Niansheng Yang
Monash Medical Centre
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Featured researches published by Niansheng Yang.
Transplantation | 1998
Hui Y. Lan; Niansheng Yang; Fiona G. Brown; Nicole M. Isbel; David J. Nikolic-Paterson; Wei Mu; Christine N. Metz; Michael Bacher; Robert C. Atkins; Richard Bucala
BACKGROUND Macrophage migration inhibitory factor (MIF) plays a pivotal role in immune-mediated diseases. Despite the long-standing association of MIF with the delayed-type hypersensitivity response, the potential role of MIF in allograft rejection is unknown. METHODS MIF expression was assessed by in situ hybridization and immunohistochemistry staining in 62 biopsies of human renal allograft rejection and in normal human kidney. RESULTS MIF mRNA and protein is constitutively expressed in normal kidney, being largely restricted to tubular epithelial cells, some glomerular epithelial cells, and vascular smooth muscle cells. In both acute and chronic renal allograft rejection, there was marked up-regulation of MIF mRNA and protein expression by intrinsic kidney cells such as tubular epithelial cells and vascular endothelial and smooth muscle cells. There was also MIF expression by infiltrating macrophages and T cells. Of note, macrophage and T cell infiltrates were largely restricted to areas with marked up-regulation of MIF expression, potentially contributing to the development of severe tubulitis and intimal or transmural arteritis. Quantitative analysis found that increased MIF expression in allograft rejection gave a highly significant correlation with macrophage and T cell accumulation in both the glomerulus and interstitium (P<0.001). In addition, the number of MIF+ tubules and interstitial MIF+ cells correlated significantly with the severity of allograft rejection (P<0.01), and the loss of renal function (P<0.01). In contrast, no up-regulation of renal MIF expression and no leukocyte accumulation was seen in allograft biopsies without evidence of rejection. CONCLUSIONS This is the first study to demonstrate that local MIF expression is up-regulated during allograft rejection. The association between up-regulation of MIF expression, macrophage and T cell infiltration and the severity of renal allograft rejection suggests that MIF may be an important mediator in the process of allograft rejection.
Journal of Experimental Medicine | 1997
Hui Y. Lan; Michael Bacher; Niansheng Yang; Wei Mu; David J. Nikolic-Paterson; Christine N. Metz; Andreas Meinhardt; Richard Bucala; Robert C. Atkins
Kidney International | 2000
Hui Y. Lan; Niansheng Yang; David J. Nikolic-Paterson; Xue Q. Yu; Wei Mu; Nicole M. Isbel; Christine N. Metz; Richard Bucala; Robert C. Atkins
Kidney International | 1998
Niansheng Yang; Nicole M. Isbel; David J. Nikolic-Paterson; Youji Li; Rengao Ye; Robert C. Atkins; Hui Y. Lan
American Journal of Pathology | 1996
Hui Y. Lan; Wei Mu; Niansheng Yang; Andreas Meinhardt; D. J. Nikolic-Paterson; Yee Yung Ng; Michael Bacher; Robert C. Atkins; Richard Bucala
Nephrology Dialysis Transplantation | 1998
Niansheng Yang; Leonard L. Wu; David J. Nikolic-Paterson; Yee-Yung Ng; W.-C. Yang; Wei Mu; Richard E. Gilbert; Mark E. Cooper; Robert C. Atkins; Hui Y. Lan
Kidney International | 2000
Xue Q. Yu; Leonard L. Wu; Xiao R. Huang; Niansheng Yang; Richard E. Gilbert; Mark E. Cooper; Richard J. Johnson; Kar N. Lai; Hui Y. Lan
Molecular Medicine | 1998
Niansheng Yang; David J. Nikolic-Paterson; Yee-Yung Ng; Wei Mu; Christine N. Metz; Michael Bacher; Andreas Meinhardt; Richard Bucala; Robert C. Atkins; Hui Y. Lan
Molecular Medicine | 1997
Hui Y. Lan; Niansheng Yang; Christine N. Metz; Wei Mu; Qing Song; David J. Nikolic-Paterson; Michael Bacher; Richard Bucala; Robert C. Atkins
Kidney International | 1998
Hui Y. Lan; Xue Q. Yu; Niansheng Yang; David J. Nikolic-Paterson; Wei Mu; Raimund Pichler; Richard J. Johnson; Robert C. Atkins