| Literature DB >> 26714480 |
Alejandra N Martinez1, Geeta Ramesh2, Mary B Jacobs3, Mario T Philipp4,5.
Abstract
<span class="abstract_title">BACKGROUND: <span class="Disease">Lyme neuroborreliosis (LNB) can affect both the peripheral (PNS) and the central nervous systems (CNS); it is caused by the spirochete Borrelia burgdorferi. The neuropeptide substance P (SP) is an important mediator of both neuroinflammation and blood-brain barrier dysfunction, through its NK1 receptor. Increased levels of SP have been shown to correlate with cell death. The present study used both ex vivo and in vitro models of experimentation to determine if the inflammatory mediator production and concomitant cell death caused by exposure of neural tissues and cells to B. burgdorferi could be attenuated by treatment with a NK1 receptor antagonist.Entities:
Mesh:
Substances:
Year: 2015 PMID: 26714480 PMCID: PMC4696197 DOI: 10.1186/s12974-015-0453-y
Source DB: PubMed Journal: J Neuroinflammation ISSN: 1742-2094 Impact factor: 8.322
Fig. 1Pro-inflammatory mediator levels in the supernatants and lysates of rhesus macaque frontal cortex sections cultured ex vivo. IL-6 (a), CXCL8 (b), and CCL2 (c) levels were determined by multiplex ELISA in brain tissues that were exposed to B. burgdorferi (Bb), medium alone (Med), B. burgdorferi plus NK1R antagonist (Bb + A), or medium alone plus antagonist (Med + A). The figure shows the arithmetic means ± standard deviations of experimental replicates for each individual animal. **p < 0.001, ***p < 0.0001, ns not significant
Fig. 2Neural cell apoptosis in rhesus frontal cortex tissue sections cultured ex vivo. a S-100-positive cells (oligodendrocytes, as identified by morphology) and DNA fragmentation detected by the TUNEL assay in green, as visualized by fluorescent microscopy. b Graphical representation of the percent apoptosis as detected by the TUNEL assay in frontal cortex tissue exposed for 4 h to B. burgdorferi (Bb), exposed to B. burgdorferi and treated with NK1R antagonist (Bb + A), in medium alone (Med), and medium with added NK1R antagonist (Med + A) (***p < 0.0001, ns not significant)
Phenotypes of immune mediator producer cells as visualized by confocal microscopy
| IL-6 | CXCL8 | CCL2 | |
|---|---|---|---|
| Neuron (NeuN) | + | − | + |
| Astrocyte (GFAP) | + | + | + |
| Oligodendrocyte (CNPase) | + | + | + |
| Microglia (IBA-1) | + | + | − |
Fig. 3Visualization of IL-6, CXCL8, and CCL2. a IL-6 (green) inside neurons stained red with anti-NeuN antibody. b CCL2 (green) inside neurons that were stained red with anti-NeuN antibody. c IL-6 (green) and astrocytes stained red with anti-GFAP antibody. d CXCL8 (green) and astrocytes stained red. The yellow signal is due to co-localization of the astrocytic marker GFAP (red) and IL-6 or CXCL8 (green) within astrocytes. e CCL2 (green) inside astrocytes stained red. f, g Evidence of IL-6 and CXCL8 (green) in microglia stained with anti-IBA1 antibody (red)
Fig. 4Pro-inflammatory mediator levels in supernatants from rhesus DRG cultures. IL-6, CXCL8, CCL2, and VEGF levels were detected by Multiplex ELISA in cells exposed to B. burgdorferi (Bb) or medium alone (Med), and treated with NK1R antagonist in the presence (Bb + A) or absence of B. burgdorferi (Med + A). The figure shows the arithmetic means ± standard deviations from two biological replicates. **p < 0.001, ns not significant
Fig. 5Apoptosis in DRG cell cultures. a Non-apoptotic field of neurons (NeuN-positive cells, red) cultured from rhesus DRG as visualized by fluorescent microscopy. b DNA fragmentation detected by the TUNEL assay (green) as visualized by fluorescent microscopy. c Graphical representation of the percent neuronal apoptosis as quantified by the TUNEL assay in cultured DRG cells exposed for 24 h to B. burgdorferi (Bb), exposed to B. burgdorferi, and treated with NK1R antagonist (Bb + A), in medium alone (Med), and medium plus antagonist (Med + A) (**p < 0.001)