Gabriele Nasello
Overview
Explore the profile of Gabriele Nasello including associated specialties, affiliations and a list of published articles.
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10
Citations
55
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Recent Articles
1.
Decoene I, Nasello G, Madeiro de Costa R, Nilsson Hall G, Pastore A, Van Hoven I, et al.
Stem Cells Transl Med
. 2024 Jan;
13(3):278-292.
PMID: 38217535
Automated technologies are attractive for enhancing the robust manufacturing of tissue-engineered products for clinical translation. In this work, we present an automation strategy using a robotics platform for media changes,...
2.
Borgiani E, Nasello G, Ory L, Herpelinck T, Groeneveldt L, Bucher C, et al.
Front Immunol
. 2023 Dec;
14:1231329.
PMID: 38130715
Bone fracture healing is a well-orchestrated but complex process that involves numerous regulations at different scales. This complexity becomes particularly evident during the inflammatory stage, as immune cells invade the...
3.
Asbai-Ghoudan R, Nasello G, Perez M, Verbruggen S, Ruiz de Galarreta S, Rodriguez-Florez N
Comput Biol Med
. 2023 Aug;
165:107381.
PMID: 37611419
Mechanical environment plays a crucial role in regulating bone regeneration in bone defects. Assessing the mechanobiological behavior of patient-specific orthopedic scaffolds in-silico could help guide optimal scaffold designs, as well...
4.
Hettinger Z, Hu S, Mamiya H, Sahu A, Iijima H, Wang K, et al.
bioRxiv
. 2023 Mar;
PMID: 36865124
Loss of muscle stem cell (MuSC) self-renewal with aging reflects a combination of influences from the intracellular (e.g., post-transcriptional modifications) and extracellular (e.g., matrix stiffness) environment. Whereas conventional single cell...
5.
Luketich S, Cosentino F, Di Giuseppe M, Menallo G, Nasello G, Livreri P, et al.
J Mech Behav Biomed Mater
. 2022 Feb;
128:105126.
PMID: 35180648
Effective cardiovascular tissue surrogates require high control of scaffold structural and mechanical features to match native tissue properties, which are dependent on tissue-specific mechanics, function heterogenicity, and morphology. Bridging scaffold...
6.
Lafuente-Gracia L, Borgiani E, Nasello G, Geris L
Front Bioeng Biotechnol
. 2021 Oct;
9:703725.
PMID: 34660547
modeling is a powerful strategy to investigate the biological events occurring at tissue, cellular and subcellular level during bone fracture healing. However, most current models do not consider the impact...
7.
Garcia-Aznar J, Nasello G, Hervas-Raluy S, Perez M, Gomez-Benito M
Bone
. 2021 Jun;
151:116032.
PMID: 34118446
Mechanical environment has a crucial role in our organism at the different levels, ranging from cells to tissues and our own organs. This regulatory role is especially relevant for bones,...
8.
Nasello G, Vautrin A, Pitocchi J, Wesseling M, Kuiper J, Perez M, et al.
Bone
. 2020 Dec;
144:115769.
PMID: 33276152
It is well founded that the mechanical environment may regulate bone regeneration in orthopedic applications. The purpose of this study is to investigate the mechanical contributions of the scaffold and...
9.
Nasello G, Alaman-Diez P, Schiavi J, Perez M, McNamara L, Garcia-Aznar J
Front Bioeng Biotechnol
. 2020 May;
8:336.
PMID: 32391343
Microengineered systems provide an strategy to explore the variability of individual patient response to tissue engineering products, since they prefer the use of primary cell sources representing the phenotype variability....
10.
DAmore A, Nasello G, Luketich S, Denisenko D, Jacobs D, Hoff R, et al.
Soft Matter
. 2018 Oct;
14(42):8483-8495.
PMID: 30357253
Physical cues are decisive factors in extracellular matrix (ECM) formation and elaboration. Their transduction across scale lengths is an inherently symbiotic phenomenon that while influencing ECM fate is also mediated...