| Literature DB >> 21838927 |
Carolina Roza1, Sol Castillejo, Jose A Lopez-García.
Abstract
BACKGROUND: Modulation of M-type currents has been proposed as a new strategy for the treatment of neuropathic pain due to their role in regulating neuronal excitability. Using electrophysiological techniques we showed previously that the opening of Kv7 channels with retigabine, blocked ectopic discharges from axotomized fibers but did not alter transduction at intact skin afferents. We hypothesized that after nerve damage, accumulation of Kv7 channels in afferent fibers may increase M-type currents which then acquired a more important role at regulating fiber excitability.Entities:
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Year: 2011 PMID: 21838927 PMCID: PMC3163195 DOI: 10.1186/1744-8069-7-58
Source DB: PubMed Journal: Mol Pain ISSN: 1744-8069 Impact factor: 3.395
Antibodies, dilutions and sources
| Antibody | Immunogen | Manufacturer, species antibody was raised in, mono- vs. Polyclonal | Dilution used |
|---|---|---|---|
| Pan Nav | 1500-1518 aa of the α-subunit of Voltage Gated Sodium Channels | Chemicon, Rabbit, | 1:800 |
| Myelin P2 | The epitope for sc-49303 maps within amino acids 50-100 in the internal region of Myelin P2 of human origin (accession #P02689) | Santa Cruz, Goat, | 1:100 |
| CASPR | Fusion protein 1308-1381 (cytoplasmic domain) of rat Caspr (accession number #P97846) | NeuroMab (UC Davis, Davis CA), mouse monoclonal, clone K65/35 | 1:500 |
| Pan NF | Fusion protein 1066-1174 (intracellular domain common to NF -155 and NF-186) of rat NF-155 (accession number AAL27854) | NeuroMab (UC Davis, Davis CA), mouse monoclonal, clone L11A/41 | 1:500 |
| Kv7.2 | aa 578-593 at the C-terminal domain | Alomone, rabbit, polyclonal | 1:200 |
| Kv7.2 | aa 578-593 at the C-terminal domain | Chemicon, rabbit, polyclonal | 1:400 |
| Kv7.2 | aa 578-593 at the C-terminal domain | Sigma, rabbit, polyclonal | 1:200 |
| Kv7.2 | C-18; The epitope for sc-7792 maps within the last 50 amino acids at the C-terminus of KCNQ2 of human origin (accesion #O43526) | Santa Cruz, goat, | 1:800 |
| Kv7.2 | N-19; The epitope for sc-7793 maps within the first 50 amino acids at the N-terminus of KCNQ2 of human origin (accession #O43526) | Santa Cruz, goat, | 1:1000 |
Figure 1Expression of Nav and Kv7.2 channels in nodes of Ranvier of intact fibres. and show teased fibers form normal saphenous nerves immunostained for Myelin P2 and Pan Nav (A) or Kv7.2 (B). In this and following figures, color codes for antibodies are specified on images. Note that the fibers are well structured and nodes are easily identifiable. The following figures show high magnification images of nodal Nav channels flanked by depositions of Myelin P2 (), Caspr (), Pan NF (). shows the profile of immunofluorescence intensity along the nodal/paranodal zone shown in C(in this and following figures intensity curves are given in arbitrary units). and show nodal zones costained for Kv7.2 and Myelin P2 () or Caspr (). shows the profile of immunofluorescence intensity along the nodal/paranodal zone shown in F. Scale bars: for A and B, 20 μm (shown in B); for Cand G, 5 μm (shown in G); for E, 5 μm.
Figure 2Expression of Nav and Kv7.2 channels in nodes of proximal neuromas. and show isolated teased fibers from nerve-end neuromas immunostained for Myelin P2 and Pan Nav (A) or Kv7.2 (B). In this proximal zone of the neuroma, the structure of the fibers was conserved and individual nodes/paranodes were still identifiable. shows a high magnification image of three nodal zones stained with Pan Nav and Myelin P2; shows the immunostaining intensity profile corresponding to the nodal zone marked with an asterisk in C. shows a high magnification image of a nodal zone stained for Kv7.2 and myelin with its corresponding profile of immunostaining intensity (). Scale bars: for A and B, 10 μm (shown in B); for Cand D, 5 μm (shown in D).
Measurements on nodes of Ranvier
| Nav | Kv7.2 | |||
|---|---|---|---|---|
| Control | Axotomized | Control | Axotomized | |
| Node Caliber (μm) | 1.9 ± 0.06 | 1.1 ± 0.05* | 1.5 ± 0.05 # | 0.8 ± 0.02* |
| Node Length (μm) | 1.7 ± 0.05 | 3.3 ± 0.2 * | 1.9 ± 0.05 # | 3.4 ± 0.13* |
Values are given as Mean ± SEM. * Statistical difference between control and axotomized fibers stained for Nav or Kv7.2. # Statistical difference between fibers labeled for Nav and Kv7.2 (for both p < 0.05, Mann-Whitney test).
Figure 3Comparison of nodal parameters in normal vs. neuromatose fibres. and show the frequency distribution histograms for node length (A) and width (B). Kolmogorov-Smirnov test (p < 0.05 for all cases), indicates a non-Gaussian distribution in all cases.
Figure 4Increase in Nav and Kv7.2 co-expression after axotomy. shows low magnification fields containing nodal accumulations of Nav () and Kv7.2 () channels in control nerve. shows a merge of A1 and A2 showing co-staining of some nodes (marked by arrows). and follow the same scheme as A but fields were obtained from the proximal end (B) or the distal end of the neuroma (C). Note the large proportion of co-staining in neuromatose fibers. shows a larger scale picture of a long nodal formation which corresponds to the area in the red square of B. shows the immunostaining intensity profile corresponding to the nodal zone marked with an asterisk in D. Scale bars: for A and B 10 μm (shown in B); for C, 10 μm (shown in C); for D, 5 μm.
Figure 5Abnormal expression of Nav and Kv7.2 channels in distal neuromas. and are medium scale magnification fields obtained from distal areas of the neuroma. In both instances there is a clear lack of structure and myelin loss. In addition, large accumulations of Nav and Kv7.2 channels are shown in A and B respectively. and contain field images of transition areas in which normal nodes (marked by arrows) are detected close to larger accumulations of Nav (C) or Kv7.2 (D). shows the co-staining of Nav and Kv7.2 in a dotted line-like structure, probably an indication of a demyelination/remyelination process within the same fiber. shows several individual nodes at a high magnification (contained in red square in E). The corresponding immnofluoresce intensity profiles are shown in . Scale bars: for A and B, 20 μm (shown in B); C and D, 5 μm (shown in D); for E, 5 μm (shown in E) and for F, 5 μm.