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Advanced biomedical applications of cell clusteroids based on aqueous twophase Pickering emulsion systems (2022)
Thesis
Wang, A. (2022). Advanced biomedical applications of cell clusteroids based on aqueous twophase Pickering emulsion systems. (Thesis). University of Hull. https://hull-repository.worktribe.com/output/4249064

The development of in vitro models for advancing the research of cell biology and cell physiology is of great importance to the fields of biotechnology, cancer study, drug testing, toxicity study. The emerging field includes tissue engineering and re... Read More about Advanced biomedical applications of cell clusteroids based on aqueous twophase Pickering emulsion systems.

Fabrication of Angiogenic Sprouting Coculture of Cell Clusteroids Using an Aqueous Two-Phase Pickering Emulsion System (2022)
Journal Article
Wang, A., Madden, L. A., & Paunov, V. N. (2022). Fabrication of Angiogenic Sprouting Coculture of Cell Clusteroids Using an Aqueous Two-Phase Pickering Emulsion System. ACS Applied Bio Materials, https://doi.org/10.1021/acsabm.2c00168

Tumor cell spheroids and 3D cell culture have generated a lot of interest in the past decade due to their relative ease of production and biomedical research applications. To date, the frontier in tumor 3D models has been pushed to the level of perso... Read More about Fabrication of Angiogenic Sprouting Coculture of Cell Clusteroids Using an Aqueous Two-Phase Pickering Emulsion System.

Vascularized Co‐Culture Clusteroids of Primary Endothelial and Hep‐G2 Cells Based on Aqueous Two‐Phase Pickering Emulsions (2022)
Journal Article
Wang, A., Madden, L. A., & Paunov, V. N. (2022). Vascularized Co‐Culture Clusteroids of Primary Endothelial and Hep‐G2 Cells Based on Aqueous Two‐Phase Pickering Emulsions. Bioengineering, 9(3), Article 126. https://doi.org/10.3390/bioengineering9030126

Three‐dimensional cell culture has been extensively involved in biomedical applications due to its high availability and relatively mature biochemical properties. However, single 3D cell culture models based on hydrogel or various scaffolds do not me... Read More about Vascularized Co‐Culture Clusteroids of Primary Endothelial and Hep‐G2 Cells Based on Aqueous Two‐Phase Pickering Emulsions.

Enhanced clearing of Candida biofilms on a 3D urothelial cell in vitro model using lysozyme-functionalized fluconazole-loaded shellac nanoparticles (2021)
Journal Article
Wang, A., Weldrick, P. J., Madden, L. A., & Paunov, V. N. (2021). Enhanced clearing of Candida biofilms on a 3D urothelial cell in vitro model using lysozyme-functionalized fluconazole-loaded shellac nanoparticles. Biomaterials science / Royal Society of Chemistry, 9(20), 6927-6939. https://doi.org/10.1039/d1bm01035b

Candida urinary tract biofilms are increasingly witnessed in nosocomial infections due to reduced immunity of patients and the hospital ecosystem. The indwelling devices utilized to support patients with urethral diseases that connect the unsterilize... Read More about Enhanced clearing of Candida biofilms on a 3D urothelial cell in vitro model using lysozyme-functionalized fluconazole-loaded shellac nanoparticles.

High-throughput fabrication of hepatic cell clusteroids with enhanced growth and functionality for tissue engineering applications (2020)
Journal Article
Wang, A., Madden, L. A., & Paunov, V. N. (2020). High-throughput fabrication of hepatic cell clusteroids with enhanced growth and functionality for tissue engineering applications. Materials Advances, 1(8), 3022-3032. https://doi.org/10.1039/d0ma00635a

Culturing of cells as three-dimensional (3D) clusters can enhance in vitro tests for basic biological research as well as for therapeutics development. Such 3D culture models, however, are often more complicated, cumbersome and expensive than two-dim... Read More about High-throughput fabrication of hepatic cell clusteroids with enhanced growth and functionality for tissue engineering applications.

Advanced biomedical applications based on emerging 3D cell culturing platforms (2020)
Journal Article
Wang, A., Madden, L. A., & Paunov, V. N. (2020). Advanced biomedical applications based on emerging 3D cell culturing platforms. Journal of Materials Chemistry B, 8(46), 10487-10501. https://doi.org/10.1039/d0tb01658f

It is of great value to develop reliable in vitro models for cell biology and toxicology. However, ethical issues and the decreasing number of donors restrict the further use of traditional animal models in various fields, including the emerging fiel... Read More about Advanced biomedical applications based on emerging 3D cell culturing platforms.