1. Alhnan
MA, Okwuosa TC, Sadia M, Wan KW, Ahmed W, Arafat B. Emergence of 3D Printed
Dosage Forms: Opportunities and Challenges. Pharm Res [Internet].
2016;33(8):1817â32.
2. Goole
J, Amighi K. 3D printing in pharmaceutics: A new tool for designing customized
drug delivery systems. Int J Pharm. 2016;499(1â 2):376â94.
3. Norman
J, Madurawe RD, Moore CMV, Khan MA, Khairuzzaman A. A new chapter in
pharmaceutical manufacturing: 3D-printed drug products. Adv Drug Deliv Rev
[Internet]. 2017;108:39â50.
4. Awad
A, Fina F, Goyanes A, Gaisford S, Basit AW. 3D printing: Principles and
pharmaceutical applications of selective laser sintering.72Islam et al.Int J
Pharm. 2020 Aug 30;586:119594.
5. US4575330A
- Apparatus for production of three-dimensional objects by stereolithography -
Google Patents. [cited 2020 Nov 16].
6. Tan
DK, Maniruzzaman M, Nokhodchi A. Advanced pharmaceutical applications of
hot-melt extrusion coupled with fused deposition modelling (FDM) 3D printing
for personalised drug delivery. Pharmaceutics. 2018;10(4).
7. Ursan
I, Chiu L, Pierce A. Three-dimensional drug printing: A structured review. J Am
Pharm Assoc [Internet]. 2013 [cited 2020 Nov 16];53(2):136â44.
8. Koçak
E, Yıldız A, Acartürk F. Three dimensional bioprinting technology: Applications
in pharmaceutical and biomedical area. Colloids Surfaces B Biointerfaces.
2020;197.
9. Trombetta
R, Inzana JA, Schwarz EM, Kates SL, Awad HA, Hall RBG. HHS Public Access.
2018;45(1):23â44.
10. Bansal
M, Sharma V, Singh G, Harikumar SL. 3D printing for the future of
pharmaceuticals dosages forms. Int J Appl Pharm. 2018;10(3):1â7.
11. Asad
Ali, Usama Ahmad and Juber Akhtar. 3D Printing in Pharmaceutical Sector: An
Overview, Pharmaceutical Formulation Design -Recent Practices, Usama Ahmad and
Juber Akhtar, IntechOpen, DOI: 10.5772/intechopen.90738.
12. Ghadge
S, Nagesh A, Suresh S. A Decisive Overview on Three-Dimensional Printing in
Pharmaceuticals. Journal of Drug Delivery and Therapeutics. 2019; 9(3):
591-598.
13. Hue
P. Le. Progress and Trends in Ink-jet Printing Technology. J Imaging Sci
Technol. 1998;42(1):49â62.
14. Visser
CW, Pohl R, Sun C, Römer GW, Huis In âT Veld B, Lohse D. Toward 3D Printing of
Pure Metals by Laser-Induced Forward Transfer. Adv Mater. 2015;27(27):4087â92.
15. Fathi
S, Dickens P. Jettability of reactive nylon materials for additive
manufacturing applications. J Manuf Process [Internet]. 2012 Aug;14(3):403â13.
16. Sachs
E, Cima M, Williams P, Brancazio D, Cornie J. Three-dimensional printing: Rapid
tooling and prototypes directly from a CAD model. J Manuf Sci Eng Trans ASME.
1992;114(4):481â8.
17. Ziaee
M, Crane NB. Binder jetting: A review of process, materials, and methods. Addit
Manuf [Internet]. 2019 Aug;28:781â801.
18. Miyanaji
H, Yang L. Equilibrium saturation in binder jetting additive manufacturing
processes: Theoretical model vs. Experimental observeations. Solid Free Fabr
2016 Proc 27th Annu Int Solid Free Fabr Symp - An Addit Manuf Conf SFF 2016.
2016; i:1945â59
19. Tofail
SAM, Koumoulos EP, Bandyopadhyay A, Bose S, OâDonoghue L, Charitidis C.
Additive manufacturing: scientific and technological challenges, market uptake
and opportunities. Mater Today. 2018;21(1):22â37.
20. L.
Srinivas et al. 3D Printing in Pharmaceutical Technology: A Review. Int. Res.
J. Pharm. 2019; 10(2): 8-17
21. Meléndez
PA, Kane KM, Ashvar CS, et al. Thermal Inkjet Application in the Preparation of
Oral Dosage Forms, Dispensing of Prednisolone Solutions and Polymorphic
Characterization by Solid State Spectroscopic Techniques; Journal of
Pharmaceutical Sciences. 2008; 97(7): 2619-2636.
22. M.
Singh, et al. Inkjet PrintingâProcess and its Applications; Advanced Materials.
2010: 673-685
23. Fina
F, Madla CM, Goyanes A, et al. Fabricating 3D Printed Orally Disintegrating
Printlets Using Selective Laser Sintering. International Journal of
Pharmaceutics. 2018; 541(1â2): 101â107.
24. Hoy
MB. 3D Printing, Making Things at the Library; Med Ref Serv Q. 2013;
32(1):94-99.
25. Gokhare
Vinod G, Dr. Raut D.N, Dr. Shinde D.K. A Review paper on 3D-Printing Aspects
and Various Processes Used in the 3D-Printing.International Journal of
Engineering Research & Technology. 2017; 6(6): 953-958.
26. Klein
GT, Lu Y, Wang MY. 3D Printing and Neurosurgery-Ready for Prime Time? Word
Neurosurg. 2013; 80(3-4): 233-235.Schubert C, Van Langeveld MC, Donodo LA.
Innovations in 3D Printing: A 3D Overview from Optics to Organs. The British
Journal ofOphthalmology. 2014; 98(2): 159-161.
27. Ozbolat
IT, Yu Y. Bioprinting towards Organ Fabrication: Challenges and Future Trends.
IEEE Transactions on Biomedical Engineering. 2012; 60(3): 691-699.
28. Mertz
L. Dream It, Design It, Print It In 3-D, What Can 3D Printing Do For You? IEEE
Pulse. 2013; 4(6): 15-21.
29. Bartlett
S. Printing Organs on Demand. Lancet Respiratory Medicine. 2013; 1(9): 684.
30. Ursan
I, Chiu L, Pierce A. Three Dimensional Drug Printing, a Structured Review. J.
Am Pharma Assoc. 2013; 53(2): 136-144.
31. Lipson
H. New World of 3D Bioprinting Offers Completely New Ways of Thinking: Q &
A with Author, Engineer, and 3-D Printing Expert Hod Lipson. IEEE Pulse. 2013;
4(6): 12-14.
32. Gu
Y, Chen X, Lee JH et al. Inkjet Printed Antibiotic- and Calcium-Eluting
Bioresorbable Nanocomposite Micropatterns for Orthopedic Implants. Acta
Biomaterialia. 2018; 8(1): 424-431.
33. Agrawal
A, Gupta AK. 3D Printing Technology in Pharmaceuticals and Biomedical: A
Review. Journal of Drug Delivery and Therapeutics.2019; 9(2-A): 1-4.
34. Maulvi
FA, Shah MJ, Solanki BS, et al. Application of 3D Printing Technology in the
Development of Novel Drug Delivery Systems. Int J Drug Dev & Res. 2017; 9:
44-49.
35. Wu
BM, Cima MJ. Effects of Solvent-Particle Interaction Kinetics on Microstructure
Formation during Three-Dimensional Printing,Polymer Engineering & Science.
1999; 39: 249-260.
36. Kulkarni
P, Marsan A, Dutta D. A Review of Process Planning Techniques in Layered
Manufacturing, Rapid Prototyping Journal. 2000; 6:18-35.