Nyska Abraham, Horowitz Miri, Anaby Debbie, Sabban Alon, Leizerman Ilit, Blaugrund Eran, Mayk Adi, Behar Vered
Laboratory of Experimental Pathology, National Institute of Environmental Health Sciences (NIEHS), National Institutes of Health, Research Triangle Park, NC, USA.
Exp Toxicol Pathol. 2006 Mar;57(4):291-7. doi: 10.1016/j.etp.2005.11.001. Epub 2006 Jan 18.
Development of effective therapies for multiple sclerosis (MS) is dependent on the advancement of improved tools for evaluation of progression of this disease in animal models. We present a novel technique utilizing scanning electron microscopy (SEM) for imaging wet biological specimens thus enabling rapid and high-resolution imaging of myelin in mouse spinal cord (SC). We demonstrate the advantages of using the wet SEM technique to image myelin in a murine model of MS, experimental autoimmune encephalomyelitis (EAE) induced in the Biozzi (antibody-high) mouse, by sensitization with spinal cord homogenate (SCH) in adjuvant. Our studies show that the methodology allows easy identification of normal and pathological components with great clarity, which is then correlated with light microscopy (LM) and validated thereby. Furthermore, we demonstrate gold immunolabeling of specific epitopes. We conclude that the new technique provides a quick, accurate, and detailed structural evaluation of the SC that can be applied to advance the research of MS.
多发性硬化症(MS)有效治疗方法的开发依赖于用于评估该疾病在动物模型中进展情况的改进工具的发展。我们提出了一种利用扫描电子显微镜(SEM)对湿生物标本进行成像的新技术,从而能够对小鼠脊髓(SC)中的髓鞘进行快速且高分辨率的成像。我们展示了使用湿SEM技术对MS小鼠模型——通过在佐剂中用脊髓匀浆(SCH)致敏诱导的Biozzi(高抗体)小鼠实验性自身免疫性脑脊髓炎(EAE)——中的髓鞘进行成像的优势。我们的研究表明,该方法能够清晰地轻松识别正常和病理成分,然后将其与光学显微镜(LM)相关联并由此得到验证。此外,我们展示了特定表位的金免疫标记。我们得出结论,这项新技术为脊髓提供了快速、准确且详细的结构评估,可应用于推进MS的研究。