Progetti Europei conclusi


Progetti conclusi

Domande/Assegnazioni Finanziamenti Horizon 2020 2019-2021
Domande/Assegnazioni Finanziamenti Horizon 2020 2016-2018

  Ocuther

Titolo: Educational Network in Ocular Drug Delivery and Therapeutics

Acronimo: OcuTher

Bando: European Union’s Horizon 2020 research and innovation programme under the Marie Skłodowska-Curie grant agreement No. 722717

Durata: 4 anni

Responsabile scientifico: Prof. Paolo Caliceti

Budget totale: 516.122,00 €

Abstract:
Ocular drug development has transformed from niche area to a major field in drug development in which many companies, including European big pharma has entered recently. Ocular drug development is a unique field in terms of drug targets and end-points of activity, local drug administration routes, tissue barriers and pharmacokinetics, drug delivery and formulation challenges and local toxicity issues. These issues are slowing down the development of drugs for the unmet needs in ophthalmology. The main objective of the project is to educate experts of preclinical ocular R&D to facilitate the success of European pharmaceutical industry and research community. This objective will be reached by joining forces of the leading European academic and industrial researchers in ophthalmology, materials science and nanomedicine, drug delivery and targeting, and systems pharmacology. We shall educate 15 Early Stage Researchers in a network where they will receive tailored, multi-disciplinary and inter-sectoral education in preclinical ocular drug development. The thesis projects are directed to the drug treatment of retinal diseases, the major challenge in the field. The project combines new drug candidates from the experts of ophthalmology, innovative drug delivery technologies from pharmaceutical scientists and companies, and modern in vitro, in silico and in vivo methods from various partners. The thesis projects include secondments in academic and industrial partner laboratories and course programme that encompasses the relevant fields in ocular drug development. Therefore, this project presents unique combination of innovation and education in the field with obvious need for such education. The ESRs and other outcomes of this project will greatly benefit the future competitiveness of European science and industry in this field of expanding importance.

  BICEPSvsHIV

Titolo: Novel strategies for anti-HIV-1 therapy: Small molecules targeting RNA partners of the nucleocapsid protein

Acronimo: BICEPSvsHIV

Bando: European Union’s Horizon 2020 research and innovation programme under the Marie Skłodowska-Curie grant - H2020-MSCA-IF-2016 - No. 751931

Durata: 2 anni

Responsabile scientifico: Prof. Barbara Gatto, Prof. Alice Sosic

Budget totale: 164.203,00 €

Abstract:
European Commission considers HIV/AIDS as a top priority and significantly invests in research devoted to the development of alternative therapeutic strategies leading to new antiretrovirals, which are urgently needed to overcome the emergence of resistance to existing drugs. The “BICEPSvsHIV” project proposes a novel and innovative strategy that draws the spotlight on RNA. Specific RNA sequences of the viral genome are substrates of the HIV-1 nucleocapsid (NC), a highly conserved protein known for promoting remodeling of nucleic acid structures in essential steps of the virus replication cycle. The proposed strategy consists in the employment of bis-3-chloropiperidines (BICEPS) as RNA cross-linking agents able to freeze selectively the tridimensional conformations of the RNA partners of NC, thus impairing its activities. RNA is a challenging molecule from the medicinal chemistry perspective, but the rewards it can yield are invaluable. The Experienced Researcher (ER) will work at The RNA Institute (SUNY Albany) during the outgoing phase, aimed at 1) the elucidation of BICEPS detailed molecular mechanism of reaction towards RNA and 2) the identification of BICEPS targeting selectively the RNA substrates of NC. During the incoming phase at the University of Padova (UNIPD), the achievements will be translated into 3) the thorough biological evaluation of the in vitro NC inhibition by BICEPS, leading to 4) the identification of anti-NC lead compounds. The project provides the ER with an outstanding training-through-research opportunity by means of a personalized multidisciplinary project, in which the ER will enlarge her scientific profile with new excellent skills. The training includes both scientific and transferable skills, aimed at the reinforcement