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Pedro A. Reche
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2020 – today
- 2023
- [c7]Avisa Maleki, Alvaro Ras-Carmona, Elena Crispino, Valentina Di Salvatore, Giulia Russo, Pedro A. Reche, Francesco Pappalardo:
Genetic Algorithm-Based Prediction of Emerging SARS-CoV-2 Variants: A Computational Biology Perspective. BIBM 2023: 3721-3724 - 2022
- [j13]Giulia Russo, Valentina Di Salvatore, Giuseppe Sgroi, Giuseppe Alessandro Parasiliti Palumbo, Pedro A. Reche, Francesco Pappalardo:
A multi-step and multi-scale bioinformatic protocol to investigate potential SARS-CoV-2 vaccine targets. Briefings Bioinform. 23(1) (2022) - 2021
- [j12]Alvaro Ras-Carmona, Marta Gomez-Perosanz, Pedro A. Reche:
Prediction of unconventional protein secretion by exosomes. BMC Bioinform. 22(1): 333 (2021) - 2020
- [j11]Monica J. Quinzo, Esther M. Lafuente, Pilar Zuluaga, Darren R. Flower, Pedro A. Reche:
Correction to: Computational assembly of a human Cytomegalovirus vaccine upon experimental epitope legacy. BMC Bioinform. 21(1): 116 (2020) - [j10]Marta Gomez-Perosanz, Alvaro Ras-Carmona, Esther M. Lafuente, Pedro A. Reche:
Identification of CD8+ T cell epitopes through proteasome cleavage site predictions. BMC Bioinform. 21-S(17): 484 (2020) - [j9]Francesco Pappalardo, Giulia Russo, Pedro A. Reche:
Toward computational modelling on immune system function. BMC Bioinform. 21-S(17): 546 (2020)
2010 – 2019
- 2019
- [j8]Monica J. Quinzo, Esther M. Lafuente, Pilar Zuluaga, Darren R. Flower, Pedro A. Reche:
Computational assembly of a human Cytomegalovirus vaccine upon experimental epitope legacy. BMC Bioinform. 20-S(6): 476 (2019) - [j7]Francesco Pappalardo, Marzio Pennisi, Pedro A. Reche, Giulia Russo:
Toward computational modelling on immune system function. BMC Bioinform. 20-S(6): 622 (2019) - [c6]Marta Gomez-Perosanz, Alvaro Ras-Carmona, Pedro A. Reche:
Prediction of proteasomal cleavage sites using PCPS. BIBM 2019: 2137-2140 - [r1]Marta Gomez-Perosanz, Giulia Russo, Jose Luis Sanchez-Trincado Lopez, Marzio Pennisi, Pedro A. Reche, Adrian J. Shepherd, Francesco Pappalardo:
Computational Immunogenetics. Encyclopedia of Bioinformatics and Computational Biology (2) 2019: 906-930 - 2018
- [c5]Monica J. Quinzo, Esther M. Lafuente, Pedro A. Reche, Darren R. Flower:
Computational design of a legacy-based epitope vaccine against Human Cytomegalovirus. BIBM 2018: 1411-1417 - 2017
- [c4]Marzio Pennisi, Juan A. Sanchez-Lantaron, Pedro A. Reche, Giulia Russo, Francesco Pappalardo:
Optimization and analisys of vaccination schedules using simulated annealing and agent based models. BIBM 2017: 1455-1460 - [c3]Juan A. Sanchez-Lantaron, Pedro A. Reche, Marzio Pennisi, Giulia Russo, Francesco Pappalardo:
Introducing scale factor adjustments on agent-based simulations of the immune system. BIBM 2017: 1461-1468 - 2016
- [j6]Qamar M. Sheikh, Derek Gatherer, Pedro A. Reche, Darren R. Flower:
Towards the knowledge-based design of universal influenza epitope ensemble vaccines. Bioinform. 32(21): 3233-3239 (2016) - 2011
- [c2]Eduardo Martínez-Naves, Esther M. Lafuente, Pedro A. Reche:
Classification of MHC I Proteins According to Their Ligand-Type Specificity. ICARIS 2011: 55-65 - 2010
- [j5]Carmen M. Diez-Rivero, Esther M. Lafuente, Pedro A. Reche:
Computational analysis and modeling of cleavage by the immunoproteasome and the constitutive proteasome. BMC Bioinform. 11: 479 (2010)
2000 – 2009
- 2008
- [j4]Maria Garcia-Boronat, Carmen M. Diez-Rivero, Ellis L. Reinherz, Pedro A. Reche:
PVS: a web server for protein sequence variability analysis tuned to facilitate conserved epitope discovery. Nucleic Acids Res. 36(Web-Server-Issue): 35-41 (2008) - 2006
- [j3]Manoj Bhasin, Ellis L. Reinherz, Pedro A. Reche:
Recognition and Classification of Histones Using Support Vector Machine. J. Comput. Biol. 13(1): 102-112 (2006) - 2005
- [j2]Pedro A. Reche, Hong Zhang, John-Paul Glutting, Ellis L. Reinherz:
EPIMHC: a curated database of MHC-binding peptides for customized computational vaccinology. Bioinform. 21(9): 2140-2141 (2005) - [j1]Pedro A. Reche, Ellis L. Reinherz:
PEPVAC: a web server for multi-epitope vaccine development based on the prediction of supertypic MHC ligands. Nucleic Acids Res. 33(Web-Server-Issue): 138-142 (2005) - 2004
- [c1]Pedro A. Reche, Ellis L. Reinherz:
Definition of MHC Supertypes Through Clustering of MHC Peptide Binding Repertoires. ICARIS 2004: 189-196
Coauthor Index
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