5 Results for "

BAPTA tetrapotassium

" in MedChemExpress (MCE) Product Catalog:
Products (5)

5 Results for "BAPTA tetrapotassium" in MCE Product Catalog:

37
37 Cited Publications
Cat. No.: HY-100168B
CAS No.: 73630-08-7
Purity:  99.45%
BAPTA tetrapotassium is a selective and cell-impermeant chelator for calcium. BAPTA has high selectivity against magnesium and calcium. BAPTA tetrapotassium can also inhibit phospholipase C activity independently of their role as Ca 2+ chelators .
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Cat. No.: HY-D1640
CAS No.: 152290-47-6
Research Areas:  

Others

5,5'-Difluoro BAPTA tetrapotassium is a difluoro-derivative of BAPTA (HY-100168). 5,5'-Difluoro BAPTA tetrapotassium shows large 19F NMR chemical shifts upon chelating divalent cations. 5,5'-Difluoro BAPTA tetrapotassium has high selectivity for Ca 2+. 5,5'-Difluoro BAPTA tetrapotassium can inhibit the growth of pollen tube .
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Cat. No.: HY-D1641
CAS No.: 73630-09-8
5,5'-Dimethyl BAPTA tetrapotassium is a water-soluble, extracellular membrane metal chelator with relative selectivity for calcium ions .
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Cat. No.: HY-D1639
CAS No.: 73630-11-2
5,5'-Dibromo BAPTA tetrapotassium is a calcium chelator, can be formulated into a buffer with a defined calcium ion concentration. 5,5'-Dibromo BAPTA tetrapotassium can control the concentration of calcium ions inside and outside the cell and can be used in studies of calcium physiological activity .
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Cat. No.: HY-100168BR
CAS No.: 73630-08-7
BAPTA tetrapotassium (Standard) is the analytical standard of BAPTA tetrapotassium (HY-100168B). This product is intended for research and analytical applications. BAPTA tetrapotassium is a selective and cell-impermeant chelator for calcium. BAPTA tetrapotassium, as calcium indicator, has high selectivity against magnesium and calcium. BAPTA tetrapotassium is widely used as an intracellular buffer for investigating the effects of Ca 2+ release from intracellular stores or influx via Ca 2+-permeable channels in the plasma membrane. BAPTA tetrapotassium can also inhibit phospholipase C activity independently of their role as Ca 2+ chelators .
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