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2021

Journal Article

Implications of dengue virus maturation on vaccine induced humoral immunity in mice

Scott, Connor A. P., Amarilla, Alberto A., Bibby, Summa, Newton, Natalee D., Hall, Roy A., Hobson-Peters, Jody, Muller, David A., Chappell, Keith J., Young, Paul R., Modhiran, Naphak and Watterson, Daniel (2021). Implications of dengue virus maturation on vaccine induced humoral immunity in mice. Viruses, 13 (9) 1843, 1843. doi: 10.3390/v13091843

Implications of dengue virus maturation on vaccine induced humoral immunity in mice

2021

Journal Article

No evidence of human genome integration of SARS-CoV-2 found by long-read DNA sequencing

Smits, Nathan, Rasmussen, Jay, Bodea, Gabriela O., Amarilla, Alberto A., Gerdes, Patricia, Sanchez-Luque, Francisco J., Ajjikuttira, Prabha, Modhiran, Naphak, Liang, Benjamin, Faivre, Jamila, Deveson, Ira W., Khromykh, Alexander A., Watterson, Daniel, Ewing, Adam D. and Faulkner, Geoffrey J. (2021). No evidence of human genome integration of SARS-CoV-2 found by long-read DNA sequencing. Cell Reports, 36 (7) 109530, 109530. doi: 10.1016/j.celrep.2021.109530

No evidence of human genome integration of SARS-CoV-2 found by long-read DNA sequencing

2021

Other Outputs

Detection and Quantification of SARS-CoV-2 Receptor Binding Domain Neutralization by a Sensitive Competitive ELISA Assay

Shalash, Ahmed O., Azuar, Armira, Madge, Harrison Y. R., Modhiran, Naphak, Amarilla, Alberto A., Liang, Benjamin, Khromykh, Alexander, Watterson, Daniel, Young, Paul R., Toth, Istvan and Skwarczynski, Mariusz (2021). Detection and Quantification of SARS-CoV-2 Receptor Binding Domain Neutralization by a Sensitive Competitive ELISA Assay. doi: 10.21203/rs.3.pex-1559/v1

Detection and Quantification of SARS-CoV-2 Receptor Binding Domain Neutralization by a Sensitive Competitive ELISA Assay

2021

Journal Article

ACE2-lentiviral transduction enables mouse SARS-CoV-2 infection and mapping of receptor interactions

Rawle, Daniel J., Le, Thuy T., Dumenil, Troy, Yan, Kexin, Tang, Bing, Nguyen, Wilson, Watterson, Daniel, Modhiran, Naphak, Hobson-Peters, Jody, Bishop, Cameron and Suhrbier, Andreas (2021). ACE2-lentiviral transduction enables mouse SARS-CoV-2 infection and mapping of receptor interactions. PLoS Pathogens, 17 (7) e1009723, 1-37. doi: 10.1371/journal.ppat.1009723

ACE2-lentiviral transduction enables mouse SARS-CoV-2 infection and mapping of receptor interactions

2021

Journal Article

A versatile reverse genetics platform for SARS-CoV-2 and other positive-strand RNA viruses

Amarilla, Alberto A., Sng, Julian D. J., Parry, Rhys, Deerain, Joshua M., Potter, James R., Setoh, Yin Xiang, Rawle, Daniel J., Le, Thuy T., Modhiran, Naphak, Wang, Xiaohui, Peng, Nias Y. G., Torres, Francisco J., Pyke, Alyssa, Harrison, Jessica J., Freney, Morgan E., Liang, Benjamin, McMillan, Christopher L. D., Cheung, Stacey T. M., Guevara, Darwin J Da Costa, Hardy, Joshua M., Bettington, Mark, Muller, David A., Coulibaly, Fasséli, Moore, Frederick, Hall, Roy A., Young, Paul R., Mackenzie, Jason M., Hobson-Peters, Jody, Suhrbier, Andreas ... Khromykh, Alexander A. (2021). A versatile reverse genetics platform for SARS-CoV-2 and other positive-strand RNA viruses. Nature Communications, 12 (1) 3431, 3431. doi: 10.1038/s41467-021-23779-5

A versatile reverse genetics platform for SARS-CoV-2 and other positive-strand RNA viruses

2021

Journal Article

A unified route for flavivirus structures uncovers essential pocket factors conserved across pathogenic viruses

Hardy, Joshua M., Newton, Natalee D., Modhiran, Naphak, Scott, Connor A. P., Venugopal, Hariprasad, Vet, Laura J., Young, Paul R., Hall, Roy A., Hobson-Peters, Jody, Coulibaly, Fasséli and Watterson, Daniel (2021). A unified route for flavivirus structures uncovers essential pocket factors conserved across pathogenic viruses. Nature Communications, 12 (1) 3266, 3266. doi: 10.1038/s41467-021-22773-1

A unified route for flavivirus structures uncovers essential pocket factors conserved across pathogenic viruses

2021

Other Outputs

Complete protection by a single dose skin patch delivered SARS-CoV-2 spike vaccine

McMillan, Christopher L.D., Choo, Jovin J.Y., Idris, Adi, Supramaniam, Aroon, Modhiran, Naphak, Amarilla, Alberto A., Isaacs, Ariel, Cheung, Stacey T.M., Liang, Benjamin, Bielefeldt-Ohmann, Helle, Azuar, Armira, Acharya, Dhruba, Kelly, Gabrielle, Fernando, Germain J.P., Landsberg, Michael J., Khromykh, Alexander A., Watterson, Daniel, Young, Paul R., McMillan, Nigel A.J. and Muller, David A. (2021). Complete protection by a single dose skin patch delivered SARS-CoV-2 spike vaccine. doi: 10.1101/2021.05.30.446357

Complete protection by a single dose skin patch delivered SARS-CoV-2 spike vaccine

2021

Other Outputs

No evidence of human genome integration of SARS-CoV-2 found by long-read DNA sequencing

Smits, Nathan, Rasmussen, Jay, Bodea, Gabriela O., Amarilla, Alberto A., Gerdes, Patricia, Sanchez-Luque, Francisco J., Ajjikuttira, Prabha, Modhiran, Naphak, Liang, Benjamin, Faivre, Jamila, Deveson, Ira W., Khromykh, Alexander A., Watterson, Daniel, Ewing, Adam D. and Faulkner, Geoffrey J. (2021). No evidence of human genome integration of SARS-CoV-2 found by long-read DNA sequencing. doi: 10.1101/2021.05.28.446065

No evidence of human genome integration of SARS-CoV-2 found by long-read DNA sequencing

2021

Journal Article

Assessing the potential of unmanned aerial vehicle spraying of aqueous ozone as an outdoor disinfectant for SARS-CoV-2

Albert, Simon, Amarilla, Alberto A., Trollope, Ben, Sng, Julian D.J., Setoh, Yin Xiang, Deering, Nathaniel, Modhiran, Naphak, Weng, Sung-Hsia, Melo, Maria C., Hutley, Nicholas, Nandy, Avik, Furlong, Michael J., Young, Paul R., Watterson, Daniel, Grinham, Alistair R. and Khromykh, Alexander A. (2021). Assessing the potential of unmanned aerial vehicle spraying of aqueous ozone as an outdoor disinfectant for SARS-CoV-2. Environmental Research, 196 110944, 110944. doi: 10.1016/j.envres.2021.110944

Assessing the potential of unmanned aerial vehicle spraying of aqueous ozone as an outdoor disinfectant for SARS-CoV-2

2021

Journal Article

The structure of an infectious immature flavivirus redefines viral architecture and maturation

Newton, Natalee D., Hardy, Joshua M., Modhiran, Naphak, Hugo, Leon E., Amarilla, Alberto A., Bibby, Summa, Venugopal, Hariprasad, Harrison, Jessica J., Traves, Renee J., Hall, Roy A., Hobson-Peters, Jody, Coulibaly, Fasséli and Watterson, Daniel (2021). The structure of an infectious immature flavivirus redefines viral architecture and maturation. Science Advances, 7 (20) eabe4507, 1-12. doi: 10.1126/sciadv.abe4507

The structure of an infectious immature flavivirus redefines viral architecture and maturation

2021

Journal Article

Preclinical development of a molecular clamp-stabilised subunit vaccine for severe acute respiratory syndrome coronavirus 2

Watterson, Daniel, Wijesundara, Danushka K., Modhiran, Naphak, Mordant, Francesca L., Li, Zheyi, Avumegah, Michael S., McMillan, Christopher L. D., Lackenby, Julia, Guilfoyle, Kate, van Amerongen, Geert, Stittelaar, Koert, Cheung, Stacey T. M., Bibby, Summa, Daleris, Mallory, Hoger, Kym, Gillard, Marianne, Radunz, Eve, Jones, Martina L., Hughes, Karen, Hughes, Ben, Goh, Justin, Edwards, David, Scoble, Judith, Pearce, Lesley, Kowalczyk, Lukasz, Phan, Tram, La, Mylinh, Lu, Louis, Pham, Tam ... Chappell, Keith J. (2021). Preclinical development of a molecular clamp-stabilised subunit vaccine for severe acute respiratory syndrome coronavirus 2. Clinical & Translational Immunology, 10 (4) e1269, e1269. doi: 10.1002/cti2.1269

Preclinical development of a molecular clamp-stabilised subunit vaccine for severe acute respiratory syndrome coronavirus 2

2021

Journal Article

An optimized high-throughput immuno-plaque assay for SARS-CoV-2

Amarilla, Alberto A., Modhiran, Naphak, Setoh, Yin Xiang, Peng, Nias Y. G., Sng, Julian D. J., Liang, Benjamin, McMillan, Christopher L. D., Freney, Morgan E, Cheung, Stacey T. M., Chappell, Keith J., Khromykh, Alexander A., Young, Paul R. and Watterson, Daniel (2021). An optimized high-throughput immuno-plaque assay for SARS-CoV-2. Frontiers in Microbiology, 12 625136, 625136. doi: 10.3389/fmicb.2021.625136

An optimized high-throughput immuno-plaque assay for SARS-CoV-2

2021

Journal Article

Adjuvant selection for influenza and RSV prefusion subunit vaccines

Isaacs, Ariel, Li, Zheyi, Cheung, Stacey T. M., Wijesundara, Danushka K., McMillan, Christopher L. D., Modhiran, Naphak, Young, Paul R., Ranasinghe, Charani, Watterson, Daniel and Chappell, Keith J. (2021). Adjuvant selection for influenza and RSV prefusion subunit vaccines. Vaccines, 9 (2) 71, 1-14. doi: 10.3390/vaccines9020071

Adjuvant selection for influenza and RSV prefusion subunit vaccines

2021

Journal Article

A broadly protective antibody that targets the flavivirus NS1 protein

Modhiran, Naphak, Song, Hao, Liu, Lidong, Bletchly, Cheryl, Brillault, Lou, Amarilla, Alberto A., Xu, Xiaoying, Qi, Jianxun, Chai, Yan, Cheung, Stacey T. M., Traves, Renee, Setoh, Yin Xiang, Bibby, Summa, Scott, Connor A. P., Freney, Morgan E., Newton, Natalee D., Khromykh, Alexander A., Chappell, Keith J., Muller, David A., Stacey, Katryn J., Landsberg, Michael J., Shi, Yi, Gao, George F., Young, Paul R. and Watterson, Daniel (2021). A broadly protective antibody that targets the flavivirus NS1 protein. Science, 371 (6525), 190-194. doi: 10.1126/science.abb9425

A broadly protective antibody that targets the flavivirus NS1 protein

2020

Journal Article

Rapid response subunit vaccine design in the absence of structural information

Wijesundara, Danushka K., Avumegah, Michael S., Lackenby, Julia, Modhiran, Naphak, Isaacs, Ariel, Young, Paul R., Watterson, Daniel and Chappell, Keith J. (2020). Rapid response subunit vaccine design in the absence of structural information. Frontiers in Immunology, 11 592370, 592370. doi: 10.3389/fimmu.2020.592370

Rapid response subunit vaccine design in the absence of structural information

2020

Journal Article

Micro-fusion inhibition tests: quantifying antibody neutralization of virus-mediated cell–cell fusion

Thakur, Nazia, Conceicao, Carina, Isaacs, Ariel, Human, Stacey, Modhiran, Naphak, McLean, Rebecca K., Pedrera, Miriam, Tan, Tiong Kit, Rijal, Pramila, Townsend, Alain, Taylor, Geraldine, Young, Paul R., Watterson, Daniel, Chappell, Keith J., Graham, Simon P. and Bailey, Dalan (2020). Micro-fusion inhibition tests: quantifying antibody neutralization of virus-mediated cell–cell fusion. Journal of General Virology, 102 (1) 001506. doi: 10.1099/jgv.0.001506

Micro-fusion inhibition tests: quantifying antibody neutralization of virus-mediated cell–cell fusion

2020

Other Outputs

Synthetic Heparan Sulfate Mimetic Pixatimod (PG545) Potently Inhibits SARS-CoV-2 By Disrupting The Spike-ACE2 interaction

Guimond, Scott E., Mycroft-West, Courtney J., Gandhi, Neha S., Tree, Julia A., Le, Thuy T, Spalluto, C. Mirella, Humbert, Maria V., Buttigieg, Karen R., Coombes, Naomi, Elmore, Michael J., Nyström, Kristina, Said, Joanna, Setoh, Yin Xiang, Amarilla, Alberto A., Modhiran, Naphak, Sng, Julian D.J., Chhabra, Mohit, Young, Paul R., Lima, Marcelo A., A.Yates, Edwin, Karlsson, Richard, Miller, Rebecca L., Chen, Yen-Hsi, Bagdonaite, Ieva, Yang, Zhang, Stewart, James, Hammond, Edward, Dredge, Keith, Wilkinson, Tom M.A. ... Turnbull, Jeremy E. (2020). Synthetic Heparan Sulfate Mimetic Pixatimod (PG545) Potently Inhibits SARS-CoV-2 By Disrupting The Spike-ACE2 interaction. doi: 10.1101/2020.06.24.169334

Synthetic Heparan Sulfate Mimetic Pixatimod (PG545) Potently Inhibits SARS-CoV-2 By Disrupting The Spike-ACE2 interaction

2020

Other Outputs

Potent neutralization of clinical isolates of SARS-CoV-2 D614 and G614 variants by a monomeric, sub-nanomolar affinity Nanobody

Nieto, Guillermo Valenzuela, Jara, Ronald, Watterson, Daniel, Modhiran, Naphak, Amarilla, Alberto A, Himelreichs, Johanna, Khromykh, Alexander A., Salinas, Constanza, Pinto, Teresa, Cheuquemilla, Yorka, Margolles, Yago, del Rey, Natalia López González, Miranda-Chacon, Zaray, Cuevas, Alexei, Berking, Anne, Deride, Camila, González-Moraga, Sebastián, Mancilla, Héctor, Maturana, Daniel, Langer, Andreas, Toledo, Juan Pablo, Müller, Ananda, Uberti, Benjamín, Krall, Paola, Ehrenfeld, Pamela, Blesa, Javier, Chana-Cuevas, Pedro, Rehren, German, Schwefel, David ... Rojas-Fernandez, Alejandro (2020). Potent neutralization of clinical isolates of SARS-CoV-2 D614 and G614 variants by a monomeric, sub-nanomolar affinity Nanobody. doi: 10.1101/2020.06.09.137935

Potent neutralization of clinical isolates of SARS-CoV-2 D614 and G614 variants by a monomeric, sub-nanomolar affinity Nanobody

2020

Other Outputs

Distinct systems serology features in children, elderly and COVID patients

Selva, Kevin J., van de Sandt, Carolien E., Lemke, Melissa M., Lee, Christina Y., Shoffner, Suzanne K., Chua, Brendon Y., Nguyen, Thi H.O., Rowntree, Louise C., Hensen, Luca, Koutsakos, Marios, Wong, Chinn Yi, Jackson, David C., Flanagan, Katie L., Crowe, Jane, Cheng, Allen C., Doolan, Denise L., Amanat, Fatima, Krammer, Florian, Chappell, Keith, Modhiran, Naphak, Watterson, Daniel, Young, Paul, Wines, Bruce, Hogarth, P. Mark, Esterbauer, Robyn, Kelly, Hannah G., Tan, Hyon-Xhi, Juno, Jennifer A., Wheatley, Adam K. ... Chung, Amy W. (2020). Distinct systems serology features in children, elderly and COVID patients. doi: 10.1101/2020.05.11.20098459

Distinct systems serology features in children, elderly and COVID patients

2019

Journal Article

A recombinant platform for flavivirus vaccines and diagnostics using chimeras of a new insect-specific virus

Hobson-Peters, Jody, Harrison, Jessica J., Watterson, Daniel, Hazlewood, Jessamine E., Vet, Laura J., Newton, Natalee D., Warrilow, David, Colmant, Agathe M. G., Taylor, Carmel, Huang, Bixing, Piyasena, Thisun B. H., Chow, Weng Kong, Setoh, Yin Xiang, Tang, Bing, Nakayama, Eri, Yan, Kexin, Amarilla, Alberto A., Wheatley, Sarah, Moore, Peter R., Finger, Mitchell, Kurucz, Nina, Modhiran, Naphak, Young, Paul R., Khromykh, Alexander A., Bielefeldt-Ohmann, Helle, Suhrbier, Andreas and Hall, Roy A. (2019). A recombinant platform for flavivirus vaccines and diagnostics using chimeras of a new insect-specific virus. Science Translational Medicine, 11 (522) eaax7888, 1-15. doi: 10.1126/scitranslmed.aax7888

A recombinant platform for flavivirus vaccines and diagnostics using chimeras of a new insect-specific virus