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Immunochemistry:FAM-FLICA Caspase-1 活性分析試劑盒

發(fā)布者:艾美捷科技    發(fā)布時間:2022-11-29     
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       Caspase全稱為含半胱氨酸的天冬氨酸蛋白水解酶(cysteinyl aspartate specific proteinase)。caspase是一類蛋白酶家族,成員較多,在人類,已經(jīng)鑒定了11種不同的caspase,根據(jù)其蛋白酶序列的同源性可分為3個亞族:Caspase-1亞族包括 Caspase-1、4、5、11;Caspase-2亞族包括Caspase-2、9; Caspase-3亞族包括Caspase-3、6、7、8、10。起細(xì)胞凋亡執(zhí)行者作用的是caspase3,6,7。   


動態(tài)檢測 活細(xì)胞 內(nèi)的Caspase-1的活性


       Caspase-1在介導(dǎo)炎癥反應(yīng)和細(xì)胞焦亡(pyroptosis)中發(fā)揮重要作用。市面上常見的是檢測細(xì)胞裂解液中的Caspase-1活性,更多研究者希望動態(tài)檢測 活細(xì)胞 內(nèi)的Caspase-1的活性,做更真實(shí)的實(shí)驗(yàn)!艾美捷科技為您推薦Immunochemistry Tech(ICT)品牌專利FLICA系列產(chǎn)品。 


        ICT的FLICA?檢測法使研究人員能夠在體外對活細(xì)胞內(nèi)的Caspase酶家族進(jìn)行針對性地活性進(jìn)行定量和監(jiān)測。  

貨號名稱規(guī)格樣本
ICT-97FAM-FLICA Caspase-1 (YVAD) Assay Kit FAM-FLICA Caspase-1 活性分析試劑盒25T培養(yǎng)的活細(xì)胞 (懸浮和貼壁)
ICT-98100T

* 僅供科研使用,不得用于醫(yī)療. 


        【原理】FLICA試劑FAM-YVAD-FMK(Ex/Em = 488nm/530nm),是無細(xì)胞毒性的,細(xì)胞膜滲透抑制劑。進(jìn)入每個細(xì)胞,并不可逆地與活化的caspase-1結(jié)合。任何未結(jié)合的FAM-YVAD-FMK-FLICA試劑擴(kuò)散出細(xì)胞并被沖走。因此留在細(xì)胞內(nèi)的綠色熒光直接體現(xiàn)了活性caspase-1酶活性的。熒光結(jié)果可通過熒光酶標(biāo)儀、熒光顯微鏡、流式細(xì)胞儀進(jìn)行分析。   


        【產(chǎn)品組分】

FAM-FLICA Caspase-1 (YVAD) Assay Kit FAM-FLICA Caspase-1 活性分析試劑盒
25T100T
l FLICA Caspase-1 Reagent (FAM-YVAD-FMK), 1 vial, #653 l 10X Apoptosis Wash Buffer, 15 mL, #635 l Fixative, 6 mL, #636 l Propidium Iodide, 1 mL, #638 l Hoechst 33342, 1 mL, #639 l Kit Manuall FLICA Caspase-1 Reagent (FAM-YVAD-FMK), 4 vials, #653 l 10X Apoptosis Wash Buffer, 60 mL, #634 l Fixative, 6 mL, #636 l Propidium Iodide, 1 mL, #638 l Hoechst 33342, 1 mL, #639 l Kit Manual
保存條件:2-8°C 避光保存。
點(diǎn)擊下載說明書PDF


        【Nature文章鑒賞】 IF=30.9, 《Escherichia coli Rho GTPase-activating toxin CNF1 mediates NLRP3 inflammasome activation via p21-activated kinases-1/2 during bacteraemia in mice》,Nature Microbiology 


Nature文章鑒賞


        FLICA?相關(guān)產(chǎn)品列表,相關(guān)靶標(biāo):Caspase-1 (YVAD) (also recognizes caspases 4 and 5), -2 (VDVAD), -3/7 (DEVD), -6 (VEID), -8 (LETD), -9 (LEHD), and -10 (AEVD)

貨號品牌名稱規(guī)格(T)
ICT-91ImmunochemistryFAM-FLICA Poly Caspase Assay Kit25
ICT-92ImmunochemistryFAM-FLICA Poly Caspase Assay Kit100
ICT-93ImmunochemistryFAM-FLICA Caspase 3 & 7 Assay Kit25
ICT-94ImmunochemistryFAM-FLICA Caspase 3 & 7 Assay Kit100
ICT-95ImmunochemistryFAM-FLICA Caspase 6 Assay Kit25
ICT-96ImmunochemistryFAM-FLICA Caspase 6 Assay Kit100
ICT-97ImmunochemistryFAM-FLICA Caspase 1 YVAD Assay Kit25
ICT-98ImmunochemistryFAM-FLICA Caspase 1 YVAD Assay Kit100
ICT-99ImmunochemistryFAM-FLICA Caspase 8 Assay Kit25
ICT-910ImmunochemistryFAM-FLICA Caspase 8 Assay Kit100
ICT-911ImmunochemistryMitoPT JC-1 Assay Kit (400 tests)400
ICT-912ImmunochemistryFAM-FLICA Caspase 9 Assay Kit25
ICT-913ImmunochemistryFAM-FLICA Caspase 9 Assay Kit100
ICT-916ImmunochemistrySR-FLICA Poly Caspase Assay Kit25
ICT-917ImmunochemistrySR-FLICA Poly Caspase Assay Kit100
ICT-918ImmunochemistryFAM-FLICA Caspase 2 Assay Kit25
ICT-919ImmunochemistryFAM-FLICA Caspase 2 Assay Kit100
ICT-922ImmunochemistryFAM-FLICA Caspase 10 Assay Kit25
ICT-923ImmunochemistryFAM-FLICA Caspase 10 Assay Kit100
ICT-924ImmunochemistryMitoPT JC-1 Assay Kit (100 tests)100
ICT-931ImmunochemistrySR FLICA Caspase 3 and 7 Assay Kit25
ICT-932ImmunochemistrySR FLICA Caspase 3 and 7 Assay Kit100


       【FAM-FLICA Caspase-1 (YVAD) Assay Kit更多發(fā)表文章,32+】 

       1、Liang, C;Peng, Y;Sun, H;Wang, L;Jiang, L;Zou, S. Silencing lncRNA KCNQ1OT1 reduced hepatic ischemia reperfusion injury-induced pyroptosis by regulating miR-142a-3p/HMGB1 axis. Molecular and Cellular Biochemistry. 2022 October 29; doi: 10.1007/s11010-022-04586-y. Full Article

       2、Jiang, Y;Yang, Y;Hu, Y;Yang, R;Huang, J;Liu, Y;Wu, Y;Li, S;Ma, C;Humphries, F;Wang, B;Wang, X;Hu, Z;Yang, S. Gasdermin D restricts anti-tumor immunity during PD-L1 checkpoint blockade. Cell reports. 2022 October 25; doi: 10.1016/j.celrep.2022.111553. Text

       3、Moraes, C;Hottz, E;Dos Santos Ornellas, D;Adesse, D;de Azevedo, C;d’Avila, J;Zaverucha-do-Valle, C;Maron-Gutierrez, T;Barbosa, H;Bozza, P;Bozza, F. Microglial NLRP3 Inflammasome Induces Excitatory Synaptic Loss Through IL-1β-Enriched Microvesicle Release: Implications for Sepsis-Associated Encephalopathy. Molecular Neurobiology. 2022 October 25; doi: 10.1007/s12035-022-03067-z. 

       4、Hu, R;Liang, J;Ding, L;Zhang, W;Liu, X;Song, B;Xu, Y. Edaravone dexborneol provides neuroprotective benefits by suppressing NLRP3 inflammasome-induced microglial pyroptosis in experimental ischemic stroke. International immunopharmacology. 2022 October 21; doi: 10.1016/j.intimp.2022.109315. Article

       5、Yuan, X;Bhat, OM;Zou, Y;Li, X;Zhang, Y;Li, PL. Endothelial Acid Sphingomyelinase Promotes NLRP3 Inflammasome and Neointima Formation during Hypercholesterolemia. Journal of lipid research. 2022 October 14; doi: 10.1016/j.jlr.2022.100298.

       6、Wan, Y;Zhang, W;Huang, C;Jian, J;Zhang, Y;Liu, Q;Chen, P;Zhu, X. Ursolic acid alleviates Kupffer cells pyroptosis in liver fibrosis by the NOX2/NLRP3 inflammasome signaling pathway. International immunopharmacology. 2022 October 14; doi: 10.1016/j.intimp.2022.109321. Text

       7、Wen-Yuan, W;Wan-Qing, Y;Qi-Yun, H;Yu-Si, L;Shao-Jie, Q;Jin-Tao, L;Hui, M;Fang, C;Hui-Ling, Y. mTORC1-Dependent and GSDMD-Mediated Pyroptosis in Developmental Sevoflurane Neurotoxicity. Molecular neurobiology. 2022 October 13; doi: 10.1007/s12035-022-03070-4. 

       8、Sun, Y;Han, R;Wang, J;Qin, Y;Ren, Z;Feng, X;Liu, Q;Wang, X. A single-beam of light priming the immune responses and boosting cancer photoimmunotherapy. Journal of Controlled Release : Official Journal of the Controlled Release Society. 2022 September 8; doi: 10.1016/j.jconrel.2022.08.057. Full Article

       9、He, L;Wei, T;Huang, Y;Zhang, X;Zhu, D;Liu, H;Wang, Z. miR-214-3p Deficiency Enhances Caspase-1-Dependent Pyroptosis of Microglia in White Matter Injury. Journal of Immunology Research. 2022 August 22; doi: 10.1155/2022/1642896. Full Article  

       10、Yin, H;Wu, M;Lu, Y;Wu, X;Yu, B;Chen, R;Lu, J;Tong, H. HMGB1-activatied NLRP3 inflammasome induces thrombocytopenia in heatstroke rat. PeerJ. 2022 August 4; doi: 10.7717/peerj.13799.  

       11、Trugilho, MRO;Azevedo-Quintanilha, IG;Gesto, JSM;Moraes, ECS;Mandacaru, SC;Campos, MM;Oliveira, DM;Dias, SSG;Bastos, VA;Santos, MDM;Carvalho, PC;Valente, RH;Hottz, ED;Bozza, FA;Souza, TML;Perales, J;Bozza, PT. Platelet proteome reveals features of cell death, antiviral response and viral replication in covid-19. Cell death discovery. 2022 July 16; doi: 10.1038/s41420-022-01122-1.   

       12、McLemore, AF; Hou, HA; Meyer, BS; Lam, NB; Ward, GA; Aldrich, AL; Rodrigues, MA; Vedder, A; Zhang, L; Padron, E; Vincelette, ND; Sallman, DA; Abdel-Wahab, O; List, AF; McGraw, KL. Somatic gene mutations expose cytoplasmic DNA to co-opt the cGAS-STING-NLRP3 axis in Myelodysplastic syndromes. JCI Insight. 2022 July 5; doi: 10.1172/jci.insight.159430. Article  

       13、Panicker, N;Kam, TI;Wang, H;Neifert, S;Chou, SC;Kumar, M;Brahmachari, S;Jhaldiyal, A;Hinkle, JT;Akkentli, F;Mao, X;Xu, E;Karuppagounder, SS;Hsu, ET;Kang, SU;Pletnikova, O;Troncoso, J;Dawson, VL;Dawson, TM. Neuronal NLRP3 is a parkin substrate that drives neurodegeneration in Parkinson's disease. Neuron. 2022 May 25; doi: 10.1016/j.neuron.2022.05.009. Full Article  

       14、Dufies, O;Doye, A;Courjon, J;Torre, C;Michel, G;Loubatier, C;Jacquel, A;Chaintreuil, P;Majoor, A;Guinamard, RR;Gallerand, A;Saavedra, PHV;Verhoeyen, E;Rey, A;Marchetti, S;Ruimy, R;Czerucka, D;Lamkanfi, M;Py, BF;Munro, P;Visvikis, O;Boyer, L. Escherichia coli Rho GTPase-activating toxin CNF1 mediates NLRP3 inflammasome activation via p21-activated kinases-1/2 during bacteraemia in mice. Nature Microbiology. 2021 Jan 11; doi: 10.1038/s41564-020-00832-5.   

       15、B?hme J, Martinez N, Li S, Lee A, Marzuki M, Tizazu AM, Ackart D, Frenkel JH, Todd A, Lachmandas E, Lum J, Shihui F, Ng TP, Lee B, Larbi A, Netea MG, Basaraba R, van Crevel R, Newell E, Kornfeld H, Singhal A. Metformin enhances anti-mycobacterial responses by educating CD8+ T-cell immunometabolic circuits. Nat Commun. 2020 Oct 16;11(1):5225. doi: 10.1038/s41467-020-19095-z.   

       16、Gaul S, Leszczynska A, Alegre F, Kaufmann B, Johnson CD, Adams LA, Wree A, Damm G, Seehofer D, Calvente CJ, Povero D, Kisseleva T, Eguchi A, McGeough MD, Hoffman HM, Pelegrin P, Laufs U, Feldstein AE. Hepatocyte pyroptosis and release of inflammasome particles induce stellate cell activation and liver fibrosis. J Hepatol. 2020 Aug 4;S0168-8278(20)30522-5. doi: 10.1016/j.jhep.2020.07.041. Online ahead of print.         17、Chang Y, Zhu J, Wang D, Li H, He Y, Liu K, Wang X, Peng Y, Pan S, Huang K. NLRP3 inflammasome-mediated microglial pyroptosis is critically involved in the development of post-cardiac arrest brain injury. J Neuroinflammation. 2020 Jul 23;17(1):219. doi: 10.1186/s12974-020-01879-1.   

       18、Huang Y, Wang H, Hao Y, Lin H, Dong M, Ye J, Song L, Wang Y, Li Q, Shan B, Jiang Y, Li H, Shao Z, Kroemer G, Zhang H, Bai L, Jin T, Wang C, Ma Y, Cai Y, Ding C, Liu S, Pan Y, Jiang W, Zhou R. Myeloid PTEN promotes chemotherapy-induced NLRP3-inflammasome activation and antitumour immunity. Nat Cell Biol. 2020 Jun;22(6):716-727. doi: 10.1038/s41556-020-0510-3. Epub 2020 May 4.   

       19、Hu JJ, Liu X, Xia S, Zhang Z, Zhang Y, Zhao J, Ruan J, Luo X, Lou X, Bai Y, Wang J, Hollingsworth LR, Magupalli VG, Zhao L, Luo HR, Kim J, Lieberman J, Wu H. FDA-approved disulfiram inhibits pyroptosis by blocking gasdermin D pore formation. Nat Immunol. 2020 May 4. doi: 10.1038/s41590-020-0669-6. Online ahead of print.   

       20、Reis AS, Barboza R, Murillo O, Barateiro A, Peixoto EPM, Lima FA, Gomes VM, Dombrowski JG, Leal VNC, Araujo F, Bandeira CL, Araujo RBD, Neres R, Souza RM, Costa FTM, Pontillo A, Bevilacqua E, Wrenger C, Wunderlich G, Palmisano G, Labriola L, Bortoluci KR, Penha-Gon?alves C, Gon?alves LA, Epiphanio S, Marinho CRF. Inflammasome activation and IL-1 signaling during placental malaria induce poor pregnancy outcomes. Sci Adv. 2020 Mar 4;6(10):eaax6346. doi: 10.1126/sciadv.aax6346. eCollection 2020 Mar.   

       21、Gao J, Peng S, Shan X, Deng G, Shen L, Sun J, Jiang C, Yang X, Chang Z, Sun X, Feng F, Kong L, Gu Y, Guo W, Xu Q, Sun Y. Inhibition of AIM2 inflammasome-mediated pyroptosis by Andrographolide contributes to amelioration of radiation-induced lung inflammation and fibrosis. Cell Death Dis. 2019 Dec 20;10(12):957. doi: 10.1038/s41419-019-2195-8.>   

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       23、Mantegazza AR, Wynosky-Dolfi MA, Casson CN, Lefkovith AJ, Shin S, Brodsky IE, Marks MS. Increased autophagic sequestration in adaptor protein-3 deficient dendritic cells limits inflammasome activity and impairs antibacterial immunity. PLoS Pathog. 2017. Dec 18;13(12):e1006785. doi: 10.1371/journal.ppat.1006785. eCollection 2017 Dec.   

       24、Clerc P, Jeanjean P, Hallalli N, Gougeon M, Pipy B, Carrey J, Fourmy D, Gigoux V. Targeted Magnetic Intra-Lysosomal Hyperthermia produces lysosomal reactive oxygen species and causes Caspase-1 dependent cell death. J Control Release. 2017. Dec 1;270:120-134. doi: 10.1016/j.jconrel.2017.11.050. [Epub ahead of print].  

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       27、Zhai Z, Liu W, Kaur M, Luo Y, Domenico J, Samson JM, Shellman YG, Norris DA, Dinarello CA, Spritz RA, Fujita M. NLRP1 promotes tumor growth by enhancing inflammasome activation and suppressing apoptosis in metastatic melanoma. Oncogene. 2017. .   

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       29、Ferris ST, Zakharov PN, Wan X, Calderon B, Artyomov MN, Unanue ER, and Carrero JA. The islet-resident macrophage is in an inflammatory state and senses microbial products in blood. J. Exp. Med. 2017. Jun 19. pii: jem.20170074. doi: 10.1084/jem.20170074. [Epub ahead of print].   

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       31、Dang EV, McDonald JG, Russell DW, Cyster JG. Oxysterol Restraint of Cholesterol Synthesis Prevents AIM2 Inflammasome Activation. Cell. 2017. Nov 16.171(5):1057-1071.e11. doi: 10.1016/j.cell.2017.09.029. Epub 2017 Oct 12. Summary 

       32、Lin JX, Du N, Li P, Kazemian M, Gebregiorgis T, Spolski R, Leonard WJ. Critical functions for STAT5 tetramers in the maturation and survival of natural killer cells. Nat Commun. 2017. Nov 6;8(1):1320. doi: 10.1038/s41467-017-01477-5.   


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