Showing posts with label neuroscience. Show all posts
Showing posts with label neuroscience. Show all posts

Thursday, March 02, 2023

Neuromics Microglia in Action

 Researchers Study Migration of Neuromics Microglia in Bio-Scaffolds

Check out the publication-https://www.sciencedirect.com/science/article/pii/S2405844023005595.

Images: Migration of Microglia

Here's a link to Neuromics' portfolio of cells for Neurocientists-https://www.neuromics.com/neurons-astrocytes-schwann-cells-microglia.

Thursday, June 14, 2018

Markers for Tyrosine Hydroxylase-TH

Proven and Published
Tyrosine hydroxylase TH is a necessary enzyme to create neurotransmitters and protect the body against oxidative stress.

Dysregulation of this enzyme results in manic-depression and schizophrenia. Parkinson's disease is also considered a TH deficiency as low dopamine levels are a consistent neurochemical abnormality.

Markers to TH are important for studying its role in neurotransmission and how it is altered in disorders and diseases.

We have many options and this enables you to choose the best markers for your research. All are proven and published.
TH staining of mouse salivary gland tissue. https://doi.org/10.1016/j.omtm.2018.02.008
Check out all our markers for neuroscience research.

Monday, April 22, 2013

Small Molecules-Peptides for Neuroscience Research

Agonists, Antagonists, Inhibitors and Ligands for Studying Neuromodulation

Our friends at R and D Systems/Tocris Bioscience have made available to us select Small Molecules/Peptides. Our focus will be on providing agonists, antagonists, inhibitors and ligands that complement our Neuroscience and Pain Research products and expertise.



We will be adding about 10 new molecules/peptides per month. Here's a sampling our our most recent additions:
NameTypeBioactivity
(±)-trans-ACPDAgonistPotent NMDA agonist. Also group II mGluR agonist
(S)-(-)-5-FluorowillardiineAgonistVery potent AMPA agonist
(S)-4-CarboxyphenylglycineAntagonistCompetitive group I mGluR antagonist/weak group II agonist
2-APBModulatorTRP channel modulator. Also IP3 receptor antagonist
2-Methylthioadenosine triphosphate tetrasodium saltAgonistP2 purinergic agonist
AM 404ModulatorVanilloid receptor agonist. Also anandamide transport inhibitor
BRL 52537 hydrochlorideLigandPotent and selective κ opioid receptor agonist
CNQXAntagonistPotent AMPA/kainate antagonist
Clocinnamox mesylateAntagonistIrreversible μ-opioid receptor antagonist
Endomorphin-1AgonistPotent and selective μ opioid receptor agonist
Endomorphin-2AgonistPotent and selective μ opioid receptor agonist
FITAgonistIrreversible δ opioid receptor agonist
GBR 13069 dihydrochlorideAgonistPotent dopamine uptake inhibitor
L-NIO dihydrochlorideInhibitorPotent eNOS inhibitor
L-Quisqualic acidAgonistVery potent group I mGluR agonist
N-Benzylnaltrindole hydrochlorideAgonistOpioid receptor selective non-peptide antagonist
NociceptinInhibitorEndogenous NOP agonist
O-Phospho-L-serineAntagonistGroup III mGluR agonist; enhances neuronal differentiation
Ro 51AntagonistPotent P2X3, P2X2/3 antagonist
cis-ACPDAgonistPotent NMDA agonist. Also group II mGluR agonist
We will be posting new additions and related data and publications

Wednesday, March 21, 2007

APJ (Apelin Receptor) in the Gut


Great Image of our APJ-Catalog#:MO15011
Image: Confocal microscopy of rabbit gastric gland distinguishing the distribution of HDC and the apelin receptor. Green pseudocolor: FITC-coupled polyclonal anti-HDC ab. Red pseudocolor: TRITC-coupled monoclonal anti-APJ receptor ab. Two cells in this gland show specific anti-AJP receptor and anti-HDC staining. Right: a higher magnification scan of the cell in the top right corner of the left panel showing peripheral APJ receptor localization and central perinuclear HDC staining. Physiol. Genomics 25: 153-165, 2006