L5530
Latex beads, carboxylate-modified polystyrene, fluorescent orange
aqueous suspension, 0.5 μm mean particle size
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About This Item
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form
aqueous suspension
composition
Solids, 2.5%
mean particle size
0.5 μm
fluorescence
λex ~520 nm; λem ~540 nm
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Application
Carboxylate-modified polystyrene latex beads (fluorescent orange) have been used to block phagocytosis by hemocytes in Drosophila. It has also been used to assess the uptake of latex beads by antigen presenting cells from porcine respiratory system.
Carboxylate-modified polystyrene latex beads have been used to collect morphofunctional data about the immune systems of Carabus lefebvrei, a helicophagous Italian endemic ground beetle often used as an indicator of the habitat quality of the Apennines mountain forests. Carboxylate-modified polystyrene latex beads have also been used to inform comparative studies on immunity defense mechanisms of adults and larvae of the coleopteran Cetonischema aeruginosa and to investigate the phagocytic activity of cultured rat thyroid cells.
Storage Class Code
10 - Combustible liquids
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Certificates of Analysis (COA)
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PLoS pathogens, 14(4), e1007022-e1007022 (2018-04-28)
Phagocytosis by hemocytes, Drosophila macrophages, is essential for resistance to Streptococcus pneumoniae in adult flies. Activated macrophages require an increased supply of energy and we show here that a systemic metabolic switch, involving the release of glucose from glycogen, is
Science advances, 7(44), eabh0050-eabh0050 (2021-10-28)
[Figure: see text].
Nature physics, 16(1), 101-108 (2020-09-10)
Sculpting of structure and function of three-dimensional multicellular tissues depend critically on the spatial and temporal coordination of cellular physical properties, yet the organizational principles that govern these events, and their disruption in disease, remain poorly understood. Using a multicellular
Tissue & cell, 35(4), 243-251 (2003-08-19)
In the context of comparative studies on immunity defence mechanisms of adults and larvae of the coleopteran Cetonischema aeruginosa (Drury, 1770) the ultrastructure of the circulating hemocytes of the third instar larval stage has been investigated by means of light
Circulating hemocytes from larvae and adults of Carabus (Chaetocarabus) lefebvrei Dejean 1826 (Coleoptera, Carabidae): cell types and their role in phagocytosis after in vivo artificial non-self-challenge
Micron (Oxford, England : 1993), 39, 52-58 (2008)
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