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Mouse Discs, Large Homolog 4 (DLG4) ELISA Kit-Sandwich

Cat. No.EK6F166

Product TypeAnimal Immunoassay Kits

Size

Product Overview

BioVenic Mouse Discs, Large Homolog 4 (DLG4) ELISA Kit-Sandwich is designed for the quantitative determination of Mouse DLG4 in serum, plasma, tissue homogenate, cell culture supernatant, cell lysate, and other biological fluids using a Sandwich ELISA method. For research use only.

Specifications

Assay Type ELISA-Sandwich
Specificity The assay kit is specific for Mouse Discs, Large Homolog 4 (DLG4).
Target Species Mouse
Species Reactivity Mouse
Detection Range 0.17-10 ng/mL
Reproducibility Intra-Assay: CV < 10%; Inter-Assay: CV < 12%
Assay Time Around 90 min
Sample Requirement Serum, plasma, tissue homogenate, cell culture supernatant, cell lysate, and other biological fluids.

Target Information

Disks large homolog 4 is a postsynaptic scaffolding protein essential for synaptogenesis and synaptic plasticity, as it provides a platform for clustering key synaptic proteins at the postsynaptic site. Through the protein PSD-95 it encodes, DLG4 plays a significant role in synaptic signaling, neurodevelopment, metabolic regulation, and the development of neuropsychiatric disorders in mice. DLG4 functions at the postsynaptic membrane via PSD-95 by interacting with neurotransmitter receptors like NMDA and AMPA receptors, thereby regulating neuronal synaptic signaling. In models of hypertension-induced cognitive decline, DLG4 expression levels are reduced, which may correlate with abnormal cerebral hemodynamics, neuronal damage, and cognitive decline.

Target/Biomarker Mouse DLG4
Target Synonym PSD95; SAP90; Postsynaptic density protein 95; Synapse-associated protein 90
Gene ID 13385
UniProt ID Q62108

Shipping and Storage

This product is shipped with gel ice packs. It is recommended to store at 2-8 °C (Up to 6 months).

Documents

COA

To request a Certificate of Analysis, please enter the Lot No. in the search box. Note: Certificate of Analysis not available for kits.

The product is for research use only.
Not for commercial, prophylactic, diagnostic, or therapeutic applications.

References

  1. Wan, Chong et al. "The new mechanism of cognitive decline induced by hypertension: High homocysteine-mediated aberrant DNA methylation." Frontiers in cardiovascular medicine vol. 9 928701. 24 Oct. 2022.
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