3D printed medicines: A new branch of digital healthcare
暂无分享,去创建一个
Simon Gaisford | Atheer Awad | Abdul W Basit | Sarah J Trenfield | A. Basit | S. Gaisford | Atheer Awad
[1] Christine M. Madla,et al. Fabricating 3D printed orally disintegrating printlets using selective laser sintering. , 2018, International journal of pharmaceutics.
[2] A. Basit,et al. Effect of geometry on drug release from 3D printed tablets. , 2015, International journal of pharmaceutics.
[3] M. A. Alhnan,et al. A flexible-dose dispenser for immediate and extended release 3D printed tablets. , 2015, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[4] K. Fukushige,et al. Defined drug release from 3D‐printed composite tablets consisting of drug‐loaded polyvinylalcohol and a water‐soluble or water‐insoluble polymer filler , 2018, International journal of pharmaceutics.
[5] Wei Yang,et al. Hot-melt extrusion for enhanced delivery of drug particles. , 2007, Journal of pharmaceutical sciences.
[6] Roelof J Bennink,et al. Exploring gastrointestinal variables affecting drug and formulation behavior: Methodologies, challenges and opportunities. , 2017, International journal of pharmaceutics.
[7] Chi Heem Wong,et al. Estimation of clinical trial success rates and related parameters , 2018, Biostatistics.
[8] Waqar Ahmed,et al. Emergence of 3D Printed Dosage Forms: Opportunities and Challenges , 2016, Pharmaceutical Research.
[9] A. Basit,et al. 1 3 D Scanning and 3 D Printing as Innovative Technologies for 1 Fabricating Personalized Topical Drug Delivery Systems 2 3 , 2016 .
[10] Simon Gaisford,et al. 3D scanning and 3D printing as innovative technologies for fabricating personalized topical drug delivery systems. , 2016, Journal of controlled release : official journal of the Controlled Release Society.
[11] F. Collins,et al. A new initiative on precision medicine. , 2015, The New England journal of medicine.
[12] Waqar Ahmed,et al. Channelled tablets: An innovative approach to accelerating drug release from 3D printed tablets , 2018, Journal of controlled release : official journal of the Controlled Release Society.
[13] Federico Parietti,et al. 3D printing by fused deposition modeling (FDM) of a swellable/erodible capsular device for oral pulsatile release of drugs , 2015 .
[14] A. Basit,et al. Food, physiology and drug delivery. , 2013, International journal of pharmaceutics.
[15] Hugh Smyth,et al. 3D Printing technologies for drug delivery: a review , 2016, Drug development and industrial pharmacy.
[16] E. S. Ghaly,et al. Prediction of Tablet Hardness and Porosity Using Near‐Infrared Diffuse Reflectance Spectroscopy as a Nondestructive Method , 2003, Pharmaceutical development and technology.
[17] Liang Wang,et al. A New Model of a 3D-Printed Shell with Convex Drug Release Profile , 2018 .
[18] E. S. Ghaly,et al. Prediction of Tablets Disintegration Times Using Near-Infrared Diffuse Reflectance Spectroscopy as a Nondestructive Method , 2005, Pharmaceutical development and technology.
[19] Andrea Gazzaniga,et al. Three-Dimensional Printing of Medicinal Products and the Challenge of Personalized Therapy. , 2017, Journal of pharmaceutical sciences.
[20] Maren Preis,et al. Printed Drug-Delivery Systems for Improved Patient Treatment. , 2016, Trends in pharmacological sciences.
[21] S. Gaisford,et al. Patient acceptability of 3 D printed medicines , 2017 .
[22] Xinggang Yang,et al. Preparation and investigation of novel gastro-floating tablets with 3D extrusion-based printing. , 2018, International journal of pharmaceutics.
[23] Christine M. Madla,et al. All disease begins in the gut: Influence of gastrointestinal disorders and surgery on oral drug performance , 2018, International journal of pharmaceutics.
[24] Basel Arafat,et al. Fabricating a Shell-Core Delayed Release Tablet Using Dual FDM 3D Printing for Patient-Centred Therapy , 2016, Pharmaceutical Research.
[25] R. Upton,et al. Food, gastrointestinal pH, and models of oral drug absorption , 2017, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[26] D W Hutmacher,et al. A comparative analysis of scaffold material modifications for load-bearing applications in bone tissue engineering. , 2006, International journal of oral and maxillofacial surgery.
[27] Jukka Rantanen,et al. Anti‐tuberculosis drug combination for controlled oral delivery using 3D printed compartmental dosage forms: From drug product design to in vivo testing , 2017, Journal of controlled release : official journal of the Controlled Release Society.
[28] Sheng Qi,et al. An investigation into the use of polymer blends to improve the printability of and regulate drug release from pharmaceutical solid dispersions prepared via fused deposition modeling (FDM) 3D printing. , 2016, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[29] Waqar Ahmed,et al. Emergence of 3 D Printed Dosage Forms : Opportunities and Challenges , 2019 .
[30] M. Alexander,et al. Desktop 3D printing of controlled release pharmaceutical bilayer tablets. , 2014, International journal of pharmaceutics.
[31] A. Basit,et al. 3D printing of modified-release aminosalicylate (4-ASA and 5-ASA) tablets. , 2015, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[32] Changxue Xu,et al. Multi‐purposable filaments of HPMC for 3D printing of medications with tailored drug release and timed‐absorption , 2018, International journal of pharmaceutics.
[33] Zichen Zhao,et al. 3D Printed Organ Models with Physical Properties of Tissue and Integrated Sensors , 2018, Advanced materials technologies.
[34] Sara McMains. Layered manufacturing technologies , 2005, CACM.
[35] Leroy Cronin,et al. Digitization of multistep organic synthesis in reactionware for on-demand pharmaceuticals , 2018, Science.
[36] B. Beck,et al. Exploring drug solubility in fasted human intestinal fluid aspirates: Impact of inter-individual variability, sampling site and dilution. , 2017, International journal of pharmaceutics.
[37] Barry Berman,et al. 3D printing: the new industrial revolution , 2012, IEEE Engineering Management Review.
[38] Abu T M Serajuddin,et al. Formulation of 3D Printed Tablet for Rapid Drug Release by Fused Deposition Modeling: Screening Polymers for Drug Release, Drug-Polymer Miscibility and Printability. , 2018, Journal of pharmaceutical sciences.
[39] Niklas Sandler,et al. 3D printed UV light cured polydimethylsiloxane devices for drug delivery , 2017, International journal of pharmaceutics.
[40] Andrea Gazzaniga,et al. Industrial Development of a 3D-Printed Nutraceutical Delivery Platform in the Form of a Multicompartment HPC Capsule , 2018, AAPS PharmSciTech.
[41] Orestis L. Katsamenis,et al. 3D printed oral solid dosage forms containing hydrochlorothiazide for controlled drug delivery , 2017 .
[42] Basel Arafat,et al. Tailored on demand anti‐coagulant dosing: An in vitro and in vivo evaluation of 3D printed purpose‐designed oral dosage forms , 2018, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[43] Ion Petre,et al. Tailored Approaches in Drug Development and Diagnostics: From Molecular Design to Biological Model Systems , 2017, Advanced healthcare materials.
[44] Pamela Robles Martinez,et al. Fabrication of drug-loaded hydrogels with stereolithographic 3D printing. , 2017, International journal of pharmaceutics.
[45] A. Basit,et al. Oral peptide and protein delivery: intestinal obstacles and commercial prospects , 2014, Expert opinion on drug delivery.
[46] A. Basit,et al. Fused-filament 3D printing (3DP) for fabrication of tablets. , 2014, International journal of pharmaceutics.
[47] Simon Gaisford,et al. 3D Printing Pharmaceuticals: Drug Development to Frontline Care. , 2018, Trends in pharmacological sciences.
[48] F. Podczeck,et al. The formation of colonic digestible films of amylose and ethylcellulose from aqueous dispersions at temperatures below 37°C , 2002 .
[49] Daniel A. Davis,et al. Personalized Medicine in Nasal Delivery: The Use of Patient-Specific Administration Parameters To Improve Nasal Drug Targeting Using 3D-Printed Nasal Replica Casts. , 2018, Molecular pharmaceutics.
[50] Jukka Rantanen,et al. Rheology as a tool for evaluation of melt processability of innovative dosage forms. , 2015, International journal of pharmaceutics.
[51] Abdul W. Basit,et al. Stereolithographic ( SLA ) 3 D Printing of Oral Modified-Release 1 Dosage Forms 2 , 2016 .
[52] N. Sandler,et al. Ethylene vinyl acetate (EVA) as a new drug carrier for 3D printed medical drug delivery devices. , 2016, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[53] A. Basit,et al. Fused-filament 3D printing of drug products: Microstructure analysis and drug release characteristics of PVA-based caplets. , 2016, International journal of pharmaceutics.
[54] Davide Brambilla,et al. 3D printing of a wearable personalized oral delivery device: A first-in-human study , 2018, Science Advances.
[55] Elisabetta A. Matsumoto,et al. Biomimetic 4D printing. , 2016, Nature materials.
[56] Abdul W. Basit,et al. Low temperature fused deposition modeling (FDM) 3D printing of thermolabile drugs , 2018, International journal of pharmaceutics.
[57] Abdul W. Basit,et al. Personalised dosing: Printing a dose of one's own medicine. , 2015, International journal of pharmaceutics.
[58] Simon Gaisford,et al. Fabrication of controlled-release budesonide tablets via desktop (FDM) 3D printing. , 2015, International journal of pharmaceutics.
[59] L Van Hoorebeke,et al. 3D printing of high drug loaded dosage forms using thermoplastic polyurethanes. , 2018, International journal of pharmaceutics.
[60] Skylar Tibbits,et al. 4D Printing: Multi‐Material Shape Change , 2014 .
[61] G. M. Gelfuso,et al. FDM 3D printing of modified drug-delivery systems using hot melt extrusion: a new approach for individualized therapy. , 2017, Therapeutic delivery.
[62] E. S. Ghaly,et al. Prediction of Drug Dissolution from Tablets Using Near‐Infrared Diffuse Reflectance Spectroscopy as a Nondestructive Method , 2005, Pharmaceutical development and technology.
[63] Abdul W. Basit,et al. Patient acceptability of 3D printed medicines. , 2017, International journal of pharmaceutics.
[64] Hongyu Chai,et al. Fused Deposition Modeling (FDM) 3D Printed Tablets for Intragastric Floating Delivery of Domperidone , 2017, Scientific Reports.
[65] J. Nicolas,et al. Gender and interindividual variability in pharmacokinetics , 2009, Drug metabolism reviews.
[66] Niklas Sandler,et al. Three-Dimensional Printed PCL-Based Implantable Prototypes of Medical Devices for Controlled Drug Delivery. , 2016, Journal of pharmaceutical sciences.
[67] Abdul W Basit,et al. An investigation into the role of mucus thickness on mucoadhesion in the gastrointestinal tract of pig. , 2010, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[68] M. Ye,et al. The Impact of 3D Printing on the World Container Transport , 2015 .
[69] James G Brasseur,et al. Formulation predictive dissolution (fPD) testing to advance oral drug product development: An introduction to the US FDA funded '21st Century BA/BE' project. , 2018, International journal of pharmaceutics.
[70] A. Basit,et al. Toward oral delivery of biopharmaceuticals: an assessment of the gastrointestinal stability of 17 peptide drugs. , 2015, Molecular pharmaceutics.
[71] Joseph M. DeSimone,et al. Controlling release from 3D printed medical devices using CLIP and drug‐loaded liquid resins , 2018, Journal of controlled release : official journal of the Controlled Release Society.
[72] B. Arafat,et al. A Lower Temperature FDM 3D Printing for the Manufacture of Patient-Specific Immediate Release Tablets , 2016, Pharmaceutical Research.
[73] Amit Kumar Singh,et al. A NOVEL APPROACH FOR CUSTOMIZED PROSTHETIC SOCKET DESIGN , 2016 .
[74] M. Khan,et al. A new chapter in pharmaceutical manufacturing: 3D‐printed drug products☆, ☆☆ , 2017, Advanced drug delivery reviews.
[75] M. Alexander,et al. 3D printing of tablets containing multiple drugs with defined release profiles. , 2015, International journal of pharmaceutics.
[76] Ravi M Shanker,et al. Aqueous solubility of crystalline and amorphous drugs: Challenges in measurement , 2011, Pharmaceutical development and technology.
[77] Evert Fuenmayor,et al. Material Considerations for Fused-Filament Fabrication of Solid Dosage Forms , 2018, Pharmaceutics.
[78] Simon Gaisford,et al. Selective laser sintering (SLS) 3D printing of medicines. , 2017, International journal of pharmaceutics.
[79] Johan Potgieter,et al. Design and development of an extrusion system for 3D printing biopolymer pellets , 2018 .
[80] Orestis L. Katsamenis,et al. A 3D printed bilayer oral solid dosage form combining metformin for prolonged and glimepiride for immediate drug delivery , 2018, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[81] Minsuok Kim,et al. 3D phase contrast MRI in models of human airways: Validation of computational fluid dynamics simulations of steady inspiratory flow , 2018, Journal of magnetic resonance imaging : JMRI.
[82] Christian Franz,et al. Assessment of different polymers and drug loads for fused deposition modeling of drug loaded implants , 2017, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[83] Renata Jachowicz,et al. 3D printed orodispersible films with Aripiprazole. , 2017, International journal of pharmaceutics.
[84] Simon Gaisford,et al. Reshaping drug development using 3D printing. , 2018, Drug discovery today.
[85] Jeremiah J Gassensmith,et al. Biodegradable 3D printed polymer microneedles for transdermal drug delivery. , 2018, Lab on a chip.
[86] Abdul W Basit,et al. Animal Farm: Considerations in Animal Gastrointestinal Physiology and Relevance to Drug Delivery in Humans. , 2015, Journal of pharmaceutical sciences.
[87] Abdul W Basit,et al. Age-mediated changes in the gastrointestinal tract. , 2016, International journal of pharmaceutics.
[88] Niklas Sandler,et al. Towards fabrication of 3D printed medical devices to prevent biofilm formation. , 2014, International journal of pharmaceutics.
[89] A. Basit,et al. Drug solubility in luminal fluids from different regions of the small and large intestine of humans. , 2010, Molecular pharmaceutics.
[90] Abdul W. Basit,et al. Stereolithographic (SLA) 3D printing of oral modified-release dosage forms. , 2016, International journal of pharmaceutics.
[91] A. Basit,et al. A slippery slope: On the origin, role and physiology of mucus☆ , 2017, Advanced drug delivery reviews.
[92] A. Basit,et al. Polyethylene Glycol 400 Enhances the Bioavailability of a BCS Class III Drug (Ranitidine) in Male Subjects but Not Females , 2008, Pharmaceutical Research.
[93] Abdul W Basit,et al. Excipient effects on gastrointestinal transit and drug absorption in beagle dogs. , 2005, International journal of pharmaceutics.
[94] A. Lamprecht,et al. Investigating cascade impactor performance using a modified 3D printed induction port. , 2018, International journal of pharmaceutics.
[95] Simon Gaisford,et al. Development of modified release 3D printed tablets (printlets) with pharmaceutical excipients using additive manufacturing. , 2017, International journal of pharmaceutics.
[96] P. Timmins,et al. On demand manufacturing of patient‐specific liquid capsules via co‐ordinated 3D printing and liquid dispensing , 2018, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[97] Dennis Douroumis,et al. 3D Printed “Starmix” Drug Loaded Dosage Forms for Paediatric Applications , 2018, Pharmaceutical Research.
[98] S Gaisford,et al. 3D printed tablets loaded with polymeric nanocapsules: An innovative approach to produce customized drug delivery systems. , 2017, International journal of pharmaceutics.
[99] A. Basit,et al. Does sex matter? The influence of gender on gastrointestinal physiology and drug delivery. , 2011, International journal of pharmaceutics.
[100] W. Sadee,et al. Pharmacogenetics/genomics and personalized medicine. , 2005, Human molecular genetics.
[101] Simon Gaisford,et al. 3D Printing of Medicines: Engineering Novel Oral Devices with Unique Design and Drug Release Characteristics. , 2015, Molecular pharmaceutics.
[102] Julian Quodbach,et al. Formulation development and process analysis of drug-loaded filaments manufactured via hot-melt extrusion for 3D-printing of medicines , 2018, Pharmaceutical development and technology.
[103] Basel Arafat,et al. A Lower Temperature FDM 3 D Printing for the Manufacture of Patient Specific Immediate Release , 2019 .
[104] J. Rantanen,et al. Analysis of 3D Prints by X-ray Computed Microtomography and Terahertz Pulsed Imaging , 2016, Pharmaceutical Research.
[105] Touraj Ehtezazi,et al. The Application of 3D Printing in the Formulation of Multilayered Fast Dissolving Oral Films. , 2017, Journal of pharmaceutical sciences.
[106] M. A. Alhnan,et al. Fabrication of extended-release patient-tailored prednisolone tablets via fused deposition modelling (FDM) 3D printing. , 2015, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[107] Carolin Korte,et al. 3D-Printed Network Structures as Controlled-Release Drug Delivery Systems: Dose Adjustment, API Release Analysis and Prediction , 2018, AAPS PharmSciTech.
[108] Eunah Lee,et al. Raman Spectral Imaging on Pharmaceutical Products , 2009 .
[109] W. Weitschies,et al. Immediate Release 3D-Printed Tablets Produced Via Fused Deposition Modeling of a Thermo-Sensitive Drug , 2018, Pharmaceutical Research.
[110] Roman Grygoruk,et al. Rapid prototyping in the intervertebral implant design process , 2015 .
[111] Ming Ye,et al. A method in the design and fabrication of exact-fit customized implant based on sectional medical images and rapid prototyping technology , 2006 .
[112] Christine M. Madla,et al. Sex differences in the gastrointestinal tract of rats and the implications for oral drug delivery , 2018, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[113] Yiguang Jin,et al. 3D printing of vaginal rings with personalized shapes for controlled release of progesterone. , 2018, International journal of pharmaceutics.
[114] Sebastian Polak,et al. Population-Based Mechanistic Prediction of Oral Drug Absorption , 2009, The AAPS Journal.
[115] Kevin Yi-Lwern Yap,et al. Three-Dimensional Printing of Carbamazepine Sustained-Release Scaffold. , 2016, Journal of pharmaceutical sciences.
[116] A. Basit,et al. Patient-specific 3D scanned and 3D printed antimicrobial polycaprolactone wound dressings. , 2017, International journal of pharmaceutics.
[117] P. Belton,et al. Development of a Simple Mechanical Screening Method for Predicting the Feedability of a Pharmaceutical FDM 3D Printing Filament , 2018, Pharmaceutical Research.
[118] Pablo Aguiar,et al. PET/CT imaging of 3D printed devices in the gastrointestinal tract of rodents. , 2018, International journal of pharmaceutics.
[119] Waqar Ahmed,et al. Adaptation of pharmaceutical excipients to FDM 3D printing for the fabrication of patient-tailored immediate release tablets. , 2016, International journal of pharmaceutics.
[120] Zeyun Xiao,et al. Three-Dimensional Printing of pH-Responsive and Functional Polymers on an Affordable Desktop Printer. , 2016, ACS applied materials & interfaces.
[121] Ernesto Suaste-Gómez,et al. Developing an Ear Prosthesis Fabricated in Polyvinylidene Fluoride by a 3D Printer with Sensory Intrinsic Properties of Pressure and Temperature , 2016, Sensors.
[122] Abdul W. Basit,et al. 3D printing of drug‐loaded gyroid lattices using selective laser sintering , 2018, International journal of pharmaceutics.
[123] A. Basit,et al. Inflammatory bowel disease: exploring gut pathophysiology for novel therapeutic targets. , 2016, Translational research : the journal of laboratory and clinical medicine.
[124] Matthew Di Prima,et al. Additively manufactured medical products – the FDA perspective , 2016, 3D Printing in Medicine.
[125] Maren Preis,et al. Perspective: Concepts of printing technologies for oral film formulations. , 2015, International journal of pharmaceutics.
[126] Jonathan Goole,et al. 3D printing in pharmaceutics: A new tool for designing customized drug delivery systems. , 2016, International journal of pharmaceutics.
[127] Udayabhanu M. Jammalamadaka,et al. Antibiotic and chemotherapeutic enhanced three-dimensional printer filaments and constructs for biomedical applications , 2015, International journal of nanomedicine.
[128] A. Gazzaniga,et al. 3D printed multi‐compartment capsular devices for two‐pulse oral drug delivery , 2017, Journal of controlled release : official journal of the Controlled Release Society.
[129] Gerard R. Klinzing,et al. Pharmaceutical 3D printing: Design and qualification of a single step print and fill capsule , 2018, International journal of pharmaceutics.
[130] Pamela Robles Martinez,et al. Influence of Geometry on the Drug Release Profiles of Stereolithographic (SLA) 3D-Printed Tablets , 2018, AAPS PharmSciTech.
[131] A. Basit,et al. A novel concept in enteric coating: a double-coating system providing rapid drug release in the proximal small intestine. , 2009, Journal of controlled release : official journal of the Controlled Release Society.
[132] Waqar Ahmed,et al. Tablet fragmentation without a disintegrant: A novel design approach for accelerating disintegration and drug release from 3D printed cellulosic tablets , 2018, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[133] Michael A Repka,et al. Coupling 3D printing with hot-melt extrusion to produce controlled-release tablets. , 2017, International journal of pharmaceutics.
[134] Yan Yang,et al. 3D printed tablets with internal scaffold structure using ethyl cellulose to achieve sustained ibuprofen release , 2018, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.