Showing posts with label Antibodies. Show all posts
Showing posts with label Antibodies. Show all posts

Wednesday, June 06, 2018

Put our Antibodies to Work for You!

Tested and Characterized for Results You Can Trust
When you select a vendor for antibodies, there is a measure of trust. We know you are asking, "will it work in the applications as advertised".

Since the inception of Neuromics, our guiding principle is providing well-characterized solutions for results you can trust and understand. In order to provide as much comfort in the purchase of our solutions, we encourage access to publications, data, and testimonials.

Here're some recent testimonials:
  • Good antibody! Product Name: Tuj 1, Chicken – (Cat# CH23005) Good for neuronal staining. Bright and specific.Liang Shi - May 03, 2018 - Rating: 5.0 
  • Neuromics has a conjugated antibody for oligodendrocytes that is unavailable anywhere else and works really well. Very pleased with the product and have already ordered it a few times. Edit: This antibody is available from Miltenyi now. They both behave comparably. Matthew Smith - Apr 24, 2018 - Rating: 5.0 
  • I bought the secondary antibodies (488-Goat anti mouse IgG and 546-goat anti rabbit IgG) from Neuromics and used them for IF assay. Both antibodies worked well. I highly recommend them.Bonnie Dai - Apr 21, 2018 - Rating: 5.0 
Expression of TH (green) and TRPV1 (blue) relatively to CGRP-cre+ neurons (red) in DRG from CGRPcre-ER/+;Rosa26LSL-tDTomato/+ mice. Some TRPV1+ DRG neurons are not expressed in CGRP-cre+ sensory neurons. These CGRP-cre-/TRPV1+ neurons are marked with yellow arrows (a and a1). b. Expression of calbindin-28K (Calb; green) relatively to CGRP-cre+ DRG neurons (red). Yellow arrows mark CGRP-cre-/Calb+ neurons (b and b1). c. Expression of trkB (green) relatively to CGRP-cre+ DRG neurons (red). Yellow arrows mark CGRP-cre-/trkB+ neurons; and a blue arrow shows a rare example of the CGRP-cre+/trkB+ neuron (c and c1). d. Expression of trkC (green) relatively to CGRP-cre+ DRG neurons (red). Yellow arrows mark CGRP-cre-/trkC+ neurons; and; and a blue arrow shows an example of the CGRP-cre+/trkC+ neuron (d and d1). White horizontal bar shows 20μm scale for each panel.

We offer an easy, "no question asked" replacement or refund policy. Give us a try. You will be satisfied.

Wednesday, June 07, 2017

Neuromics' Customers

How They Find Us and What they Buy

Trust is hard to maintain and easily lost. It is important to us that our customers can find us and the products required to meet their research needs.

In order to nurture trust, we follow up with each and every customer to make sure they are happy with their Neuromics' experience. We include the opportunity for them to formally rate this experience @ https://birdeye.com/neuromics-186498936.

We plan on rolling out a new website. Our goal is to make it even easier for customers to find us and present content in a way that aligns with customers' needs. This includes making sure content is configured in a way that works on all platforms used including mobile devices.

As part of the process, we recently surveyed users for areas of research, platforms used, how they find companies like ours and what the purchase. Here're rollups of some of the results.

Our customers most frequently purchase Antibodies and Markers. Cells and Cell-Based Assays are increasingly important, We plan on making it easier for users to find related protocols, publications, data and alternative product options.

Trust, for us, includes the ability for our customers to find the correct solutions and if they prove not to work, offer fixes or full refunds. As in the past, we will be posting updates, publications and customer generated data here.


Saturday, February 07, 2015

Your Feedback Matters

Our Solutions Must Work

We take our ability to serve you very seriously. We use bird-eye to make sure each and every one of our customers are pleased with results. If you are not happy, we do everything we can to fix your issue. This includes replacement and refunds:
Should you ever have questions or issues, I am at your "beck and call". Do not hesitate to contact me directly. Pete Shuster, CEO and Owner, Neuromics, 612-801-1007 or pshuster@neuromics.com. Thank you!



Sunday, July 13, 2008

Molecular Pathways and Heart Development

Owen WJ Prall, Mary K Menon, Mark J Solloway, Yusuke Watanabe, Stéphane Zaffran, Fanny Bajolle, Christine Biben, Jim J McBride, Bronwyn R Robertson, Hervé Chaulet, Fiona A Stennard, Natalie Wise, Daniel Schaft, Orit Wolstein, Milena B Furtado, Hidetaka Shiratori,6 Kenneth R Chien, Hiroshi Hamada,6 Brian L Black, Yumiko Saga, Elizabeth J Robertson, Margaret E Buckingham, and Richard P Harvey. An Nkx2-5/Bmp2/Smad1 negative feedback loop controls second heart field progenitor specification and proliferation. Cell. 2007 March 9; 128(5): 947–959. doi: 10.1016/j.cell.2007.01.042.

Summary: During heart development the second heart field (SHF) provides progenitor cells for most cardiomyocytes and expresses the homeodomain factor Nkx2-5. We now show that feedback repression of Bmp2/Smad1 signaling by Nkx2-5 critically regulates SHF proliferation and outflow tract (OFT) morphology. In the cardiac fields of Nkx2-5 mutants, genes controlling cardiac specification (including Bmp2) and maintenance of the progenitor state were up-regulated, leading initially to progenitor over-specification, but subsequently to failed SHF proliferation and OFT truncation. In Smad1 mutants, SHF proliferation and deployment to the OFT were increased, while Smad1 deletion in Nkx2-5 mutants rescued SHF proliferation and OFT development. In Nkx2-5 hypomorphic mice, which recapitulate human congenital heart disease (CHD), OFT anomalies were also rescued by Smad1 deletion. Our findings demonstrate that Nkx2-5 orchestrates the transition between periods of cardiac induction, progenitor proliferation and OFT morphogenesis via a Smad1-dependent negative feedback loop, which may be a frequent molecular target in CHD.

...goat anti-Isl1, raised against full length human Isl1, GT15051, Neuromics)...

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