Search PubMedSearch

Biomedical subjects

C T Hansen

Publications and source records attributed to C T Hansen.

At least 19 recordsLinked to original sources

Acetylcholine esterase and peripherin mRNA level decrease in wobbler mouse.

Homozygote wobbler mice develop motoneurone degeneration. Throughout development the expression of choline acetyltransferase, of trkC receptor and F3 adhesion molecule genes is similar in wobbler and wild-type spinal cord. Acetylcholinesterase mRNA level instead is decreased to about 50% with respect to wild-type values in one forth of P5 and P10 wobbler progeny, putative wr/wr individuals; at P21 its expression is equally highly reduced in known homozygotes and it is reduced to 35% of normal values in about one half of the progeny, putative heterozygotes. Thus, similarly to medium neurofilament gene over-expression, reduced acetylcholinesterase gene expression is an early molecular marker for the wobbler mutation before onset of the illness.

Acetylcholinesterase

Development and characteristics of a new strain of obese hyperinsulinemic and hyperlipidemic Dahl salt-sensitive rat. The Dahl salt-sensitive/NIH-corpulent rat.

A new congenic rat strain, the Dahl salt-sensitive/NIH-corpulent (DSS/N-cp) rat, has been developed to study the role of obesity and type of dietary carbohydrate in the development of hypertension and its complications. Three groups (n = 6) of young male obese and lean DSS/N-cp rats were fed diets containing either 54% sucrose, 18% sucrose plus 36% starch, or 54% starch, with 0.1% dietary sodium for 12 weeks. Regardless of the diet, obese and lean rats showed mildly elevated systolic blood pressure (SBP), being significantly higher in obese than in lean rats (SBP 156 +/- 5 mm Hg v 141 +/- 3 mm Hg, P < .05). However, SBP was not different between the three diet groups. Levels of serum insulin, triglyceride, and cholesterol as well as urinary protein excretion were significantly higher in obese than in lean rats. Obese rats fed the sucrose diets as compared to the starch diet, had higher serum insulin and lipid levels, but had lower body weights and higher serum creatinine levels. Histopathologic examination of tissues from different organs revealed a vasculopathy seen almost exclusively in obese rats fed the sucrose diets. Vascular lesions were characterized by subintimal fibrin deposition, fibrinoid necrosis, and cell proliferation with "onion skinning" in small arteries and arterioles of kidneys, intestine, pancreas, and testes.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Differences in response to an acoustic startle stimulus among forty-six rat strains.

The startle response to intense environmental stimuli is found in most, if not all, animal species. Previous studies have shown that selected rodent strains differ in startle response to an acoustic stimulus, suggesting genetic variability. The current experiment was designed to extend these differences to a wider range of rat strains. Forty-six inbred and outbred rat strains were studied. These strains exhibited differences in both the mean amplitude of the startle response and the rate of habituation to startle stimuli over repeated trials. In addition, there was a significant relationship between these measures. These results suggest that robust phenotypic differences in startle response exist among rat strains. As previous investigations have demonstrated a direct relationship between the startle response and other behavioral end points, the use of strain differences in startle response may be an effective way to determine genetic contributions to specific behavioral responses.

Acoustic Stimulation

Genetic mapping of the athymic nude (RNU) locus in the rat to a region on chromosome 10.

The nude trait in the rat is transmitted in an autosomal recessive manner and is associated with thymic aplasia, T-cell deficiency, and hairlessness. Congenic rats homozygous for the RNU (Rowett nude) locus are important models in the study of inflammatory disease, tumor growth, and transplant rejection. The RNU locus has not been previously mapped, and the nature of the gene product is unknown. To determine the map location of this gene, a single F344.rnu/rnu (athymic nude congenic Fischer rat) male congenic rat was bred with 3 LEW/N (NIH stock Lewis rat) female rats to produce F1 progeny. Twelve F1 brother-sister breeding pairs were established. Forty-nine phenotypically nude F2 offspring (198 total) were obtained. Linkage analysis done on F2 DNA revealed highly significant cosegregation between the nude phenotype and eight polymorphic markers located on Chromosome (Chr) 10. The tightest linkages were with: MYH3 (embryonic, skeletal myosin heavy chain) and SHBG (sex hormone-binding globulin), giving 2 point lod scores of 20.2, and 20.0, respectively. The map order and map distances, determined by multipoint linkage calculations, were: RR24-(16.1 cM)-MYH3-(3.5 cM)-SHBG-(4.7 cM)-RNU-(11.9 cM)-F16F2-(24.1 cM)-CLATP (citrate lyase ATPase)-(2.4 cM)-ACE (angiotensin converting enzyme)/PPY (pancreatic polypeptide)-(14.1 cM)-RR1023. The position of the RNU locus in the rat corresponds closely with that of the recently reported nu locus in the mouse. This finding suggests that the nude phenotype in the rat and the mouse arise from defects in homologous genes.

Animals

Recruitment of antigen-nonspecific cells plays a pivotal role in the pathogenesis of a T cell-mediated organ-specific autoimmune disease, experimental autoimmune uveoretinitis.

Experimental autoimmune uveoretinitis (EAU) is a prototypic T cell-mediated autoimmune disease, whose target tissue is the neural retina, that is used as a model for a number of human blinding ocular diseases of a presumed autoimmune nature. EAU in rats can be induced by adoptive transfer of small numbers of retinal antigen-specific CD4+ T cell lines. Although recruitment mechanisms were assumed to play a role in the immunopathogenesis of uveitis, there is no direct evidence that would permit assessment of the importance of recruited non-antigen-specific T cells in retinal autoimmunity. In the present study, we addressed this question by using congenitally athymic Lewis rats (LEW.rnu/rnu), that are deficient in functional endogenous T cells, but are otherwise syngeneic with the euthymic Lewis rats that develop characteristically severe EAU. The uveitogenic stimulus was delivered in the form of phenotypically and functionally homogeneous pathogenic T cell lines, specific to the major pathogenic epitope of either the intracellular photoreceptor protein, S-Ag, or the extracellular photoreceptor matrix protein, IRBP. Depending on the T cell line used, EAU in athymic rats was either drastically reduced in severity (IRBP), or essentially absent (S-Ag). Susceptibility was restored when the athymic animals were reconstituted with immunocompetent T cells from syngeneic euthymic donors. While the intraocular infiltrate in euthymic rats was predominantly lymphocytic, with smaller numbers of monocyte/macrophages and even fewer neutrophils, the sparse infiltrate in athymics was largely monocytic, and with a relatively high proportion of neutrophils and eosinophils. Reconstituted animals had an intermediate histological picture with respect to the infiltrating cell types and disease severity. Our data are consistent with the interpretation that recruitment of naive T cells constitutes an amplification mechanism that is central to the expression and pathogenesis of uveitis. The extent of dependence on this phenomenon appears to be influenced by the antigenic specificity of the T cell line, and could be connected to the 'accessibility' of the target antigen in vivo.

Animals

The origin of the autoimmune disease-resistant LER rat: an outcross between the buffalo and autoimmune disease-prone Lewis inbred rat strains.

The Lewis (LEW) rat strain is highly susceptible to a large number of experimentally induced inflammatory and autoimmune diseases. The Lewis resistant (LER) rat strain, which reportedly arose as a spontaneous mutation in a closed colony of LEW rats, is resistant to many of these disorders. The mechanism of resistance is not yet clear. We report the analysis of 19 simple dinucleotide repeat polymorphisms in 13 rat strains including the LEW/N and LER/N rat strains. The LEW/N and LER/N alleles were the same in only 42% of cases. For all of the other polymorphisms, the LER/N and Buffalo (BUF/N) rat strain alleles were identical. These data provide evidence that the LER strain did not arise as a spontaneous mutation in the LEW strain but is the result of an outcross between the LEW and BUF rat strains. The LER rat strain is now a recombinant inbred rat strain. This information should facilitate the genetic analysis of the loci responsible for resistance to experimental autoimmune disease in the LER rat.

Alleles

Lymphoblastic lymphoma in a colony of N:NIH(S)-bg-nu-xid mice.

During a 1-year period, 28 animals from a breeding colony of N:NIH(S)-bg-nu-xid mice were discovered to have rapidly enlarging subcutaneous swellings in the ventral, cervical, and axillary regions. Five of the mice also had hind limb paresis. Twenty-two of the mice were heterozygous nude females, five were homozygous nude males, and one was a homozygous nude female. All of the above mice were homo- or hemizygous for the beige and X-linked immunodeficiency mutations. The average age of the mice was 8.3 months. Generalized enlargement of the peripheral and internal lymph nodes was present at the time of necropsy examination. Other lesions commonly noted at necropsy included splenomegaly (15 mice), pale and thickened ventral lumbar spinal musculature (11 mice), and opaque, thickened meninges of the brain (10 mice). Histologic examination consistently disclosed infiltrates of neoplastic lymphoblasts in multiple tissues including lymph nodes, spleen, bone marrow, and meninges of the brain and spinal cord. The cells were positive for IgG on immunofluorescent staining, suggesting that the tumors were of B cell origin. The neoplasms observed in these mice have several similarities to tumors found in immunodeficient humans, suggesting that these mice may serve as useful animal models of lymphoma.

Animals

Reversal of immune dysfunction in osteopetrotic rats by interferon-gamma: augmentation of macrophage Ia expression and lymphocyte interleukin-2 production and proliferation.

Lymphocytes from osteopetrotic (op) rats, compared to their normal (n) littermates, exhibit defective immune functions associated with their inability to resorb bone. Among these immune defects are the failure of their spleen cells to proliferate normally to mitogens and to generate IL-2. Addition of exogenous IL-2 failed to reverse the suppressed proliferation in the op spleen cells, indicating that additional defects were involved in the suppression. Phenotypic analysis of cellular constituents of op and n spleens revealed that the percentages of T cells, macrophages, and IL-2 receptor positive cells were not different. Furthermore, there was no difference in CD4 (W3/25) and CD8 (OX8) cells. However, the Ia+ (OX3) cells in the op spleen represented less than 50% of those found in the n spleen, but the op had higher levels of transferrin receptor (OX26). On the basis of the ability of interferon-gamma (IFN-gamma) to increase Ia expression, this cytokine was added to op spleen cells (10-50 U/ml) and found to increase the number of Ia+ cells to the level found in n spleen cells. Moreover, pretreatment of op spleen cells with IFN-gamma restored their ability to proliferate to mitogens and their responsiveness to IL-2. Not only did IFN-gamma reverse the defective response to IL-2, but it also augmented the defective IL-2 production by op spleen cells. Taken together, these findings demonstrate that IFN-gamma can reverse many of the impaired immune functions characteristic of op spleen cells in vitro. Furthermore, these data suggest that IFN-gamma may provide an important avenue of treatment in these animals that may contribute to restoration of normal bone resorption.

Animals

FVB/N: an inbred mouse strain preferable for transgenic analyses.

FVB/N mice offer a system suitable for most transgenic experiments and subsequent genetic analyses. The inbred FVB/N strain is characterized by vigorous reproductive performance and consistently large litters. Moreover, fertilized FVB/N eggs contain large and prominent pronuclei, which facilitate microinjection of DNA. The phenotype of large pronuclei in the zygote is a dominant trait associated with the FVB/N oocyte but not the FVB/N sperm. In experiments to generate transgenic mice, the same DNA constructs were injected into three different types of zygotes: FVB/N, C57BL/6J, and (C57BL/6J x SJL/J)F1. FVB/N zygotes survived well after injection, and transgenic animals were obtained with efficiencies similar to the F1 zygotes and much better than the C57BL/6J zygotes. Genetic markers of the FVB/N strain have been analyzed for 44 loci that cover 15 chromosomes and were compared with those of commonly used inbred strains. In addition to the albino FVB/N strain, pigmented congenic strains of FVB/N are being constructed. These features make the FVB/N strain advantageous to use for research with transgenic mice.

Alleles

Effects of diet and phenotype on adipose cellularity and 5'-deiodinase activity of liver and brown adipose tissue of diabetic SHR/N-cp rats.

1. Groups of lean and obese male SHR/N-cp rats were fed isoenergetic diets containing 54% carbohydrate as cornstarch (CS) or sucrose (SU) plus other nutrients from 5 weeks of age, and measures of adiposity, thyroxine 5' deiodinase (T4-5'DI) activity, and tissue and plasma triiodothyronine (T3) content determined at 9.5 months of age. 2. Body weights (BW) of obese greater than lean, and were greater when fed the SU than CS diet in both phenotypes. Phenotype effects (obese greater than lean) were present for fat pad weights and adipose cellularity in most primary adipose tissue depots, and diet effects (SU greater than CS) were present for epididymal and retroperitoneal depots in both phenotypes. 3. Interscapular brown adipose tissue (IBAT) and IBAT:BW ratios of obese greater than lean, and diet effects (SU greater than CS) were present for lean but not obese rats. Liver T4-5'DI activity and plasma and tissue T3 of lean greater than obese, while IBAT 5'DI activity of obese greater than lean in the CS diet. 4. These results indicate that obesity occurs in the SHR/N-cp rat as the result of hypertrophy and hyperplasia of adipose tissue, and that isoenergetic substitution of simple for complex carbohydrate exaggerates fat accretion in lean but not obese rats. Moreover, the obesity occurs in spite of greater mass, cellularity, and T4-5'DI activity of IBAT, consistent with a thermogenic defect in the obese phenotype of this strain.

Adipose Tissue

Effects of dietary carbohydrate and phenotype on adipose cellularity in female SHR/N-cp rats.

1. Adipose mass and cellularity were studied in congenic female SHR/N-cp rats fed iosenergetic diets containing 54% carbohydrate as sucrose (SU) or cooked cornstarch (CS), 20% protein, 16% mixed dietary fat plus vitamins, minerals, and non-nutritive fiber ad libitum from 5 weeks until 8.5 months of age. Measures of adipocyte lipid content, cell number per depot, and mass of principal white (WAT) and interscapular brown (IBAT) adipoe tissue depots were determined at the end of the study. 2. Final body weights (BW) of corpulent rats were more than twice those for their lean littermates, and were greater when fed the SU than the CS diet in both phenotypes. Phenotype effects (corpulent greater than lean) were present for fat pad weight, adipocyte number, and adipocyte lipid content in the dorsal (DOR) and retroperitoneal (RP) WAT depots. Diet effects were present for depot weight, adipocyte number, and adipocyte lipid content in both WAT depots, and were of qualitatively similar magnitude in both phenotypes. 3. IBAT weights, IBAT:BW ratios, and IBAT cell number of corpulent greater than lean, and were greater than with SU than CS diet in both phenotypes. 4. These results indicate that obesity in the corpulent phenotype of the SHR/N-cp rat occurs as the result of hypertrophy and hyperplasia of white adipose tissue, and that isoenergetic substitution of simple for complex carbohydrate resulted in greater fat accretion in both phenotypes. The greater diet and phenotype-associated adiposity occurred despite greater mass and cellularity of BAT. The results also indicate that sexual dimorphism occurs regarding effects of diet and phenotype on expression of adipose tissue development in this strain.

Adipose Tissue

Hemorrhagic cardiomyopathy and hemothorax in vitamin K deficient mice.

The cause of a fatal condition characterized by hemorrhagic cardiomyopathy, hemothorax, and coagulation defects in hysterectomy-derived male mice was investigated. Microscopic heart alterations included multifocal hemorrhage and necrosis with variable degrees of acute inflammation and fibroplasia that were most severe in the region of the atrioventricular junction. A spontaneous outbreak was arrested by increasing menadione Na-bisulfite (vitamin K) in the feed to 20 ppm. The complete syndrome including hemorrhagic cardiomyopathy was readily reproduced in germ-free male mice given a vitamin K-free diet, and in conventional male and female mice given Warfarin in the diet. We concluded that the cause of this condition was vitamin K deficiency.

Animals

A difference in mortality between two strains of jaundiced rats.

Homozygous Gunn rats lack bilirubin glucuronyltransferase, become jaundiced, and often develop kernicterus, thus providing a model for neonatal hyperbilirubinemia. Two new, inbred rat strains that carry the Gunn mutation are described. These were developed by breeding the mutant Gunn gene (j) into the RHA/N and ACI/N strains, producing the new lines, which were designated RHA/N-j and ACI/N-j. Liver assay confirmed the absence of transferase activity in jaundiced rats from both of the new strains, but marked differences in mortality between the strains were observed. The mortality of jaundiced RHA/N-j rats through 8 weeks was the same as that of their nonjaundiced littermates (20%). In contrast, mortality of jaundiced ACI/N-j rats was distinctly greater than that of their nonjaundiced littermates (81% vs 34%, P less than .001). Signs of kernicterus such as ataxia were much more frequent in jaundiced ACI/N-j rats than in jaundiced RHA/N-j rats (73% vs 11%, P less than .001). Both strains had comparable albumin concentrations through 8 weeks of age. Serum bilirubin concentrations were also comparable, except for a small but significant difference at 20 days of age (ACI/N-j = 294 mumols/L, RHA/N-j = 248 mumols/L, P less than .01). Similarly, the bilirubin-to-albumin ratios were comparable except for a significantly higher ratio at 20 days of age in the ACI/N-j rats (ACI/N-j = 0.70, RHA/N-j = 0.51, P less than .01). Thus, the RHA/N-j strain is unusual in that the jaundiced animals remain healthy. Conversely, the ACI/N-j animals demonstrate a high incidence of kernicterus with mortality.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Effect of dietary carbohydrate on liver and kidney enzyme activities and plasma amino acids in the LA/N-cp rat.

Twenty obese and 20 lean LA/N-cp male rats and 20 male Sprague-Dawley rats were fed a diet containing either 54 percent sucrose or starch for six weeks. After a 14-16 hour fast, rats were killed. Liver and kidney enzyme activities were determined in the LA/N-cp rats while plasma urea and selected amino acids were determined in all rats. Liver glucose-6-phosphatase (G6PASE), fructose-1,6-bisphosphatase (FBPASE), phosphoenolpyruvate carboxykinase (PEPCK), glucose-6-phosphate dehydrogenase (G6PDH), 6-phosphogluconate dehydrogenase (6PGDH), malic enzyme (ME), glucokinase (GK), pyruvate kinase (PK), phosphofructokinase (PFK), glutamic-oxaloacetic-transaminase (GOT), glutamic-pyruvic transaminase (GPT), arginase (ARGASE), arginine-synthase (ARG-SYN) and ornithine transcarbamylase (OTC) levels were significantly affected by phenotype (obese greater than lean). All the above changes in enzyme levels were exaggerated by sucrose-feeding with the exception of PK, PFK, GOT, GPT, ARGASE and ARG-SYN. Kidney cortex G6PASE, PEPCK and ARGASE activities were higher in the obese rats as compared to the lean littermates. Sucrose feeding resulted in higher cortex G6PASE, FBPASE and PEPCK as compared to starch-fed rats. A phenotype effect was noted with plasma glutamate, urea, leucine, isoleucine and valine (obese greater than lean) and a diet effect was seen with aspartate, phenylalanine, leucine and valine (sucrose greater than starch) concentration. Sprague-Dawley rats had higher plasma urea and lower alanine than lean LA/N-cp males. Metabolic obesity in the LA/N-cp rat appears to involve an elevated capacity for pathways of glycolysis, gluconeogensis, lipogenesis and amino acid catabolism in the liver.

Amino Acids

Organic mercury in Greenland birds and mammals.

Muscle, liver and kidney samples of 20 species of birds, seals, whales and polar bear were analyzed for total and organic mercury. Organic mercury concentrations varied considerably between individuals. A general tendency towards age accumulation was found, together with log-linear correlations between organic mercury concentrations in the three tissues. The major part of the muscle mercury was organic (maximum concentration found was 1235 micrograms kg-1 wet wt). This also applied to liver of birds, while in mammal liver organic mercury concentrations approached a level of 2000 micrograms kg-1 wet wt, which was not exceeded even when the total mercury concentration was greater than 100,000 micrograms kg-1 wet wt. The percentage of organic mercury in relation to total mercury in kidney of seals and whales was 10-20% (maximum 982 micrograms organic mercury kg-1 wet wt), while in polar bear it was less than 6% (maximum 217 micrograms kg-1 wet wt). For the monitoring of local food in the Arctic, the simpler and less expensive analysis of total mercury suffices when testing muscle, whereas liver and kidney should be tested for organic mercury as well.

Animals

Influence of genetic obesity, dietary carbohydrate and age on parameters of glucose tolerance and kidney and adrenal gland histology in female SHR/N-corpulent rats.

Young female obese (cp/cp) and lean littermates (?/+) of the recently developed congenic strain, SHR/NIH-corpulent (SHR/N-cp), were fed for 6.5 months isocaloric diets containing 54 percent carbohydrate as either sucrose or starch. Glycemic, lipidemic and renal parameters were determined after 1, 3 and 6 months. Systolic blood pressure and plasma corticosterone levels were determined after 3 months. After 6.5 months rats were killed for histological examination. Obese rats were hyperglycemic following an oral glucose challenge (1 hour response greater than 11.1 mmol/l) (200 mg/dl), hyperinsulinemic, hypertriglyceridemic, and developed proteinuria and mild hypertension. Feeding sucrose, as compared to starch, further increased serum glucose, insulin and triglyceride levels and urinary protein excretion in obese rats and serum triglyceride levels in lean rats. An amelioration of glucose intolerance was observed in sucrose-fed obese rats by 6 months. In contrast to serum insulin levels, serum triglyceride levels increased with age in obese rats. Obese rats exhibited hypertrophy of the kidney and adrenal cortex with abnormal histology. The study demonstrates that obese female SHR/N-cp rats exhibit some of the metabolic and histopathological changes associated with NIDDM in humans and that feeding sucrose, as the source of dietary carbohydrate, further magnifies the expression of diabetes in this model.

Adrenal Cortex

Effects of dietary carbohydrate and phenotype on thyroid hormones and brown adipose tissue locularity in adult LA/N-cp rats.

1. Groups of lean and corpulent LA/N-cp rats were fed isoenergetic diets containing, 54% carbohydrate as maize starch (MS) or sucrose (SU), 20% protein, 16% mixed fats, plus other essential nutrients and fiber from 1.5-9 months of age. Final body weights of corpulent rats were 2-3 times those of their lean littermates, and were greater with SU than MS diet in both phenotypes. 2. Interscapular brown adipose tissue (IBAT) mass was greater in corpulent than lean and was greater with SU than MS diet in lean but not corpulent rats. IBAT cell diameters and adipocyte volumes were generally similar in both phenotypes, and were not markedly affected by dietary carbohydrate type. 3. Brown adipocyte locularity profiles were qualitatively similar in both phenotypes, and were morphologically indicative of thermogenic activity in both phenotypes. Locule profiles of corpulent animals contained a greater proportion of thermogenically less active types IV and V brown adipocytes than similarly fed lean animals, however, and locule distribution profiles were not influenced by diet. 4. Serum T3 concentrations were similar in both phenotypes, were greater in SU than MS lean rats and were not influenced by diet in the corpulent phenotype. In contrast, serum thyroxine concentrations and percent thyroxine uptake were not influenced by diet or phenotype. 5. These results are consistent with a partial impairment in BAT-mediated thermogenic activity in the corpulent phenotype and suggest that obesity in this strain may be due to factors other than biochemically defective brown adipose tissue thermogenesis.

Adipose Tissue, Brown

Effect of dietary carbohydrates on insulin and glucagon receptors in a new model of noninsulin-dependent diabetes-SHR/N-corpulent rat.

A new congenic strain of rat, the SHR/N-corpulent, provides a good model for noninsulin-dependent diabetes and was used in the present study. Corpulent rats as compared to their lean littermates are obese, hyperlipidemic, and severely hyperinsulinemic, and show an age-dependent loss of glucose tolerance. Mild fasting hyperglycemia is seen only in corpulent rats fed sucrose. Since dietary sucrose is more lipogenic than starch and since insulin and glucagon are involved in lipid and carbohydrate metabolism, we studied the effect of the type of dietary carbohydrate on insulin and glucagon levels and their receptors in lean and corpulent SHR/N rats. A significant phenotypic effect was observed (corpulent greater than lean) on plasma levels of triglyceride, cholesterol, and insulin. Dietary sucrose increased these parameters in corpulent rats but not in lean rats. Insulin and glucagon binding to liver plasma membranes was lower in corpulent rats than in lean; decreases were due to fewer receptors without a significant change in affinity. Thus, in corpulent rats, in addition to hyperinsulinemia, fewer glucagon receptors and their failure to be regulated by plasma glucagon levels appear to contribute to the hyperlipidemia. Furthermore, the hyperglycemia observed in sucrose-fed corpulent rats may be due to extreme resistance to insulin despite lower plasma glucagon and fewer glucagon receptors.

Animals