Accès ouvert
2024
article
OpenAlex
Daniel A. Truchado, María Juárez‐Molina, Sara Rincón, Lucía Zurita et autres
Plant viral nanoparticles (VNPs) are attractive to nanomedicine researchers because of their safety, ease of production, resistance, and straightforward functionalization. In this paper, we developed and successfully purified a VNP derived from turnip mosaic virus (TuMV), a well-known plant pathogen, that exhibits …
es
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Accès ouvert
2024
article
OpenAlex
Carlos Medrano-Arranz, Sara Rincón, Lucía Zurita, F Ponz et autres
Nanoparticles derived from plant viruses play an important role in nanomedicine due to their biocompatibility, self-assembly and easily-modifiable surface. In this study, we developed a novel platform for increasing antibody sensing using viral nanoparticles derived from turnip mosaic virus (TuMV) functionalized with …
es
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Accès ouvert
2024
preprint
OpenAlex
Daniel A. Truchado, María Juárez‐Molina, Sara Rincón, Lucía Zurita et autres
Plant viral nanoparticles (VNPs) are attractive to researchers in nanomedicine due to their safety, easy production, resistance, and straightforward functionalization. In this paper, we developed and successfully purified a VNP derived from turnip mosaic virus (TuMV), a well-known plant pathogen, that exhibits …
es
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Accès ouvert
2023
article
OpenAlex
Luis Fernandez Pacios, Flora Sánchez, F Ponz
An all-atom Molecular Dynamics (MD) study was applied to three viral nanoparticles (VLPs) of Turnip mosaic virus (TuMV), a potyvirus: the particles genetically functionalized with two peptides, VIP (human vasoactive intestinal peptide) and VEGFR (peptide derived from the human receptor 3 of …
es
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Accès ouvert
2023
editorial
OpenAlex
F Ponz, Linda Avesani
This RESEARCH TOPIC is a continuation of the previous Volume I under the same title. We already considered the increasing role of plants and plant biotechnology in different areas of the fight against diseases, including viral pandemics. A significant step in the …
es, it
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Accès ouvert
2023
article
OpenAlex
Marina Mínguez-Toral, Luis Fernandez Pacios, Flora Sánchez, F Ponz
The viability of viral-derived nanoparticles (virions and VLPs) aimed to nanobiotechnological functionalizations of the coat protein (CP) of turnip mosaic virus has been studied by means of advanced computational methodologies that include molecular dynamics. The study has allowed to model the structure …
es
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Accès ouvert
2023
article
OpenAlex
Daniel A. Truchado, Sara Rincón, Lucía Zurita, Flora Sánchez et autres
Plant viral nanoparticles (VNPs) have become an attractive platform for the development of novel nanotools in the last years because of their safety, inexpensive production, and straightforward functionalization. Turnip mosaic virus (TuMV) is one example of a plant-based VNP used as a …
es
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Accès ouvert
2023
erratum
OpenAlex
Diego Pazos‐Castro, Clémence Margain, Zulema Gonzalez Klein, Marina Amores-Borge et autres
[This corrects the article DOI: 10.3389/fimmu.2022.986823.].
es
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2023
book-chapter
OpenAlex
Daniel A. Truchado, Sara Rincón, Lucía Zurita, F Ponz
es
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Accès ouvert
2022
article
OpenAlex
Diego Pazos‐Castro, Clémence Margain, Zulema Gonzalez Klein, Marina Amores-Borge et autres
Virus-like particles (VLPs) have been gaining attention as potential platforms for delivery of cargos in nanomedicine. Although animal viruses are largely selected due to their immunostimulatory capacities, VLPs from plant viruses constitute a promising alternative to be considered. VLPs derived from Turnip …
es
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Accès ouvert
2022
article
OpenAlex
Ivonne González‐Gamboa, Edith Velázquez-Lam, Matías José Lobo-Zegers, Ada I. Frías-Sánchez et autres
Current tissue engineering techniques frequently rely on hydrogels to support cell growth, as these materials strongly mimic the extracellular matrix. However, hydrogels often need ad hoc customization to generate specific tissue constructs. One popular strategy for hydrogel functionalization is to add nanoparticles …
mx, es
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2022
article
OpenAlex
Edith Velázquez-Lam, Jaime Tomé‐Amat, Carmen Segrelles, Carmen Yuste-Calvo et autres
Background: Filamentous plant virus-derived nanoparticles are biodegradable and noninfectious to humans. Their structure is also amenable to chemical modifications. They constitute an appealing material for biomedical applications including imaging and drug delivery. We had previously used turnip mosaic virus-derived nanoparticles (TuMV-NPs) to …
es
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