Literature DB >> 16529721

Gene expression analysis of distinct populations of cells isolated from mouse and human inner ear FFPE tissue using laser capture microdissection--a technical report based on preliminary findings.

Nitin A Pagedar1, Wen Wang, Daniel H-C Chen, Rickie R Davis, Ivan Lopez, Charles G Wright, Kumar N Alagramam.   

Abstract

Laser Capture Microdissection (LCM) allows microscopic procurement of specific cell types from tissue sections that can then be used for gene expression analysis. We first tested this method with sections of adult mouse inner ears and subsequently applied it to human inner ear sections. The morphology of the various cell types within the inner ear is well preserved in formalin fixed paraffin embedded (FFPE) sections, making it easier to identify cell types and their boundaries. Recovery of good quality RNA from FFPE sections can be challenging, however, recent studies in cancer research demonstrated that it is possible to carry out gene expression analysis of FFPE material. Thus, a method developed using mouse FFPE tissue can be applied to human archival temporal bones. This is important because the majority of human temporal bone banks have specimens preserved in formalin and a technique for retrospective analysis of human archival ear tissue is needed. We used mouse FFPE inner ear sections to procure distinct populations of cells from the various functional domains (organ of Corti, spiral ganglion, etc.) by LCM. RNA was extracted from captured cells, amplified, and assessed for quality. Expression of selected genes was tested by RT-PCR. In addition to housekeeping genes, we were able to detect cell type specific markers, such as Myosin 7a, p27(kip1) and neurofilament gene transcripts that confirmed the likely composition of cells in the sample. We also tested the method described above on FFPE sections from human crista ampullaris. These sections were approximately a year old. Populations of cells from the epithelium and stroma were collected and analyzed independently for gene expression. The method described here has potential use in many areas of hearing research. For example, following exposure to noise, ototoxic drugs or age, it would be highly desirable to analyze gene expression profiles of selected populations of cells within the organ of Corti or spiral ganglion cells rather than a mixed population of cells from whole inner ear tissue. Also, this method can be applied for analysis of human archival ear tissue.

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Year:  2006        PMID: 16529721     DOI: 10.1016/j.brainres.2006.01.057

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  15 in total

1.  Orphan glutamate receptor delta1 subunit required for high-frequency hearing.

Authors:  Jiangang Gao; Stéphane F Maison; Xudong Wu; Keiko Hirose; Sherri M Jones; Ildar Bayazitov; Yong Tian; Guy Mittleman; Douglas B Matthews; Stanislav S Zakharenko; M Charles Liberman; Jian Zuo
Journal:  Mol Cell Biol       Date:  2007-04-16       Impact factor: 4.272

2.  Isolation of outer hair cells from the cochlear sensory epithelium in whole-mount preparation using laser capture microdissection.

Authors:  Charles T Anderson; Jing Zheng
Journal:  J Neurosci Methods       Date:  2007-01-30       Impact factor: 2.390

Review 3.  Immunohistochemical techniques for the human inner ear.

Authors:  Ivan A Lopez; Gail Ishiyama; Seiji Hosokawa; Kumiko Hosokawa; Dora Acuna; Fred H Linthicum; Akira Ishiyama
Journal:  Histochem Cell Biol       Date:  2016-08-01       Impact factor: 4.304

4.  Truncated neurokinin-1 receptor is increased in colonic epithelial cells from patients with colitis-associated cancer.

Authors:  Earl Gillespie; Susan E Leeman; Luisa A Watts; Jennifer A Coukos; Michael J O'Brien; Sandra R Cerda; Francis A Farraye; Arthur F Stucchi; James M Becker
Journal:  Proc Natl Acad Sci U S A       Date:  2011-10-03       Impact factor: 11.205

5.  Difference in expression of two neurokinin-1 receptors in adenoma and carcinoma from patients that underwent radical surgery for colorectal carcinoma.

Authors:  Xia Gao; Zhenjun Wang
Journal:  Oncol Lett       Date:  2017-07-15       Impact factor: 2.967

6.  A combined method of laser capture microdissection and X-Gal histology to analyze gene expression in c-Fos-specific neurons.

Authors:  Bumsup Kwon; Thomas A Houpt
Journal:  J Neurosci Methods       Date:  2009-11-17       Impact factor: 2.390

7.  Gene expression analysis of immunostained endothelial cells isolated from formaldehyde-fixated paraffin embedded tumors using laser capture microdissection--a technical report.

Authors:  Tomoatsu Kaneko; Takashi Okiji; Reika Kaneko; Hideaki Suda; Jacques E Nör
Journal:  Microsc Res Tech       Date:  2009-12       Impact factor: 2.769

8.  Glucose transporter 5 is undetectable in outer hair cells and does not contribute to cochlear amplification.

Authors:  Xudong Wu; Xiang Wang; Jiangang Gao; Yiling Yu; Shuping Jia; Jing Zheng; Peter Dallos; David Z Z He; MaryAnn Cheatham; Jian Zuo
Journal:  Brain Res       Date:  2008-03-18       Impact factor: 3.252

9.  Plasminogen activator inhibitor-1 is increased in colonic epithelial cells from patients with colitis-associated cancer.

Authors:  Earl Gillespie; Susan E Leeman; Luisa A Watts; Jennifer A Coukos; Michael J O'Brien; Sandra R Cerda; Francis A Farraye; Arthur F Stucchi
Journal:  J Crohns Colitis       Date:  2012-08-23       Impact factor: 9.071

10.  Microarray analysis of RNA extracted from formalin-fixed, paraffin-embedded and matched fresh-frozen ovarian adenocarcinomas.

Authors:  Grazyna Fedorowicz; Steve Guerrero; Thomas D Wu; Zora Modrusan
Journal:  BMC Med Genomics       Date:  2009-05-08       Impact factor: 3.063

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