Catalogue > Monoclonals > Chelating Agents


Chelating Agents

EDTA disodium salt dihydrate p.A. - EDTA disodium salt dihydrate, Molecular biology grade - EDTA p.A. - EDTA tetrasodium salt dihydrate p.A. - EGTA Molecular biology grade


EDTA disodium salt dihydrate p.A. 1 kg - M3191.1000
87,64 EUR Package Size: 1 kg Ethylenediamino tetraacetic acid Na2-salt (Versene disodium, EDTA disodium). EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therefore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EDTA disodium salt dihydrate p.A. 5 kg - M3191.5000
365,18 EUR Package Size: 5 kg Ethylenediamino tetraacetic acid Na2-salt (Versene disodium, EDTA disodium). EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therefore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EDTA disodium salt dihydrate p.A. 500 g - M3191.0500
51,13 EUR Package Size: 500 g Ethylenediamino tetraacetic acid Na2-salt (Versene disodium, EDTA disodium). EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therefore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EDTA disodium salt dihydrate, Molecular biology grade 1 kg - M31
105,90 EUR Package Size: 1 kg Ethylenediamino tetraacetic acid Na2-salt (Versene disodium, EDTA disodium). EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therefore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EDTA disodium salt dihydrate, Molecular biology grade 250 g - M3
40,17 EUR Package Size: 250 g Ethylenediamino tetraacetic acid Na2-salt (Versene disodium, EDTA disodium). EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therefore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EDTA disodium salt dihydrate, Molecular biology grade 500 g - M3
62,08 EUR Package Size: 500 g Ethylenediamino tetraacetic acid Na2-salt (Versene disodium, EDTA disodium). EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therefore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EDTA p.A. 1 kg - M3200.1000
50,44 EUR Package Size: 1 kg Ethylenediamino tetraacetic acid. EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therefore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EDTA p.A. 250 g - M3200.0250
28,56 EUR Package Size: 250 g Ethylenediamino tetraacetic acid. EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therefore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EDTA p.A. 500 g - M3200.0500
35,49 EUR Package Size: 500 g Ethylenediamino tetraacetic acid. EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therefore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EDTA tetrasodium salt dihydrate p.A. 1 kg - M3192.1000
47,84 EUR Package Size: 1 kg Ethylenediamino tetraacetic acid Na4-salt. EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therfore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EDTA tetrasodium salt dihydrate p.A. 500 g - M3192.0500
31,51 EUR Package Size: 500 g Ethylenediamino tetraacetic acid Na4-salt. EDTA is a chelator of Ca2+, Mg2+ and Zn2+ ions and therfore may inhibit metalloproteases or influence other biological processes which depend on metal ions catalysation.



EGTA Molecular biology grade 100 g - M3193.0100
293,97 EUR Package Size: 100 g High selectivity for Ca2+; Berman C. (1982) J. Biol. Chem. 257, 1953-7.



EGTA Molecular biology grade 25 g - M3193.0025
102,25 EUR Package Size: 25 g High selectivity for Ca2+; Berman C. (1982) J. Biol. Chem. 257, 1953-7.



EGTA Molecular biology grade 5 g - M3193.0005
30,13 EUR Package Size: 5 g High selectivity for Ca2+; Berman C. (1982) J. Biol. Chem. 257, 1953-7.



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