Biomaterials Innovation Laboratory
Publications
1.
Kamaraj, M. et al. Granular Porous Nanofibrous Microspheres Enhance Cellular Infiltration for Diabetic Wound Healing. ACS Nano 18, 28335–28348 (2024).
2.
Basu, P. et al. Integration of Functional Polymers and Biosensors to Enhance Wound Healing. Advanced Healthcare Materials 13, 2401461 (2024).
3.
Banerjee, A. et al. Mechanistic understanding of enhancing bioactivity via bio-ionic liquid functionalization of biomaterials. Applied Materials Today 41, 102444 (2024).
4.
Pezhouman, A. et al. Cardiac regeneration – Past advancements, current challenges, and future directions. Journal of Molecular and Cellular Cardiology 182, 75–85 (2023).
5.
Mirani, B. et al. Smart Dual-Sensor Wound Dressing for Monitoring Cutaneous Wounds. Advanced Healthcare Materials 12, 2203233 (2023).
6.
Krishnadoss, V. et al. Programmable bio-ionic liquid functionalized hydrogels for in situ 3D bioprinting of electronics at the tissue interface. Materials Today Advances 17, 100352 (2023).
7.
Kooragayala, K. et al. Impact of adipose-derived stem cells on aortic tensile strength in a model of abdominal aortic aneurysm. American Heart Journal Plus: Cardiology Research and Practice 27, 100279 (2023).
8.
Kanjilal, B. et al. Bioionic Liquids: Enabling a Paradigm Shift Toward Advanced and Smart Biomedical Applications. Advanced Intelligent Systems 5, 2200306 (2023).
9.
Azim, S. M. et al. Accurately predicting anticancer peptide using an ensemble of heterogeneously trained classifiers. Informatics in Medicine Unlocked 42, 101348 (2023).
10.
Nabavinia, M. et al. Hydrogel-Encapsulated Heterogenous Mesoporous Resin Catalyst for In Situ Anti-Cancer Agent Production under Biological Conditions. Biomolecules 12, 1796 (2022).
11.
Baghdasarian, S. et al. Engineering a naturally derived hemostatic sealant for sealing internal organs. Materials Today Bio 13, 100199 (2022).
12.
Azim, S. M., Sharma, A., Noshadi, I., Shatabda, S. & Dehzangi, I. A convolutional neural network based tool for predicting protein AMPylation sites from binary profile representation. Sci Rep 12, 11451 (2022).
13.
Nabavinia, M., Kanjilal, B., Fujinuma, N., Mugweru, A. & Noshadi, I. Developing Eco-Friendly and Cost-Effective Porous Adsorbent for Carbon Dioxide Capture. Molecules 26, 1962 (2021).
14.
Krishnadoss, V. et al. In situ 3D printing of implantable energy storage devices. Chemical Engineering Journal 409, 128213 (2021).
15.
Farzin, A. et al. Self-Oxygenation of Tissues Orchestrates Full-Thickness Vascularization of Living Implants. Advanced Functional Materials 31, 2100850 (2021).
16.
De Leo, N. et al. Development of a Model for Abdominal Aortic Aneurysms in Swine. Journal of Surgical Research 268, 79–86 (2021).
17.
Farizhandi, A. A. K., Khalajabadi, S. Z., Krishnadoss, V. & Noshadi, I. Synthesized biocompatible and conductive ink for 3D printing of flexible electronics. Journal of the Mechanical Behavior of Biomedical Materials 110, 103960 (2020).
18.
Nabavinia, M. et al. One-Pot Aqueous and Template-Free Synthesis of Mesoporous Polymeric Resins. Catalysts 9, 782 (2019).
19.
Krishnadoss, V. et al. Bioionic Liquid Conjugation as Universal Approach To Engineer Hemostatic Bioadhesives. ACS Appl. Mater. Interfaces 11, 38373–38384 (2019).
20.
Zhou, Y. et al. Solid Acid Catalyst Based on Single-Layer α-Zirconium Phosphate Nanosheets for Biodiesel Production via Esterification. Catalysts 8, 17 (2018).
21.
Shirzaei Sani, E. et al. Engineering Adhesive and Antimicrobial Hyaluronic Acid/Elastin-like Polypeptide Hybrid Hydrogels for Tissue Engineering Applications. ACS Biomater. Sci. Eng. 4, 2528–2540 (2018).
22.
Khalajabadi, S. Z. et al. In vitro biocorrosion, antibacterial and mechanical properties of silicon-containing coatings on the magnesium-hydroxiapatite nanocomposite for implant applications. Materials Chemistry and Physics 214, 449–463 (2018).
23.
Khalajabadi, S. Z. et al. Bio-corrosion behavior and mechanical characteristics of magnesium-titania-hydroxyapatite nanocomposites coated by magnesium-oxide flakes and silicon for use as resorbable bone fixation material. Journal of the Mechanical Behavior of Biomedical Materials 77, 360–374 (2018).
24.
Noshadi, I. et al. Engineering Biodegradable and Biocompatible Bio-ionic Liquid Conjugated Hydrogels with Tunable Conductivity and Mechanical Properties. Sci Rep 7, 4345 (2017).
25.
Noshadi, I. et al. Amine/thiol functionalized mesoporous polydivinylbenzene for CO2 adsorption. Materials Today Energy 4, 81–88 (2017).
26.
Noshadi, I. et al. In vitro and in vivo analysis of visible light crosslinkable gelatin methacryloyl (GelMA) hydrogels. Biomater. Sci. 5, 2093–2105 (2017).
27.
Noshadi, I., Carrie, C., Borovilas, J., Kanjilal, B. & Liu, F. Efficient Transformation of Waste Bone Oil into High Quality Biodiesel via a Synergistic Catalysis of Porous Organic Polymer Solid Acid and Porous γ-Al2O3-K2O Solid Base. Ind. Eng. Chem. Res. 56, 10009–10017 (2017).
28.
Leijten, J. et al. Spatially and temporally controlled hydrogels for tissue engineering. Materials Science and Engineering: R: Reports 119, 1–35 (2017).
29.
Jafari, T. et al. Microwave-assisted synthesis of amine functionalized mesoporous polydivinylbenzene for CO2 adsorption. Journal of CO2 Utilization 19, 79–90 (2017).
30.
Assmann, A. et al. A highly adhesive and naturally derived sealant. Biomaterials 140, 115–127 (2017).
31.
Noshadi, I., Kanjilal, B. & Liu, F. Porous carbonaceous solid acids derived from farm animal waste and their use in catalyzing biomass transformation. Applied Catalysis A: General 513, 19–29 (2016).
32.
Noshadi, I. et al. Hydrophobic mesoporous adsorbent based on cyclic amine–divinylbenzene copolymer for highly efficient siloxane removal. RSC Advances 6, 77310–77320 (2016).
33.
Kamat, R. K. et al. Enzymatic Activities of Polycatalytic Complexes with Nonprocessive Cellulases Immobilized on the Surface of Magnetic Nanoparticles. Langmuir 32, 11573–11579 (2016).
34.
Liu, F. et al. Solvothermal synthesis of stable nanoporous polymeric bases-crystalline TiO2 nanocomposites: visible light active and efficient photocatalysts for water treatment. Nanotechnology 26, 085705 (2015).
35.
Liu, F. et al. Efficient biomass transformations catalyzed by graphene-like nanoporous carbons functionalized with strong acid ionic liquids and sulfonic groups. Green Chemistry 17, 480–489 (2015).
36.
Kanjilal, B., Noshadi, I., McCutcheon, J. R., Asandei, A. D. & Parnas, R. S. Allylcyclohexylamine functionalized siloxane polymer and its phase separated blend as pervaporation membranes for 1,3-propanediol enrichment from binary aqueous mixtures. Journal of Membrane Science 486, 59–70 (2015).
37.
Kanjilal, B., Noshadi, I., Bautista, E. J., Srivastava, R. & Parnas, R. S. Batch, design optimization, and DNA sequencing study for continuous 1,3-propanediol production from waste glycerol by a soil-based inoculum. Appl Microbiol Biotechnol 99, 2105–2117 (2015).
38.
Jafari, T., Noshadi, I., Khakpash, N. & Suib, S. L. Superhydrophobic and stable mesoporous polymeric adsorbent for siloxane removal: D4 super-adsorbent. J. Mater. Chem. A 3, 5023–5030 (2015).
39.
Noshadi, I. et al. Catalyzed production of biodiesel and bio-chemicals from brown grease using Ionic Liquid functionalized ordered mesoporous polymer. Applied Energy 129, 112–122 (2014).
40.
Diao, C., Xia, H., Noshadi, I., Kanjilal, B. & Parnas, R. S. Wheat Gluten Blends with a Macromolecular Cross-Linker for Improved Mechanical Properties and Reduced Water Absorption. ACS Sustainable Chem. Eng. 2, 2554–2561 (2014).
41.
Salahi, A., Noshadi, I., Badrnezhad, R., Kanjilal, B. & Mohammadi, T. Nano-porous membrane process for oily wastewater treatment: Optimization using response surface methodology. Journal of Environmental Chemical Engineering 1, 218–225 (2013).
42.
Pomykala, M., Stuart, J. D., Noshadi, I. & Parnas, R. S. The interplay of phase equilibria and chemical kinetics in a liquid/liquid multiphase biodiesel reactor. Fuel 107, 623–632 (2013).
43.
Noshadi, I., Salahi, A., Hemmati, M., Rekabdar, F. & Mohammadi, T. Experimental and ANFIS modeling for fouling analysis of oily wastewater treatment using ultrafiltration. Asia-Pacific Journal of Chemical Engineering 8, 527–538 (2013).
44.
Liu, F., Zheng, A., Noshadi, I. & Xiao, F.-S. Design and synthesis of hydrophobic and stable mesoporous polymeric solid acid with ultra strong acid strength and excellent catalytic activities for biomass transformation. Applied Catalysis B: Environmental 136–137, 193–201 (2013).
45.
Noshadi, I., Amin, N. A. S. & Parnas, R. S. Continuous production of biodiesel from waste cooking oil in a reactive distillation column catalyzed by solid heteropolyacid: Optimization using response surface methodology (RSM). Fuel 94, 156–164 (2012).
46.
Hezaveh, H., Muhamad, I. I., Noshadi, I., Shu Fen, L. & Ngadi, N. Swelling behaviour and controlled drug release from cross-linked κ-carrageenan/NaCMC hydrogel by diffusion mechanism. Journal of Microencapsulation 29, 368–379 (2012).
47.
Hezaveh, H., Fazlali, A. & Noshadi, I. Synthesis, rheological properties and magnetoviscos effect of Fe2O3/paraffin ferrofluids. Journal of the Taiwan Institute of Chemical Engineers 43, 159–164 (2012).
48.
Jamekhorshid, A., Karimi, G. & Noshadi, I. Current distribution and cathode flooding prediction in a PEM fuel cell. Journal of the Taiwan Institute of Chemical Engineers 42, 622–631 (2011).