» Articles » PMID: 34147533

A Review of Emerging Technologies Enabling Improved Solid Oral Dosage Form Manufacturing and Processing

Overview
Specialty Pharmacology
Date 2021 Jun 20
PMID 34147533
Citations 17
Authors
Affiliations
Soon will be listed here.
Abstract

Tablets are the most widely utilized solid oral dosage forms because of the advantages of self-administration, stability, ease of handling, transportation, and good patient compliance. Over time, extensive advances have been made in tableting technology. This review aims to provide an insight about the advances in tablet excipients, manufacturing, analytical techniques and deployment of Quality by Design (QbD). Various excipients offering novel functionalities such as solubility enhancement, super-disintegration, taste masking and drug release modifications have been developed. Furthermore, co-processed multifunctional ready-to-use excipients, particularly for tablet dosage forms, have benefitted manufacturing with shorter processing times. Advances in granulation methods, including moist, thermal adhesion, steam, melt, freeze, foam, reverse wet and pneumatic dry granulation, have been proposed to improve product and process performance. Furthermore, methods for particle engineering including hot melt extrusion, extrusion-spheronization, injection molding, spray drying / congealing, co-precipitation and nanotechnology-based approaches have been employed to produce robust tablet formulations. A wide range of tableting technologies including rapidly disintegrating, matrix, tablet-in-tablet, tablet-in-capsule, multilayer tablets and multiparticulate systems have been developed to achieve customized formulation performance. In addition to conventional invasive characterization methods, novel techniques based on laser, tomography, fluorescence, spectroscopy and acoustic approaches have been developed to assess the physical-mechanical attributes of tablet formulations in a non- or minimally invasive manner. Conventional UV-Visible spectroscopy method has been improved (e.g. fiber-optic probes and UV imaging-based approaches) to efficiently record the dissolution profile of tablet formulations. Numerous modifications in tableting presses have also been made to aid machine product changeover, cleaning, and enhance efficiency and productivity. Various process analytical technologies have been employed to track the formulation properties and critical process parameters. These advances will contribute to a strategy for robust tablet dosage forms with excellent performance attributes.

Citing Articles

Stabilization and Preservation of Bioactive Compounds in Black Elderberry By-Product Extracts Using Maltodextrin and Gum Arabic via Spray Drying.

Mutavski Z, Vidovic S, Lazarevic Z, Ambrus R, Motzwickler-Nemeth A, Aladic K Foods. 2025; 14(5).

PMID: 40077426 PMC: 11899151. DOI: 10.3390/foods14050723.


Oral dosage forms for drug delivery to the colon: an existing gap between research and commercial applications.

Martinez E, Gamboa J, Finkielstein C, Canas A, Osorio M, Velez Y J Mater Sci Mater Med. 2025; 36(1):24.

PMID: 40042550 PMC: 11882727. DOI: 10.1007/s10856-025-06868-5.


Development and Analysis of Bilayer Foamed Oleogels Stabilized with Ecogel™: Exploring the Role of Tween 80 in Modifying Physicochemical Properties.

Kudlacik-Kramarczyk S, Drabczyk A, Przybylowicz A, Kieres W, Krzan M Int J Mol Sci. 2024; 25(23).

PMID: 39684344 PMC: 11641263. DOI: 10.3390/ijms252312632.


Advancements in Drug Delivery Systems for the Treatment of Sarcopenia: An Updated Overview.

Najm A, Moldoveanu E, Niculescu A, Grumezescu A, Beuran M, Gaspar B Int J Mol Sci. 2024; 25(19).

PMID: 39409095 PMC: 11476378. DOI: 10.3390/ijms251910766.


Evaluation of the bioavailability of a Tamiflu taste-masking pediatric formulation using a juvenile pig model and LC-MS/MS.

Wang J, Gu J, Faustino P, Siddiqui A, Zhao Y, Giacoia G Bioanalysis. 2024; 16(13):681-691.

PMID: 39254502 PMC: 11389739. DOI: 10.1080/17576180.2024.2352256.