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Journal Article
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.
G. Orsi, De Maria, C., Guzzardi, M. A., Vozzi, F., and Vozzi, G., HEMETBeta: improvement of hepatocyte metabolism mathematical model, COMPUTER METHODS IN BIOMECHANICS AND BIOMEDICAL ENGINEERING, 2011.
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.
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
M. Carrabba, De Maria, C., Oikawa, A., Reni, C., Rodriguez-Arabaolaza, I., Spencer, H., Slater, S., Avolio, E., Dang, Z., Spinetti, G., MADEDDU, P., and Vozzi, G., fabrication and perivascular implantation of bioactive scaffolds engineered with human adventitial progenitor cells for stimulation of arteriogenesis in peripheral ischemia, Biofabrication, vol. 8, no. 1:015020, 2016.
H. Gunasekaran, De Acutis, A., Montemurro, F., De Maria, C., and Vozzi, G., Fabrication and Characterization of Gelatin/Carbon Black–Based Scaffolds for Neural Tissue Engineering Applications, Materials Performance and Characterization, vol. 8, 2019 [Online]. Available: https://www.astm.org/DIGITAL_LIBRARY/JOURNALS/MPC/PAGES/MPC20180165.htmPDF icon mpc20180165.1255.pdf (1.64 MB)
V. Chiono, Ciardelli, G., Vozzi, G., CORTEZ, J., Barbani, N., GENTILE, P., and Giusti, P., Enzymatically-modified melt-extruded guides for peripheral nerve repair, ENGINEERING IN LIFE SCIENCES, 2008.
G. Ciardelli, GENTILE, P., Chiono, V., Mattioli-Belmonte, M., Vozzi, G., Barbani, N., and Giusti, P., Enzymatically crosslinked porous composite matrices for bone tissue regeneration, JOURNAL OF BIOMEDICAL MATERIALS RESEARCH. PART A, 2010.
I. Chiesa, De Maria, C., Lapomarda, A., Fortunato, G. M., Montemurro, F., Di Gesù, R., Tuan, R. S., Vozzi, G., and Gottardi, R., Endothelial cells support osteogenesis in an in vitro vascularized bone model developed by 3D bioprinting, International Society for Biofabrication, 2020 [Online]. Available: https://iopscience.iop.org/article/10.1088/1758-5090/ab6a1d/pdfPDF icon chiesaetal_2020_biofabrication_10.1088_1758-5090_ab6a1d.pdf (2.49 MB)
G. M. Fortunato, Da Ros, F., Bisconti, S., De Acutis, A., Biagini, F., Lapomarda, A., Magliaro, C., De Maria, C., Montemurro, F., Bizzotto, D., Braghetta, P., and Vozzi, G., Electrospun Structures Made of a Hydrolyzed Keratin-Based Biomaterial for Development of in vitro Tissue Models, Frontiers in Bioengineering and Biotechnology, vol. 7, 2019 [Online]. Available: https://www.frontiersin.org/articles/10.3389/fbioe.2019.00174/fullPDF icon fbioe-07-00174.pdf (4.95 MB)
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.
Y. Wu, Okesola, B., Xu, J., Korotkin, I., Berardo, A., Corridori, I., Di Brocchetti, F., Kanczler, J., Feng, J., Li, W., Shi, Y., Farafonov, V., Wang, Y., Thompson, R., Tiritici, M. M., Nerukh, D., Karabasov, S., Oreffo, R. O. C., Rodriguez-Cabello, J. C., Vozzi, G., Azevedo, H., Pugno, N. M., Wang, W., and Mata, A., Disordered protein-graphene oxide co-assembly and supramolecular biofabrication of functional fluidic devices, Nature communications, vol. 11, pp. 1–12, 2020 [Online]. Available: https://www.nature.com/articles/s41467-020-14716-z
A. Rechichi, Sartori, S., CAPORALE, A., Ciardelli, G., Vozzi, G., MAZZUCCO, L., PEGGION, E., and Giusti, P., Development of a RGDS-peptide modified polyurethane for tissue regeneration, ADVANCES IN EXPERIMENTAL MEDICINE AND BIOLOGY, vol. 611, pp. 249–250, 2009.
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.
C. De Maria, Ferrari, L., Montemurro, F., Vozzi, G., Guerrazzi, I., Boland, T., and Vozzi, G., Design and Validation of an Open-Hardware Print-Head forBioprinting Application, Procedia Engineering, vol. 110, pp. 98-105, 2015.
C. De Maria, Ferrari, L., Montemurro, F., Vozzi, G., Guerrazzi, I., Boland, T., and Vozzi, G., Design and Validation of an Open-Hardware Print-Head forBioprinting Application, Procedia Engineering, vol. 110, pp. 98-105, 2015.
A. Rechichi, Ciardelli, G., D'Acunto, M., Vozzi, G., and Giusti, P., Degradable block polyurethanes from nontoxicbuilding blocks as scaffold materials to support cell growth and proliferation, JOURNAL OF BIOMEDICAL MATERIALS RESEARCH. PART A, p. –, 2008.
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.
G. Valvano, Orsi, G., Guzzardi, M. A., Vozzi, F., and Vozzi, G., CREPE: mathematical model for CRosstalking of Endothelial cells and hePatocytE metabolism, IEEE Transactions of Biomedical Engineeirng, vol. 61, no. 1, pp. 224 - 230, 2014.
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.
A. Migliore, Vozzi, F., Vozzi, G., and Ahluwalia, A., Controlled in vitro growth of cell microtubes: towards the realisation of artificial microvessels, BIOMEDICAL MICRODEVICES, 2008.
M. Mattioli-Belmonte, KYRIAKIDOU, K., LUCARINI, G., ZIZZI, A., Ahluwalia, A., and Vozzi, G., Comparative study of porous and engineered biomaterials, INTERNAL MEDICINE, vol. 15, pp. 4–8, 2008.
G. Orsi, De Maria, C., Montemurro, F., Chauhan, V., Aylott, J., and Vozzi, G., Combining Inkjet Printing and Sol-Gel chemistry for Making pH-Sensitive surfaces, Current topics in medicinal chemistry, vol. 15(3), pp. 271-278, 2015.
G. Vozzi, Corallo, C., Carta, S., Fortina, M., Gattazzo, F., Galletti, M., and Giordano, N., Collagen‐gelatin‐genipin‐hydroxyapatite composite scaffolds colonized by human primary osteoblasts are suitable for bone tissue engineering applications: In vitro evidences, Journal of Biomedical Materials Research Part A, 2013.
G. Vozzi, Corallo, C., Carta, S., Fortina, M., Gattazzo, F., Galletti, M., and Giordano, N., Collagen-gelatin-genipin-hydroxyapatite composite scaffolds colonized by human primary osteoblasts are suitable for bone tissue engineering applications: In vitro evidences, J Biomed Mater Res A, 2013.
G. Vozzi, Corallo, C., Carta, S., Fortina, M., Gattazzo, F., Galletti, M., and Giordano, N., Collagen-gelatin-genipin-hydroxyapatite composite scaffolds colonized by human primary osteoblasts are suitable for bone tissue engineering applications: In vitro evidences, Journal of Biomedical Materials Research Part A, vol. 102, pp. 1415–1421, 2014.
A. Urciuolo, Quarta, M., Morbidoni, V., Gattazzo, F., Molon, S., Grumati, P., Montemurro, F., Tedesco, F. S., Blaauw, B., Cossu, G., Vozzi, G., Rando, T. A., and Bonaldo, P., Collagen VI regulates satellite cell self-renewal and muscle regeneration, Nat Commun, vol. 4, 2013.

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