивных технологий, для отливки ректальных суппозиториев
العنوان: | Development of Suppositories Silicone Molds Using Additive Technologies ; Разработка силиконовых форм, полученных с применением аддитивных технологий, для отливки ректальных суппозиториев |
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المؤلفون: | K. A. Gusev, O. A. Terenteva, D. N. Maimistov, Yu. E. Generalova, K. O. Sidorov, E. V. Flisyuk, К. А. Гусев, О. А. Терентьева, Д. Н. Маймистов, Ю. Э. Генералова, К. О. Сидоров, Е. В. Флисюк |
المساهمون: | The results of the work were obtained using the equipment of the Center for Collective Use "Analytical Center of Saint-Petersburg State Chemical and Pharmaceutical University" within the framework of agreement No. 075-15-2021-685 dated July 26, 2021 with the financial support of the Ministry of Education and Science of Russia., Результаты работы получены с использованием оборудования ЦКП «Аналитический центр ФГБОУ ВО СПХФУ Минздрава России» в рамках соглашения № 075-15-2021-685 от 26 июля 2021 года при финансовой поддержке Минобрнауки России. |
المصدر: | Drug development & registration; Том 11, № 4 (2022); 116-124 ; Разработка и регистрация лекарственных средств; Том 11, № 4 (2022); 116-124 ; 2658-5049 ; 2305-2066 |
بيانات النشر: | LLC «CPHA» |
سنة النشر: | 2022 |
المجموعة: | Drug development & registration (E-Journal) / Разработка и регистрация лекарственных средств |
مصطلحات موضوعية: | персонализированная медицина, silicone, molding, 3D printing, additive manufacturing, personalized medicine, силикон, послойное наплавление, трехмерная печать, аддитивное производство |
الوصف: | Introduction. In modern practice, suppositories are prepared by hand rolling method or fusion. 3D printing can overcome the disadvantages of traditional suppository manufacturing methods and solve the problems of personalization. 3D printing makes it possible to manufacture drug-loaded suppositories without the use of molds or other physical support. The current studies have a number of limitations, and the printing of one suppository requires a long time. This report proposes a method of 3D modeling and 3D printing to produce personalized suppositories by fusion.Aim. Various sizes and shapes suppositories silicone molds development by molding method from hydrophilic, lipophilic and amphiphilic bases.Materials and methods. Suppository bases: cocoa butter (Luker, Colombia), polyethylene glycol (PEG) 1500 (Merck KGaA, Germany), PEG-400 (Merck KGaA, Germany), Witepsol H-15 (Chimmed Group, Russia); pharmaceutical substance: paracetamol (Hebei Jiheng (Group) Pharmaceutical Co. Ltd, China); filaments for 3D printing: polyethylene terephthalate (PET-G natural, LLC "PrintProdakt", Russia); silicone two-component platinum, hardness Shore 30A (China); solvents: Acetonitrile Grade HPLC (Merck KGaA, Germany). The design of the both casting and master molds of suppositories was carried out using the KOMPAS-3D version 17.1. Master molds were printed by Picaso PRO 250 and Picaso X Pro 3D printers. Mold segments were obtained by filling master molds with a mixture of two-component silicone. Suppositories were obtained by molding method. Their average weight and standard deviation were determined. Paracetamol concentration in suppositories was carried out by UV spectrophotometry on a UV-1240 mini spectrophotometer (Shimadzu, Япония). Silicone molds were soaked and washed in hot water with surfactants. Washouts from the molds were taken by soaking the mold.Results and discussion. The torpedo-shaped form was chosen as the model form of suppositories. For the chosen form, three volumes of suppositories were designed: 3.32 ml; 1.5 ... |
نوع الوثيقة: | article in journal/newspaper |
وصف الملف: | application/pdf |
اللغة: | Russian |
Relation: | https://www.pharmjournal.ru/jour/article/view/1368/1043; https://www.pharmjournal.ru/jour/article/downloadSuppFile/1368/1427; Foppoli A., Maroni A., Moutaharrik S., Melocchi A., Zema L., Palugan L., Cerea M., Gazzaniga A. In vitro and human pharmacoscintigraphic evaluation of an oral 5-ASA delivery system for colonic release. Int J Pharm. 2019;572:118723. DOI:10.1016/j.ijpharm.2019.118723.; Seoane-Viaño I., Gómez-Lado N., Lázare-Iglesias H., Rey-Bretal D., Lamela-Gómez I., Otero-Espinar F. J., Blanco-Méndez J., Antúnez-López J. R., Pombo-Pasín M., Aguiar P., Ruibal Á., Luzardo-Álvarez A., Fernández-Ferreiro A. Evaluation of the therapeutic activity of melatonin and resveratrol in Inflammatory Bowel Disease: A longitudinal PET/CT study in an animal model. Int J Pharm. 2019;572:118713. DOI:10.1016/j.ijpharm.2019.118713.; Seoane-Viaño I., Ong J. J., Luzardo-Álvarez A., González-Barcia M., Basit A. W., Otero-Espinar F. J., Goyanes A. 3D printed tacrolimus suppositories for the treatment of ulcerative colitis. Asian J Pharm Sci. 2021;16(1):110–119. DOI:10.1016/j.ajps.2020.06.003.; Ham A. S., Buckheit R. W. Designing and developing suppository formulations for anti-HIV drug delivery. Therapeutic Delivery. 2017;8(9):805–817. DOI:10.4155/tde-2017-0056.; Jamróz W., Szafraniec J., Kurek M., Jachowicz R. 3D Printing in Pharmaceutical and Medical Applications – Recent Achievements and Challenges. Pharm Res. 2018;35(9):176. DOI:10.1007/s11095-018-2454-x.; Trenfield S. J., Awad A., Madla C. M., Hatton G. B., Firth J., Goyanes A., Gaisford S., Basit A. W. Shaping the future: recent advances of 3D printing in drug delivery and healthcare. Expert Opin Drug Deliv. 2019;16(10):1081–1094. DOI:10.1080/17425247.2019.1660318.; Narkevich I. A., Flisyuk E. V., Terent’eva O. A., Semin A. A. Additive Manufacturing Technologies for Pharmaceutics. Pharmaceutical Chemistry Journal. 2018;51(11):1025–1029. DOI:10.1007/s11094-018-1733-5.; Tappa K., Jammalamadaka U. Novel Biomaterials Used in Medical 3D Printing Techniques. Journal of Functional Biomaterials. 2018;9(1):17. DOI:10.3390/jfb9010017.; Terenteva O. A., Gusev K. A., Tikhonova V. V., Maimistov D. N., Shandryuk G. A., Flisyuk E. V. Three-dimensional printing of ramipril tablets by fused deposition modeling. Drug development & registration. 2021;10(4):79–87. (In Russ.) DOI:10.33380/2305-2066-2021-10-4(1)-79-87.; Pravin S., Sudhir A. Integration of 3D printing with dosage forms: A new perspective for modern healthcare. Biomed Pharmacother. 2018;107:146–154. DOI:10.1016/j.biopha.2018.07.167.; Seoane-Viaño I., Gómez-Lado N., Lázare-Iglesias H., García-Otero X., Antúnez-López J. R., Ruibal Á., Varela-Correa J. J., Aguiar P., Basit A. W., Otero-Espinar F. J., González-Barcia M., Goyanes A., Luzardo-Álvarez A., Fernández-Ferreiro A. 3D Printed Tacrolimus Rectal Formulations Ameliorate Colitis in an Experimental Animal Model of Inflammatory Bowel Disease. Biomedicines. 2020;8(12):563. DOI:10.3390/biomedicines8120563.; Ud Din F., Choi J. Y., Kim D. W, Mustapha O., Kim D. S., Thapa R. K., Ku S. K., Youn Y. S., Oh K. T., Yong C. S., Kim J. O., Choi H.-G. Irinotecan-encapsulated double-reverse thermosensitive nanocarrier system for rectal administration. Drug Deliv. 2017;24(1):502–510. DOI:10.1080/10717544.2016.1272651.; Sun Y., Ruan X., Li H., Kathuria H., Du G., Kang L. Fabrication of non-dissolving analgesic suppositories using 3D printed moulds. Int J Pharm. 2016;513(1–2):717–724. DOI:10.1016/j.ijpharm.2016.09.073.; Tagami T., Hayashi N., Sakai N., Ozeki T. 3D printing of unique water-soluble polymer-based suppository shell for controlled drug release. Int J Pharm. 2019;568:118494. DOI:10.1016/j.ijpharm.2019.118494.; Barsky M., Kelley R., Bhora F. Y., Hardart A. Customized Pessary Fabrication Using Three-Dimensional Printing Technology. Obstetrics & Gynecology. 2018;131(3):493–497. DOI:10.1097/AOG.0000000000002461.; Persaud S., Eid S., Swiderski N., Serris I., Cho H. Preparations of Rectal Suppositories Containing Artesunate. Pharmaceutics. 2020;12(3):222. DOI:10.3390/pharmaceutics12030222.; Krezić S., Krhan E., Mandžuka E., Kovac N., Krajina D., Marić A., Komić S., Nikšić A., Tucak-Smajić A., Sirbubalo M., Vranic E. Fabrication of Rectal and Vaginal Suppositories Using 3D Printed Moulds: The Challenge of Personalized Therapy. IFMBE Proceedings. 2020:729–734. DOI:10.1007/978-3-030-17971-7_108.; Hatton G. B., Yadav V., Basit A. W., Merchant H. A. Animal Farm: Considerations in Animal Gastrointestinal Physiology and Relevance to Drug Delivery in Humans. J Pharm Sci. 2015;104(9):2747–2776. DOI:10.1002/jps.24365.; Awad A., Fina F., Trenfield S. J., Patel P., Goyanes A., Gaisford S., Basit A. W. 3D Printed Pellets (Miniprintlets): A Novel, Multi-Drug, Controlled Release Platform Technology. Pharmaceutics. 2019;11(4):148. DOI:10.3390/pharmaceutics11040148.; https://www.pharmjournal.ru/jour/article/view/1368 |
DOI: | 10.33380/2305-2066-2022-11-4-116-124 |
الاتاحة: | https://www.pharmjournal.ru/jour/article/view/1368 https://doi.org/10.33380/2305-2066-2022-11-4-116-124 |
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رقم الانضمام: | edsbas.10F0C88C |
قاعدة البيانات: | BASE |
DOI: | 10.33380/2305-2066-2022-11-4-116-124 |
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