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Biomedical subjects

K Horky

Publications and source records attributed to K Horky.

12 recordsLinked to original sources

Y-chromosome transfer induces changes in blood pressure and blood lipids in SHR.

Previous studies with chromosome-Y consomic strains of spontaneously hypertensive rats (SHR) and Wistar-Kyoto rats suggest that a quantitative trait locus for blood pressure regulation exists on chromosome Y. To test this hypothesis in the SHR-Brown Norway (BN) model and to study the effects of chromosome Y on lipid and carbohydrate metabolism, we produced a new consomic strain of SHR carrying the Y chromosome transferred from the BN rat. We found that replacing the SHR Y chromosome with the BN Y chromosome resulted in significant decreases in systolic and diastolic blood pressures in the SHR.BN-Y consomic strain (P<0.05). To elicit possible dietary-induced variation in lipid and glucose metabolism between the SHR progenitor and chromosome-Y consomic strains, we fed rats a high-fructose diet for 15 days in addition to the normal diet. On the high-fructose diet, the SHR.BN-Y consomic rats exhibited significantly increased levels of serum triglycerides and decreased levels of serum HDL cholesterol versus the SHR progenitor rats. Glucose tolerance and insulin/glucose ratios, however, were similar in both strains on both normal and high-fructose diets. These findings provide direct evidence that a gene or genes on chromosome Y contribute to the pathogenesis of spontaneous hypertension in the SHR-BN model. These results also indicate that transfer of the Y chromosome from the BN rat onto the SHR background exacerbates dietary-induced dyslipidemia in SHR. Thus, genetic variation in genes on the Y chromosome may contribute to variation in blood pressure and lipid levels and may influence the risk for cardiovascular disease.

Animals↗

Genetics of Cd36 and the clustering of multiple cardiovascular risk factors in spontaneous hypertension.

Disorders of carbohydrate and lipid metabolism have been reported to cluster in patients with essential hypertension and in spontaneously hypertensive rats (SHRs). A deletion in the Cd36 gene on chromosome 4 has recently been implicated in defective carbohydrate and lipid metabolism in isolated adipocytes from SHRs. However, the role of Cd36 and chromosome 4 in the control of blood pressure and systemic cardiovascular risk factors in SHRs is unknown. In the SHR. BN-Il6/Npy congenic strain, we have found that transfer of a segment of chromosome 4 (including Cd36) from the Brown Norway (BN) rat onto the SHR background induces reductions in blood pressure and ameliorates dietary-induced glucose intolerance, hyperinsulinemia, and hypertriglyceridemia. These results demonstrate that a single chromosome region can influence a broad spectrum of cardiovascular risk factors involved in the hypertension metabolic syndrome. However, analysis of Cd36 genotypes in the SHR and stroke-prone SHR strains indicates that the deletion variant of Cd36 was not critical to the initial selection for hypertension in the SHR model. Thus, the ability of chromosome 4 to influence multiple cardiovascular risk factors, including hypertension, may depend on linkage of Cd36 to other genes trapped within the differential segment of the SHR. BN-Il6/Npy strain.

Animals↗

Development of a flow cytometric test for the detection of D-positive fetal cells after fetomaternal hemorrhage and a survey of the prevalence in D-negative women.

A sensitive test for the presence of D-positive fetal red blood cells (RBCs) in the maternal circulation of D-negative women has been developed. It was used to investigate the possibility that the occasional failure in preventing alloimmunization might be due to the administration of inadequate amounts of prophylactic anti-D Rh immune globulin. The standard dose in Australia contains 125 microg of antibody, and can suppress immunization by an estimated 6 mL of packed D-positive RBCs. A fetomaternal hemorrhage (FMH) of this volume is detectable in the maternal circulation as approximately 0.25 percent of the total RBCs. Our test utilizes a commercially available human monoclonal IgG anti-D that has been biotinylated and used with a dye-conjugated streptavidin. Flow cytometry is used to quantitate fluorescing D-positive RBCs. To date, 2,288 tests have been performed on blood samples from D-negative women attending local antenatal clinics or at the time of delivery. Evidence for an FMH has been obtained in six cases (0.26%). In one case, the FMH was only 0.1 percent, and in another (confirmed by the Kleihauer-Betke method), fetal cells constituted only 0.2 percent. Additional Rh immune globulin was not given to these patients. In the other four cases, the D-positive fetal cells were estimated to be 0.7,0.5,0.5, and 0.4 percent, and additional prophylactic Rh immune globulin was administered. Although the prevalence of FMH is low, screening D- negative women at risk of alloimmunization has proved to be simple, fast, and inexpensive.

Journal Article↗

Unilateral juxtaglomerular hyperplasia, hyperreninism and hypokalaemia relieved by nephrectomy.

Two women with spontaneous hypokalemia (1 normotensive, 1 hypertensive in the absence of renal artery stenosis), underwent unilateral nephrectomy because of angiographic and/or split renin-based suspicion of a reninoma. The normotensive patient clinically resembled Bartter syndrome but had some elements suggestive of a renin-secreting tumour, justifying surgical exploration and resection. The hypertensive patient presented clinically as a typical reninoma except for negative angiography. Surprisingly, the histology of the kidneys in both cases demonstrated juxtaglomerular hyperplasia without evidence of reninoma. The postoperative follow-up (8 and 19 yrs, respectively) has shown in the normotensive patient a considerable improvement in the hyper-reninism and previously uncontrollable hypokalaemia and in the hypertensive patient a complete normalisation of BP, renin and electrolyte status. Although the histological condition of the contralateral kidneys remains unknown in both patients the preoperative lateralisation of hyper-reninism to one kidney, the postoperative complete relief of the hyper-reninism in the hypertensive patient after uninephrectomy and its decrease, exceeding that corresponding to the removal of one kidney in the normotensive patient, suggest that the juxtaglomerular hyperplasia might have been unilateral or asymmetrical and that nephrectomy may, unexpectedly, relieve the hyper-reninism caused by juxtaglomerular hyperplasia. An increased unilateral susceptibility to trophic or renin-releasing factors or an asymmetrical abnormality in the macula densa-initiated mechanism of juxtaglomerular hyperplasia may be implicated in this disorder.

Adult↗