Cellular Changes in Injured Rat Spinal Cord Following Electrical Brainstem Stimulation

被引:4
|
作者
Jermakowicz, Walter J. [1 ]
Sloley, Stephanie S. [2 ]
Dan, Lia [2 ]
Vitores, Alberto [2 ]
Carballosa-Gautam, Melissa M. [2 ]
Hentall, Ian D. [2 ]
机构
[1] Univ Miami, Dept Neurol Surg, 1095 NW 14th Terr, Miami, FL 33136 USA
[2] Univ Miami, Miami Project Cure Paralysis, 1095 NW 14th Terr, Miami, FL 33136 USA
关键词
neuromodulation; inflammation; serotonin; neural progenitor cell; deep brain stimulation; NEUROPATHIC PAIN; PROGENITOR CELLS; MEDULLARY RAPHE; RECOVERY; PROLIFERATION; NEURONS;
D O I
10.3390/brainsci9060124
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Spinal cord injury (SCI) is a major cause of disability and pain, but little progress has been made in its clinical management. Low-frequency electrical stimulation (LFS) of various anti-nociceptive targets improves outcomes after SCI, including motor recovery and mechanical allodynia. However, the mechanisms of these beneficial effects are incompletely delineated and probably multiple. Our aim was to explore near-term effects of LFS in the hindbrain's nucleus raphe magnus (NRM) on cellular proliferation in a rat SCI model. Starting 24 h after incomplete contusional SCI at C5, intermittent LFS at 8 Hz was delivered wirelessly to NRM. Controls were given inactive stimulators. At 48 h, 5-bromodeoxyuridine (BrdU) was administered and, at 72 h, spinal cords were extracted and immunostained for various immune and neuroglial progenitor markers and BrdU at the level of the lesion and proximally and distally. LFS altered cell marker counts predominantly at the dorsal injury site. BrdU cell counts were decreased. Individually and in combination with BrdU, there were reductions in CD68 (monocytes) and Sox2 (immature neural precursors) and increases in Blbp (radial glia) expression. CD68-positive cells showed increased co-staining with iNOS. No differences in the expression of GFAP (glia) and NG2 (oligodendrocytes) or in GFAP cell morphology were found. In conclusion, our work shows that LFS of NRM in subacute SCI influences the proliferation of cell types implicated in inflammation and repair, thus providing mechanistic insight into deep brain stimulation as a neuromodulatory treatment for this devastating pathology.
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页数:11
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