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Citations to this article

Gene transfer into the rat renal glomerulus via a mesangial cell vector: site-specific delivery, in situ amplification, and sustained expression of an exogenous gene in vivo.
M Kitamura, … , F Shimizu, L G Fine
M Kitamura, … , F Shimizu, L G Fine
Published August 1, 1994
Citation Information: J Clin Invest. 1994;94(2):497-505. https://doi.org/10.1172/JCI117361.
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Research Article Article has an altmetric score of 3

Gene transfer into the rat renal glomerulus via a mesangial cell vector: site-specific delivery, in situ amplification, and sustained expression of an exogenous gene in vivo.

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Abstract

To evaluate the pathophysiological function of specific molecules in the renal glomerulus, selective, sustained, and modifiable expression of such molecules will be required. Towards achieving this end, we devised a gene transfer system using the glomerular mesangial cell as a vector for gene delivery. A reporter gene which encodes bacterial beta-galactosidase was introduced into cultured rat mesangial cells, and the stable transfectants were transferred into the rat kidney via the renal artery, leading to selective entrapment within the glomeruli. In the normal kidney, the reporter cells populated into 57 +/- 13% of glomeruli site specifically, and the expression of beta-galactosidase was sustained for 4 wk and declined thereafter. Within the glomerulus, some of the reporter cells remained in the glomerular capillaries, while others repopulated the mesangial area and, in part, extended their cytoplasmic processes toward the surrounding capillaries. When the cells were transferred into glomeruli subjected to transient mesangiolysis induced by monoclonal antibody 1-22-3, in situ expression of beta-galactosidase was amplified 7-12-fold, and the enhanced level of expression continued for up to 8 wk. The mesangial cell vector system thus achieves site-specific delivery of an exogenous gene into the glomerulus and is amenable to in situ amplification and sustained expression by preconditioning of the target site.

Authors

M Kitamura, S Taylor, R Unwin, S Burton, F Shimizu, L G Fine

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Total citations by year

Year: 2024 2020 2018 2013 2012 2011 2010 2009 2008 2007 2006 2005 2004 2003 2002 2001 2000 1999 1998 1997 1996 1995 Total
Citations: 1 1 1 1 2 4 2 4 2 3 6 7 5 1 3 9 13 11 6 6 7 1 96
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Citations to this article in year 2012 (2)

Title and authors Publication Year
Unfolded Protein Response Causes a Phenotypic Shift of Inflamed Glomerular Cells toward Redifferentiation through Dual Blockade of Akt and Smad Signaling Pathways
H Johno, S Nakajima, H Kato, J Yao, AW Paton, JC Paton, R Katoh, F Shimizu, M Kitamura
The American Journal of Pathology 2012
Acidic stress-ER stress axis for blunted activation of NF-κB in mesothelial cells exposed to peritoneal dialysis fluid
H Johno, R Ogata, S Nakajima, N Hiramatsu, T Kobayashi, H Hara, M Kitamura
Nephrology Dialysis Transplantation 2012

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