Andrea Barbetta
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Explore the profile of Andrea Barbetta including associated specialties, affiliations and a list of published articles.
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Articles
48
Citations
1109
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Recent Articles
1.
Serpe F, Nalin F, Tirelli M, Posabella P, Celikkin N, Jaroszewicz J, et al.
ACS Appl Mater Interfaces
. 2025 Feb;
17(9):13632-13645.
PMID: 39964244
The synergistic integration of microfluidic technologies with additive manufacturing systems is advancing the development of innovative platforms to 3D bioprint scaffolds for tissue engineering with unparalleled biological relevance. Significant interest...
2.
Costantini M, Cognini F, Angelini R, Alfano S, Villano M, Martinelli A, et al.
J Funct Biomater
. 2025 Jan;
16(1.
PMID: 39852565
Polymeric materials made from renewable sources that can biodegrade in the environment are attracting considerable attention as substitutes for petroleum-based polymers in many fields, including additive manufacturing and, in particular,...
3.
Marcotulli M, Barbetta A, Scarpa E, Bini F, Marinozzi F, Ruocco G, et al.
Ultrasound Med Biol
. 2024 Sep;
50(12):1973-1986.
PMID: 39289118
Acoustic manipulation or perturbation of biological soft matter has emerged as a promising clinical treatment for a number of applications within regenerative medicine, ranging from bone fracture repair to neuromodulation....
4.
Palombo M, Barbetta A, Cametti C, Favero G, Capuani S
Gels
. 2022 Feb;
8(2).
PMID: 35200475
Considering the current development of new nanostructured and complex materials and gels, it is critical to develop a sub-micro-scale sensitivity tool to quantify experimentally new parameters describing sub-microstructured porous systems....
5.
Cianciosi A, Costantini M, Bergamasco S, Testa S, Fornetti E, Jaroszewicz J, et al.
ACS Appl Bio Mater
. 2022 Jan;
2(11):5077-5092.
PMID: 35021451
The manufacturing of artificial bone grafts can potentially circumvent the issues associated with current bone grafting treatments for critical-size bone defects caused by pathological disorders, trauma, or massive tumor ablation....
6.
Tackling Current Biomedical Challenges With Frontier Biofabrication and Organ-On-A-Chip Technologies
Celikkin N, Presutti D, Maiullari F, Fornetti E, Agarwal T, Paradiso A, et al.
Front Bioeng Biotechnol
. 2021 Oct;
9:732130.
PMID: 34604190
In the last decades, biomedical research has significantly boomed in the academia and industrial sectors, and it is expected to continue to grow at a rapid pace in the future....
7.
Agarwal T, Hann S, Chiesa I, Cui H, Celikkin N, Micalizzi S, et al.
J Mater Chem B
. 2021 Sep;
9(37):7608-7632.
PMID: 34586145
Nature's material systems during evolution have developed the ability to respond and adapt to environmental stimuli through the generation of complex structures capable of varying their functions across direction, distances...
8.
Costantini M, Barbetta A, Swieszkowski W, Seliktar D, Gargioli C, Rainer A
Methods Mol Biol
. 2020 Aug;
2147:45-54.
PMID: 32840809
Thanks to their unique advantages, additive manufacturing technologies are revolutionizing almost all sectors of the industrial and academic worlds, including tissue engineering and regenerative medicine. In particular, 3D bioprinting is...
9.
Serra R, Bracale U, Barbetta A, Ielapi N, Licastro N, Gallo A, et al.
Int Wound J
. 2020 Apr;
17(4):987-991.
PMID: 32285613
Peripheral arterial disease (PAD) and its most severe form, critical limb ischaemia (CLI), are very common clinical conditions related to atherosclerosis and represent the major causes of morbidity, mortality, disability,...
10.
Colosi C, Costantini M, Latini R, Ciccarelli S, Stampella A, Barbetta A, et al.
J Mater Chem B
. 2020 Apr;
2(39):6779-6791.
PMID: 32261874
Three dimensional, periodic scaffolds of chitosan-coated alginate are fabricated in a layer-by-layer fashion by rapid prototyping. A novel dispensing system based on two coaxial needles delivers simultaneously alginate and calcium...