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Journal Article
G. Vozzi, Lenzi, T., Montemurro, F., Pardini, C., Vaglini, F., and Ahluwalia, A., A Novel Method to Produce Immobilised Biomolecular Concentration Gradients to Study Cell Activities: Design and Modelling, MOLECULAR BIOTECHNOLOGY, vol. 50, pp. 99-107, 2012.
S. Giusti, Sbrana, T., La Marca, M., Di Patria, V., Martinucci, V., Tirella, A., Domenici, C., and Ahluwalia, A., A novel dual-flow bioreactor simulates increased fluorescein permeability in epithelial tissue barriers, Biotechnology journal, 2014 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/24756869
A. CUTRONE, De Maria, C., Vinci, B., Vozzi, F., Ahluwalia, A., and Vozzi, G., A new library of HEMET model: Insulin effects on hepatic metabolism, COMPUTER METHODS AND PROGRAMS IN BIOMEDICINE, vol. 94, no. 2, pp. 181–189, 2009.
L. Billeci, Magliaro, C., Pioggia, G., and Ahluwalia, A., NEuronMOrphological analysis tool: open-source software for quantitative morphometrics, Front. Neuroinform., vol. 7, no. 2, 2013.
A. Tirella, La Marca, M., Brace, L. A., Mattei, G., Aylott, J., and Ahluwalia, A., Nano-in-Micro Self-Reporting Hydrogel Constructs, Journal of Biomedical Nanotechnology, vol. 11, pp. 1451–1460, 2015 [Online]. Available: http://openurl.ingenta.com/content/xref?genre=article&issn=1550-7033&volume=11&issue=8&spage=1451
G. Mattei, Gruca, G., Rijnveld, N., and Ahluwalia, A., The nano-epsilon dot method for strain rate viscoelastic characterisation of soft biomaterials by spherical nano-indentation, Journal of the Mechanical Behavior of Biomedical Materials, vol. 50, pp. 150–159, 2015 [Online]. Available: http://linkinghub.elsevier.com/retrieve/pii/S1751616115002088
A. Tirella, Marano, M., Vozzi, F., and Ahluwalia, A., A microfluidic gradient maker for toxicity testing of bupivacaine and lidocaine, Toxicology in vitro, vol. 22, pp. 1957–64, 2008 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/18940244
F. BIANCHI, ROSI, M., Vozzi, G., EMANUELI, C., MADEDDU, P., and Ahluwalia, A., Microfabrication of fractal polymeric structures for capillary morphogenesis: applications in therapeutic angiogenesis and in the engineering of vascularized tissue, JOURNAL OF BIOMEDICAL MATERIALS RESEARCH. PART B, APPLIED BIOMATERIALS, vol. 81, pp. 462–468, 2007.
G. Vozzi and Ahluwalia, A., Microfabrication for tissue engineering: rethinking the cells-on-a scaffold approach, JOURNAL OF MATERIALS CHEMISTRY, p. –, 2007.
D. Mazzei, Guzzardi, M. A., Giusti, S., and Ahluwalia, A., A low shear stress modular bioreactor for connected cell culture under high flow rates., Biotechnol Bioeng, vol. 106, pp. 127–137, 2010.
N. Ucciferri, Collnot, E. M., Gaiser, B., Tirella, A., Stone, V., Domenici, C., Lehr, C. - M., and Ahluwalia, A., In vitro toxicological screening of nanoparticles on primary human endothelial cells and the role of flow in modulating cell response, Nanotoxicology, 2013 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/23909703
B. Vinci, Cavallone, D., Vozzi, G., Mazzei, D., Domenici, C., Brunetto, M., and Ahluwalia, A., In vitro liver model using microfabricated scaffolds in a modular bioreactor., Biotechnol J, vol. 5, pp. 232–241, 2010.
B. Vinci, Vozzi, G., AVOGARO, A., and Ahluwalia, A., In vitro engineering of the liver using multiple axis stimuli, INTERNAL MEDICINE, vol. 15, pp. 13–15, 2008.
C. De Maria, Mazzei, D., and Ahluwalia, A., Improving African Healthcare through Open Source Biomedical Engineering, International Journal On Advances in Life Sciences, 2015.
A. Tirella and Ahluwalia, A., The impact of fabrication parameters and substrate stiffness in direct writing of living constructs, Biotechnology progress, vol. 28, pp. 1315–1320, 2012 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/22736619
C. Magliaro, Tirella, A., Mattei, G., Pirone, A., and Ahluwalia, A., HisTOOLogy: an open-source tool for quantitative analysis of histological sections , Journal of Microscopy, 2015.
D. Mazzei, Vozzi, F., Cisternino, A., Vozzi, G., and Ahluwalia, A., A High-Throughput Bioreactor System for Simulating Physiological Environments, IEEE T Ind Electron, vol. 55, pp. 3273–3280, 2008.
C. De Maria, GRASSINI, D., Vozzi, F., Vinci, B., Landi, A., Ahluwalia, A., and Vozzi, G., HEMET: mathematical model of biochemical pathways for simulation and prediction of HEpatocyte METabolism, COMPUTER METHODS AND PROGRAMS IN BIOMEDICINE, vol. 92, pp. 121–134, 2008.
V. Chiono, PULIERI, E., Vozzi, G., Ciardelli, G., Ahluwalia, A., and Giusti, P., Genipin-crosslinked chitosan/gelatin blends for biomedical applications, JOURNAL OF MATERIALS SCIENCE. MATERIALS IN MEDICINE, 2008.
G. Mattei, Tirella, A., and Ahluwalia, A., Functionally Graded Materials (FGMs) with predictable and controlled gradient profiles: computational modelling and realisation, International Journal for Computational Methods in Engineering Science & Mechanics (CMES), p. accepted, 2012.
F. Vozzi, Mazzei, D., Vinci, B., Vozzi, G., Sbrana, T., Ricotti, L., Forgione, N., and Ahluwalia, A., A flexible bioreactor system for constructing in vitro tissue and organ models., Biotechnol Bioeng, vol. 108, pp. 2129–2140, 2011.
G. Vozzi, Mazzei, D., Tirella, A., Vozzi, F., and Ahluwalia, A., Finite element modelling and design of a concentration gradient generating bioreactor: Application to biological pattern formation and toxicology, Toxicology in vitro, vol. 24, pp. 1828–1837, 2010 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/20580814
A. Mazzoldi, Tesconi, M., Tognetti, A., Rocchia, W., Vozzi, G., Pioggia, G., Ahluwalia, A., and De Rossi, D., Electroactive Carbon Nanotube Actuators: Soft-Lithographic Fabrication and Electro-chemical Modelling, MATERIALS SCIENCE AND ENGINEERING. C, BIOMIMETIC MATERIALS, SENSORS AND SYSTEMS, p. –, 2008.
Y. Whulanza, Vannozzi, L., Vomero, M., Ahluwalia, A., and Vozzi, G., Electrical and Mechanical Characterisation of single wall carbon nanotubes based composites for tissue engineering applications, Journal of nanoscience and nanotechnology, pp. 188 - 197, 2013.
C. De Maria, Grassi, L., Vozzi, F., Ahluwalia, A., Vozzi, G., and Campbell, R. I., Development of a novel Micro-Ablation System to realise micrometric and well-defined hydrogel structures for Tissue Engineering applications, Rapid Prototyping Journal, vol. 20, 2014.
G. Mattei, Giusti, S., and Ahluwalia, A., Design Criteria for Generating Physiologically Relevant In Vitro Models in Bioreactors, Processes, vol. 2, pp. 548–569, 2014 [Online]. Available: http://www.mdpi.com/2227-9717/2/3/548/
G. Mattei, Ferretti, C., Tirella, A., Ahluwalia, A., and Mattioli-Belmonte, M., Decoupling the role of stiffness from other hydroxyapatite signalling cues in periosteal derived stem cell differentiation, Scientific Reports, vol. 5, p. 10778, 2015 [Online]. Available: http://www.nature.com/doifinder/10.1038/srep10778
G. Mattei, Magliaro, C., Pirone, A., and Ahluwalia, A., Decellularized Human Liver Is Too Heterogeneous for Designing a Generic Extracellular Matrix Mimic Hepatic Scaffold., Artificial Organs, 2017 [Online]. Available: https://www.ncbi.nlm.nih.gov/pubmed/28543403
G. Forte, CAROTENUTO, F., Pagliari, F., Pagliari, S., COSSA, P., FIACCAVENTO, R., Ahluwalia, A., Vozzi, G., Vinci, B., SERAFINO, A., RINALDI, A., Traversa, E., CAROSELLA, L., Minieri, M., and Di Nardo, P., Criticality of the Biological and Physical Stimuli Array Inducing Resident Cardiac Stem Cell Determination, STEM CELLS, vol. 26, pp. 2093–2103, 2008.
S. Pagliari, Vilela-Silva, A. C., Forte, G., Pagliari, F., Mandoli, C., Vozzi, G., Pietronave, S., Prat, M., Licoccia, S., Ahluwalia, A., Traversa, E., Minieri, M., and Di Nardo, P., Cooperation of Biological and Mechanical Signals in Cardiac Progenitor Cell Differentiation, ADVANCED MATERIALS, 2011.

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