Showing posts with label Culturing DRG Neurons Protocol. Show all posts
Showing posts with label Culturing DRG Neurons Protocol. Show all posts

Monday, September 19, 2011

Immune-Inflammatory Response and Pain Research

Our Pain and Inflammation Related Research Antibodies are increasingly being used to study the root causes of immune/inflammatory related pain induction. Here're related publications: Lintao Qu, Pu Zhang, Robert H. LaMotte, Chao Ma. Neuronal Fc-gamma receptor I mediated excitatory effects of IgG immune complex on rat dorsal root ganglion neurons. Brain, Behavior, and Immunity. Volume 25, Issue 7, October 2011, Pages 1399-1407......rabbit-anti-TRPV1, 1:1000, Neuromics...

Highlights: Pain often accompanies antigen-specific immune-related disorders though little is known of the underlying neural mechanisms. A common feature among these disorders is the elevated level of antigen-specific immunoglobulin (Ig) G in the serum and the presence of IgG immune complex (IC) in the affected tissue. We hypothesize that IC may directly activate the Fc-gamma receptor type I (FcγRI) expressed in nociceptive dorsal root ganglion (DRG) neurons and increase neuronal excitability thus potentially contributing to pain. Immunofluorescent labeling indicated that FcγRI, but not FcγRIIB or FcγRIII, was expressed in a subpopulation of rat DRG neurons including those expressing nociceptive markers. Calcium imaging revealed that the IC, but neither of the antibody (IgG) or antigen alone, produced an increase in intracellular calcium. This effect was abolished by the removal of the IgG Fc portion in the IC or the application of an anti-FcγRI antibody, suggesting a key role of the FcγRI receptor. Removal of extracellular calcium or depletion of intracellular calcium stores prevented the IC-induced calcium response. In whole-cell current-clamp recordings, IC depolarized the resting membrane potential, decreased the rheobase, and increased the number of action potentials evoked by a depolarizing current at 2× rheobase. In about half of the responsive neurons, IC evoked action potential discharges. These results suggest that a subpopulation of nociceptive neurons expresses functional FcγRI and that the activation of this receptor by IC increases neuronal excitability.

B. Huanga, X. Zhaoc, L.-B. Zhengb, L. Zhanga, B. Nia. Different expression of tissue inhibitor of metalloproteinase family members in rat dorsal root ganglia and their changes after peripheral nerve injury. Neuroscience, Volume 193, 13 October 2011, Pages 421-428....anti-P2X3 (rabbit, Neuromics, MN, USA)...

Wednesday, July 27, 2011

Potent and Cost Effective Cell Based Assays

I have had many conversations with basic and drug discovery researchers on improving cell based assays. Here's the wish list:
  • More potent cells/media
  • More accurate analytic tools-quatititative and reproducible results
  • Ability to use cells and tools in high throughput/high content screening.
  • Cost effectiveness
This wish list is front and center in determining the cells/media and related tools we add to Neuromics' offerings. We are pleased to announce the addition of our Hemogenix's Bioluminomics™ In-Vitro Cell Assays, MSCGro™ Mesenchymal Stem Cell Media and Umbilical Cord Blood derived hMesenchymal Stem Cells.

These provide quantitation, not subjectivity. It includes assay calibration and standardization. It means assay validation. It produces results you can trust and rely on. It means innovation and flexibility. It is advanced technology that is fast to learn, easy to use and above all, cost effective.

Assays options:
Available Cells:
Primary Neurons and Astrocytes-Primary human, rat and mouse neurons and astrocytes
STEMEZTM Human Neural Progenitor Neuron Discovery Kits-Derived from H9 (WA09) ECSs-Consistent, Easy to Use & Cost Effective
Human Mesenchymal Stem Cells (hMSCs-hMSCs derived from pancreas and umbilical cord blood
Mammalian Cell Lines

Media:
STEMEZ(TM) hN2 Human Neurons Culture Media
MSCGro™ Mesenchymal Stem Cell Media
NbActiv4

I will continue to post customer input and related data on Neuromics' Cell Based Assay Tools.


Wednesday, November 12, 2008

DRG Neurons Now Available.

Primary Rat DRGs are live neurons isolated from micro-surgically dissected regions of day 18 embryonic Sprague/Dawley rat brain. These cells are prepared fresh each week and shipped in a nutrient rich medium that keeps the cells alive for up to 14 days under refrigeration.
Please note: It is important to review Protocol/Datasheet prior to ordering. There is a unique step for making the dissociation enzyme solution. Do not hesitate to call or e-mail me (612-801-1007 or pshuster@neuromics.com) should you have questions.

Image: DRGs cultured on Calf Skin Collagen.

References:
-A dissection and Tissue Culture Manual of the Nervous System (1989). A. Shahar, J.D. Vellis, A. Vernadakis, B. Haber (Eds.), Dissociated Spinal Cord - Dorsal Root Ganglion Cultures on Plastic Tissue Culture Dishes and Glass Coverslips and Wells (pp.219-222). Wiley-Liss, Inc. J.L. Werth, -S.A. Thayer (1994) Mitrochondria Buffer Physiological Calcium Loads in Cultured Rat Dorsal Root Ganglion Neurons, The Journal of Neuroscience, 14(1), 348-356