Ricerca
Didattica
Soluzioni
Accedi
IT
EN - English
CN - 中文
DE - Deutsch
ES - Español
KR - 한국어
IT - Italiano
FR - Français
PT - Português
TR - Turkish
JA - Japanese
Center for Immunotherapy,
Vaccines and Virotherapy,
The Biodesign Institute,
School of Life Sciences,
Center for Immunotherapy, Vaccines and Virotherapy, The Biodesign Institute
Andrew G. Diamos has not added Biography.
If you are Andrew G. Diamos and would like to personalize this page please email our Author Liaison for assistance.
5' and 3' Untranslated Regions Strongly Enhance Performance of Geminiviral Replicons in Nicotiana benthamiana Leaves.
Frontiers in plant science , 2016 | Pubmed ID: 26941764
An intronless form of the tobacco extensin gene terminator strongly enhances transient gene expression in plant leaves.
Plant molecular biology Mar, 2018 | Pubmed ID: 29429129
Chimeric 3' flanking regions strongly enhance gene expression in plants.
Plant biotechnology journal 12, 2018 | Pubmed ID: 29637682
High-level expression and enrichment of norovirus virus-like particles in plants using modified geminiviral vectors.
Protein expression and purification 11, 2018 | Pubmed ID: 29908914
Vaccine synergy with virus-like particle and immune complex platforms for delivery of human papillomavirus L2 antigen.
Vaccine 01, 2019 | Pubmed ID: 30459071
Modifying the Replication of Geminiviral Vectors Reduces Cell Death and Enhances Expression of Biopharmaceutical Proteins in Leaves.
Frontiers in plant science , 2018 | Pubmed ID: 30687368
Evaluation of a toxoid fusion protein vaccine produced in plants to protect poultry against necrotic enteritis.
PeerJ , 2019 | Pubmed ID: 30944775
Fine-tuning expression of begomoviral movement and nuclear shuttle proteins confers cell-to-cell movement to mastreviral replicons in Nicotiana benthamiana leaves.
The Journal of general virology 06, 2019 | Pubmed ID: 31107197
High Level Production of Monoclonal Antibodies Using an Optimized Plant Expression System.
Frontiers in bioengineering and biotechnology , 2019 | Pubmed ID: 32010680
Codelivery of improved immune complex and virus-like particle vaccines containing Zika virus envelope domain III synergistically enhances immunogenicity.
Vaccine 04, 2020 | Pubmed ID: 32173095
A Highly Expressing, Soluble, and Stable Plant-Made IgG Fusion Vaccine Strategy Enhances Antigen Immunogenicity in Mice Without Adjuvant.
Frontiers in immunology , 2020 | Pubmed ID: 33343565
Arizona State University
University of Michigan Medical School
Aigerim S. Kamzina*,1,2,3,
Michelle P. DiPalma*,1,2,3,
Joseph G. L. Hunter1,2,3,
Andrew G. Diamos1,2,4,
Boyd Armer2,3,
Tsafrir S. Mor1,2,3,
Hugh S. Mason1,2,3
1Center for Immunotherapy, Vaccines and Virotherapy, The Biodesign Institute, Arizona State University,
2School of Life Sciences, Arizona State University,
3Molecular Biosciences/Biotechnology Undergraduate Program, Arizona State University,
4Department of Microbiology and Immunology, University of Michigan Medical School
Riservatezza
Condizioni di utilizzo
Politiche
Contattaci
SUGGERISCI JOVE ALLA BIBLIOTECA
Newsletter di JoVE
JoVE Journal
Raccolta di metodi
JoVE Encyclopedia of Experiments
Archivio
JoVE Core
JoVE Business
JoVE Science Education
JoVE Lab Manual
Sportello unico per docenti
Autori
Personale delle biblioteche
Accesso
CHI SIAMO
Copyright © 2024 MyJoVE Corporation. Tutti i diritti riservati