Molecular and histologic outcomes following spinal cord injury in spiny mice, Acomys cahirinus
JOURNAL OF COMPARATIVE NEUROLOGY
Authors: Streeter, Kristi A.; Sunshine, Michael D.; Brant, Jason O.; Sandoval, Aaron G. W.; Maden, Malcolm; Fuller, David D.
Abstract
The spiny mouse (Acomys cahirinus) appears to be unique among mammals by showing little scarring or fibrosis after skin or muscle injury, but the Acomys response to spinal cord injury (SCI) is unknown. We tested the hypothesis that Acomys would have molecular and immunohistochemical evidence of reduced spinal inflammation and fibrosis following SCI as compared to C57BL/6 mice (Mus), which similar to all mammals studied to date exhibits spinal scarring following SCI. Initial experiments used two pathway-focused RT-PCR gene arrays ("wound healing" and "neurogenesis") to evaluate tissue samples from the C2-C6 spinal cord 3 days after a C3/C4 hemi-crush injury (C3Hc). Based on the gene array results, specific genes were selected for RT-qPCR evaluation using species-specific primers. The results supported our hypothesis by showing increased inflammation and fibrosis related gene expression (Serpine 1, Plau, and Timp1) in Mus as compared to Acomys (p < .05). RT-qPCR also showed enhanced stem cell and axonal guidance related gene expression (Bmp2, GDNF, and Shh) in Acomys compared to Mus (p < .05). Immunohistochemical evaluation of the spinal lesion at 4 weeks postinjury indicated less collagen IV immunostaining in Acomys (p < .05). Glial fibrillary acidic protein (GFAP) and ionized calcium binding adaptor molecule 1(IBA1) immunostaining indicated morphological differences in the appearance of astrocytes and macrophages/microglia in Acomys. Collectively, the molecular and histologic results support the hypothesis that Acomys has reduced spinal inflammation and fibrosis following SCI. We suggest that Acomys may be a useful comparative model to study adaptive responses to SCI.
Deficits of urothelial cell proliferation, cytoskeleton, and barrier function protein expressions in patients with recurrent and persistent urinary tract infections
LUTS-LOWER URINARY TRACT SYMPTOMS
Authors: Jhang, Jia-Fong; Lin, Teng-Yi; Ho, Han-Chen; Jiang, Yuan-Hong; Hsu, Yung-Hsiang; Birder, Lori A.; Kuo, Hann-Chorng
Abstract
Objectives Recurrent urinary tract infection (rUTI) is a common infectious disease in women. This study investigated the urothelial cell proliferation, the cytoskeleton, barrier proteins, and inflammatory protein expression in women with rUTIs. Methods Female patients with recurrent or persistent UTIs were recruited. Bladder mucosal specimens were investigated by Western blot and immunohistochemical staining for the urothelial cytoskeleton proteins cytokeratin 5 (CK5), CK14, and CK20; proteins involved in cellular proliferation, including CD34, sonic hedgehog (SHH), and tumor protein 63 (TP63); barrier proteins zonula occludens 1 (ZO-1) and E-cadherin; inflammatory proteins p38 and tryptase; and proapoptotic proteins Bcl2-associated agonist of cell death protein (BAD), Bcl2-associated X protein (BAX), and caspase-3. Women with stress urinary incontinence without bladder symptoms served as controls. Bladder specimens from 18 recurrent UTI patients with rUTIs and 12 persistent UTIs, and 17 controls were analyzed, and protein expressions were compared between the three groups. Results Cell proliferation protein expression for CD34, SHH, and TP63 was significantly lower in the urothelium of patients with rUTIs than in controls. Expression of CK5 increased, whereas CK20 decreased significantly in rUTIs compared with those of controls. Apoptotic proteins BAD, BAX, and caspase-3 were significantly higher in patients with rUTIs. However, barrier proteins ZO-1 and E-cadherin, and tryptase were not significantly lower in patients with rUTIs. Conclusion Deficits in expression of proteins involved in urothelial cell proliferation, cytoskeleton, and barrier function were noted in patients with rUTIs. These urothelial deficits may be due to deficient proliferation and differentiation resulting in inadequate urothelial barrier function and further in rUTIs.