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MEM Alpha-Modification MAX (MEM-Alpha-MAX) in Hanks’ Buffer

MEM Alpha-Modification MAX (MEM-α-MAX) in Hanks’ Buffer contains L-Alanyl-L-Glutamine, therefore supplying a longer shelf life.   MEM-α-MAX in HBBS significantly improves cell viability and growth. We manufacture several types of MEM-α-MAX based on your requirements.

Description

Background

MEM Alpha-Modification MAX (MEM-α-MAX) in Hanks’ Buffer is a commonly used media for Mammalian cell culture.

Advantages

MEM-α performs better than MEM for a number of cell lines, please see the description of regular MEM-α : MEM-α

The advantages of MEM-α-MAX in HBBS over MEM-α are:

  • Higher PH Capacity
  • Moreover, it contains 4 mM L-Alanyl-L-Glutamine (0.869 g/L) instead of L-Glutamine and therefore:
  • Possess longer shelf life.
  • More importantly, minimizes toxic ammonia build-up.
  • Significantly improves cell viability and growth.
  • Remains stable across a wide range of temperatures.
  • Improves the culture of primary cells.

Mechanism

Although L-glutamine is a vital amino acid, it degrades, generating toxic ammonia and pyrrolidine carboxylic acid. One way to minimize L-glutamine degradation in media is to gradually add these amino acids to your cell culture. However, keeping track of time to keep the amount of L-glutamine at the same level is tedious, if not impossible.

Alternatively, L-alanyl-L-glutamine can be used because it is much more stable in aqueous solutions. More importantly, it does not easily degrade and gradually releases aminopeptidases. As a result, L-glutamine and L-alanine are then used by the cells for protein production in the TCA cycle.

In addition to our Max formulation products, we manufacture PurMaTM GluaSup (Cat# P3S210 559) is a combination of L-alanyl-L-glutamine that prevents the degradation of L-glutamine.

Contents

MEM Alpha-Modification MAX (MEM-α-MAX) in Hanks’ Buffer contains:

  • 5 mM sodium pyruvate
  • High glucose (4.5g/L)
  • Non-Essential Amino Acids
  • 3.7 g/L Sodium Bicarbonate; PurMa Biologics Manufactures several types of MEM-α-MAX based on the amount of Sodium Bicarbonate and HEPES (PH capacity)
  • Phenol Red

MEM-α-MAX in HBBS contains no proteins, lipids, or growth factors. Therefore, it requires supplementation, commonly with 10% Fetal bovine Serum (FBS).

Formulation

For complete formulation Click here: MEM-alpha-MAX Formulation in Hanks’ Buffer (HBSS) 

References

  1. The growth of L-cells and Vero cells on an autoclavable MEM-peptone medium. L Keay Biotechnology and bioengineering, 19(3), 399-411 (1977-03-01).
  2. Minimum essential medium alpha (MEM) enhances assisted reproductive technology results. I. Mouse embryo study. Wun WS, et al. J Assist Reprod Genet. 1994 Jul;11(6):303-7. doi: 10.1007/BF02215717. PMID: 7734915.
  3. Alpha-minimum essential medium (MEM) enhances in vitro hatched blastocyst development and cell number per embryo over Ham’s F-10. Roudebush WE, et al. J Assist Reprod Genet. 1994 Apr;11(4):203-7. doi: 10.1007/BF02211809. PMID: 7711383.
ParameterSpecification
AppearanceRed, clear liquid
pH7.2 ± 0.1
Osmolality275-360 mOsm/L
EndotoxinNMT< 2EU/mL
MycoplasmaNegative
Suitability Suitable for mammalian cell culture
AdditiveSodium pyruvate
IndicatorPhenol red
Mycoplasma DetectionNegative
Sterility TestedSterile filtered using 0.22 µm filter
FormLiquid
Shipping Condition Room temperature

 

Additional information

Condition

MEM-α (HBSS) Standard Formulation, MEM-α (HBSS) w/o Phenol Red, MEM-α (HBSS) w/o Sodium Bicarbonate, MEM-α (HBSS) w/o Glucose, MEM-α (HBSS) w/o Lipoic Acid, MEM-α (HBSS) 15 mM HEPES (3.6 g/L), MEM-α (HBSS) 25 mM HEPES (5.9 g/L), MEM-α (HBSS) w/o Sodium Pyruvate, MEM-α (HBSS) High Glucose (4.5 g/L), MEM-α (HBSS) High Sodium Bicarbonate (0.85 g/L), MEM-α (HBSS) 15 mM HEPES (3.6 g/L), High Glucose (4.5 g/L), MEM-α (HBSS) 25 mM HEPES (5.9 g/L), High Glucose (4.5 g/L)

Format

Liquid, Powder

Size

10 X 1000ml, 10 X 500ml, 1 x 500 ml, 6 x 500 ml, 1 x 1000 ml, 6 x 1000 ml, 1 x 10 L, 1 x 50 L

Quality Control

[vc-quality-control-tab]

Formulation

MEM-α-MAX in HBSS Buffer Formulation

SDS

SDS

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