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LB30

Latex beads, polystyrene

3.0 μm mean particle size

Synonyme(s) :

Latex Beads, Latex Microspheres, laboratory latex beads, latex sphers

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Sélectionner une taille de conditionnement

1 ML

156,00 $

2 ML

267,00 $

15 ML

1 030,00 $

156,00 $


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A propos de cet article

UNSPSC Code:
41121800
NACRES:
NB.13
MDL number:

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form

aqueous suspension

composition

Solids, 10%

packaging

pack of 1 mL, pack of 15 mL, pack of 2 mL

mean particle size

3.0 μm

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Cet article
LB5LB1LB8
form

aqueous suspension

form

aqueous suspension

form

aqueous suspension

form

aqueous suspension

composition

Solids, 10%

composition

Solids, 10%

composition

Solids, 10%

composition

Solids, 10%

packaging

pack of 1 mL

packaging

pack of 1 mL, pack of 15 mL, pack of 2 mL

packaging

pack of 1 ea

packaging

pack of 1 mL, pack of 15 mL, pack of 2 mL

mean particle size

3.0 μm

mean particle size

0.46 μm

mean particle size

0.1 μm

mean particle size

0.8 μm

General description

Latex beads are utilized in applications including electron microscopy and cell counter calibration, antibody-mediated agglutination diagnostics, phagocytosis experiments, and many others. The most popular use of latex beads is, particularly in latex agglutination tests. This method allows the detection of minute amounts of antigens or antibodies in serum, urine, and cerebrospinal fluids. It is also used in phagocytosis research. The beads are supplied as aqueous suspensions and are composed mainly of polymer particles (30%) and water, (>69.0%) with small amounts of surfactant, (0.1–0.5%) sodium bicarbonate, and potassium sulfate (inorganic salts – 0.2%). This product is for R&D use only, not for drug, household, or other uses. For more information, please refer the Product Information Sheet.

Classe de stockage

12 - Non Combustible Liquids

wgk

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable


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Retrouvez la documentation relative aux produits que vous avez récemment achetés dans la Bibliothèque de documents.

Consulter la Bibliothèque de documents

Florian Oehme et al.
RNA biology, 16(10), 1339-1345 (2019-06-30)
Molecular risk stratification of colorectal cancer can improve patient outcome. A panel of lncRNAs (H19, HOTTIP, HULC and MALAT1) derived from serum exosomes of patients with non-metastatic CRC and healthy donors was analyzed. Exosomes from healthy donors carried significantly more
Dapeng Li et al.
Oncoimmunology, 1(5), 687-693 (2012-08-31)
Tumor cells expressing TLRs is generally recognized to mediate tumor inflammation. However, whether and how tumor TLR signaling pathways negatively regulate tumor inflammation remains unclear. In this report, we find that TLR4 signaling of H22 hepatocarcinoma tumor cells is transduced
Yang Zhang et al.
Journal of nanobiotechnology, 18(1), 69-69 (2020-05-08)
Cell-bound membrane vesicles (CBMVs) are a type of membrane vesicles different from the well-known extracellular vesicles (EVs). In recent years, the applications of EVs as drug delivery systems have been studied widely. A question may arise whether isolated CBMVs also
Nichaluk Leartprapun et al.
Nature communications, 9(1), 2079-2079 (2018-05-29)
Optical tweezers are an invaluable tool for non-contact trapping and micro-manipulation, but their ability to facilitate high-throughput volumetric microrheology of biological samples for mechanobiology research is limited by the precise alignment associated with the excitation and detection of individual bead
Birgit A Steppich et al.
Thrombosis journal, 7, 11-11 (2009-07-03)
Tissue factor (TF) contributes to thrombosis following plaque disruption in acute coronary syndromes (ACS). Aim of the study was to investigate the impact of plasma TF activity on prognosis in patients with ACS. One-hundred seventy-four patients with unstable Angina pectoris

Contenu apparenté

Numéro d'article de commerce international

RéférenceGTIN
LB30-2ML04061838208477
LB30-15ML04061838208460
LB30-1ML04061838108227

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