For: | Trovato M, Berardinis PD. Novel antigen delivery systems. World J Virology 2015; 4(3): 156-168 [PMID: 26279977 DOI: 10.5501/wjv.v4.i3.156] |
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URL: | https://www.wjgnet.com/2220-3249/full/v4/i3/156.htm |
Number | Citing Articles |
1 |
Christopher P. Karch, Peter Burkhard. Vaccine technologies: From whole organisms to rationally designed protein assemblies. Biochemical Pharmacology 2016; 120: 1 doi: 10.1016/j.bcp.2016.05.001
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2 |
Pallabi Paul, Himadree Das, Himali Horo, Lal Mohan Kundu. Biomaterial-based Hydrogels. 2024; : 313 doi: 10.1007/978-981-99-8826-6_11
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3 |
Marita Olbert, Angela Römer-Oberdörfer, Christiane Herden, Sara Malberg, Solveig Runge, Peter Staeheli, Dennis Rubbenstroth. Viral vector vaccines expressing nucleoprotein and phosphoprotein genes of avian bornaviruses ameliorate homologous challenge infections in cockatiels and common canaries. Scientific Reports 2016; 6(1) doi: 10.1038/srep36840
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4 |
M. A. Baryshnikova, V. S. Kosorukov. Cancer vaccine adjuvants. Russian Journal of Biotherapy 2019; 17(4): 36 doi: 10.17650/1726-9784-2018-17-4-36-44
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5 |
Mayra M. F. Barbosa, Alex I. Kanno, Violeta Pancakova, Viviane M. Gonçalves, Richard Malley, Leonardo P. Faria, Luciana C. C. Leite. Optimization of Expression and Purification of Schistosoma mansoni Antigens in Fusion with Rhizavidin. Molecular Biotechnology 2021; 63(11): 983 doi: 10.1007/s12033-021-00355-2
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6 |
Zhipeng Jia, Xinghui Pan, Wenjing Zhi, Hang Chen, Bingrong Bai, Chunli Ma, Dexing Ma. Probiotics Surface-Delivering Fiber2 Protein of Fowl Adenovirus 4 Stimulate Protective Immunity Against Hepatitis-Hydropericardium Syndrome in Chickens. Frontiers in Immunology 2022; 13 doi: 10.3389/fimmu.2022.919100
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7 |
Fei-Kean Loh, Sheila Nathan, Sek-Chuen Chow, Chee-Mun Fang. Vaccination challenges and strategies against long-lived Toxoplasma gondii. Vaccine 2019; 37(30): 3989 doi: 10.1016/j.vaccine.2019.05.083
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8 |
Angita Shrestha, Jean-Remy Sadeyen, Munir Iqbal. Enhancing Protective Efficacy of Poultry Vaccines through Targeted Delivery of Antigens to Antigen-Presenting Cells. Vaccines 2018; 6(4): 75 doi: 10.3390/vaccines6040075
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9 |
Ziyin Huang, Cassandra E. Callmann, Shuya Wang, Matthew K. Vasher, Michael Evangelopoulos, Sarah Hurst Petrosko, Chad A. Mirkin. Rational Vaccinology: Harnessing Nanoscale Chemical Design for Cancer Immunotherapy. ACS Central Science 2022; 8(6): 692 doi: 10.1021/acscentsci.2c00227
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10 |
Marta Gambirasi, Amin Safa, Idris Vruzhaj, Aurora Giacomin, Franca Sartor, Giuseppe Toffoli. Oral Administration of Cancer Vaccines: Challenges and Future Perspectives. Vaccines 2023; 12(1): 26 doi: 10.3390/vaccines12010026
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11 |
Jorge Domínguez-Andrés, Reinout van Crevel, Maziar Divangahi, Mihai G. Netea, Vinayaka R. Prasad. Designing the Next Generation of Vaccines: Relevance for Future Pandemics. mBio 2020; 11(6) doi: 10.1128/mBio.02616-20
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12 |
Arshpreet Kaur, Jyoti Rathee, Rohini Kanwar, Deepender Kaushik, Deepak B. Salunke, Surinder K. Mehta. TLR2 agonistic lipopeptide enriched PLGA nanoparticles as combinatorial drug delivery vehicle. Colloids and Surfaces A: Physicochemical and Engineering Aspects 2022; 647: 129084 doi: 10.1016/j.colsurfa.2022.129084
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13 |
Maria J. Barbosa, Marcel Janssen, Christian Südfeld, Sarah D’Adamo, Rene H. Wijffels. Hypes, hopes, and the way forward for microalgal biotechnology. Trends in Biotechnology 2023; 41(3): 452 doi: 10.1016/j.tibtech.2022.12.017
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14 |
Andris Zeltins. Virus Protein and Nucleoprotein Complexes. Subcellular Biochemistry 2018; 88: 379 doi: 10.1007/978-981-10-8456-0_16
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15 |
Jee Young Chung, Melissa N. Thone, Young Jik Kwon. COVID-19 vaccines: The status and perspectives in delivery points of view. Advanced Drug Delivery Reviews 2021; 170: 1 doi: 10.1016/j.addr.2020.12.011
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16 |
Humzah Jamshaid, Fakhar ud Din, Gul Majid Khan. Nanotechnology based solutions for anti-leishmanial impediments: a detailed insight. Journal of Nanobiotechnology 2021; 19(1) doi: 10.1186/s12951-021-00853-0
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17 |
Youngsub Lee, Mingmin Lu, Hyun S. Lillehoj. Coccidiosis: Recent Progress in Host Immunity and Alternatives to Antibiotic Strategies. Vaccines 2022; 10(2): 215 doi: 10.3390/vaccines10020215
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18 |
Fakhriedzwan Idris, Donald Heng Rong Ting, Sylvie Alonso. An update on dengue vaccine development, challenges, and future perspectives. Expert Opinion on Drug Discovery 2021; 16(1): 47 doi: 10.1080/17460441.2020.1811675
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19 |
Tilahun Ayane Debele, Cheng-Fa Yeh, Wen-Pin Su. Cancer Immunotherapy and Application of Nanoparticles in Cancers Immunotherapy as the Delivery of Immunotherapeutic Agents and as the Immunomodulators. Cancers 2020; 12(12): 3773 doi: 10.3390/cancers12123773
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20 |
Hans Van der Weken, Eric Cox, Bert Devriendt. Advances in Oral Subunit Vaccine Design. Vaccines 2020; 9(1): 1 doi: 10.3390/vaccines9010001
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21 |
Sravanthi Vemireddy, Preethi Pallavi Madhurantakam, Mamta N Talati, Halmuthur M. Sampath Kumar. Cationic pH-Responsive Polycaprolactone Nanoparticles as Intranasal Antigen Delivery System for Potent Humoral and Cellular Immunity against Recombinant Tetravalent Dengue Antigen. ACS Applied Bio Materials 2019; 2(11): 4837 doi: 10.1021/acsabm.9b00597
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22 |
Elaheh Davarpanah, Negar Seyed, Fariborz Bahrami, Sima Rafati, Reza Safaralizadeh, Tahereh Taheri, Lilian Lacerda Bueno. Lactococcus lactis expressing sand fly PpSP15 salivary protein confers long-term protection against Leishmania major in BALB/c mice. PLOS Neglected Tropical Diseases 2020; 14(1): e0007939 doi: 10.1371/journal.pntd.0007939
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23 |
Joanna Zebrowska, Małgorzata Witkowska, Anna Struck, Patrycja E. Laszuk, Edyta Raczuk, Małgorzata Ponikowska, Piotr M. Skowron, Agnieszka Zylicz-Stachula. Antimicrobial Potential of the Genera Geobacillus and Parageobacillus, as Well as Endolysins Biosynthesized by Their Bacteriophages. Antibiotics 2022; 11(2): 242 doi: 10.3390/antibiotics11020242
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24 |
Hemant K.S. Yadav, Manar Dibi, Alyazya Mohammad, Abrar E. Srouji. Nanovaccines formulation and applications-a review. Journal of Drug Delivery Science and Technology 2018; 44: 380 doi: 10.1016/j.jddst.2018.01.015
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25 |
Angela Bonaccorso, Claudia Carbone, Barbara Tomasello, Paola Italiani, Teresa Musumeci, Giovanni Puglisi, Rosario Pignatello. Optimization of dextran sulfate/poly-l-lysine based nanogels polyelectrolyte complex for intranasal ovalbumin delivery. Journal of Drug Delivery Science and Technology 2021; 65: 102678 doi: 10.1016/j.jddst.2021.102678
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26 |
Mayra M F Barbosa, Alex I Kanno, Giovana C Barazzone, Dunia Rodriguez, Violeta Pancakova, Monalisa Trentini, Eliana L Faquim-Mauro, Amanda P Freitas, Mariana I Khouri, Jessica Lobo-Silva, Viviane M Goncalves, Rocilda P F Schenkman, Martha M Tanizaki, Diana Boraschi, Richard Malley, Leonardo P Farias, Luciana C C Leite. Robust Immune Response Induced by Schistosoma mansoni TSP-2 Antigen Coupled to Bacterial Outer Membrane Vesicles. International Journal of Nanomedicine 2021; : 7153 doi: 10.2147/IJN.S315786
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27 |
Rakesh Bastola, Gyubin Noh, Taekwang Keum, Santosh Bashyal, Jo-Eun Seo, Jaewoong Choi, Yeonsu Oh, YoungSik Cho, Sangkil Lee. Vaccine adjuvants: smart components to boost the immune system. Archives of Pharmacal Research 2017; 40(11): 1238 doi: 10.1007/s12272-017-0969-z
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28 |
Brankica Filipić, Zorica Stojić-Vukanić. Adjuvants in vaccines registered for human use. Arhiv za farmaciju 2019; 69(6): 406 doi: 10.5937/arhfarm1906406F
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29 |
Abel Ramos-Vega, Sergio Rosales-Mendoza, Bernardo Bañuelos-Hernández, Carlos Angulo. Prospects on the Use of Schizochytrium sp. to Develop Oral Vaccines. Frontiers in Microbiology 2018; 9 doi: 10.3389/fmicb.2018.02506
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30 |
Rossella Sartorius, Luciana D’Apice, Antonella Prisco, Piergiuseppe De Berardinis. Arming Filamentous Bacteriophage, a Nature-Made Nanoparticle, for New Vaccine and Immunotherapeutic Strategies. Pharmaceutics 2019; 11(9): 437 doi: 10.3390/pharmaceutics11090437
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31 |
Prasad Minakshi, Mayukh Ghosh, Rajesh Kumar, Basanti Brar, Upendra P. Lambe, Somesh Banerjee, Koushlesh Ranjan, Balvinder Kumar, Parveen Goel, Yashpal S. Malik, Gaya Prasad. An Insight into Nanomedicinal Approaches to Combat Viral Zoonoses. Current Topics in Medicinal Chemistry 2020; 20(11): 915 doi: 10.2174/1568026620666200325114400
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32 |
Fernando B. Sulczewski, Raquel B. Liszbinski, Pedro R. T. Romão, Luiz Carlos Rodrigues Junior. Nanoparticle vaccines against viral infections. Archives of Virology 2018; 163(9): 2313 doi: 10.1007/s00705-018-3856-0
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33 |
Abeer Alshammari, Mareike G. Posner, Abhishek Upadhyay, Frank Marken, Stefan Bagby, Adelina Ilie. A Modular Bioplatform Based on a Versatile Supramolecular Multienzyme Complex Directly Attached to Graphene. ACS Applied Materials & Interfaces 2016; 8(32): 21077 doi: 10.1021/acsami.6b05453
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34 |
Carlos Gamazo, Yadira Pastor, Eneko Larrañeta, Melibea Berzosa, Juan M Irache, Ryan F Donnelly. Understanding the Basis of Transcutaneous Vaccine Delivery. Therapeutic Delivery 2019; 10(1): 63 doi: 10.4155/tde-2018-0054
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35 |
Shuaikai Ren, Liang Guo, Chunxin Wang, Jiaxi Ru, Yunqi Yang, Yan Wang, Changjiao Sun, Haixin Cui, Xiang Zhao, Huichen Guo. Construction of an Effective Delivery System for DNA Vaccines Using Biodegradable Polylactic Acid Based Microspheres. Journal of Biomedical Nanotechnology 2021; 17(5): 971 doi: 10.1166/jbn.2021.3081
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36 |
Anna Stachyra, Patrycja Redkiewicz, Piotr Kosson, Anna Protasiuk, Anna Góra-Sochacka, Grzegorz Kudla, Agnieszka Sirko. Codon optimization of antigen coding sequences improves the immune potential of DNA vaccines against avian influenza virus H5N1 in mice and chickens. Virology Journal 2016; 13(1) doi: 10.1186/s12985-016-0599-y
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37 |
Mokhtar Nosrati, Mandana Behbahani, Hassan Mohabatkar. Towards the first multi-epitope recombinant vaccine against Crimean-Congo hemorrhagic fever virus: A computer-aided vaccine design approach. Journal of Biomedical Informatics 2019; 93: 103160 doi: 10.1016/j.jbi.2019.103160
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38 |
Jinny Claire Lee, Kim D. Janda. Development of effective therapeutics for polysubstance use disorders. Current Opinion in Chemical Biology 2022; 66: 102105 doi: 10.1016/j.cbpa.2021.102105
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