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Critical Reviews™ in Therapeutic Drug Carrier Systems
Facteur d'impact: 2.9 Facteur d'impact sur 5 ans: 3.72 SJR: 0.736 SNIP: 0.551 CiteScore™: 2.43

ISSN Imprimer: 0743-4863
ISSN En ligne: 2162-660X

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Critical Reviews™ in Therapeutic Drug Carrier Systems

DOI: 10.1615/CritRevTherDrugCarrierSyst.2014011157
pages 61-87

Top-Down and Bottom-Up Approaches in 3D Printing Technologies for Drug Delivery Challenges

Prakash Katakam
Faculty of Pharmacy, University of Zawia, Az Zawiyah, Libya
Baishakhi Dey
School of Medical Science and Technology, IIT Kharaghpur, India
Fathi H. Assaleh
Faculty of Pharmacy, University of Zawia, Az Zawiyah, Libya
Nagiat Tayeb Hwisa
Faculty of Pharmacy, University of Zawia, Az Zawiyah, Libya
Shanta Kumari Adiki
Nirmala College of Pharmacy, Guntur, India
Babu Rao Chandu
Faculty of Pharmacy, University of Zawia, Az Zawiyah, Libya
Analava Mitra
School of Medical Science and Technology, IIT Kharaghpur, India

RÉSUMÉ

3-Dimensional printing (3DP) constitutes a raft of technologies, based on different physical mechanisms, that generate a 3-dimensional physical object from a digital model. Because of its rapid fabrication and precise geometry, 3DP has gained a prominent focus in biomedical and nanobiomaterials research. Despite advancements in targeted, controlled, and pulsatile drug delivery, the achievement of site-specific and disease-responsive drug release and stringent control over in vivo biodistribution, are still some of the important, challenging areas for pharmaceutical research and development and existing drug delivery techniques. Microelectronic industries are capable of generating nano-/microdrug delivery devices at high throughputs with a highly precise control over design. Successful miniaturizations of micro-pumps with multireservoir architectures for delivery of pharmaceuticals developed by micro-electromechanical systems technology were more acceptable than implantable devices. Inkjet printing technologies, which dispense a precise amount of polymer ink solutions, find applications in controlled drug delivery. Bioelectronic products have revolutionized drug delivery technologies. Designing nanoparticles by nanoimprint lithography showed a controlled drug release pattern, biodistribution, and in vivo transport. This review highlights the "top-down" and "bottom-up" approaches of the most promising 3DP technologies and their broader applications in biomedical and therapeutic drug delivery, with critical assessment of its merits, demerits, and intellectual property rights challenges.


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