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g.deangelis@uniroma1.it
Giulia De Angelis
Dottorando
Struttura:
DIPARTIMENTO DI BIOLOGIA AMBIENTALE
E-mail:
g.deangelis@uniroma1.it
Pagina istituzionale corsi di laurea
Curriculum Sapienza
Pubblicazioni
Titolo
Pubblicato in
Anno
A novel approach to control Botrytis cinerea fungal infections: uptake and biological activity of antifungals encapsulated in nanoparticle based vectors
SCIENTIFIC REPORTS
2022
Poly-(lactic-co-glycolic) acid nanoparticles entrapping pterostilbene for targeting aspergillus section nigri
MOLECULES
2022
Microfluidic synthesis of PLGA nanocarriers for the controlled delivery of bioactive compounds in plants of agronomic interest
Applied Nanotechnology and Nanoscience International Conference 2021
2021
Antifungal activity of Mongolian medicinal plant extracts
NATURAL PRODUCT RESEARCH
2020
Effects of ionizing radiation on bio-active plant extracts useful for preventing oxidative damages
NATURAL PRODUCT RESEARCH
2019
Chitosan oligosaccharides affect xanthone and VOC biosynthesis in Hypericum perforatum root cultures and enhance the antifungal activity of root extracts
PLANT CELL REPORTS
2018
Effect of chitosan oligosaccharides and other biotic elicitors on root cultures and in vitrogrown plantlets systems of Hypericum perforatum L.
112° Congresso della Società Botanica Italiana IV INTERNATIONAL PLANT SCIENCE CONFERENCE (IPSC) Parma, 20 - 23 September 2017 ABSTRACTS KEYNOTE LECTURES, COMMUNICATIONS, POSTERS
2017
Acetic acid acts as an elicitor exerting a chitosan-like effect on xanthone biosynthesis in Hypericum perforatum L. root cultures
PLANT CELL REPORTS
2016
Xanthones from roots, hairy roots and cell suspension cultures of selected Hypericum species and their antifungal activity against Candida albicans
PLANT CELL REPORTS
2015
Bioactive xanthones from roots, hairy roots and cell suspension cultures of some Hypericum species and antifungal activity against Candida albicans
Riunione dei gruppi di lavoro di biologia cellulare e molecolare & biotecnologie e differenziamento
2015
Progetti di Ricerca
Meccanismi di internalizzazione e di traslocazione di nanoparticelle biopolimeriche in cellule vegetali coltivate in vitro, piante e funghi patogeni
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