World's Best Scientists 2026 revealed!

Overview

Michael A. Repka is affiliated with the University of Mississippi in the United States. Their research primarily focuses on the fields of Pharmacology, Toxicology, and Pharmaceutics, with a significant emphasis on Pharmaceutical Science and Biomedical Engineering. Other areas of study include Molecular Biology, Analytical Chemistry, and Materials Chemistry.

The scientist has contributed extensively to topics related to drug solubility and delivery systems, with particular attention to advanced drug delivery systems, 3D printing in biomedical research, and advancements in transdermal drug delivery. Additional research interests include protein purification and stability, analytical methods in pharmaceuticals, and crystallization and solubility studies.

Frequent co-authors in their publications include Suresh Bandari, Eman A. Ashour, Sateesh Kumar Vemula, Mashan Almutairi, and Sagar Narala.

Michael A. Repka has published multiple papers in reputable venues. Among the notable recent works are:

  • Systematic screening of pharmaceutical polymers for hot melt extrusion processing: a comprehensive review (2020) - International Journal of Pharmaceutics
  • Fabrication of Taste-Masked Donut-Shaped Tablets Via Fused Filament Fabrication 3D Printing Paired with Hot-Melt Extrusion Techniques (2020) - AAPS PharmSciTech
  • Hot-Melt Extrusion: from Theory to Application in Pharmaceutical Formulation-Where Are We Now? (2024) - AAPS PharmSciTech
  • Fabrication of a shell-core fixed-dose combination tablet using fused deposition modeling 3D printing (2022) - European Journal of Pharmaceutics and Biopharmaceutics
  • Development of lysozyme loaded microneedles for dermal applications (2020) - International Journal of Pharmaceutics

Their publication record features regular contributions to journals such as AAPS PharmSciTech, Journal of Drug Delivery Science and Technology, International Journal of Pharmaceutics, European Journal of Pharmaceutics and Biopharmaceutics, and Journal of Pharmaceutical Sciences.

In addition to journal articles, Michael A. Repka has contributed to book publications, including a work titled "3D Printing" published by Springer Nature in 2023.

Best Publications

  • Coupling 3D printing with hot-melt extrusion to produce controlled-release tablets

    Jiaxiang Zhang;Xin Feng;Hemlata Patil;Roshan V. Tiwari

  • Bioadhesive hot-melt extruded film for topical and mucosal adhesion applications and drug delivery and process for preparation thereof

    Michael A. Repka;Staci L. Repka;James W. McGinity

  • Influence of plasticizers and drugs on the physical-mechanical properties of hydroxypropylcellulose films prepared by hot melt extrusion.

    Michael A. Repka;Thomas G. Gerding;Staci L. Repka;James W. McGinity

  • Melt extrusion with poorly soluble drugs

    Sejal Shah;Sindhuri Maddineni;Jiannan Lu;Michael A. Repka

  • Physicochemical Characterization of Berberine Chloride: A Perspective in the Development of a Solution Dosage Form for Oral Delivery

    Sunil Kumar Battu;Michael A. Repka;Sindhuri Maddineni;Amar G. Chittiboyina

  • Formulation and Evaluation of Rapidly Disintegrating Fenoverine Tablets: Effect of Superdisintegrants

    Sunil Kumar Battu;Michael A Repka;Soumyajit Majumdar;Rao Y Madhusudan

  • Characterization of cellulosic hot-melt extruded films containing lidocaine.

    Michael A. Repka;Kavitha Gutta;Suneela Prodduturi;Manish Munjal

  • Bioadhesive properties of hydroxypropylcellulose topical films produced by hot-melt extrusion.

    Michael A Repka;James W McGinity

  • Influence of vitamin E TPGS on the properties of hydrophilic films produced by hot-melt extrusion.

    Michael A Repka;James W McGinity

  • The influence of guaifenesin and ketoprofen on the properties of hot-melt extruded polyethylene oxide films.

    Michael M Crowley;Anke Fredersdorf;Britta Schroeder;Shawn Kucera

  • 3D-Printed Isoniazid Tablets for the Treatment and Prevention of Tuberculosis—Personalized Dosing and Drug Release

    Heidi Öblom;Jiaxiang Zhang;Manjeet Pimparade;Isabell Speer

  • Effect of chitosan, benzalkonium chloride and ethylenediaminetetraacetic acid on permeation of acyclovir across isolated rabbit cornea

    Soumyajit Majumdar;Ketan Hippalgaonkar;Michael A Repka

  • Production and Characterization of Hot-Melt Extruded Films Containing Clotrimazole

    Michael A. Repka;Suneela Prodduturi;Steven P. Stodghill

  • Solid-State Stability and Characterization of Hot-Melt Extruded Poly(ethylene oxide) Films

    Suneela Prodduturi;Rahul V. Manek;William M. Kolling;Steven P. Stodghill

  • Continuous Production of Fenofibrate Solid Lipid Nanoparticles by Hot-Melt Extrusion Technology: a Systematic Study Based on a Quality by Design Approach

    Hemlata Patil;Xin Feng;Xingyou Ye;Soumyajit Majumdar

  • Self-assembling peptide amphiphile-based nanofiber gel for bioresponsive cisplatin delivery.

    Jin-Ki Kim;Joel Anderson;Ho-Wook Jun;Michael A Repka

  • Characterization of hot-melt extruded drug delivery systems for onychomycosis.

    Praveen K. Mididoddi;Michael A. Repka

  • Physical-mechanical, moisture absorption and bioadhesive properties of hydroxypropylcellulose hot-melt extruded films.

    Michael A. Repka;James W. McGinity

  • Stability-enhanced hot-melt extruded amorphous solid dispersions via combinations of Soluplus® and HPMCAS-HF.

    Saad M. Alshahrani;Wenli Lu;Jun-Bom Park;Joseph T. Morott

  • A novel floating controlled release drug delivery system prepared by hot-melt extrusion.

    Anh Q. Vo;Xin Feng;Joseph T. Morott;Manjeet B. Pimparade

Frequent Co-Authors

Mahmoud A. ElSohly
Mahmoud A. ElSohly University of Mississippi
James W. McGinity
James W. McGinity The University of Texas at Austin
Sanjay R. Mishra
Sanjay R. Mishra University of Memphis
Yitao Wang
Yitao Wang University of Macau
Mitchell A. Avery
Mitchell A. Avery University of Mississippi
Samir A. Ross
Samir A. Ross University of Mississippi
Larry S. McDaniel
Larry S. McDaniel University of Mississippi Medical Center
Niklas Sandler
Niklas Sandler Åbo Akademi University
Charles R. Martin
Charles R. Martin University of Florida
Shabana I. Khan
Shabana I. Khan University of Mississippi

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