Product References
Impad1 and Syt11 work in an epistatic pathway that regulates EMT-mediated vesicular trafficking to drive lung cancer invasion and metastasis.
Cell reports
Bajaj R,Rodriguez BL,Russell WK,Warner AN,Diao L,Wang J,Raso MG,Lu W,Khan K,Solis LS,Batra H,Tang X,Fradette JF,Kundu ST,Gibbons DL
PA5-96970 was used in Immunohistochemistry and Western Blotting to identify Impad1 as a regulator of EMT and secretome-mediated changes during lung cancer progression.
Tue Sep 27 00:00:00 UTC 2022
Impad1 and Syt11 work in an epistatic pathway that regulates EMT-mediated vesicular trafficking to drive lung cancer invasion and metastasis.
Cell reports
Bajaj R,Rodriguez BL,Russell WK,Warner AN,Diao L,Wang J,Raso MG,Lu W,Khan K,Solis LS,Batra H,Tang X,Fradette JF,Kundu ST,Gibbons DL
PA5-96970 was used in Immunohistochemistry and Western Blotting to identify Impad1 as a regulator of EMT and secretome-mediated changes during lung cancer progression.
Tue Sep 27 00:00:00 UTC 2022
Impad1 and Syt11 work in an epistatic pathway that regulates EMT-mediated vesicular trafficking to drive lung cancer invasion and metastasis.
Cell reports
Bajaj R,Rodriguez BL,Russell WK,Warner AN,Diao L,Wang J,Raso MG,Lu W,Khan K,Solis LS,Batra H,Tang X,Fradette JF,Kundu ST,Gibbons DL
PA5-96970 was used in Immunohistochemistry and Western Blotting to identify Impad1 as a regulator of EMT and secretome-mediated changes during lung cancer progression.
Tue Sep 27 00:00:00 UTC 2022
Impad1 and Syt11 work in an epistatic pathway that regulates EMT-mediated vesicular trafficking to drive lung cancer invasion and metastasis.
Cell reports
Bajaj R,Rodriguez BL,Russell WK,Warner AN,Diao L,Wang J,Raso MG,Lu W,Khan K,Solis LS,Batra H,Tang X,Fradette JF,Kundu ST,Gibbons DL
PA5-96970 was used in Immunohistochemistry and Western Blotting to identify Impad1 as a regulator of EMT and secretome-mediated changes during lung cancer progression.
Tue Sep 27 00:00:00 UTC 2022
Impad1 and Syt11 work in an epistatic pathway that regulates EMT-mediated vesicular trafficking to drive lung cancer invasion and metastasis.
Cell reports
Bajaj R,Rodriguez BL,Russell WK,Warner AN,Diao L,Wang J,Raso MG,Lu W,Khan K,Solis LS,Batra H,Tang X,Fradette JF,Kundu ST,Gibbons DL
PA5-96970 was used in Immunohistochemistry and Western Blotting to identify Impad1 as a regulator of EMT and secretome-mediated changes during lung cancer progression.
Tue Sep 27 00:00:00 UTC 2022
Sinoatrial node pacemaker cells share dominant biological properties with glutamatergic neurons.
Protein & cell
Liang D,Xue Z,Xue J,Xie D,Xiong K,Zhou H,Zhang F,Su X,Wang G,Zou Q,Liu Y,Yang J,Ma H,Peng L,Zeng C,Li G,Wang L,Chen YH
PA5-96970 was used in Immunohistochemistry (Paraffin), Immunocytochemistry to suggest that SANPCs share dominant biological properties with glutamatergic neurons, and the glutamatergic neurotransmitter system may act as an intrinsic regulation module of heart rhythm, which provides a potential intervention target for pacemaker cell-associated arrhythmias.
Thu Jul 01 00:00:00 UTC 2021
Sinoatrial node pacemaker cells share dominant biological properties with glutamatergic neurons.
Protein & cell
Liang D,Xue Z,Xue J,Xie D,Xiong K,Zhou H,Zhang F,Su X,Wang G,Zou Q,Liu Y,Yang J,Ma H,Peng L,Zeng C,Li G,Wang L,Chen YH
PA5-96970 was used in Immunohistochemistry (Paraffin), Immunocytochemistry to suggest that SANPCs share dominant biological properties with glutamatergic neurons, and the glutamatergic neurotransmitter system may act as an intrinsic regulation module of heart rhythm, which provides a potential intervention target for pacemaker cell-associated arrhythmias.
Thu Jul 01 00:00:00 UTC 2021