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Mouse IL-1β ELISA Kit文献引用: 1.Shi, Jianjin, et al. "Cleavage of GSDMD by inflammatory caspases determines pyroptotic cell death." Nature 526.7575 (2015): 660. 2.Xu, Hao, et al. "Innate immune sensing of bacterial modifications of Rho GTPases by the Pyrin inflammasome." Nature 513.7517 (2014): 237. 3.Zhao, Yue, et al. "The NLRC4 inflammasome receptors for bacterial flagellin and type III secretion apparatus." Nature477.7366 (2011): 596. 4.Wang, Yuquan, et al. "Targeted therapy of atherosclerosis by a broad-spectrum reactive oxygen species scavenging nanoparticle with intrinsic anti-inflammatory activity." ACS nano12.9 (2018): 8943-8960. 5.Chen, Hao, et al. "The bacterial T6SS effector EvpP prevents NLRP3 inflammasome activation by inhibiting the Ca2+-dependent MAPK-Jnk pathway." Cell host & microbe 21.1 (2017): 47-58. 6.Aubert, Daniel F., et al. "A Burkholderia type VI effector deamidates Rho GTPases to activate the pyrin inflammasome and trigger inflammation." Cell host & microbe 19.5 (2016): 664-674. 7.Lin, Shichao, et al. "Copper Tannic Acid Coordination Nanosheet: A Potent Nanozyme for Scavenging ROS from Cigarette Smoke." Small (2019): 1902123. 8.Wei, Juncheng, et al. "The GTPase-activating protein GIT2 protects against colitis by negatively regulating Toll-like receptor signaling." Proceedings of the National Academy of Sciences 111.24 (2014): 8883-8888. 9.Ge, Jianning, et al. "Preventing bacterial DNA release and absent in melanoma 2 inflammasome activation by a Legionella effector functioning in membrane trafficking." Proceedings of the National Academy of Sciences 109.16 (2012): 6193-6198. 10.Zhang, Qixiong, et al. "Structure–property correlations of reactive oxygen species-responsive and hydrogen peroxide-eliminating materials with anti-oxidant and anti-inflammatory activities." Chemistry of Materials 29.19 (2017): 8221-8238.
1.Shi, Jianjin, et al. "Cleavage of GSDMD by inflammatory caspases determines pyroptotic cell death." Nature 526.7575 (2015): 660. 2.Xu, Hao, et al. "Innate immune sensing of bacterial modifications of Rho GTPases by the Pyrin inflammasome." Nature 513.7517 (2014): 237. 3.Zhao, Yue, et al. "The NLRC4 inflammasome receptors for bacterial flagellin and type III secretion apparatus." Nature477.7366 (2011): 596. 4.Wang, Yuquan, et al. "Targeted therapy of atherosclerosis by a broad-spectrum reactive oxygen species scavenging nanoparticle with intrinsic anti-inflammatory activity." ACS nano12.9 (2018): 8943-8960. 5.Chen, Hao, et al. "The bacterial T6SS effector EvpP prevents NLRP3 inflammasome activation by inhibiting the Ca2+-dependent MAPK-Jnk pathway." Cell host & microbe 21.1 (2017): 47-58. 6.Aubert, Daniel F., et al. "A Burkholderia type VI effector deamidates Rho GTPases to activate the pyrin inflammasome and trigger inflammation." Cell host & microbe 19.5 (2016): 664-674. 7.Lin, Shichao, et al. "Copper Tannic Acid Coordination Nanosheet: A Potent Nanozyme for Scavenging ROS from Cigarette Smoke." Small (2019): 1902123. 8.Wei, Juncheng, et al. "The GTPase-activating protein GIT2 protects against colitis by negatively regulating Toll-like receptor signaling." Proceedings of the National Academy of Sciences 111.24 (2014): 8883-8888. 9.Ge, Jianning, et al. "Preventing bacterial DNA release and absent in melanoma 2 inflammasome activation by a Legionella effector functioning in membrane trafficking." Proceedings of the National Academy of Sciences 109.16 (2012): 6193-6198. 10.Zhang, Qixiong, et al. "Structure–property correlations of reactive oxygen species-responsive and hydrogen peroxide-eliminating materials with anti-oxidant and anti-inflammatory activities." Chemistry of Materials 29.19 (2017): 8221-8238.