Tachykinin Receptor 1 expressing U2OS Cells (Division Arrested)
Each vial of HiTSeeker TACR2 (NK2) contains U2OS cells stably expressing Human Tachykinin Receptor with no tag. We offer this cell line as a stable cell line...
Tachykinin Receptor 1 expressing U2OS Cells (Division Arrested)
Muscarinic Receptor 5 expressing U2OS Cells (Division Arrested)
Each vial of HiTSeeker CHRM5 cell line contains U2OS cells stably expressing human Muscarinic acetylcholine receptor M5 with no tag. We offer this cell line...
Muscarinic Receptor 3 expressing U2OS Cells (Division Arrested)
Each vial of this product contains U2OS cells stably expressing human Muscarinic acetylcholine receptor M3 with no tag. We offer this cell line as a stable...
Muscarinic Receptor 1 expressing U2OS Cells (Division Arrested)
Alpha-1B adrenergic Receptor expressing U2OS Cells (Division Arrested)
Each vial of HiTSeeker ADRA1B Assay Cell Line contains U2OS cells stably expressing human Alpha-1B adrenergic Receptor (ADRA1B) with no tag. We offer this...
Alpha-1A adrenergic Receptor expressing U2OS Cells (Division Arrested)
HiTSeeker ADRA1A Assay Cell Line contains U2OS cells stably expressing human Alpha-1A adrenergic Receptor (ADRA1A) with no tag. Innoprot HiTSeeker ADRA1A...
Calcitonin receptor expressing HEK293 Cells (Division Arrested)
HiTSeeker CALCR Assay Cell Line contains HEK293 cells stably expressing human Calcitonin Receptor (CALCR) with no tag. We offer this cell line as a stable...
Tachykinin Receptor 1 expressing HEK293 Cells (Division Arrested)
Each vial of HiTSeeker TACR1 (NK1) Cell Line contains HEK293 cells stably expressing Human Tachykinin Receptor with no tag. We offer this cell line as a...
Innoprot HiTSeeker ADRB2 Cell Line has been designed to assay compounds or analyze their capability to modulate Adrenergic beta-2 Receptor. When an agonist...
Dopamine receptor-3 stable expressing HEK293 Cell Line
Dopamine receptor-1 stable expressing HEK293 Cell Line
follicle stimulating hormone receptor expressing HEK293 Cells (Division Arrested)