Fused Deposition Modeling (FDM) 3D Printed Tablets for Intragastric Floating Delivery of Domperidone
Abstract The aim of this study was to explore the feasibility of fused deposition modeling (FDM) 3D printing to prepare intragastric floating sustained release (FSR) tablets. Domperidone (DOM), an insoluble weak base, was chosen as a model drug to investigate the potential of FSR in increasing its o...
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2017-06-01
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Online Access: | https://doi.org/10.1038/s41598-017-03097-x |
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doaj-8f2c9fd73d224105875b2061744c0aba2020-12-08T01:04:03ZengNature Publishing GroupScientific Reports2045-23222017-06-01711910.1038/s41598-017-03097-xFused Deposition Modeling (FDM) 3D Printed Tablets for Intragastric Floating Delivery of DomperidoneXuyu Chai0Hongyu Chai1Xiaoyu Wang2Jingjing Yang3Jin Li4Yan Zhao5Weimin Cai6Tao Tao7Xiaoqiang Xiang8National Pharmaceutical Engineering Research Center, China State Institute of Pharmaceutical IndustryNational Pharmaceutical Engineering Research Center, China State Institute of Pharmaceutical IndustryExperiment Center for Science and Technology, Shanghai University of Traditional Chinese MedicineNational Pharmaceutical Engineering Research Center, China State Institute of Pharmaceutical IndustryNational Pharmaceutical Engineering Research Center, China State Institute of Pharmaceutical IndustryNational Pharmaceutical Engineering Research Center, China State Institute of Pharmaceutical IndustryDepartment of Clinical Pharmacy, School of Pharmacy, Fudan UniversityNational Pharmaceutical Engineering Research Center, China State Institute of Pharmaceutical IndustryDepartment of Clinical Pharmacy, School of Pharmacy, Fudan UniversityAbstract The aim of this study was to explore the feasibility of fused deposition modeling (FDM) 3D printing to prepare intragastric floating sustained release (FSR) tablets. Domperidone (DOM), an insoluble weak base, was chosen as a model drug to investigate the potential of FSR in increasing its oral bioavailability and reducing its administration frequency. DOM was successfully loaded into hydroxypropyl cellulose (HPC) filaments using hot melt extrusion (HME). The filaments were then printed into hollow structured tablets through changing the shell numbers and the infill percentages. Physical characterization results indicated that the majority of DOM gradually turned into the amorphous form during the fabrication process. The optimized formulation (contain 10% DOM, with 2 shells and 0% infill) exhibited the sustained release characteristic and was able to float for about 10 h in vitro. Radiographic images showed that the BaSO4-labeled tablets were retained in the stomach of rabbits for more than 8 h. Furthermore, pharmacokinetic studies showed the relative bioavailability of the FSR tablets compared with reference commercial tablets was 222.49 ± 62.85%. All the results showed that FDM based 3D printing might be a promising way to fabricate hollow tablets for the purpose of intragastric floating drug delivery.https://doi.org/10.1038/s41598-017-03097-x |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xuyu Chai Hongyu Chai Xiaoyu Wang Jingjing Yang Jin Li Yan Zhao Weimin Cai Tao Tao Xiaoqiang Xiang |
spellingShingle |
Xuyu Chai Hongyu Chai Xiaoyu Wang Jingjing Yang Jin Li Yan Zhao Weimin Cai Tao Tao Xiaoqiang Xiang Fused Deposition Modeling (FDM) 3D Printed Tablets for Intragastric Floating Delivery of Domperidone Scientific Reports |
author_facet |
Xuyu Chai Hongyu Chai Xiaoyu Wang Jingjing Yang Jin Li Yan Zhao Weimin Cai Tao Tao Xiaoqiang Xiang |
author_sort |
Xuyu Chai |
title |
Fused Deposition Modeling (FDM) 3D Printed Tablets for Intragastric Floating Delivery of Domperidone |
title_short |
Fused Deposition Modeling (FDM) 3D Printed Tablets for Intragastric Floating Delivery of Domperidone |
title_full |
Fused Deposition Modeling (FDM) 3D Printed Tablets for Intragastric Floating Delivery of Domperidone |
title_fullStr |
Fused Deposition Modeling (FDM) 3D Printed Tablets for Intragastric Floating Delivery of Domperidone |
title_full_unstemmed |
Fused Deposition Modeling (FDM) 3D Printed Tablets for Intragastric Floating Delivery of Domperidone |
title_sort |
fused deposition modeling (fdm) 3d printed tablets for intragastric floating delivery of domperidone |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2017-06-01 |
description |
Abstract The aim of this study was to explore the feasibility of fused deposition modeling (FDM) 3D printing to prepare intragastric floating sustained release (FSR) tablets. Domperidone (DOM), an insoluble weak base, was chosen as a model drug to investigate the potential of FSR in increasing its oral bioavailability and reducing its administration frequency. DOM was successfully loaded into hydroxypropyl cellulose (HPC) filaments using hot melt extrusion (HME). The filaments were then printed into hollow structured tablets through changing the shell numbers and the infill percentages. Physical characterization results indicated that the majority of DOM gradually turned into the amorphous form during the fabrication process. The optimized formulation (contain 10% DOM, with 2 shells and 0% infill) exhibited the sustained release characteristic and was able to float for about 10 h in vitro. Radiographic images showed that the BaSO4-labeled tablets were retained in the stomach of rabbits for more than 8 h. Furthermore, pharmacokinetic studies showed the relative bioavailability of the FSR tablets compared with reference commercial tablets was 222.49 ± 62.85%. All the results showed that FDM based 3D printing might be a promising way to fabricate hollow tablets for the purpose of intragastric floating drug delivery. |
url |
https://doi.org/10.1038/s41598-017-03097-x |
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