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11383175001

Roche

Free Fatty Acids, Half Micro Test

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About This Item

UNSPSC Code:
12352200

usage

sufficient for ~5 x 10 tests

manufacturer/tradename

Roche

shipped in

wet ice

storage temp.

2-8°C

General description

Optimized enzymatic colorimetric assay for the determination of free fatty acids (non-esterified fatty acids, or NEFA) in research samples from serum or plasma.

Application

Determination of free fatty acids (non-esterified fatty acids, or NEFA) in serum and plasma in life science research applications.The test combination is intended as a research tool to help increase scientific knowledge about the physiological role of free fatty acids in blood.
Free Fatty Acids, Half Micro Test has been used in the lipid quantification.[1] It has also been used in the determination of free fatty acid in plasma by spectrophotometry using the half-micro test.[2]

Packaging

1 kit containing 5 components

Other Notes

For life science research only. Not for use in diagnostic procedures.

Kit Components Only

Product No.
Description

  • Phosphate-buffer Solution, pH 7.8

  • Tablets (each tablet contains ATP, coenzyme A, acyl-CoA synthetase, peroxidase, ascorbate oxidase, 4-aminoantipyrine and stabilizers)

  • N-ethyl-maleinimide solution, aqueous

  • Acyl-CoA oxidase dilution solution and stabilizers

  • Tablets (each tablet contains acyl-CoA oxidase and stabilizers)

pictograms

Health hazard

signalword

Danger

hcodes

Hazard Classifications

Resp. Sens. 1 - Skin Sens. 1

Storage Class

12 - Non Combustible Liquids

wgk_germany

WGK 2

flash_point_f

does not flash

flash_point_c

does not flash


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MaLinda D Henry et al.
Physiological reports, 2(7), doi:10-doi:10 (2014-07-06)
Disruption of KSR2 in humans and mice decreases metabolic rate and induces obesity, coincident with dysregulation of glucose homeostasis. Relative to wild-type mice, ksr2(-/-) mice are small prior to weaning with normal glucose tolerance at 6 weeks of age, but
Tiago Rodrigues et al.
Journal of diabetes research, 2013, 690650-690650 (2013-05-15)
Background and Aims. Adipose tissue dysfunction results from many factors, including glycation-induced microvascular damages. We tested the usefulness of inhibiting methylglyoxal-induced glycation to adipose tissue microvasculature in this work, using the antioxidant and dicarbonyl scavenger drug pyridoxamine. Methods. A group

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