Showing posts with label Immunofluorescence. Show all posts
Showing posts with label Immunofluorescence. Show all posts

Monday, July 22, 2019

Thursday, December 27, 2018

Primary Human Brain Pericytes

Pure and Potent
The authors of a chapter on pericytes published in SpringerLink referred to our human primary pericytes as "pericyte-like", but chose not to characterize them because of the "exorbitant cost". Dore-Duffy P., Esen N. (2018) The Microvascular Pericyte: Approaches to Isolation, Characterization, and Cultivation. In: Birbrair A. (eds) Pericyte Biology - Novel Concepts. Advances in Experimental Medicine and Biology, vol 1109. Springer, Cham

Given that these pericytes are also part of our hot selling 3-D Human BBB Model, we are in the process of challenging these claims. We will always take inaccurate claims regarding our solutions seriously, and we take immediate action.
  • Characterization of cells-we validated several key markers by immunofluorescence.


Staining of Desmin (dilution 1:100). Secondary antibody conjugated to Alexa 594 (red) and counterstained with DAPI (blue). Cells were mounted using iBrite mounting media.

Staining of Actin (dilution 25 ug/mL). Secondary antibody conjugated to Alexa 594 (red) and counterstained with DAPI (blue). Cells were mounted using iBrite mounting media.
We also plan on doing a phenotypic analysis of these cells and will post here when completed.
  • Cost of cells-isolating pericytes from human donors, and expanding to the required number of cells involves much time and effort. We know! Further differentiating stem cells into pericytes is hard and time-consuming. Against this backdrop, we consider our pricing to be inexpensive. Though they are more difficult to derive, they are priced equivalently with our other human primary cells ($789/500,000 USD Cells).
As always, we will post new data here.

Sunday, October 07, 2018

Neuromics New Neuronal Markers

Best of the Best
We are recognized for having some of the best Neuronal-Glial Antibodies in the business. We are pleased to announce the addition of these:

CH22122 – Tyrosine Hydroxylase
GT22101 - GFP
GT22102 – MAP2
GT22103 - Vimentin
MO22186 – Tyrosine Hydroxylase
RA22135 – Tyrosine Hydroxylase

Immunofluorescent analysis of rat brainstem section stained with GT22102, MAP2 dilution 1:2,000 in red, and costained with mouse mAb to MO22121, MBP dilution 1:5,000, in green. Following transcardial perfusion of rat with 4% paraformaldehyde, brain was postfixed for 24 hours, cut to 45μM, and free-floating sections were stained with the above antibodies.
If you have questions on these or any of our solutions, not hesitate to contact me directly-pshuster@neuromics.com or 612-801-1007,

Tuesday, July 31, 2018

Easy Immunostaining Staining

10X the Signal at a Fraction of the Cost
Time is money. This is especially true of routine immunostaining assays.

We are pleased to introduce you to EZ-HRPTM Polymer Detection. Features include:
  • 10-15 times more sensitive than conventional avidin-biotin detection 
  • Allows for entire staining procedure to be completed in just under 2 hours Requires less primary antibody (3-4 times less) 
  • Does not produce non-specific background staining Can be used on unfixed or chemical fixed (formalin, formaldehyde, alcohol, etc), paraffin-embedded and frozen tissue sections.
Comparison of IHC images using EZ-HRP™ Polymer vs. a conventional avidin-biotin antibody
We are continuously adding new products to improve your research results.

Tuesday, April 25, 2017

Got Autofluorescence?

Problem Solved!

Autofluorescence muddies data and can lead to incorrect solutions. Using our FluoMateTM  ,you can trust your results. Check it out today.

FluoMute™ ready-to-use reagent to reduce autofluorescence in cells and tissue. Just incubate fixed cells of tissue sections with FluoMute™ for 30-60 min at room temperature, rinse with PBS and continue with immunofluorescence ICC or/and IHC protocols. Treatment with FluoMute™ does not affect cell morphology and the integrity of tissue antigens to be detected with primary antibodies. FluoMute™ is compatible with paraffin-embedded and frozen tissue sections, stem cells, lymphocytes and mammalian cell lines of different origin.

Friday, November 20, 2015

Staining Neurons and 3-D

Tuj-1 or Beta Tubulin Antibody in Action!

Our potent Neuron-Glia Markers are widely used and frequently published. We are also pleased with the many positive reviews.

In this study researchers use our Tuj-1/Beta Tubulin Antibody to stain neurons in 3-D Cultures: Gaoying Sun, Wenwen Liu, Zhaomin Fan, Daogong Zhang, Yuechen Han, Lei Xu1, Jieyu Qi, Shasha Zhang, Bradley T. Gao, Xiaohui Bai,Jianfeng Li,Renjie Chai, Haibo Wang. The three-dimensional culture system with matrigel and neurotrophic factors preserves the structure and function of spiral ganglion neuron in vitro...Tuj-1-β-tubulin (1:1000, Neuromics, USA)...

Images: Morphology of the SGNs growth cone cultured in 2D and 3D systems. Phalloidin, green; β-tubulin, red.

I will continue to post positive developments concerning use of our Neuron-Glia Markers.

Monday, August 12, 2013

A Method for 3D Immunostaining and Optical Imaging of the Mouse Brain

Demonstrated in Neural Progenitor Cells

We have proven and effective tools for delivering siRNA, shRNA and miRNA for gene expression analysis and measuring apoptosis in vivo.

We are pleased to introduce a new application for one of our neural progenitor markers. In this study our Chicken Nestin Antibody is used to stain these progenitors in dissected mouse brains: Gleave JA, Lerch JP, Henkelman RM, Nieman BJ (2013) A Method for 3D Immunostaining and Optical Imaging of the Mouse Brain Demonstrated in Neural Progenitor Cells. PLoS ONE 8(8): e72039. doi:10.1371/journal.pone.0072039. 3D antibody staining of adult mouse brains: 1% PFA perfused adult mouse brains were removed from the skull and then divided by removing the cerebellum and separating the hemispheres if desired. The samples were immediately dehydrated in a gradient of methanol solutions to 100% methanol over the course of one day. Immediate dehydration is important to preserve the cellular morphology of the lightly-fixed brain. The samples then underwent freeze/thaw (one hour at –80°C/one hour at room temperature) four times. The samples were rehydrated in a gradient of methanol solutions to PBS over the course of one day. The samples were mildly digested for 5 minutes using 10 mg/ml of Proteinase K (Promega, WI, USA) and then thoroughly washed to remove any residual Proteinase K. Antigen retrieval was performed using a Histos5 histology microwave (Milestone, MI, USA) in 0.01 M sodium citrate buffer pH 6 on an antigen retrieval program (0–90°C 11min, 90–98°C 3min, 98°C 10min). The samples were cooled to RT and subsequently washed in PBS to remove excess buffer. From this point, all incubations were performed in the Histos5 histology microwave. The samples were incubated at 37°C for 48 hours in primary antibody diluted in 5% normal goat serum (Jackson ImmunoResearch, PA, USA), 5% dimethylsulfoxide (DMSO, Fisher Scientific, Ontario, Canada), and 0.01% Triton X-100 (Bioshop Canada, Ontario, Canada). The samples were then washed at 37°C for 48 hours in 5% serum, 0.01% Triton X-100, replacing the solution once after 24 hours. Following this, the samples were incubated for 72 hours in secondary antibody diluted in 5% serum, 5% DMSO, and 0.01% Triton X-100. Finally, the samples were washed at 37°C for 48 hours in 0.01% Triton X-100, replacing the solution once after 24 hours.

Staining of single hemisphere brain samples using the described protocol for 3D imaging included the following: doublecortin (n = 4), GFAP (n = 4), nestin (n = 3), double stain of doublecortin and nestin (n = 1). Doublecortin was also used to stain a full mouse brain excluding the cerebellum (n = 2). Control samples were generated using pre-absorbed primary antibodies when possible by incubating the primary antibody with a blocking peptide for 30 minutes at room temperature prior to staining. If no peptide for the primary antibody was available, the staining procedure was performed in the control except that the primary antibody was omitted during the appropriate step.

Staining was performed with the following antibodies: rabbit anti-doublecortin (Abcam), goat anti-doublecortin and peptide (Santa Cruz Biotechnology) rabbit anti-GFAP (Dako), chicken anti-nestin (Neuromics), goat anti-rabbit alexafluor 546 (Invitrogen), goat anti-rabbit alexafluor 488 (Invitrogen), goat anti-rabbit alexafluor 647 (Invitrogen), goat anti-chicken alexafluor 546 (Invitrogen), goat anti-chicken alexafluor 488 (Invitrogen), donkey anti-goat alexafluor 546 (Invitrogen), donkey anti-goat alexafluor 488 (Invitrogen).


Images: Validation of 3D nestin staining. Cryosections cut from a stained brain hemisphere show nestin-positive cells (red; arrows, A). Some additional punctate fluorescence was present (arrowheads, A). The sections were re-probed with a secondary antibody (green; A) to highlight primary antibody left unbound by secondary antibody. No evidence of primary antibody left unbound by secondary antibody was found. Sections were also re-stained with both primary and secondary antibodies (B) to highlight primary-antibody antigen sites unoccupied. There is overlap of the original 3D nestin stain with the 2D re-stain (arrowheads). LV = Lateral ventricle, scalebars = 100 µm. doi:10.1371/journal.pone.0072039.g003

The best news of all: This staining method is simple, using a combination of heat, time and specimen preparation procedures readily available, so that it can be easily implemented without the need for specialized equipment, making it accessible to most laboratories.

Tuesday, July 17, 2012

mGluR Antibodies in Action

Metabotropic glutamate receptors (mGluRs) are involved in normal brain function and can be perturbed in many neuropathologic conditions. This makes mGluR Markers important tools for Neuroscience Research.

Neuromics has a comphrensive catalog of these markers. They are widely used and frequently reference in pubs-Neuromics' mGluR customer publications. I get excited when a mGluR we recently manufactured is referenced in a publication: Hoon Shim, Chih-Ting Wang, Yen-Lin Chen, Viet Q. Chau, Kevin G. Fu, Jianqi Yang, A. Rory McQuiston, Rory A. Fisher, and Ching-Kang Chen. Defective Retinal Depolarizing Bipolar Cells (DBCs) in Regulators of G-protein Signaling (RGS) 7 and 11 Double Null Mice. JBC Papers in Press. Published on February 27, 2012 as Manuscript M112.345751. The latest version is at http://www.jbc.org/cgi/doi/10.1074/jbc.M112.345751...Animals were sacrificed by CO2 inhalation and the eyeballs were immediately enucleated. After removal of cornea and lens the resulting eyecups were immersionfixed in 4% paraformaldehyde in 1X PBS at room temperature for 15 minutes. This short fixation time ensured good mGluR6 and Gb5 signals at the OPL. After cryoprotection in 30% sucrose in 1X PBS, the eyecups were embedded in TBS (Richard Allan Scientific, Kalamazoo, MI), sectioned at 20μm thickness, and stained...


Images: Absence of Gb5 immunoreactivity in mGluR6-containing puncta in retinas of RGS7 and RGS11 double knockout (711dKO) mice. Retinal sections from wild-type control (WT) and 711dKO (DKO) mice stained for metabotropic glutamate receptor 6 (mGluR6, 1:200) and Gb5 (CT215, 1:250) demonstrates superimposed signals in the WT but absence of Gb5 signal in the DKO. Scale bar equals 10μm.

I will continue to post new developments reagrding this important category of Neurotransmission Research Antibodies.

Sunday, May 20, 2012

Cannabinoid Type-1 Receptors and Chemotherapy Related Pain

Chemotherapy can induce painful peripheral neuropathy and also have a toxic effect on peripheral nerves. The authors here show that that cisplatin produces hyperalgesia and toxicity to sensory neurons as indicated by neurochemical, morphological, and functional measures. Increasing AEA signaling at CB1 receptors not only reduced the hyperalgesia but reduced the neurotoxicity of cisplatin as well:  Iryna A. Khasabova,Sergey Khasabov, Justin Paz, Catherine Harding-Rose, Donald A. Simone, and Virginia S. Seybold. Cannabinoid Type-1 Receptor Reduces Pain and Neurotoxicity Produced by Chemotherapy. The Journal of Neuroscience, 16 May 2012, 32(20): 7091-7101; doi: 10.1523/​JNEUROSCI.0403-12.2012.

The authors use our guinea pig TRPV1 antibody to measure cisplatin hyperalgesia vs treated and control mice.

Images: URB597 attenuated effects of cisplatin on protein expression in DRGs. A, TRPV1- and ATF-3-ir were detected by immunofluorescence in L3–L5 DRGs from mice treated with vehicle, cisplatin, or cisplatin plus URB597. Cisplatin (1 mg/kg of body weight, daily for 7 d, i.p.) increased the occurrence of TRPV1- and ATF3-ir in neurons. Co-injection of URB597 (0.3 mg/kg daily, i.p.) with cisplatin attenuated the effect cisplatin on protein-ir. Scale bars: 10 μm (for images within each antigen). B, Quantitative summary of the effect of treatments on TRPV1-ir in neurons. Data are expressed as the mean ± SEM. aSignificantly different from each other group (p < 0.05, one-way ANOVA with Student–Newman–Keuls test; n = 4 mice/treatment). C, Quantitative summary of the effect of treatments on ATF-ir in neurons. Data are expressed as the median and 25th and 75th percentile range. *Significantly different from vehicle control and cisplatin plus URB597 groups (n = 6 mice/treatment; p < 0.001, Kruskal–Wallis ANOVA on ranks test).

Related Reagents:

VR1 N-Terminus (TRPV1)
VR1 (TRPV1)-Goat
VR1 C-Terminus (TRPV1) - mouse specific
All TRP Antibodies
Pain and Inflammation Research Antibodies
Neurotransmission -Neurotransmission Research Antibody Categories

Wednesday, May 09, 2012

Arthritic Pain, Nerve Sprouting and Neuroma Formation

Our friends, Drs Mantyh and Jimenez Andrade, have published important findings on the potential root cuases of age related Arthritic Pain: Juan M Jimenez-Andrade and Patrick W Mantyh. Sensory and sympathetic nerve fibers undergo sprouting and neuroma formation in the painful arthritic joint of geriatric mice. Note: our Chicken Polyclonal NF200 Antibody was used to label primary afferent sensory nerve fibers.

Overview: Introduction: Although the prevalence of arthritis dramatically increases with age, the great majority of preclinical studies concerning the mechanisms that drive arthritic joint pain have been performed in young animals. One mechanism hypothesized to contribute to arthritic pain is ectopic nerve sprouting; however, neuroplasticity is generally thought to be greater in young versus old nerves. Here we explore whether sensory and sympathetic nerve fibers can undergo a significant ectopic nerve remodeling in the painful arthritic knee joint of geriatric mice.

In other words, there is a clear root reason that the pain arthritis sufferers experience increases overtime. Here's some related data. Notice the increase in labeled nerves:

Images. Sensory nerve fiber sprouting and formation of neuroma-like structures in the painful geriatric arthritic knee joint. Schematic of a frontal view of a cross-sectioned mouse knee joint (A). The red square illustrates the synovial region from which the confocal images were obtained. Representative confocal images of calcitonin gene-related peptide (CGRP+), neurofilament 200 kDa (NF200+) sensory nerve fibers (yellow/orange) and growth associated protein (GAP43; marker of fibers undergo regeneration, yellow/orange) and DAPI labeled nuclei (blue) in knee joint sections (20 μm thick) of vehicle-injected (B,D,F) and CFA-injected (C,E,G ) mice. In vehicle-injected mice, a low level, regular pattern of innervation by CGRP+ and NF200+ fibers is observed in the synovial space of the knee joint. Twenty-eight days following the initial CFA injection, a significant number of CGRP+ and NF200+ nerve fibers have sprouted and have a disorganized appearance as compared to vehicle-injected mice. Note that, CGRP+ and NF200+ sprouted nerve fibers are localized in the synovium and are not observed in the meniscus of the joint. Furthermore, there was formation of neuroma-like structures in the synovium of the geriatric mice injected with CFA (G).

Related Reagents: Neuronal-Glial Markers-Astrocytes, Glia, Microglia, Olidogodendrocytes, Progenitors and Schwann Cell Markers.


Thursday, April 26, 2012

Primary Hippocampal Neurons Performing!

I advertise our Primary Neurons and Astrocytes as being easy to culture, grow and maintain. We confirm this via the data/images our customers generously share and the many publications referencing use of the cells.

I would like to thank George Kenneth Todd (Patterson Lab at UC Davis) for these wonderful images of our e18 Primary Rat Hippocampal Neurons. These were taken at day 67!


Prior to staining, the cells were treated with Wnt5 for 2 min, then Wnt5 + Wnt3 for an additional 2 min during Calcium Imaging experiments. The cells were then fixed and stained for IP3R (green), Frizzled2 (blue), and B-Catenin (red), and the confocal images were captured at 10x. Notice the parallel neurites formation in image 3.


For staining culture options, check out our neuron-glial-astrocyte markers.

Saturday, February 04, 2012

Neurotrophins-Growth Factors Update

Our Neurotrophins and Growth Factor Antibodies and Recombinant Proteins help support a wide span of research areas. These areas include: neuroscience, immunology, cardiac disease research and cancer.

I would like to update you on recent publications highlighting use of some of these reagents: Aiko Sada, Kazuteru Hasegawa, Pui Han Pin, Yumiko Saga. NANOS2 Acts Downstream of Glial Cell Line-Derived Neurotrophic Factor Signaling to Suppress Differentiation of Spermatogonial Stem Cells. DOI: 10.1002/stem.790. Copyright © 2011 AlphaMed Press...anti-GFRA1 (1:200, Neuromics, Edina, MN)...


Images: Ngn3-Cre targets GFRA1-negative cells. (A-F): At P7, Rosa-YFP; Ngn3-Cre double transgenic testes were immunostained with the indicated markers. Most of YFP-positive spermatogonia (Ngn3-lineage cells) were not stained with GFRA1. Scale bar, 100 μm. (G): Quantification of YFP-positive cells per GFRA1-positive cells at P7 and 6 weeks (N=3).

Karine Bédard, Stéphanie Segura, Stéphanie Mahaut, Catherine Tardivel, Guylaine Ferland, Bruno Lebrun, Pierrette Gaudreau. Effects of aging and caloric restriction on brainstem satiety center signals in rats. Mechanisms of Ageing and Development. dx.doi.org/10.1016/j.mad.2012.01.004...goat serum and 0.3% Triton-X-100) (Sigma–Aldrich), overnight at 4 °C with chicken anti-rat BDNF antibody (Neuromics, Edina, MN; diluted 1/200 in blocking buffer), rinsed 3× 10 min in fresh PBS and incubated for 2 h, in the dark...

Tali Kobilo, Qing-Rong Liu, Kriti Gandhi, Mohammed Mughal, Yavin Shaham and Henriette van Praag. Running is the neurogenic and neurotrophic stimulus in environmental enrichment. doi: 10.1101/lm.2283011. Learn. Mem. 2011. 18: 605-609... human recombinant BDNF (0.1 µg) monomer (Neuromics)...

Masamichi Shinoda, Masatake Asano, Daisuke Omagari, Kuniya Honda, Suzuro Hitomi, Ayano Katagiri, and Koichi Iwata. Nerve Growth Factor Contribution via Transient Receptor Potential Vanilloid 1 to Ectopic Orofacial Pain. The Journal of Neuroscience, 11 May 2011, 31(19):7145-7155; doi:10.1523/JNEUROSCI.0481-11.2011....expression immunohistochemically in TG- anti-p75 goat antibody (1:200; Neuromics)...




Images: Mandibular nerve fibers were labeled by β-NGF which was administrated into the lower lip with CFA (A) or saline (F). On day 1 after β-NGF administration into the lower lip with CFA or saline, β-NGF-positive whisker pad or lower lip TG neurons defined by FG or DiI, respectively. B, G, β-NGF-positive TG neurons. C, H, DiI-labeled TG neurons. D, I, FG-labeled TG neurons. E, J, DiI- and FG-labeled β-NGF-positive TG neurons. Mandibular nerve fibers (K) and TG neurons (L) on day 1 after labeled BSA administration into the lower lip with CFA. Open arrow, β-NGF-positive nerve fibers. Arrow, DiI-labeled β-NGF-positive TG neurons. Arrowhead, FG-labeled β-NGF-positive TG neurons. Scale bar, 50 μm. M, Frequency of β-NGF-positive neurons in FG- or DiI-labeled TG neurons after CFA or saline injection into the lower lip (n = 5 in CFA-injected group; n = 4 in saline-injected group; Student's t test).

F. R. Carreño, J. D. Walch, M. Dutta, T. P. Nedungadi, J. T. Cunningham. Brain-Derived Neurotrophic Factor-Tyrosine Kinase B Pathway Mediates NMDA Receptor NR2B Subunit Phosphorylation in the Supraoptic Nuclei Following Progressive Dehydration. Journal of Neuroendocrinology. Volume 23, Issue 10, pages 894–905, October 2011. DOI: 10.1111/j.1365-2826.2011.02209.x...TrkB receptor (Neuromics, Edina, MN, USA)...

Jie Shen, Yoko Ishii, Guihua Xu, Thanh Chung Dang, Takeru Hamashima, Takako Matsushima, Seiji Yamamoto, Yuichi Hattori, Yusuke Takatsuru, Junichi Nabekura and Masakiyo Sasahara. PDGFR-β as a positive regulator of tissue repair in a mouse model of focal cerebral ischemia. Journal of Cerebral Blood Flow & Metabolism , (28 September 2011). doi:10.1038/jcbfm.2011.136...goat polyclonal anti-PDGFR-β antibody (1:100; Neuromics, Edina)...

Thomas Karsten Kilvaer, Andrej Valkov, Sveinung W. Sorbye, Tom Donnem, Eivind Smeland, Roy Martin Bremnes,and Lill-Tove Busund. Platelet-Derived Growth Factors in Non-GIST Soft-Tissue Sarcomas Identify a Subgroup of Patients with Wide Resection Margins and Poor Disease-Specific Survival. Volume 2010 (2010), Article ID 751304, 10 pages doi:10.1155/2010/751304...PDGF-CC (goat polyclonal; GT15151; Neuromics; 1 : 80)...

I will keep you posted on new developments.

Saturday, July 30, 2011

TRPV1 and Diabetic Neuropathy

Thermal hyperalgesia is a common sympton of Diabetic Periperal Neuropathy (DPN). It is one of most difficult types of pain to treat. The development of tolerance, inadequate relief and potential toxicity of classical antinociceptives warrant the investigation of the newer agents to relieve this pain.

The elevated expression of Transient receptor potential vanilloid 1 (TRPV1) suspected as a transmitter of this pain. Dr. Louis Premkumar and his team at SIU have recently published results that further demonstrate the role of TRPV1: Mahendra Bishnoi, Christine A Bosgraaf, Mruvil Abooj, Linlin Zhong, Louis S Premkumar. Streptozotocin-Induced Early Thermal Hyperalgesia is independent of Glycemic State of Rats: Role of Transient Receptor Potential Vanilloid 1(TRPV1) and inflammatory mediators. Molecular Pain 2011, 7:52 doi:10.1186/1744-8069-7-52. Published: 27 July 2011.


Figure 4. Altered TRPV1 staining in spinal cord dorsal horn of STZ-treated rats. A. Representative images of TRPV1 staining from a vehicle-treated, STZ-HG and STZNG rats. An enlarged segment has also been shown. B. Average gray values/10,000 μm2 area of TRPV1 staining in dorsal horn was significantly increased (p<0.05) in both STZ-HG and STZ-NG rats as compared to vehicle-treated rats. Asterisk (*) represents p < 0.05. Scale bar is 200 μm and 50 μm for upper and lower panels, respectively.

Conclusions: From these results, it is concluded that TRPV1 is an integral component of initiating and maintaining inflammatory thermal hyperalgesia, which can be alleviated by intrathecal administration of RTX. Further, the results suggest that enhanced expression and inflammation-induced sensitization of TRPV1 at the spinal cord may play a role in central sensitization in STZ-induced neuropathy.

Therapies that downregulate or silence TRPV1 expression could be the key to better treatments for the Thermal Algesia cause by diabetes. I will keep you posted.

Saturday, January 15, 2011

Upregulations of P2X3 and ASIC3 involve in hyperalgesia

It gets my attention when several of our ion channel markers are referenced in the title of a publication.

Kiyomi Hori, Noriyuki Ozaki, Shigeyuki Suzuki, Yasuo Sugiura. Upregulations of P2X3 and ASIC3 involve in hyperalgesia induced by cisplatin administration in rats. PAIN 149 (2010) 393–405

Findings: "We explored the role of ion channels expressed in DRG neurons in the painful neuropathy associated with cisplatin administration. Upregulations of TRPV2, P2X3 and ASIC3 may play important roles in the mechanical hyperalgesia induced by cisplatin. In addition to cutaneous hyperalgesia, cisplatin treatment might also induce muscle hyperalgesia associated with upregulations of P2X3 and
ASIC3. Interfering with these channels may prove to be a promising therapeutic target for treating painful symptoms of cisplatin neuropathy, and may further be able to ensure the continuation of anticancer therapy."

Images: ASIC3 (Dilution 1:10) amd P2X3 (Dilution 1:500) satining of rat Dorsal Root Ganglia (DRGs) of cisplatin-treated animals. After dilution in 0.1 M phosphate-buffered saline (PBS) containing 1.5% normal goat serum and 0.3% Triton X-100 (Sigma), DRG sections were incubated with either guinea pig polyclonal antiserum against synthetic rat ASIC3 and rabbit polyclonal antiserum against synthetic rat P2X3 (1:500; Neuromics). The sections for ASIC3 were reacted with reagents for 2 days at room temperature and others at 4OC. After being rinsed with 0.1 M PBS, the sections were reacted in PBS with fluorescein-isothiocyanate (FITC)-conjugated goat anti-guinea pig or - rabbit IgG antibody (Vector Laboratories, Burlingame, CA, USA) at a concentration of 1:100. After being rinsed with 0.1 M PBS, the sections were cover-slipped in mounting medium (Immunon, Pittsburgh, PA, USA) and examined under a fluorescence microscope equipped with a digital camera

Friday, May 21, 2010

Amp up Your Results!

Labeling kits, tags, secondary antibodies and related reagents

Posted using ShareThis

Labeling and tagging is an important step in your research process. This often drives the wow factor in published results. We offer some of the best and brightest including:

CHROMEOTMsity-exhibit superior luminescence properties,
including a broad range of fluorescence excitation and emission, large
Stokes shifts, limited photobleaching and a broad pH tolerance.

ELISA Buffers and Diluents

Solulink™ Labeling Kits and Beads-The most efficient labeling kits delivering ready-to-use conjugates for the novice or the expert!

Cytoplasmic and Nuclear Staining

Strep-Tag®-One-STrEP-tag for protein complex purification.

Image: CHROMEOsity 488: HeLa cells were stained with alpha Tubulin mouse mAb (Clone 5-B-1-2) and Chromeo 488 Goat anti-mouse IgG. The nuclei have been counterstained with DAPI.

Tuesday, January 19, 2010

i-Brite Plus!

We are all for reagents that brighten your day.

i-BRITE Plus is a glycerol based liquid. It can be used to stain cells and can be easily added to wells. It also will not shrink tissue. In addition standard to IHC/IF applications, it can be used to visualize GFP transfections and more.

Here's a publication referencing it: Ajay S. Yekkirala, Alexander E. Kalyuzhny and Philip S. Portoghese. Standard Opioid Agonists Activate Heteromeric Opioid Receptors: Evidence for Morphine and [d-Ala2-MePhe4-Glyol5]Enkephalin as Selective μ−δ Agonists. ACS Chem. Neurosci., Article ASAP DOI: 10.1021/cn9000236. Publication Date (Web): November 25, 2009. Copyright © 2009 American Chemical Society.


After that cells were washed in PBS (3 × 15 min), counterstained with DAPI and mounted under coverslips with antifade mounting media iBright Plus (cat. no. SF40000-10; Neuromics, Inc.). Images of labeled cells were collected using Olympus FluoView1000 confocal microscope.
Images: High-magnification confocal images of double-labeling immunofluorescence for HA-δ and FLAG-μ opioid receptors. HEK-293 cells stably expressing both HA-δ and FLAG-μ opioid receptors are shown labeled for μ (A, green fluorescence) and for δ (B, red fluorescence). DAPI (blue fluorescence) has been used to stain the nuclei.