Differential expression of extracellular matrix and adhesion molecule genes in the brain of juvenile versus adult mice in responses to intracerebroventricular administration of IL-1
NEUROIMMUNOMODULATION
Authors: Ching, San; Zhang, Hao; Chen, Qun; Quan, Ning
Abstract
Objective: Intracerebroventricular (ICV) injection of interleukin-1 (IL-1) stimulates the recruitment of leukocytes into the central nervous system at different time points in juvenile versus adult mice. Our results showed that leukocytes entered brain parenchyma at 8 and 16 h after injection in juvenile and adult mice, respectively. This study compares the differential gene expression patterns of extracellular matrix and adhesion molecules in the brain of juvenile and adult mice. Methods: We analyzed these gene expressions in mice brains by microarray and real-time PCR at 2 and 8 h after ICV IL-1. Results: After ICV IL-1, the following genes were significantly upregulated in both juvenile and adult mice: LAM beta 1- 1, MMP17, TGF beta, THBS3 and VCAM1 were upregulated at 2 h after injection; LAM beta 1-1 and TGF beta were upregulated at 8 h. Additional changes were found in adult mice only: CNTN1, ECM1, ICAM1 and LAM alpha 4 were upregulated at 2 h after injection; COL4 alpha 1, MMP3 and VCAM1 were upregulated at 8 h; TIMP4 was downregulated. Comparing juvenile and adult mice, real-time PCR analysis showed that there was more induction of TGF beta at 8 h and a stronger downregulation of TIMP4 at 2 h after injection in juvenile mice. Higher expression of MMP17 was found in juvenile mice, compared to adult mice, at both 2 and 8 h after injection. Conclusions: These data show distinct expression patterns of molecules related to the extracellular matrix and adhesion molecules in juvenile versus adult mice, and suggest that increased expression of MMP17 and TGF beta and decreased expression of TIMP4 may contribute to the accelerated recruitment of leukocytes into the central nervous system in juvenile animals. Copyright (C) 2007 S. Karger AG, Basel.
Change of uterine histotroph proteins during follicular and luteal phase in pigs
ANIMAL REPRODUCTION SCIENCE
Authors: Lee, Sang-Hee; Song, Eun-Ji; Hwangbo, Yong; Lee, Seunghyung; Park, Choon-Keun
Abstract
The aim of this study was to examine protein expression patterns of uterine histotroph (UH) during the follicular phase (FP) and luteal phase (LP) in pigs. Forty-nine common proteins were identified from FP and LP samples; five were significantly down-regulated (> 1.5-fold), while 15 were significantly up-regulated (> 1.5-fold) in LPUH compared with FPUH (P < 0.05). The 20 differentially-expressed proteins are involved in cell proliferation, cell responses, translation, transport, and metabolism and their molecular functions include nucleic acid binding, oxygen activity, enzymatic activity, growth activity, iron binding, and redox binding. Protein expression of vascular endothelial growth factor D (VEGFD), coatomer subunit gamma-2 (G2COP), collagen alpha 4 chain (COL4), cysteine rich protein 2 (CRP2), myoglobin (MYG), and galactoside 3-L-fucosyltransferase 4 (FUT4) was analyzed by Western blotting. These proteins were significantly higher in LPUH compared to FPUH (P < 0.05). These data expand our understanding of changes in the intrauterine environment during the pre-implantation period in pigs. (C) 2016 Elsevier B.V. All rights reserved.