MP021947145

MP Biomedicals™ β-Nicotinamide Adenine Dinucleotide, Oxidized Form, MP Biomedicals™

Manufacturer: Fischer Scientific

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Pack Size SKU Availability Price
Each of 1 MP021947145-Each-of-1 In Stock ₹ 11,379.48

MP021947145 - Each of 1

₹ 11,379.48

In Stock

Quantity

1

Base Price: ₹ 11,379.48

GST (18%): ₹ 2,048.306

Total Price: ₹ 13,427.786

Grade

Cell Culture

pH

2 to 4 (1% aq soln)

Quantity

500 mg

Purity

≥98%

Content And Storage

0°C, Desiccate

Molecular Weight (g/mol)

663.4 (anhyd.)

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Description

  • Description β-NAD, a pyridine nucleotide and biologically active form of nicotinic acid, is a coenzyme necessary for the catalytic reaction of certain enzymes
  • It occurs in living cells primarily in the oxidized state
  • It serves as a coenzyme of the dehydrogenases, especially in the dehydrogenation of primary and secondary alcohols
  • NAD usually acts as a hydrogen acceptor, forming NADH which then serves as a hydrogen donor in the respiratory chain
  • Electron acceptor
  • β-NAD is a carrier for the hydride ion, forming b-NADH
  • Hydride ion is enzymatically removed from a substrate molecule by the action of dehydrogenases such as malic dehydrogenase and lactic dehydrogenase
  • Such enzymes catalyze the reversible transfer of a hydride ion from malate or lactate to b-NAD to form the reduced product, b-NADH
  • Unlike b-NAD which has no absorbance at 340nm, b-NADH absorbs at 340nm (EmM = 6.22)
  • The increase in absorbance at 340nm with the formation of b-NADH is the basis for measurement of activity of many enzymes.

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MP021947145

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Grade:
Cell Culture

pH:
2 to 4 (1% aq soln)

Quantity:
500 mg

Purity:
≥98%

Content And Storage:
0°C, Desiccate

Molecular Weight (g/mol):
663.4 (anhyd.)

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Grade:
__

pH:
__

Quantity:
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Purity:
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Content And Storage:
Store at Room Temperature

Molecular Weight (g/mol):
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Grade:
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pH:
Optimum pH 1 to 3.5, unstable above 6.0

Quantity:
250 mg

Purity:
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Content And Storage:
-20°C, Desiccate

Molecular Weight (g/mol):
∽35,000

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Grade:
__

pH:
__

Quantity:
500 g

Purity:
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Content And Storage:
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Molecular Weight (g/mol):
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