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Giovanna Lacava

Showing results (1-10 of 8) with videos related to

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Journal of Cellular Physiology|June 29, 2018
Bone and bone marrow disruption by endocrine-active substancesDimitrios Agas, Giovanna Lacava, Maria Giovanna Sabbieti
Journal of Cellular Physiology|February 27, 2020
Loss of p62 impairs bone turnover and inhibits PTH-induced osteogenesisDimitrios Agas, Andrea Amaroli, Giovanna Lacava, et al.
Current Gene Therapy|January 6, 2018
Molecular Adjuvants Based on Plasmids Encoding Protein Aggregation Domains Affect Bone Marrow Niche HomeostasisMaria Giovanna Sabbieti, Giovanna Lacava, Andrea Amaroli, et al.
Frontiers in Endocrinology|March 8, 2019
A Comparative Study Between the Effectiveness of 980 nm Photobiomodulation Delivered by Hand-Piece With Gaussian vs. Flat-Top Profiles on Osteoblasts MaturationReem Hanna, Dimitrios Agas, Stefano Benedicenti, et al.
Journal of Cellular Physiology|February 12, 2019
P62 deficiency shifts mesenchymal/stromal stem cell commitment toward adipogenesis and disrupts bone marrow homeostasis in aged miceGiovanna Lacava, Fulvio Laus, Andrea Amaroli, et al.
Journal of Cellular Physiology|April 11, 2019
Thermosensitive hybrid hyaluronan/p(HPMAm-lac)-PEG hydrogels enhance cartilage regeneration in a mouse model of osteoarthritisDimitrios Agas, Fulvio Laus, Giovanna Lacava, et al.
Current Gene Therapy|April 1, 2016
Administration of DNA Plasmid Coding Protein Aggregating Domain Induces Inflammatory Bone LossDimitrios Agas, Fabio Concetti, Melania Capitani, et al.
The Journal of Endocrinology|December 3, 2016
INF-γ encoding plasmid administration triggers bone loss and disrupts bone marrow microenvironmentDimitrios Agas, Guilherme Gusmão Silva, Fulvio Laus, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Journal of Cellular Physiology|June 29, 2018
Bone and bone marrow disruption by endocrine-active substancesDimitrios Agas, Giovanna Lacava, Maria Giovanna Sabbieti
Journal of Cellular Physiology|February 27, 2020
Loss of p62 impairs bone turnover and inhibits PTH-induced osteogenesisDimitrios Agas, Andrea Amaroli, Giovanna Lacava, et al.
Current Gene Therapy|January 6, 2018
Molecular Adjuvants Based on Plasmids Encoding Protein Aggregation Domains Affect Bone Marrow Niche HomeostasisMaria Giovanna Sabbieti, Giovanna Lacava, Andrea Amaroli, et al.
Frontiers in Endocrinology|March 8, 2019
A Comparative Study Between the Effectiveness of 980 nm Photobiomodulation Delivered by Hand-Piece With Gaussian vs. Flat-Top Profiles on Osteoblasts MaturationReem Hanna, Dimitrios Agas, Stefano Benedicenti, et al.
Journal of Cellular Physiology|February 12, 2019
P62 deficiency shifts mesenchymal/stromal stem cell commitment toward adipogenesis and disrupts bone marrow homeostasis in aged miceGiovanna Lacava, Fulvio Laus, Andrea Amaroli, et al.
Journal of Cellular Physiology|April 11, 2019
Thermosensitive hybrid hyaluronan/p(HPMAm-lac)-PEG hydrogels enhance cartilage regeneration in a mouse model of osteoarthritisDimitrios Agas, Fulvio Laus, Giovanna Lacava, et al.
Current Gene Therapy|April 1, 2016
Administration of DNA Plasmid Coding Protein Aggregating Domain Induces Inflammatory Bone LossDimitrios Agas, Fabio Concetti, Melania Capitani, et al.
The Journal of Endocrinology|December 3, 2016
INF-γ encoding plasmid administration triggers bone loss and disrupts bone marrow microenvironmentDimitrios Agas, Guilherme Gusmão Silva, Fulvio Laus, et al.
Pageof 1