A7431

Agarose

Manufacturer: Sigma Aldrich

CAS Number: 9012-36-6

Synonym(S): 3,6-Anhydro-α-L-galacto-β-D-galactan

Select a Size

Pack Size SKU Availability Price
25 G A7431-25-G In Stock ₹ 19,376.75
100 G A7431-100-G In Stock ₹ 50,152.23

A7431 - 25 G

₹ 19,376.75

In Stock

Quantity

1

Base Price: ₹ 19,376.75

GST (18%): ₹ 3,487.815

Total Price: ₹ 22,864.565

biological source

algae (marine)

Quality Level

200

grade

for molecular biology

product line

BioReagent

form

powder

technique(s)

electrophoresis: suitable

EEO

≤0.13

mp

≤90 °C

transition temp

gel point 32.5-38 °C (4% gel)

gel strength

≥1200 g/cm2 (4% gel)

Other Options

Image Product Name Manufacturer Price Range
Sigma Aldrich Fine Chemicals Biosciences Sepharose 4B | 9012-36-6 | MFCD00081294 | 100mL
-- ₹ 25,993.13
Sigma Aldrich Fine Chemicals Biosciences Sepharose(R) 4B 45-165 mum bead diameter | 9012-36-6 | MFCD00081294 | 500ML
-- ₹ 92,278.17
Agarose tablets
-- ₹ 35,224.55
Agarose
-- ₹ 7,490.90 - ₹ 57,100.00
Agarose
-- ₹ 2,457.28 - ₹ 1,29,347.93
Agarose
-- ₹ 17,882.90 - ₹ 87,639.20
Agarose
-- ₹ 13,620.00 - ₹ 45,876.35
Agarose
-- ₹ 22,267.03 - ₹ 46,090.00
Agarose
-- ₹ 21,830.00 - ₹ 74,270.00
Agarose
-- ₹ 9,244.96 - ₹ 62,160.00

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Description

  • Application: Specially formulated to form strong, flexible gels for separation of small (≤1 kb) PCR products, DNA and RNA. Stronger gels make gel-handling easier. Sharp resolution is produced with DNA fragments ranging from 10-1500 bp.
  • Analysis Note: The following is a list of properties associated with our agaroses:Sulfate content - used as an indicator of purity, since sulfate is the major ionic group present.Gel strength - the force that must be applied to a gel to cause it to fracture.Gel point - the temperature at which an aqueous agarose solution forms a gel as it cools. Agarose solutions exhibit hysteresis in the liquid-to-gel transition - that is, their gel point is not the same as their melting temperature. Electroendosmosis (EEO) - a movement of liquid through the gel. Anionic groups in an agarose gel are affixed to the matrix and cannot move, but dissociable counter cations can migrate toward the cathode in the matrix, giving rise to EEO. Since electrophoretic movement of biopolymers is usually toward the anode, EEO can disrupt separations because of internal convection.

SAFETY INFORMATION

WGK

WGK 1

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Personal Protective Equipment

dust mask type N95 (US), Eyeshields, Gloves