Dr. Aishik Chakraborty
Assistant professor
Academic Qualifications Obtained
| 2019 | Ph.D. in Chemical Engineering, The University of Kansas, USA |
| 2015 | M.S. in Chemical Engineering, The University of Kansas, USA |
| 2012 | B.Tech. in Chemical Engineering, West Bengal University of Technology, India |
Teaching Expertise
| 2025-Present | Assistant Professor, Bahrain Polytechnic, Bahrain |
| 2019-2025 | Postdoctoral Associate, The University of Western Ontario, Canada |
| 2013-2019 | Graduate Teaching Assistant, The University of Kansas, USA |
Research
Areas of Research Interest
Biomaterials Engineering, Soft and Composite Materials, Nanotechnology, Nanocomposite Hydrogels, Additive Manufacturing and 3D Bioprinting, Drug Delivery, Tissue Engineering and Regenerative Medicine, Sustainable and Circularly Sourced Biomaterials.
Research Overview
My research focuses on the design, synthesis, processing, characterization, and application of advanced biomaterials, with particular emphasis on natural polymers, nanocomposite hydrogels, and nanoparticle-based systems. I investigate material-property relationships to understand how composition, formulation, and manufacturing conditions influence mechanical performance, rheological behavior, printability, and biological functionality.
My research integrates materials engineering, nanotechnology, and additive manufacturing to develop multifunctional biomaterials for drug delivery, tissue engineering, and regenerative medicine. My current research interests also include sustainable material processing and valorizing industrial waste into high-value biomaterials for healthcare applications.
Current Research Directions
- Sustainable and Circularly Sourced Biomaterials for Healthcare Applications
The work focuses on developing natural polymer-based hydrogels and nanocomposite systems using sustainably sourced materials, with potential applications in wound healing, hemostasis, and bone regeneration. - Nanocomposite Hydrogels for Tissue Engineering and Regenerative Medicine
This research investigates multifunctional hydrogels reinforced with engineered nanoparticles to improve their mechanical, rheological, and biological properties. Particular emphasis is placed on developing injectable and 3D-printable biomaterials for bone tissue engineering, wound healing, and controlled drug delivery.
Publications
- Chakraborty, A., Mamun, A. A., Xia, D., Vu, T., Zahid, A. A., Luo, W., & Paul, A. (2026). Engineering a dietary fiber-based injectable hydrogel for blood-clotting applications. Cell Reports Physical Science, 7(6), 103330. https://doi.org/10.1016/j.xcrp.2026.103330
- Zahid, A. A., Chakraborty, A., Luo, W., Bora, J., Kelly, J. J., Ronald, J. A., & Paul, A. (2026). Engineering a sonotherapeutic RBC membrane-derived nanoparticle platform for the treatment of liver cancer. Advanced Functional Materials, 36(31), e24571. https://doi.org/10.1002/adfm.202524571
- Santillán, F., Shamiya, Y., Chakraborty, A., Zahid, A. A., Veliz, L., Lagugné-Labarthet, F., Luyt, L. G., & Paul, A. (2026). Cyclic peptide-based shear-thinning and self-healing hydrogels as injectable nanotherapeutics. Biomaterials Science, 14(6), 1411–1417. https://doi.org/10.1039/D5BM01544H
- Luo, W., Zahid, A. A., Chakraborty, A., Huang, J., Kelly, J., Borradaile, N., Ronald, J., & Paul, A. (2026). On-chip microfluidic production of sonosensitizer-loaded liposomes for sonodynamic therapy of hepatocellular carcinoma. ACS Pharmacology & Translational Science, 9(1), 69–79. https://doi.org/10.1021/acsptsci.5c00522
- Chakraborty, A., Luo, W., Shamiya, Y., Zahid, A. A., Grynyshyn, M. R., Bainbridge, N., Liu, Y., Veliz, L. F., Lagugné-Labarthet, F., Liu, L., Hamilton, D., & Paul, A. (2025). Surface-engineered WS₂ nanohybrids for implications in biomedicine. ACS Applied Materials & Interfaces, 17(29), 41649–41665. https://doi.org/10.1021/acsami.5c06846
- Chakraborty, A., Luo, W., & Paul, A. (2025). Nanominerals: A multifaceted biomaterial for regenerative medicine and drug delivery. Expert Opinion on Drug Delivery, 22(6), 763–768. https://doi.org/10.1080/17425247.2025.2491642
- Coyle, A., Chakraborty, A., Huang, J., Shamiya, Y., Luo, W., & Paul, A. (2025). In vitro engineered ECM-incorporated hydrogels for osteochondral tissue repair: A cell-free approach. Advanced Healthcare Materials, 14(4), 2402701. https://doi.org/10.1002/adhm.202402701
- Huang, J., Chakraborty, A., Shamiya, Y., Luo, W., Zahid, A. A., & Paul, A. (2025). Self-assembled DNA nanocarrier-enabled drug delivery for bone remodeling and antimicrobial applications. npj Biomedical Innovations, 2, Article 29. https://doi.org/10.1038/s44385-025-00020-2
- Modaresi, S., Pacelli, S., Chakraborty, A., Coyle, A., Luo, W., Singh, I., & Paul, A. (2024). Engineering a microfluidic platform to cryopreserve stem cells: A DMSO-free sustainable approach. Advanced Healthcare Materials, 13(29), 2401264. https://doi.org/10.1002/adhm.202401264
- Zahid, A. A., Chakraborty, A., Shamiya, Y., Wilson, R., Borradaile, N., & Paul, A. (2024). Cell membrane-derived nanoparticles as biomimetic nanotherapeutics to alleviate fatty liver disease. ACS Applied Materials & Interfaces, 16(30), 39117–39128. https://doi.org/10.1021/acsami.4c08240
- Huang, J., Chakraborty, A., Tadepalli, L. S., & Paul, A. (2024). Adoption of a tetrahedral DNA nanostructure as a multifunctional biomaterial for drug delivery. ACS Pharmacology & Translational Science, 7(8), 2204–2214. https://doi.org/10.1021/acsptsci.4c00308
- Shamiya, Y., Chakraborty, A., Zahid, A. A., Bainbridge, N., Guan, J., Feng, B., Pjontek, D., Chakrabarti, S., & Paul, A. (2024). Ascorbyl palmitate nanofiber-reinforced hydrogels for drug delivery in soft tissues. Communications Materials, 5, Article 197. https://doi.org/10.1038/s43246-024-00641-x
- Choi, C., Chakraborty, A., Adzija, H., Shamiya, Y., Hijazi, K., Coyle, A., Rizkalla, A., Holdsworth, D., & Paul, A. (2023). Metal organic framework-incorporated three-dimensional (3D) bio-printable hydrogels to facilitate bone repair: Preparation and in vitro bioactivity analysis. Gels, 9(12), 923. https://doi.org/10.3390/gels9120923
- Zahid, A. A., Chakraborty, A., Luo, W., Coyle, A., & Paul, A. (2023). Tailoring the inherent properties of bio-based nanoparticles for nanomedicine. ACS Biomaterials Science & Engineering, 9(7), 3972–3986. https://doi.org/10.1021/acsbiomaterials.3c00364
- Chakraborty, A., Alexander, S., Luo, W., Al-Salam, N., Oirschot, M. L. M. V., Ranganath, S. H., Chakrabarti, S., & Paul, A. (2023). Engineering multifunctional adhesive hydrogel patches for biomedical applications. Interdisciplinary Medicine, 1(4), e20230008. https://doi.org/10.1002/inmd.20230008
- Chakraborty, A., Pacelli, S., Alexander, S., Huayamares, S., Rosenkrans, Z., Vergel, F. E., Wu, Y., Chakravorty, A., & Paul, A. (2023). Nanoparticle-reinforced tough hydrogel as a versatile platform for pharmaceutical drug delivery: Preparation and in vitro characterization. Molecular Pharmaceutics, 20(1), 767–774. https://doi.org/10.1021/acs.molpharmaceut.2c00564
- Ravi, S. P., Shamiya, Y., Chakraborty, A., Coyle, A., Zahid, A. A., Wang, J., Boutilier, M. S. H., Ho, E. A., & Paul, A. (2022). Controlling differentiation of adult stem cells via cell-derived nanoparticles: Implications in bone repair. ACS Applied Nano Materials, 5(12), 17468–17475. https://doi.org/10.1021/acsanm.2c03657
- Zahid, A. A., Chakraborty, A., Shamiya, Y., Ravi, S. P., & Paul, A. (2022). Leveraging the advancements in functional biomaterials and scaffold fabrication technologies for chronic wound healing applications. Materials Horizons, 9(7), 1850–1865. https://doi.org/10.1039/D2MH00115B
- Choi, C., Chakraborty, A., Coyle, A., Shamiya, Y., & Paul, A. (2022). Contact-free remote manipulation of hydrogel properties using light-triggerable nanoparticles: A materials science perspective for biomedical applications. Advanced Healthcare Materials, 11(8), 2102088. https://doi.org/10.1002/adhm.202102088
- Basu, S., Chakraborty, A., Alkiswani, A. R. I., Shamiya, Y., & Paul, A. (2022). Investigation of a 2D WS₂ nanosheet-reinforced tough DNA hydrogel as a biomedical scaffold: Preparation and in vitro characterization. Materials Advances, 3(2), 946–952. https://doi.org/10.1039/D1MA00897H
- Pacelli, S., Chakravarti, A. R., Modaresi, S., Subham, S. S., Burkey, K., Kurlbaum, C., Fang, M., Neal, C. A., Mellott, A. J., Chakraborty, A., & Paul, A. (2021). Investigation of human adipose-derived stem-cell behavior using a cell-instructive polydopamine-coated gelatin–alginate hydrogel. Journal of Biomedical Materials Research Part A, 109(12), 2597–2610. https://doi.org/10.1002/jbm.a.37253
- Ravi, S. P., Shamiya, Y., Chakraborty, A., Elias, C., & Paul, A. (2021). Biomaterials, biological molecules, and polymers in developing vaccines. Trends in Pharmacological Sciences, 42(10), 813–828. https://doi.org/10.1016/j.tips.2021.07.006
- Chakraborty, A., Roy, A., Ravi, S. P., & Paul, A. (2021). Exploiting the role of nanoparticles for use in hydrogel-based bioprinting applications: Concept, design, and recent advances. Biomaterials Science, 9(19), 6337–6354. https://doi.org/10.1039/D1BM00605C
- Chakraborty, A., Ravi, S. P., Shamiya, Y., Cui, C., & Paul, A. (2021). Harnessing the physicochemical properties of DNA as a multifunctional biomaterial for biomedical and other applications. Chemical Society Reviews, 50(13), 7779–7819. https://doi.org/10.1039/D0CS01387K
- Alhakamy, N. A., Alaofi, A. L., Ahmed, O. A. A., Fahmy, U. A., Shadab, M., Abdulaal, W. H., Alfaleh, M. A., Chakraborty, A., Berkland, C. J., & Dhar, P. (2020). Development of lipid membrane based assays to accurately predict the transfection efficiency of cell-penetrating peptide-based gene nanoparticles. International Journal of Pharmaceutics, 580, 119221. https://doi.org/10.1016/j.ijpharm.2020.119221
- Chakraborty, A., Ditmars, H., & Dhar, P. (2020). Impact of engineered carbon nanodiamonds on the collapse mechanism of model lung surfactant monolayers at the air-water interface. Molecules, 25(3), 714. https://doi.org/10.3390/molecules25030714
- Larson, N. R., Wei, Y., Prajapati, I., Chakraborty, A., Peters, B., Kalonia, C., Hudak, S., Choudhary, S., Esfandiary, R., Dhar, P., Schöneich, C., & Middaugh, C. R. (2020). Comparison of polysorbate 80 hydrolysis and oxidation on the aggregation of a monoclonal antibody. Journal of Pharmaceutical Sciences, 109(1), 633–639. https://doi.org/10.1016/j.xphs.2019.10.069
- Fresta, C. G., Chakraborty, A., Wijesinghe, M. B., Amorini, A. M., Lazzarino, G., Lazzarino, G., Tavazzi, B., Lunte, S. M., Caraci, F., Dhar, P., & Caruso, G. (2018). Non-toxic engineered carbon nanodiamond concentrations induce oxidative/nitrosative stress, imbalance of energy metabolism, and mitochondrial dysfunction in microglial and alveolar basal epithelial cells. Cell Death & Disease, 9(2), 245. https://doi.org/10.1038/s41419-018-0280-z
- Chakraborty, A., Hui, E., Waring, A. J., & Dhar, P. (2016). Combined effect of synthetic protein, Mini-B, and cholesterol on a model lung surfactant mixture at the air-water interface. Biochimica et Biophysica Acta (BBA) – Biomembranes, 1858(4), 904–912. https://doi.org/10.1016/j.bbamem.2016.01.008
- Chakraborty, A., Mucci, N., Tan, M. L., Steckley, A., Zhang, T., Forrest, M. L., & Dhar, P. (2015). Phospholipid composition modulates carbon nanodiamond-induced alterations in phospholipid domain formation. Langmuir, 31(18), 5093–5104. https://doi.org/10.1021/la504923j
Boards, Advisory committees, Professional organizations
- Member, Curriculum Advisory Committee (Industry Partners), Bahrain Polytechnic, Bahrain (2025–Present)
- Member, Study Plan Committee, Bahrain Polytechnic, Bahrain (2026)
- Member, IET Accreditation Committee, Bahrain Polytechnic, Bahrain (2025)
- Academic Mentor, Chemical and Industrial Processes Engineering, Bahrain Polytechnic, Bahrain (2025–Present)
- Member, Catalyst Grant Review Panel, Bone and Joint Institute, Western University, Canada (2024)
- Co-chair, Biomaterials Technical Session, Canadian Chemical Engineering Conference, Canada (2024)
- Judge, Undergraduate Research and Engineering Presentations, Canada (2023–2024)
- Secretary (Elected for Two Consecutive Terms), Graduate Engineering Association, University of Kansas, USA (2014–2016)