Stereological estimation of neuron number and plaque load in the hippocampal region of a transgenic rat model of Alzheimer's disease
EUROPEAN JOURNAL OF NEUROSCIENCE
Authors: Heggland, Ingrid; Storkaas, Inge S.; Soligard, Hanne T.; Kobro-Flatmoen, Asgeir; Witter, Menno P.
Abstract
The main hallmarks of Alzheimer's disease (AD) are senile plaques, neurofibrillary tangles and neuronal death. The McGill-R-Thy1-APP rat is one of the few transgenic rat models of AD that displays progressive amyloid pathology. This study aimed to further characterise this rat model, focusing on the pathological changes in the hippocampal formation and the parahippocampal region. These structures, that are important for episodic memory and spatial navigation, are affected in the early stages of the disease. This study used unbiased stereology to investigate possible neuronal loss in the CA1, subiculum and entorhinal cortex of 18-month-old homozygous McGill-R-Thy1-APP rats, and also quantified the plaque load in all the areas of the hippocampal formation and parahippocampal region from 9 to 18months old. A significant reduction of neurons at 18months was only seen in the subiculum. The first plaque pathology was seen at 9months in the subiculum. Although the quantified plaque load was variable between animals, the pattern of spatiotemporal progression was similar for all animals. The spread of plaque pathology mainly affected anatomically connected regions. Overall, the plaque pathology observed in the transgenic rats was similar to the early phases of amyloid beta (A)-deposition described in human patients. The findings here thus indicate that the McGill-R-Thy1-APP rat could be a good model of the A pathology in AD, but less so with respect to neuron loss.
Serum and urine markers of collagen degradation reflect renal fibrosis in experimental kidney diseases
NEPHROLOGY DIALYSIS TRANSPLANTATION
Authors: Papasotiriou, Marios; Genovese, Federica; Klinkhammer, Barbara M.; Kunter, Uta; Nielsen, Signe H.; Karsdal, Morten A.; Floege, Jurgen; Boor, Peter
Abstract
Background. The extent of renal fibrosis in chronic kidney disease (CKD) is the best predictor for progression of most renal diseases. To date, no established biomarkers of renal fibrosis exist. Methods. We measured circulating and urinary-specific-matrix metalloproteinase (MMP)-generated collagen type I and III degradation fragments (C1M and C3M) and an N-terminal propeptide of collagen III (Pro-C3), as markers of collagen type III production, in three rat models of CKD and fibrosis: renal mass reduction (5/6 nephrectomy), progressive glomerulonephritis (chronic anti-Thy1.1 nephritis) and adenine crystal-induced nephropathy. Healthy rats served as controls. Results. In all three models, the animals developed significant CKD and renal fibrosis. Compared with healthy rats, serum C1M and C3M significantly increased in rats with 5/6 nephrectomy and adenine nephropathy (2- to 3-fold), but not with chronic anti-Thy1.1 nephritis. Urinary C1M and C3M levels increased 9- to 100-fold in all three models compared with controls. Urinary degradation markers correlated closely with renal deposition of collagen type I and type III. Pro-C3 was significantly increased only in the urine of 5/6 nephrectomy rats. Conclusions. In particular, urinary markers of MMP-driven collagen degradation, rather than collagen production markers, may represent a novel, specific and non-invasive diagnostic approach to assess kidney fibrosis.