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- ...which keep the symbiotic relationship with us humanbeings, to be a safety weapon to defend ourselves against pathogens.</p> <p> Using reprogrammed intestinal bacteria as a safety weapon to destroy the pathogens which invade the intestinal mucosal system.</p>11 KB (1,791 words) - 22:09, 5 October 2011
- THIS IS CLEARLY PART OF THE DESIGN OF A BIOTERROR WEAPON DESIGNED TO HAVE BAD BACTERIA STICK TO ALL THE CELLS IN OUR BODIES. YIPES!970 B (163 words) - 20:58, 2 August 2007
- In our project, the cry weapon system produce crystal protein, targetting the wrigglers, larvae of mosquit5 KB (746 words) - 13:30, 19 October 2016
- In our 2010 NCTU_Formosa project, the cry11Aa gene is the main part of cry weapon system and is regulated by temperature control system(<partinfo>BBa_K332031899 B (153 words) - 14:27, 27 October 2010
- ...naling, or in a more sustained fashion by some immune cells as a cytotoxic weapon (Nathan and Xie, 1994). We found recently (Nunoshiba et al., 1993) that acu8 KB (1,247 words) - 17:35, 23 October 2020
- ...ion is often related to invade the host cell. This biobrick can serve as a weapon to stop these pathogen's infection.1 KB (181 words) - 19:47, 29 October 2013
- ...ul tool to study the signal transduction pathway of PI3P but can also be a weapon to stop these pathogen's infection.1 KB (162 words) - 07:19, 18 September 2015
- ...ul tool to study the signal transduction pathway of PI3P but can also be a weapon to stop these pathogen's infection.3 KB (530 words) - 08:27, 18 September 2015
- ...lysin [4]. Therefore, in 2019 CPU_CHINA project, we choose granulysin as a weapon to directly attack extracellular <i>Mtb</i> in blood circulation due to its5 KB (663 words) - 22:14, 21 October 2019
- ...ng promoter and terminator, along with the SUMO tag, make it an incredible weapon against the toxic substance, Mycrocystin, that cyanobacterial contains.736 B (108 words) - 14:07, 15 October 2019
- ...ng promoter and terminator, along with the SUMO tag, make it an incredible weapon against the toxic substance, Mycrocystin, that cyanobacterial contains.550 B (76 words) - 14:07, 15 October 2019
- ...Rodríguez, A., & García, P. (2018). Are phage lytic proteins the secret weapon to kill Staphylococcus aureus?. MBio, 9(1), 10-1128. https://doi.org/10.11216 KB (2,320 words) - 01:08, 8 October 2023
- ...Rodríguez, A., & García, P. (2018). Are phage lytic proteins the secret weapon to kill Staphylococcus aureus?. MBio, 9(1), 10-1128. https://doi.org/10.1126 KB (846 words) - 22:41, 9 September 2023
- ...Rodríguez, A., & García, P. (2018). Are phage lytic proteins the secret weapon to kill Staphylococcus aureus?. MBio, 9(1), 10-1128. https://doi.org/10.11218 KB (2,624 words) - 01:23, 11 September 2023
- ...Rodríguez, A., & García, P. (2018). Are phage lytic proteins the secret weapon to kill Staphylococcus aureus?. MBio, 9(1), 10-1128. https://doi.org/10.1125 KB (720 words) - 00:31, 28 July 2023
- ...Rodríguez, A., & García, P. (2018). Are phage lytic proteins the secret weapon to kill Staphylococcus aureus?. MBio, 9(1), 10-1128. https://doi.org/10.1125 KB (766 words) - 00:33, 28 July 2023
- ...Rodríguez, A., & García, P. (2018). Are phage lytic proteins the secret weapon to kill Staphylococcus aureus?. MBio, 9(1), 10-1128. https://doi.org/10.11216 KB (2,456 words) - 01:10, 8 October 2023
- ...Rodríguez, A., & García, P. (2018). Are phage lytic proteins the secret weapon to kill Staphylococcus aureus?. MBio, 9(1), 10-1128. https://doi.org/10.11218 KB (2,722 words) - 01:24, 11 September 2023
- ...Rodríguez, A., & García, P. (2018). Are phage lytic proteins the secret weapon to kill Staphylococcus aureus?. MBio, 9(1), 10-1128. https://doi.org/10.1125 KB (726 words) - 00:05, 10 September 2023
- ...Rodríguez, A., & García, P. (2018). Are phage lytic proteins the secret weapon to kill Staphylococcus aureus?. MBio, 9(1), 10-1128. https://doi.org/10.1126 KB (852 words) - 03:36, 10 September 2023