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Biomedical subjects

A B Chapman

Publications and source records attributed to A B Chapman.

At least 19 recordsLinked to original sources

Multilocus effects of the renin-angiotensin-aldosterone system genes on blood pressure response to a thiazide diuretic.

BACKGROUND: The renin-angiotensin-aldosterone (RAA) system regulates blood pressure (BP) levels and influences responses to antihypertensive medications. Variation in RAA system genes has been reported to influence interindividual differences in BP levels and the occurrence of hypertension (HTN). METHODS: We evaluated the relationship between variation in genes of the RAA system and interindividual differences in BP response to a thiazide diuretic. Analyses were carried out in a race- and gender-specific manner in 255 unrelated hypertensive African-Americans (125 men and 130 women) and 246 unrelated hypertensive non-Hispanic Whites (133 men and 113 women). RESULTS: The angiotensin II receptor (AT(1)R) A1166C and angiotensinogen G-6A polymorphisms had a significant effect on systolic BP response to the diuretic in African-American women. Multilocus analyses indicated that the effects of these genes combined additively to influence response. Results of a permutation test to adjust for multiple comparisons and the possible nonindependence among genotypes remained significant at the P=0.003 level. CONCLUSIONS: Among African-American women, particular gene variations in the RAA system have additive effects on BP response to a thiazide diuretic.

Adult↗

Use of gene markers to guide antihypertensive therapy.

Sequencing of the human genome has elevated the potential for genetic information to aid in the prevention, diagnosis, and treatment of common chronic diseases. One beneficial application of genetic information is the identification of variants that influence response to pharmaceutical agents used to lower blood pressure and prevent target organ complications of hypertension. Knowledge of genetic variants that influence blood pressure response to antihypertensive drugs may allow more individualized tailoring of antihypertensive drug therapy, and provide greater insight into the molecular mechanisms regulating blood pressure levels and causing hypertension.

Antihypertensive Agents↗

Antihypertensive pharmacogenetics: getting the right drug into the right patient.

Pharmacogenetic investigation seeks to identify genetic factors that contribute to interpatient and interdrug variation in responses to antihypertensive drug therapy. Classical studies have characterized single gene polymorphisms of drug metabolizing enzymes that are responsible for large interindividual differences in pharmacokinetic responses to several antihypertensive drugs. Progress is being made using candidate gene and genome scanning approaches to identify and characterize many additional genes influencing pharmacodynamic mechanisms that contribute to interindividual differences in responses to antihypertensive drug therapy. Knowledge of polymorphic variation in these genes will help to predict individual patients' blood pressure responses to antihypertensive drug therapy and may also provide new insights into molecular mechanisms responsible for elevation of blood pressure.

Antihypertensive Agents↗

C825T polymorphism of the G protein beta(3)-subunit and antihypertensive response to a thiazide diuretic.

The T allele of the C825T polymorphism of the gene encoding the beta(3)-subunit of G proteins has been associated with increased sodium-hydrogen exchange and low renin in patients with essential hypertension. To assess its association with blood pressure response to diuretic therapy, we measured the C825T polymorphism in 197 blacks (134 men, 63 women) and 190 non-Hispanic whites (76 men, 114 women) with essential hypertension (mean+/-SD age 48+/-7 years), who underwent monotherapy with hydrochlorothiazide for 4 weeks. Mean declines in systolic and diastolic blood pressures were 6+/-2 (P:<0.001) and 5+/-1 (P:<0.001) mm Hg greater, respectively, in TT than in CC homozygotes. Responses in heterozygotes were intermediate between the homozygous groups. Other univariate predictors of greater blood pressure responses included black race, female gender, higher pretreatment blood pressure, older age, lower waist-to-hip ratio, and measures of lower renin-angiotensin-aldosterone system activity. After the effects of the other predictors were considered, the TT genotype remained a significant predictor of greater declines in systolic and diastolic blood pressures. Thus, the C825T polymorphism of the G protein beta(3)-subunit may help identify patients with essential hypertension who are more responsive to diuretic therapy.

Adult↗

Validity of the aldosterone-renin ratio used to screen for primary aldosteronism.

OBJECTIVE: To determine whether the calculated ratio of plasma aldosterone concentration (PAC) to plasma renin activity (PRA), a proposed screening test for primary aldosteronism, provides a renin-independent measure of circulating aldosterone that is suitable to judge whether PAC is inappropriately elevated relative to PRA. SUBJECTS AND METHODS: This study consisting of 221 black and 276 white subjects with previously diagnosed essential hypertension was conducted between 1996 and 2000. Antihypertensive drugs were withdrawn for at least 4 weeks; PAC and PRA were measured while subjects were supine and then seated after 30 minutes of ambulation. The seated measurements were repeated after 4 weeks of oral diuretic therapy with hydrochlorothiazide (25 mg/d). RESULTS: The variation in the aldosterone-renin ratio was strongly and inversely dependent on PRA (R2=0.71; P<.001). When subjects changed position from supine to seated, the increase in mean +/- SD PRA (from 1.18 +/- 1.06 to 1.31 +/- 1.19 ng x mL(-1) x h(-1); P<.001) was associated with an increase in the mean ratio (from 18.6 +/- 52.8 to 25.8 +/- 38.1 h x 10(2); P<.001), whereas the increase in mean +/- SD PRA in response to diuretic therapy (from 1.31 +/- 1.19 to 2.72 +/- 2.67 ng x mL(-1) x h(-1); P=.007) was associated with a decrease in the mean ratio (from 25.8 +/- 38.1 to 16.4 +/- 31.6 h 10(2); P<.001). CONCLUSION: In patients with previously diagnosed essential hypertension, calculation of the aldosterone-renin ratio does not provide a renin-independent measure of circulating aldosterone that is suitable for determining whether PAC is elevated relative to PRA. Because elevation of the aldosterone-renin ratio is predominantly an indicator of low PRA, its perceived value in screening for primary aldosteronism most likely derives from additional diagnostic tests being done in patients with low-renin hypertension.

Age Distribution↗

Effect of antihypertensive therapy on renal function and urinary albumin excretion in hypertensive patients with autosomal dominant polycystic kidney disease.

Hypertensive patients with autosomal dominant polycystic kidney disease (ADPKD) have a faster progression to end-stage renal disease (ESRD) than their normotensive counterparts. The aim of this prospective, randomized study is to compare the effects of the calcium channel blocker amlodipine and the angiotensin-converting enzyme inhibitor enalapril as first-line therapy on blood pressure, renal function, and urinary albumin excretion in hypertensive patients with ADPKD. Twenty-four patients with ADPKD with hypertension with creatinine clearances (Ccrs) greater than 50 mL/min/1.73 m(2) were included in the study. Twelve patients received amlodipine (mean dose, 9 mg/d), and 12 patients received enalapril (mean dose, 17 mg/d). The patients were followed up for 5 years. Baseline mean arterial pressures, which were 109 +/- 3 mm Hg in the amlodipine group and 108 +/- 3 mm Hg in the enalapril group, decreased significantly after 1 year of follow-up (amlodipine, 96 +/- 3 mm Hg; P < 0.005; enalapril, 89 +/- 2 mm Hg; P < 0.0005) and remained stable at year 5 (amlodipine, 97 +/- 3 mm Hg; P < 0.0005 versus baseline; enalapril, 94 +/- 3 mm Hg; P < 0.005 versus baseline). Ccrs, which were 83 +/- 5 mL/min/1.73 m(2) in the amlodipine group and 77 +/- 6 mL/min/1.73 m(2) in the enalapril group, remained stable after 1 year of follow-up and decreased significantly at year 3 in both groups (amlodipine, 67 +/- 5 mL/min/1.73 m(2); P < 0.01 versus year 1 and baseline; enalapril, 58 +/- 4 mL/min/1.73 m(2); P < 0.05 versus year 1 and P < 0.0005 versus baseline) with no significant change thereafter. No change was observed in urinary albumin-creatinine ratio in the amlodipine group (baseline, 68 +/- 21 mg/g; year 1, 52 +/- 21 mg/g; year 5, 148 +/- 74 mg/g), whereas it decreased significantly in the enalapril group at year 1 (baseline, 23 +/- 4 mg/g; year 1, 13 +/- 3 mg/g; P < 0.05) and remained stable until the end of the study at year 5 (14 +/- 6 mg/g). The investigators concluded that blood pressure was similar in both groups but only enalapril had a significant effect to sustain decreased urinary albumin excretion for a 5-year follow-up. Although proteinuria has been considered a surrogate of renal disease progression, further studies will be necessary to confirm this hypothesis in ADPKD, because after 5 years, no differences in renal function were observed between the enalapril and amlodipine groups. In comparison with patients with ADPKD with uncontrolled hypertension, effective control of blood pressure, as undertaken in the present study, should delay the onset of ESRD by approximately 15 years.

Adult↗

Reversal of left ventricular hypertrophy with angiotensin converting enzyme inhibition in hypertensive patients with autosomal dominant polycystic kidney disease.

BACKGROUND: Hypertension occurs commonly and early in the natural history of autosomal dominant polycystic kidney disease (ADPKD), affecting both renal and patient outcome. Activation of the renin angiotensin aldosterone system due to cyst expansion and local renal ischaemia plays an important role in the development of ADPKD related hypertension and left ventricular hypertrophy (LVH), a known important risk factor for cardiovascular morbidity and mortality. The aim of this study was to investigate the effects of an angiotensin converting enzyme (ACE) inhibitor, enalapril, on renal function, blood pressure and LVH in hypertensive ADPKD patients. METHODS: Fourteen hypertensive ADPKD patients (11 men, 3 women; mean age: 40 years) were included in the study. All patients had LVH and creatinine clearance (Cer) greater than 50 ml/min/1.73 m2. The patients were followed for 7 years on enalapril therapy. The effects of enalapril on renal function, blood pressure and LVH were investigated. RESULTS: Baseline measurements of mean arterial pressure (MAP), Ccr and left ventricular mass index (LVMI) were 110 +/- 2 mmHg, 84 +/- 6 ml/min/1.73 m2 and 146 +/- 4 g/m2, respectively. After one year of enalapril therapy there was a significant decrease in MAP (94 +/- 3 mmHg, P < 0.005) which remained stable until the end of the study at 7 years (94 +/- 1 mmHg, P < 0.005 vs baseline). There was also a significant decrease in LVMI (131 +/- 6 g/m2, P < 0.05) after year 1 which continued to decrease until the end of the study reaching 98 +/- 6 g/m2 (P < 0.01 vs year 1 and baseline). Although Ccr remained stable after year 1, a significant decrease was observed after 7 years of follow-up (59 +/- 6 ml/min, P < 0.001 vs year 1 and baseline). CONCLUSIONS: ACE inhibition in hypertensive ADPKD patients provided long-term reversal of LVH in association with a mean 3.6 ml/min/year decline of Ccr. These preliminary results have potential important implications for cardiovascular and renal protection in ADPKD.

Adult↗

Temporal relationships between hormonal and hemodynamic changes in early human pregnancy.

BACKGROUND: The systemic hemodynamic profile of human pregnancy is characterized by a decrease in mean arterial pressure, a rise in cardiac output and plasma volume in association with an increase in renal plasma flow and glomerular filtration rate. The factors and the time course responsible for the initial hemodynamic changes seen in human pregnancy have not been completely documented. We hypothesize that systemic and renal hemodynamic changes occur early, prior to the presence of the fetal-placental unit. METHODS: Thirteen women were studied prior to and immediately following conception in identical fashion at gestational weeks 6, 8, 10, 12, 24 and 36. Individuals underwent mean arterial pressure, cardiac output, inulin and PAH clearance determinations. RESULTS: Mean arterial pressure decreased by six weeks gestation (mid follicular 81.5 +/- 2.6 vs. six weeks 68.7 +/- 2.0 mm tig, P < 0.001) in association with a significant increase in cardiac output, a decrease in systemic vascular resistance and an increase in plasma volume. Renal plasma flow and glomerular filtration rate increased by six weeks gestation. Plasma renin activity and aldosterone concentration increased significantly by six weeks, whereas norepinephrine levels did not change throughout pregnancy. Atrial natriuretic peptide levels increased later, at 12 weeks gestation. Plasma cGMP levels decreased and cGMP clearance increased by six and eight weeks, respectively. CONCLUSIONS: Peripheral vasodilation occurs early in pregnancy prior to full placentation in association with renal vasodilation and activation of the renin-angiotensin-aldosterone system. Plasma volume expansion occurs early, followed later by increases in ANP concentration, suggesting that ANP increases in response to changes in intravasular volume.

Adult↗

Systemic and renal hemodynamic changes in the luteal phase of the menstrual cycle mimic early pregnancy.

Blood pressure decreases during early pregnancy in association with a decrease in peripheral vascular resistance and increases in renal plasma flow and glomerular filtration rate. These early changes suggest a potential association with corpora lutea function. To determine whether peripheral vasodilation occurs following ovulation, we studied 16 healthy women in the midfollicular and midluteal phases of the menstrual cycle. A significant decrease in mean arterial pressure in the midluteal phase of the cycle (midfollicular of 81.7 +/- 2.0 vs. midluteal of 75.4 +/- 2.3 mmHg, P < 0.005) was found in association with a decrease in systemic vascular resistance and an increase in cardiac output. Renal plasma flow and glomerular filtration rate increased. Plasma renin activity and aldosterone concentration increased significantly in the luteal phase accompanied by a decrease in atrial natriuretic peptide concentration. Serum sodium, chloride, and bicarbonate concentrations and osmolarity also declined significantly in the midluteal phase of the menstrual cycle. Urinary adenosine 3',5'-cyclic monophosphate (cAMP) excretion increased in the luteal compared with the follicular phase, whereas no changes in urinary cGMP or NO2/NO3 excretion were found. Thus peripheral vasodilation occurs in the luteal phase of the normal menstrual cycle in association with an increase in renal plasma flow and filtration. Activation of the renin-angiotensin-aldosterone axis is found in the luteal phase of the menstrual cycle. These changes are accompanied by an increase in urinary cAMP excretion indicating potential vasodilating mediators responsible for the observed hemodynamic changes.

Adult↗

Left ventricular hypertrophy in autosomal dominant polycystic kidney disease.

Cardiovascular complications are the most common cause of morbidity and mortality in patients with autosomal dominant polycystic kidney disease (ADPKD). To understand this relationship, known cardiovascular risk factors were examined in ADPKD. Left ventricular hypertrophy (LVH) is a known, important risk factor for premature cardiovascular death in patients with essential hypertension. Hypertension is known to occur frequently and early in ADPKD patients. The frequency of LVH in ADPKD patients and its relation with hypertension and other risk factors, however, is not known. In this study, echocardiographic tests were performed in 116 consecutive adult ADPKD patients and 77 healthy control subjects. There was a significantly higher frequency of LVH in ADPKD men (46 versus 20%, P < 0.05) and women (37 versus 12%, P < 0.005) compared with control subjects. LVH in ADPKD patients was associated with higher systolic and diastolic arterial BP. There also was an association between LVH, diminished renal function, and increased renal volume. When comparing ADPKD patients with and without LVH, the former were older, weighed more, had a higher prevalence of hypertension, and had a lower hematocrit value and more renal impairment. LVH was also present in 23% of normotensive ADPKD patients and 16% of healthy control subjects (P = NS), but did not correlate with BP. The role of BP as a contributing factor to LVH in ADPKD patients may be due in part to earlier onset and inadequate treatment.

Adult↗

Trypanosoma brucei RNA polymerase II is phosphorylated in the absence of carboxyl-terminal domain heptapeptide repeats.

Formation of an RNA polymerase II transcription initiation complex requires binding of a polymerase that contains a non-phosphorylated largest subunit carboxyl-terminal domain (CTD). Polymerase binding is followed by elongation after phosphorylation of the CTD by a CTD kinase. Phosphorylation sites are within the repeating heptapeptide motifs which characterize the CTD of all eukaryotic RNA polymerase IIs. In contrast to all other eukaryotes studied, the trypanosome genome contains two genetic loci which encode the large subunit of RNA polymerase II; both genes lack CTD heptapeptide repeat structures. We have examined whether Trypanosoma brucei RNA polymerase II, despite its unique CTD domain, is phosphorylated when isolated from elongating transcription complexes. Elongating trypanosome RNA polymerases were photoaffinity labeled during nuclear run-on assays. The identity of the labeled proteins was established by immunoblotting and immunoprecipitation using polymerase-specific antisera. Analysis of the largest subunit of RNA polymerase II revealed the expected 195-kDa species and an additional larger 220-kDa species. The apparent molecular weight of this larger form of RNA polymerase II decreased incrementally as a function of incubation with increasing concentrations of calf intestinal phosphatase. These results show that extensive phosphorylation of the largest subunit of RNA polymerase-II is a conserved feature between trypanosomes and higher eukaryotes despite the absence of a typical CTD domain.

Affinity Labels↗

Pregnancy outcome and its relationship to progression of renal failure in autosomal dominant polycystic kidney disease.

The effect of pregnancy on renal disease has not been defined in autosomal dominant polycystic kidney disease (ADPKD). Therefore, fetal and maternal complication rates in ADPKD women as compared with those in unaffected family members (NADPKD) were assessed. Two hundred thirty-five ADPKD and 108 NADPKD women with 605 and 244 pregnancies, respectively, were studied. Overall, fetal complication rates were similar between ADPKD and NADPKD women (32.6 versus 26.2%). Fetal complications were more common in ADPKD women when they were older than 30 yr. Increased fetal prematurity rates were found in preeclamptic ADPKD women as compared with normotensive ADPKD women (28 versus 10%; P < 0.01). More maternal complications occurred in ADPKD as compared with NADPKD women (35 versus 19%; P < 0.001), with preexisting hypertension being the most important risk factor for a maternal complication to occur. Normotensive ADPKD women who developed preeclampsia were more likely to develop chronic hypertension as compared with those without preeclampsia (89 versus 58%; P < 0.01). Hypertensive ADPKD women with four or more pregnancies had lower creatinine clearances than age-adjusted hypertensive ADPKD women with fewer than four pregnancies (49 +/- 5 versus 66 +/- 3 mL/min per 1.73 m2; P < 0.01). Therefore, normotensive ADPKD women usually have successful, uncomplicated pregnancies. However, hypertensive ADPKD women are at high risk for fetal and maternal complications and measures should be taken to prevent the development of preeclampsia in these women.

Adult↗

Overt proteinuria and microalbuminuria in autosomal dominant polycystic kidney disease.

The amount of proteinuria is a prognostic indicator in a variety of glomerular disorders. To examine the importance of urinary protein excretion in autosomal dominant polycystic kidney disease, this study determined the clinical characteristics of autosomal dominant polycystic kidney disease patients with established proteinuria and the frequency of microalbuminuria in hypertensive autosomal dominant polycystic kidney disease patients without proteinuria. In 270 autosomal dominant polycystic kidney disease patients, mean 24-h urinary protein excretion was 259 +/- 22 mg/day. Forty-eight of 270 autosomal dominant poly-cystic kidney disease patients had over proteinuria (> 300 mg/day). The patients with established proteinuria had higher mean arterial pressures, larger renal volumes, and lower creatinine clearances than did their nonproteinuric counterparts (all P < 0.0001), a greater pack year smoking history (P < 0.05), and the projection of a more aggressive course of renal disease (P < 0.05). All autosomal dominant polycystic kidney disease patients with established proteinuria were hypertensive, as compared with 67% without established proteinuria (P < 0.001). Forty-nine patients with hypertension and left ventricular hypertrophy without established proteinuria were examined for microalbuminuria; 41% demonstrated microalbuminuria. Those with microalbuminuria had higher mean arterial pressure, larger renal volumes and increased filtration fraction. Therefore, established proteinuria and microalbuminuria in autosomal dominant polycystic kidney disease patients are associated with increased mean arterial pressure and more severe renal cystic involvement.

Adult↗

Trypanosoma vivax: evidence for only one RNA polymerase II largest subunit gene in a trypanosome which undergoes antigenic variation.

Previous studies suggested a correlation between antigenic variation in Kinetoplastida and the presence of two RNA polymerase (pol) II largest subunit genes in these organisms. We have found that Trypanosoma vivax, an African trypanosome which undergoes antigenic variation, is an exception, and has only one pol II largest subunit gene, indicating that probably neither of the two pol II genes found in other African trypanosomes is uniquely required for antigenic variation.

Animals↗

Intracranial aneurysms in autosomal dominant polycystic kidney disease.

BACKGROUND AND METHODS: Intracranial aneurysms are a feature of autosomal dominant polycystic kidney disease, but their prevalence is uncertain. We studied 92 subjects with autosomal dominant polycystic kidney disease who had no symptoms or signs of any neurologic disorder. To determine the prevalence of intracranial aneurysms, we performed high-resolution computed tomography (CT) in 60 subjects, four-vessel cerebral angiography in 21, and both procedures in 11. RESULTS: Four of the 88 subjects in whom the radiologic studies were successfully completed had intracranial aneurysms (4 percent; 95 percent confidence interval, 0.1 to 9 percent), as compared with the prevalence of 1 percent reported for an angiographic study of the general population. Three of the four subjects had multiple aneurysms. Seven subjects for whom the results of CT studies were suspicious underwent cerebral angiography: two had aneurysms, and five had normal vascular structures that accounted for the suspicious results of tomography. Four subjects who had normal CT imaging studies also had normal angiographic examinations. Eight of the 32 subjects who underwent angiography (25 percent) had transient complications, as compared with 22 of 220 control subjects (10 percent) who did not have polycystic kidney disease (P less than 0.05). We could not identify any risk factor in these subjects that was related to the occurrence of aneurysm. CONCLUSIONS: Asymptomatic intracranial aneurysms appear to be more frequent in people with polycystic kidney disease than in the general population, although our 95 percent confidence interval includes the possibility of no difference. Because cerebral angiography is associated with increased morbidity in people with polycystic kidney disease, we recommend high-resolution CT as a screening test.

Adolescent↗