Allaf, R.M., Albarahmieh, E., AlHamarneh, B.M., Solid-state compounding of immiscible PCL-PEO blend powders for molding processes. J. Mech. Behav. Biomed. Mater. 97:February (2019), 198–211, 10.1016/j.jmbbm.2019.05.023.
Awad, A., Yao, A., Trenfield, S.J., Goyanes, A., Gaisford, S., Basit, A.W., 3D printed tablets (Printlets) with braille and moon patterns for visually impaired patients. Pharmaceutics 12:2 (2020), 1–14, 10.3390/pharmaceutics12020172.
Bhardwaj, U., Burgess, D.J., A novel USP apparatus 4 based release testing method for dispersed systems. Int. J. Pharm. 388:1–2 (2010), 287–294, 10.1016/j.ijpharm.2010.01.009.
Carlier, E., Marquette, S., Peerboom, C., Denis, L., Benali, S., Raquez, J.-M., Amighi, K., Goole, J., Investigation of the parameters used in fused deposition modeling of poly (lactic acid) to optimize 3D printing sessions. Int. J. Pharm. 565 (2019), 367–377.
Cheng, L., Guo, S., Wu, W., Characterization and in vitro release of praziquantel from poly(ε-caprolactone) implants. Int. J. Pharm. 377:1–2 (2009), 112–119, 10.1016/j.ijpharm.2009.05.007.
Darville, N., van Heerden, M., Vynckier, A.n., De Meulder, M., Sterkens, P., Annaert, P., Van den Mooter, G., Intramuscular administration of paliperidone palmitate extended-release injectable microsuspension induces a subclinical inflammatory reaction modulating the pharmacokinetics in rats. Pharm. Drug. Deliv. Pharm. Technol. 103:7 (2014), 2072–2087.
Dissolution Methods Database | FDA. https://www.fda.gov/drugs/drug-approvals-and-databases/dissolution-methods-database. Accessed January 29, 2021.
dos Santos, J., Deon, M., da Silva, G.S., Beck, R.C.R., Multiple variable effects in the customisation of fused deposition modelling 3D-printed medicines: a design of experiments (DoE) approach. Int. J. Pharm., 597(February), 2021, 120331, 10.1016/j.ijpharm.2021.120331.
Elbadawi, M., Muñiz Castro, B., Gavins, F.K.H., et al., 2020. M3DISEEN: A novel machine learning approach for predicting the 3D printability of medicines. Int. J. Pharm. 2020;590(September):119837. doi:10.1016/j.ijpharm.2020.119837.
Fanous, M., Bitar, M., Gold, S., et al., 2021. Development of immediate release 3D-printed dosage forms for a poorly water-soluble drug by fused deposition modeling: Study of morphology, solid state and dissolution. Int. J. Pharm. 2021;599:120417. doi:10.1016/j.ijpharm.2021.120417.
Goyanes, A., Robles Martinez, P., Buanz, A., Basit, A.W., Gaisford, S., Effect of geometry on drug release from 3D printed tablets. Int. J. Pharm. 494:2 (2015), 657–663.
Goyanes, A., Scarpa, M., Kamlow, M., Gaisford, S., Basit, A.W., Orlu, M., Patient acceptability of 3D printed medicines. Int. J. Pharm. 530:1-2 (2017), 71–78.
Hoang Thi, T.H., Chai, F., Leprêtre, S., Blanchemain, N., Martel, B., Siepmann, F., Hildebrand, H.F., Siepmann, J., Flament, M.P., Bone implants modified with cyclodextrin: Study of drug release in bulk fluid and into agarose gel. Int. J. Pharm. 400:1-2 (2010), 74–85.
Holländer, J., Genina, N., Jukarainen, H., Khajeheian, M., Rosling, A., Mäkilä, E., Sandler, N., Three-dimensional printed PCL-based implantable prototypes of medical devices for controlled drug delivery. J Pharm Sci. 105:9 (2016), 2665–2676.
Hope, A., Wade, S.J., Aghmesheh, M., Vine, K.L., Localized delivery of immunotherapy via implantable scaffolds for breast cancer treatment. J Control Release 2022:341 (2021), 399–413, 10.1016/j.jconrel.2021.11.043.
Kožák, J., Rabišková, M., Lamprecht, A., In-vitro drug release testing of parenteral formulations via an agarose gel envelope to closer mimic tissue firmness. Int. J. Pharm., 594(November 2020), 2021, 10.1016/j.ijpharm.2020.120142.
Leng, D., Chen, H., Li, G., Guo, M., Zhu, Z., Xu, L.u., Wang, Y., Development and comparison of intramuscularly long-acting paliperidone palmitate nanosuspensions with different particle size. Int. J. Pharm. 472:1-2 (2014), 380–385.
Li, C., Cheng, L., Zhang, Y., Guo, S., Wu, W., Effects of implant diameter, drug loading and end-capping on praziquantel release from PCL implants. Int. J. Pharm. 386:1–2 (2010), 23–29, 10.1016/j.ijpharm.2009.10.046.
Li, DeXia, Guo, G., Fan, RangRang, Liang, J., Deng, X., Luo, F., Qian, ZhiYong, PLA/F68/Dexamethasone implants prepared by hot-melt extrusion for controlled release of anti-inflammatory drug to implantable medical devices: I. Preparation, characterization and hydrolytic degradation study. Int. J. Pharm. 441:1-2 (2013), 365–372.
Li, DeXia, Guo, G., Deng, X., Fan, RangRang, Guo, QingFa, Fan, M., Liang, J., Luo, F., Qian, ZhiYong, PLA/PEG-PPG-PEG/Dexamethasone implant prepared by hot-melt extrusion for controlled release of immunosuppressive drug to implantable medical devices, part 2: in vivo evaluation. Drug. Deliv. 20:3-4 (2013), 134–142.
Lin, W., Shen, H., Xu, G., Zhang, L., Fu, J., Deng, X., Single-layer temperature-adjusting transition method to improve the bond strength of 3D-printed PCL/PLA parts. Compos. Part A Appl. Sci. Manuf. 115 (2018), 22–30, 10.1016/j.compositesa.2018.09.008.
Lizambard, M., Menu, T., Fossart, M., et al., 2019. In-situ forming implants for the treatment of periodontal diseases: Simultaneous controlled release of an antiseptic and an anti-inflammatory drug, Int. J. Pharm. 572(October) (2019) 118833. doi:10.1016/j.ijpharm.2019.118833.
LLC N. Ingeo TM Biopolymer 4060D Technical Data Sheet. Vol 201.; 2005.
Manini, G., Deldime, M., Benali, S., Raquez, J.-M., Goole, J., Long-acting implantable dosage forms containing paliperidone palmitate obtained by 3D printing. Int. J. Pharm., 603(May), 2021, 120702, 10.1016/j.ijpharm.2021.120702.
Manini, G., Deldime, M., Benali, S., Raquez, J.-M., Goole, J., Long-acting implantable dosage forms containing paliperidone palmitate obtained by 3D printing. Int. J. Pharm., 603, 2021, 120702.
Muñiz Castro, B., Elbadawi, M., Ong, J.J., Pollard, T., Song, Z., Gaisford, S., Pérez, G., Basit, A.W., Cabalar, P., Goyanes, A., Machine learning predicts 3D printing performance of over 900 drug delivery systems. J. Control Release. 337 (2021), 530–545.
Nober, C., Manini, G., Carlier, E., Raquez, J.-M., Benali, S., Dubois, P., Amighi, K., Goole, J., Feasibility study into the potential use of fused-deposition modeling to manufacture 3D-printed enteric capsules in compounding pharmacies. Int. J. Pharm., 569, 2019, 118581.
Pereira, B.C., Isreb, A., Forbes, R.T., Dores, F., Habashy, R., Petit, J.-B., Alhnan, M.A., Oga, E.F., ‘Temporary plasticiser’: a novel solution to fabricate 3D printed patient-centred cardiovascular ‘polypill’ architectures. Eur. J. Pharm. Biopharm. 135 (2019), 94–103.
Pires, F.Q., Alves-Silva, I., Pinho, L.A.G., et al., 2020. Predictive models of FDM 3D printing using experimental design based on pharmaceutical requirements for tablet production. Int. J. Pharm. 2020;588(July):119728. doi:10.1016/j.ijpharm.2020.119728.
Sadia, M., Arafat, B., Ahmed, W., Forbes, R., Alhnan, M., Channelled tablets: an innovative approach to accelerating drug release from 3D printed tablets. J Control Release. 2018:269 (2017), 355–363, 10.1016/j.jconrel.2017.11.022.
Scoutaris, N., Ross, S.A., Douroumis, D., 3D printed “Starmix” drug loaded dosage forms for paediatric applications. Pharm Res., 35(2), 2018.
Stewart, S.A., Domínguez-Robles, J., McIlorum, V.J., Gonzalez, Z., Utomo, E., Mancuso, E., Lamprou, D.A., Donnelly, R.F., Larrañeta, E., Poly(caprolactone)-based coatings on 3D-printed biodegradable implants: a novel strategy to prolong delivery of hydrophilic drugs. Mol. Pharm. 17:9 (2020), 3487–3500.
Stewart, S., Domínguez-Robles, J., McIlorum, V., Mancuso, E., Lamprou, D., Donnelly, R., Larrañeta, E., Development of a biodegradable subcutaneous implant for prolonged drug delivery using 3D printing. Pharmaceutics., 12(2), 2020, 105.
Thakkar, R., Pillai, A.R., Zhang, J., Zhang, Y., Kulkarni, V., Maniruzzaman, M., Novel on-demand 3-dimensional (3D) printed tablets using fill density as an effective release-controlling Tool. Polymers (Basel), 2020, 1–21.
Xu, X., Goyanes, A., Trenfield, S.J., et al., 2021. Stereolithography (SLA) 3D printing of a bladder device for intravesical drug delivery. Mater Sci Eng C. 2021;120(November 2020):111773. doi:10.1016/j.msec.2020.111773.
Zhang, B., Nasereddin, J., McDonagh, T., von Zeppelin, D., Gleadall, A., Alqahtani, F., Bibb, R., Belton, P., Qi, S., Effects of porosity on drug release kinetics of swellable and erodible porous pharmaceutical solid dosage forms fabricated by hot melt droplet deposition 3D printing. Int. J. Pharm., 604, 2021, 120626.
Zhang, J., Thakkar, R., Zhang, Y., Maniruzzaman, M., Structure-function correlation and personalized 3D printed tablets using a quality by design (QbD) approach. Int. J. Pharm., 590(August), 2020, 119945, 10.1016/j.ijpharm.2020.119945.