The spontaneously hypertensive rat (SHR) is a good model to study several diseases such as the attention-deficit hyperactivity disorder, cardiopulmonary impairment, nephropathy, as well as hypertension, which is a multifactor disease that possibly involves alterations in gene expression in hypertensive relative to normotensive subjects. In this study, we used high-density oligoarrays to compare gene expression profiles in cultured neurons and glia from brainstem of newborn normotensive Wistar Kyoto (WKY) and SHR rats. We found 376 genes differentially expressed between SHR and WKY brainstem cells that preferentially map to 17 metabolic/signaling pathways. Some of the pathways and regulated genes identified herein are obviously related to ca...
Abstract—Copy number variation has emerged recently as an important genetic mechanism leading to phe...
The aims of this study were, first, to determine quantitatively the levels of tyrosine hydroxylase (...
To investigate strain differences and genetic effects on different aspects of neurogenesis, we compa...
The spontaneously hypertensive rat (SHR) is a good model to study several diseases such as the atten...
Hypertension is a hemodynamic disorder and one of the most important and well-established risk facto...
Hypertension is a hemodynamic disorder and one of the most important and well-established risk facto...
The spontaneously hypertensive rat (SHR) strain was shown to be a useful animal model to study sever...
Background—Identification of genes involved in complex cardiovascular disease traits has proven chal...
The spontaneously hypertensive rat (SHR) is the most widely studied animal model of hypertension. Sc...
Gene expression differences accompany both the onset and established phases of hypertension. By an i...
The renal transcriptome in experimental hypertension The kidneys importantly determine blood pressur...
<div><p>Small arteries are known to develop functional and structural alterations in hypertension. H...
Large numbers of inbred laboratory rat strains have been developed in the past 100 years by phenotyp...
This research project attempts to identify the genetic determinants of SHRSP/Gla phenotypes by using...
Small arteries are known to develop functional and structural alterations in hypertension. However, ...
Abstract—Copy number variation has emerged recently as an important genetic mechanism leading to phe...
The aims of this study were, first, to determine quantitatively the levels of tyrosine hydroxylase (...
To investigate strain differences and genetic effects on different aspects of neurogenesis, we compa...
The spontaneously hypertensive rat (SHR) is a good model to study several diseases such as the atten...
Hypertension is a hemodynamic disorder and one of the most important and well-established risk facto...
Hypertension is a hemodynamic disorder and one of the most important and well-established risk facto...
The spontaneously hypertensive rat (SHR) strain was shown to be a useful animal model to study sever...
Background—Identification of genes involved in complex cardiovascular disease traits has proven chal...
The spontaneously hypertensive rat (SHR) is the most widely studied animal model of hypertension. Sc...
Gene expression differences accompany both the onset and established phases of hypertension. By an i...
The renal transcriptome in experimental hypertension The kidneys importantly determine blood pressur...
<div><p>Small arteries are known to develop functional and structural alterations in hypertension. H...
Large numbers of inbred laboratory rat strains have been developed in the past 100 years by phenotyp...
This research project attempts to identify the genetic determinants of SHRSP/Gla phenotypes by using...
Small arteries are known to develop functional and structural alterations in hypertension. However, ...
Abstract—Copy number variation has emerged recently as an important genetic mechanism leading to phe...
The aims of this study were, first, to determine quantitatively the levels of tyrosine hydroxylase (...
To investigate strain differences and genetic effects on different aspects of neurogenesis, we compa...