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53379

FITC-CM-Dextran

average mol wt 40,000

Sinónimos:

FITC-CM-Dextran 40, Fluorescein isothiocyanate–Carboxymethyl–Dextran

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1 G

$764.00

$764.00


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NACRES:
NA.32
UNSPSC Code:
12352108

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biological source

synthetic

conjugate

FITC conjugate

form

powder or crystals

mol wt

average mol wt 40,000

composition

carboxymethyl content, 3-7%

extent of labeling

0.001-0.020 mol/mol FITC glucose

technique(s)

permeability assay: suitable

fluorescence

λex 493 nm; λem 517 nm±5 nm in 0.1 M Tris pH 8.0

Quality Level

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1 of 4

Este artículo
547026805974817
biological source

synthetic

biological source

synthetic

biological source

synthetic

biological source

synthetic

technique(s)

permeability assay: suitable

technique(s)

permeability assay: suitable

technique(s)

permeability assay: suitable

technique(s)

-

Quality Level

100

Quality Level

100

Quality Level

100

Quality Level

100

form

powder or crystals

form

powder or crystals

form

powder or crystals

form

powder or crystals

conjugate

FITC conjugate

conjugate

FITC conjugate

conjugate

FITC conjugate

conjugate

FITC conjugate

mol wt

average mol wt 40,000

mol wt

average mol wt 70,000

mol wt

average mol wt 4,000

mol wt

average mol wt 150,000

Application

FITC-CM-Dextran 40, an anionic fluorescent dextran that may be used to study cell processes such as cell permeability, phagocytosis and endocytosis and to study mechanisms of biomolecular delivery. FITC-CM-Dextran 40 may be use to compare its selectivity versus neutral FITC-Dextran 40.

Clase de almacenamiento

11 - Combustible Solids

wgk

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable


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Chichi Li et al.
Cell death & disease, 10(11), 804-804 (2019-10-28)
Adipose-derived stem cells (ADSCs) have been shown to be beneficial in some pulmonary diseases, and the paracrine effect is the major mechanism underlying ADSC-based therapy. Autophagy plays a crucial role in maintaining stem cell homeostasis and survival. However, the role
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Harada M, Murata J, Sakamura Y, et al.
J. Controlled Release, 71, 71-86 (2001)
Dan Zhang et al.
Journal of cellular physiology, 233(1), 688-698 (2017-03-23)
Understanding the role and underlying regulation mechanism of autophagy in lipopolysaccharide-induced lung injury (LPS-LI) may provide potentially new pharmacological targets for treatment of acute lung injury. The aim of this study was to investigate the functional significance of autophagy in

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