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ECM644

Sigma-Aldrich

In Vitro Vascular Permeability Assay (24-well)

This In Vitro Vascular Permeability Assay kit employs a 24-well plate and provides an efficient system for evaluating the effects of chemicals & drug compounds on endothelial cell adsorption, transport & permeability.

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Synonym(s):
Vascular permeability assay
eCl@ss:
32161000
NACRES:
NA.32

Quality Level

species reactivity (predicted by homology)

all

manufacturer/tradename

Chemicon®

technique(s)

cell based assay: suitable

detection method

fluorometric

shipped in

wet ice

Application

Research Category
Cell Structure
The Millipore® In Vitro Vascular Permeability Assay kit provides an efficient system for evaluating the effects of chemicals and drug compounds on endothelial cell adsorption, transport, and permeability. It is ideal for measuring compounds that may disrupt or protect an endothelial monolayer. Each In Vitro Vascular Permeability Assay Kit contains sufficient reagents for the evaluation of 24 samples. The In Vitro Vascular Permeability Assay Kit is intended for research use only, not for diagnostic or therapeutic applications.
This In Vitro Vascular Permeability Assay kit employs a 24-well plate and provides an efficient system for evaluating the effects of chemicals & drug compounds on endothelial cell adsorption, transport & permeability.

Components

24-Well Permeability Insert Assembly, Collagen-coated: One 24-well receiver tray containing 24 porous cell culture inserts pre-coated with type I rat-tail collagen.

Receiver Tray, 24-Well: Two 24-well plates.

FITC-Dextran Solution: One vial containing 250 µL.

Forceps: One set of forceps.

Cell Stain: One bottle containing 10 mL.

Black Plate, 96-Well Opaque: One 96-well plate.

Linkage

Replaces: ECM640

Storage and Stability

Store kit materials at 2-8°C; use within 4 months from date of receipt. Do not freeze.

Legal Information

CHEMICON is a registered trademark of Merck KGaA, Darmstadt, Germany
Millipore is a registered trademark of Merck KGaA, Darmstadt, Germany

Disclaimer

Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.

Storage Class Code

10-13 - German Storage Class 10 to 13


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Yi-Shuan Sheen et al.
The Journal of pathology, 250(4), 452-463 (2020-02-08)
Epidermal growth factor receptor tyrosine kinase inhibitors (EGFR-TKIs) are used as a treatment for non-small-cell lung cancer. There have been some reports of EGFR-TKIs being associated with vascular adverse events. We found that EGFR-TKIs decreased the proliferation of HMEC-1s (immortalized
Dan Shi et al.
Arteriosclerosis, thrombosis, and vascular biology, 38(11), 2665-2677 (2018-10-26)
Objective- Mitochondria are the important yet most underutilized target for cardio-cerebrovascular function integrity and disorders. The Tom (translocases of outer membrane) complex are the critical determinant of mitochondrial homeostasis for making organs acclimate physiological and pathological insults; however, their roles
Hongping Xu et al.
Oncotarget, 8(44), 76165-76173 (2017-11-05)
Caveolin-1 (Cav1) is the principle structural protein of caveolae. It plays important roles in the vascular system under both physiological and pathological conditions. Although Cav1 has been shown to inhibit microvascular permeability and has been considered as a tumor-suppressor for
Lingling Neng et al.
Journal of the Association for Research in Otolaryngology : JARO, 14(2), 175-185 (2012-12-19)
The integrity of the fluid-blood barrier in the stria vascularis is critical for maintaining inner ear homeostasis, especially for sustaining the endocochlear potential, an essential driving force for hearing function. However, the mechanisms that control intrastrial fluid-blood barrier permeability remain
Sabrina Rohringer et al.
PloS one, 9(12), e114806-e114806 (2014-12-17)
Extracorporeal shockwave treatment was shown to improve orthopaedic diseases and wound healing and to stimulate lymphangiogenesis in vivo. The aim of this study was to investigate in vitro shockwave treatment (IVSWT) effects on lymphatic endothelial cell (LEC) behavior and lymphangiogenesis.

Articles

Cell based angiogenesis assays to analyze new blood vessel formation for applications of cancer research, tissue regeneration and vascular biology.

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