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Biomedical subjects

C M Wei

Publications and source records attributed to C M Wei.

At least 37 records · Page 2Linked to original sources

Presence of C-type natriuretic peptide in human kidney and urine.

The current study was undertaken to investigate the presence of CNP immunoreactivity in both human kidney and urine. Immunohistochemical staining with an indirect immunoperoxidase method utilizing an antibody which is 100% cross-reactive to both CNP-53 and CNP-22 was performed on five human kidney specimens (three biopsies of normal cadaveric donor kidneys and two of normal autopsy specimens). CNP immunoreactivity was positive in proximal, distal and medullary collecting duct tubular cells in a cytoplasmic and granular staining pattern. CNP immunoreactivity was also determined in the urine of five healthy volunteers utilizing a sensitive and specific double-antibody radioimmunoassay with a mean concentration of 10.8 +/- 1.0 pg/ml. With the utilization of high pressure liquid chromatography, this immunoreactivity proved to be consistent with both the low molecular weight form, CNP-22, as well as the high molecular weight form, CNP-53. Urinary excretion of CNP was also measured in normal subjects (N = 5) and in patients with congestive heart failure (CHF, N = 6). CHF patients excreted over three times more CNP than normals (27.2 +/- 2.8 vs. 8.7 +/- 0.81 pg/min, P < 0.004) despite no difference between the two groups in plasma CNP concentrations (6.97 +/- 0.28 vs. 8.08 +/- 1.52 pg/ml, P = NS). This study demonstrates for the first time the presence of CNP immunoreactivity in human kidney and suggests that renal tubular cells may be an additional non-vascular site of synthesis for this cardiorenal acting peptide. This study also demonstrates an increase in urinary CNP excretion in congestive heart failure.

Adult↗

CNP is present in canine renal tubular cells and secreted by cultured opossum kidney cells.

C-type natriuretic peptide (CNP) is a vasoactive and antimitogenic peptide that is structurally similar but genetically distinct from atrial natriuretic peptide. While first discovered in the brain, CNP has been shown to be produced by endothelial cells and may function in a paracrine and autocrine fashion in the control of vascular tone. Recently, CNP immunoreactivity and B-type natriuretic peptide receptors (NPR-B), for which CNP is a specific ligand, have been identified in the kidney. The present study was designed to determine whether renal epithelial cells produce and secrete CNP and whether CNP immunoreactivity is present in canine kidney. Opossum kidney (OK) cells that express proximal tubular cell characteristics were incubated for 6 h in fetal calf serum-free Dulbecco's modified Eagle's medium (DMEM). CNP immunoreactivity was measured in the preincubation and 6-h conditioned media by radioimmunoassay (RIA) using a specific antibody to CNP-22. Furthermore the molecular form of this CNP-like protein was determined by reverse-phase high-performance liquid chromatography (HPLC), and intracellular localization of the CNP immunoreactivity was determined by immunohistochemical staining. CNP immunoreactivity was also determined in renal tissue from dogs subjected to saline or endothelin infusion. Six-hour incubation in DMEM resulted in accumulation of CNP immunoreactivity (baseline below detection level vs. 6 h = 117.3 +/- 8.3 pg/ml, P < 0.001). Intracellular CNP concentration determined after sonication was 1.9 +/- 0.2 micrograms/g protein, and immunohistochemical staining for CNP was markedly positive in the cytoplasm.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Endothelin in human congestive heart failure.

BACKGROUND: Although recent investigations report the elevation of plasma endothelin (ET) in congestive heart failure (CHF), it remains unclear if this elevation is that of the biologically active peptide ET-1 or of its precursor big-ET. Furthermore, it is unclear if such elevation is associated with increased myocardial ET and if the molecular form from cardiac tissue is altered ET. Last, it remains to be established whether circulating ET is increased at the earliest stage of CHF in patients with asymptomatic left ventricular dysfunction and correlates with the magnitude of ventricular dysfunction. METHODS AND RESULTS: The present study was designed to investigate concentrations and molecular forms of ET in plasma and cardiac tissue in healthy subjects and CHF patients with New York Heart Association (NYHA) class I through IV using cardiac radionuclide angiogram, cardiac myocardial biopsy, radioimmunoassay, gel permeation chromatography (GPC), and immunohistochemical staining (IHCS). Plasma ET was increased only in patients with moderate (NYHA class III) or severe (NYHA class IV) CHF compared with healthy subjects and individuals with asymptomatic (NYHA class I) or mild (NYHA class II) CHF. The elevation of circulating ET in CHF showed a negative correlation with left ventricular ejection fraction and cardiac index and a positive correlation with functional class and left ventricular end-diastolic volume index. GPC demonstrated that immunoreactive plasma ET was ET-1 in healthy subjects and both mature ET-1 and its precursor big-ET in severe CHF patients, with big-ET the predominant molecular form. Cardiac tissue concentrations and IHCS revealed ET presence in healthy atrial and ventricular tissue, which were not different in severe CHF. GPC revealed that the molecular form of cardiac ET was ET-1 in both healthy and CHF hearts. CONCLUSIONS: The present study establishes for the first time that the elevation of plasma ET in severe human CHF represents principally elevation of big-ET. Second, ET is present in healthy and failing myocardia, and its activity by both immunohistochemistry and radioimmunoassay is not changed in CHF. Furthermore, the elevated plasma ET is characteristic of severe CHF and not asymptomatic or mild CHF. In addition, the degree of plasma elevation of ET correlates with the magnitude of alterations in cardiac hemodynamics and functional class. The present study confirms and extends previous investigations of ET in human CHF and establishes the evolution of circulating and local cardiac ET in the spectrum of human CHF.

Chromatography, Gel↗

Modulation of exogenous and endogenous atrial natriuretic peptide by a receptor inhibitor.

Atrial natriuretic peptide is an important peptide hormone of cardiac origin that functions to regulate cardiac preload via the regulation of sodium excretion. This natriuretic action occurs through activation of the particulate guanylyl cyclase-linked natriuretic peptide-A receptor. HS-142-1 is a newly discovered antagonist of the natriuretic peptide-A receptor that permits insight into the functional role of atrial natriuretic peptide in cardiorenal homeostasis. The first objective of this study was to define for the first time the intrarenal action of HS-142-1 on exogenous atrial natriuretic peptide-mediated natriuresis in anesthetized normal dogs. In group 1 (n = 6), which received intravenous atrial natriuretic peptide at 100 ng/kg per minute, intrarenal HS-142-1 (0.5 mg/kg bolus) attenuated atrial natriuretic peptide-induced increases in glomerular filtration rate, urine flow, sodium excretion, and renal cyclic GMP generation and decreases in distal tubular sodium reabsorption. The second objective was to determine whether endogenous atrial natriuretic peptide participates in the regulation of basal sodium excretion. In group 2 (n = 6), intrarenal HS-142-1 alone decreased both absolute and fractional sodium excretion and renal cyclic GMP generation and increased distal tubular sodium reabsorption. These studies demonstrate that HS-142-1 markedly attenuates exogenous atrial natriuretic peptide-mediated natriuresis via enhancement of distal tubular reabsorption and blunting of increases in glomerular filtration rate. Second, the current studies support a functional role for endogenous atrial natriuretic peptide in the regulation of basal sodium excretion.

Animals↗

Atrial natriuretic peptide and C-type natriuretic peptide in spontaneously hypertensive rats and their vasorelaxing actions in vitro.

The present study determined circulating concentrations of atrial natriuretic peptide (ANP) and C-type natriuretic peptide (CNP) in Wistar-Kyoto (WKY) rats and spontaneously hypertensive rats (SHR) and also investigated the vasorelaxing action of ANP and CNP on isolated contracted aorta. We also defined the vasorelaxing action of a novel and newly synthesized 27-amino acid chimera of ANP and CNP termed vasonatrin peptide (VNP), which we compared with ANP and CNP in WKY rats and SHR. Plasma and urinary cyclic GMP and sodium excretion were also investigated. Plasma ANP was increased in SHR in contrast to no change in circulating CNP. Plasma and urinary cyclic GMP and sodium excretion were no different between WKY rats and SHR. In WKY rats maximal relaxations to VNP in aortic rings without endothelium were greater than those to ANP and CNP. In SHR aortic rings the potency of VNP relaxation was preserved, the actions of ANP were enhanced, and the actions of CNP were markedly impaired. In association with these vasorelaxing actions, these data suggest that (1) circulating CNP is not different in SHR and WKY rats, but the aortic relaxing action of CNP is markedly impaired in SHR; (2) endogenous plasma ANP is significantly increased in SHR without associated increases in plasma or urinary cyclic GMP; (3) there is an increase in aortic relaxation to exogenous ANP in SHR; and (4) VNP has a potent endothelium-independent aortic relaxing action in both WKY rats and SHR.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Action of C-type natriuretic peptide in isolated canine arteries and veins.

C-type natriuretic peptide (CNP) is a hormone that shares structural homology to atrial natriuretic peptide (ANP); however, distinct receptors have been found for each in cultured aortic endothelial and smooth muscle cells. CNP in vivo reduces arterial pressure, atrial pressures, and cardiac output. These actions are consistent with a decrease in cardiac preload. Therefore, the current studies were designed to test the hypothesis that CNP is a vasodilator distinct from ANP. Rings of canine renal and saphenous arteries and renal, saphenous, and femoral veins with and without endothelium were suspended to measure isometric force in an organ chamber. CNP caused significant concentration-dependent relaxations in veins with and without endothelium contracted with phenylephrine (10(-6) log M). In marked contrast, ANP caused no significant relaxation in veins either with or without endothelium. In arterial rings, responses to the peptides were heterogeneous. ANP caused relaxation in renal but not saphenous arteries. CNP induced modest and comparable relaxation in rings of saphenous but not renal arteries with and without endothelium. These results demonstrate that: 1) CNP and not ANP is a relaxing factor of isolated peripheral canine veins, and 2) the responses of arteries to ANP and CNP are heterogeneous. These findings support a distinct biological role for CNP in the regulation of cardiovascular tone.

Animals↗

C-type natriuretic peptide: a selective cardiovascular peptide.

Studies were performed in three groups of anesthetized dogs to compare the structurally related peptides atrial natriuretic peptide (ANP) and C-type natriuretic peptide (CNP). Group 1 (n = 5) and group 2 (n = 4) received intravenous infusions of CNP or ANP respectively at doses of 10 ng.kg-1.min-1 and 100 ng.kg-1.min-1. Group 3 (n = 5) received CNP intrarenally at doses of 1 ng.kg-1.min-1 and 5 ng.kg-1.min-1. Intravenous infusion of CNP resulted in a greater decrease in blood pressure when compared with ANP. This marked decrease in blood pressure observed with CNP was associated with a significantly smaller increase in guanosine 3',5'-cyclic monophosphate (cGMP). In contrast, neither intravenous nor intrarenal administration of CNP was associated with natriuresis as observed with ANP. The current study also demonstrates the presence of CNP immunoreactivity in canine plasma at low picomolar concentrations. Further characterization by gel permeation chromatography demonstrated that circulating CNP immunoreactivity corresponds to the 22-amino acid form of the peptide. In conclusion, this study demonstrates that CNP circulates in low picomolar concentrations and is potently vasoactive in vivo, suggesting a potential role in the regulation of vascular tone.

Animals↗

Natriuretic peptide system in human heart failure.

BACKGROUND: Atrial natriuretic peptide (ANP), brain natriuretic peptide (BNP), and C-type natriuretic peptide (CNP) are a family of structurally related peptides that participate in the integrated control of renal and cardiovascular function. Previous studies suggest a functional role for these hormonal peptides in cardiorenal regulation in congestive heart failure (CHF). METHODS AND RESULTS: The present studies were performed in normal subjects (n = 6) and in patients with mild (New York Heart Association [NYHA] class I to II, n = 20) and severe (NYHA class III to IV, n = 20) CHF by use of radioimmunoassay and immunohistochemical staining (IHCS). Plasma ANP was significantly increased in both mild and severe CHF compared with normal subjects. In contrast, plasma BNP was only moderately increased in the severe CHF group, and plasma CNP concentration was unchanged in CHF compared with normal subjects. Atrial tissue concentrations of the natriuretic peptides did not parallel circulating concentrations. ANP predominated in normal atrial tissue, but BNP predominated in CHF. In ventricular tissue, IHCS staining was present for all three peptides in normal ventricular myocardium and was markedly enhanced in CHF. CONCLUSIONS: These studies support a differential regulation of ANP, BNP, and CNP circulating concentrations and tissue activity in human CHF.

Atrial Natriuretic Factor↗

Circulating beta-atrial natriuretic factor in congestive heart failure in humans.

BACKGROUND: beta-Atrial natriuretic factor (beta-ANF) is an antiparallel dimer of alpha-ANF (alpha-ANF) with diminished cyclic GMP generation in vitro. To date, the presence of beta-ANF in the circulation of humans with severe congestive heart failure (CHF) remains controversial. The current study was designed to determine the presence and magnitude of circulating beta-ANF in severe CHF, to correlate plasma beta-ANF with the degree of ventricular dysfunction, and to investigate the role of human plasma and atrial tissue in the degradation of beta-ANF. METHODS AND RESULTS: Venous plasma samples were obtained from patients (n = 12) with severe CHF and normal volunteers (n = 8). Total plasma ANF was measured by radioimmunoassay. alpha-ANF and beta-ANF in nonextracted plasma were separated by gel filtration chromatography using a P-6 column. Right atrial tissue samples (n = 5) were collected from a different group of patients at the time of open-heart surgery. 125I beta-ANF and I125 ANF were incubated with atrial tissue or plasma. The corresponding peak areas of beta-ANF were determined by Tamaya Digital Planimeter. beta-ANF represented 61% of total plasma ANF in CHF patients and was not detected in normal human plasma. The elevation of beta-ANF correlated with the severity of ventricular dysfunction. Thirty percent of beta-ANF and 100% alpha-ANF were converted to smaller peptide fragments in atrial tissue no conversion in plasma. CONCLUSIONS: beta-ANF is the principal form of circulating ANF in patients with severe CHF and correlates with the degree of left ventricular dysfunction. beta-ANF is not generated from alpha-ANF and may be degraded rapidly in atrial tissue to smaller peptide fragments that do not occur in plasma. As beta-ANF is reported to have reduced biological action, the current studies may support the conclusion that the ANF system in CHF has reduced functional activity despite increases in circulation concentrations.

Aged↗

Circulating and tissue endothelin immunoreactivity in hypercholesterolemic pigs.

BACKGROUND: Hypercholesterolemia is characterized by a coronary vasoconstrictive response to the endothelium-dependent vasodilator acetylcholine. This abnormality may be due to reduced synthesis of endothelium-derived relaxing factor and/or enhanced synthesis and release of an endothelium-derived contracting factor. Endothelin is an endothelium-derived vasoconstrictor and mitogenic peptide that is present in normal plasma, and its circulating concentrations are elevated in disease states that are characterized by abnormal endothelium-dependent relaxation to acetylcholine. The current studies were designed to test the hypotheses that experimental hypercholesterolemia results in elevation of plasma and tissue endothelin immunoreactivity and that the abnormal acetylcholine-evoked coronary vasoconstriction in the hypercholesterolemic animals is associated with further elevation of plasma endothelin. METHODS AND RESULTS: Plasma concentrations and molecular forms of endothelin immunoreactivity were determined following 2% cholesterol diet for 4 months in pigs and during intracoronary acetylcholine administration. Second, we assessed the presence of endothelin in the coronary vascular wall by using immunohistochemistry. Hypercholesterolemia elevated plasma endothelin concentration and enhanced coronary artery tissue endothelin immunoreactivity. The endothelium-dependent vasodilator acetylcholine further increases plasma endothelin in hypercholesterolemia in association with coronary vasoconstriction. The predominant molecular form of endothelin in hypercholesterolemia is the biological active endothelin-1. CONCLUSIONS: This study suggests a role for endothelin as an early participant and a marker for the endothelial dysfunction in hypercholesterolemia as well as a participant in the atherogenic process.

Acetylcholine↗

Vasonatrin peptide: a unique synthetic natriuretic and vasorelaxing peptide.

This study reports the cardiovascular and renal actions of a novel and newly synthesized 27-amino acid peptide termed vasonatrin peptide (VNP). VNP is a chimera of atrial natriuretic peptide (ANP) and C-type natriuretic peptide (CNP). This synthetic peptide possesses the 22-amino acid structure of CNP, which is a cardiovascular selective peptide of endothelial origin and is structurally related to ANP. VNP also possesses the five-amino acid COOH terminus of ANP. The current study demonstrates both in vitro and in vivo that VNP possesses the venodilating actions of CNP, the natriuretic actions of ANP, and unique arterial vasodilating actions not associated with either ANP or CNP.

Amino Acid Sequence↗

Cardiac atrial natriuretic factor during evolution of congestive heart failure.

Congestive heart failure (CHF) is a pathophysiological condition associated with increased plasma levels of atrial natriuretic factor (ANF), a peptide hormone of cardiac origin that participates in the homeostatic control of intravascular volume and vascular tone. Atrial myocytes serve as the principal source of ANF under physiological conditions, although recent studies have demonstrated that ventricular myocardium may also synthesize ANF in models of CHF associated with ventricular hypertrophy. The current study was designed to investigate the roles of atrial and ventricular myocardium to synthesize, store, and release ANF during the evolution of tachycardia-induced CHF in the dog. The present study demonstrates a persistent elevation of plasma ANF during the evolution of CHF. In acute CHF (3 h), plasma ANF increased independent of cardiac ANF synthesis. In chronic CHF (15 and 30 days), plasma ANF is maintained by an increase in atrial synthesis and release of the peptide, without recruitment of ventricular ANF synthesis. The present study demonstrates that in acute CHF the increase in plasma ANF is regulated by release of stored peptide, and in chronic CHF the persistent elevation of plasma ANF is maintained by an increase in atrial synthesis of ANF.

Animals↗

Presence of C-type natriuretic peptide in cultured human endothelial cells and plasma.

The present study was undertaken to investigate the presence of C-type natriuretic peptide (CNP) immunoreactivity in cultured human vascular endothelial cells and in human plasma. CNP immunoreactivity was present in cultured human aortic endothelial cells by both immunohistochemical staining and by radioimmunoassay. With the utilization of gel permeation chromatography, this immunoreactivity proved to be consistent with the higher molecular weight CNP-53. CNP immunoreactivity was also present in human plasma (n = 22) at low picogram concentrations (6.5 +/- 0.2 pg/ml) by specific radioimmunoassay. This immunoreactivity was consistent with the lower molecular weight CNP-22 by gel permeation chromatography. These findings suggest that the vascular endothelium may be the site of CNP production. The isolation of different molecular forms of CNP in tissue and plasma may be consistent with a storage form of the peptide in endothelial cells CNP-53, while CNP-22 circulates in plasma. In summary, the present study is consistent with CNP being a peptide of endothelial cell origin.

Aorta↗

A synthetic DNA encoding a modified human urokinase resistant to inhibition by serum plasminogen activator inhibitor.

Using DNA synthesis technology we constructed two synthetic DNAs, designated syn-uPA-DNA and mut-uPA-DNA. Syn-uPA-DNA contains the complete coding sequence of human presecretion form of single-chain u-PA. Mut-uPA-DNA was derived from syn-uPA-DNA by deleting 18 base pairs coding for amino acids Arg179-Ser184. Each synthetic DNA was inserted into a bovine papilloma viral genome-based expression vector to obtain expression in mouse cells. The results indicate that both syn-uPA and mut-uPA proteins are secreted predominantly in single-chain form. The single-chain form of both enzymes can be completely converted to two-chain form by treatment with plasmin. Both enzymes are as active as natural urokinase (std-uPA) isolated from urine. Analysis of enzymatic activity indicates that under conditions where syn-uPA and std-uPA are completely inhibited by endothelial-type plasminogen activator inhibitor (PAI-1), mut-uPA retains 90% activity. In identical experiments with placental-type PAI (PAI-2), mut-uPA retains 80% activity. Syn-uPA is capable of forming a approximately 100-kDa complex with PAI, whereas mut-uPA can not. PAI-treated mut-uPA has kinetic properties similar to untreated syn-uPA or std-uPA. Overall, the data indicate that amino acids Arg179-Ser184 function at least in part as a binding site for PAI. Resistance to PAI inhibition may increase the potency of mut-uPA as a thrombolytic agent.

Amino Acid Sequence↗

Pulmonary and urinary clearance of atrial natriuretic factor in acute congestive heart failure in dogs.

Atrial natriuretic factor (ANF) is a peptide hormone of cardiac origin elevated in acute congestive heart failure (CHF), which is degraded by the enzyme neutral endopeptidase 24.11 (NEP). This study was designed to investigate the pulmonary and urinary clearance of ANF before and after the initiation of acute experimental CHF in dogs, and to assess the contribution of enzymatic degradation to these clearances in CHF. This study demonstrated a significant clearance of plasma ANF across the pulmonary circulation at baseline, and a tendency for pulmonary clearance to decrease in CHF (1115 +/- 268 to 498 +/- 173 ml/min, NS). The pulmonary extraction of ANF present at baseline was not altered with acute CHF (36.0 +/- 7.8 to 34.9 +/- 12.1%, NS). NEP inhibition (NEPI) abolished both the clearance and extraction of plasma ANF across the lung in CHF. Similarly, significant urinary clearance of ANF was present at baseline, and in acute CHF the urinary clearance of ANF decreased (0.14 +/- 0.02 to 0.02 +/- 0.01 ml/min, P less than 0.05). NEPI prevented the decrease in the urinary clearance of ANF, and enhanced the renal response to endogenous ANF, independent of further increases in plasma ANF during CHF. This study supports an important role for NEP in the pulmonary and urinary metabolism of endogenous ANF during acute CHF.

Acute Disease↗

Molecular cloning, sequence analysis, and functional expression of a novel growth regulator, oncostatin M.

Oncostatin M is a polypeptide of Mr approximately 28,000 that acts as a growth regulator for many cultured mammalian cells. We report the cDNA and genomic cloning, sequence analysis, and functional expression in heterologous cells of oncostatin M. cDNA clones were isolated from mRNA of U937 cells that had been induced to differentiate into macrophagelike cells by treatment with phorbol 12-myristate 13-acetate, and a genomic clone was also isolated from human brain DNA. Sequence analysis of these clones established the 1,814-base-pair cDNA sequence as well as exon boundaries. This sequence predicted that oncostatin M is synthesized as a 252-amino-acid polypeptide, with a 25-residue hydrophobic sequence resembling a signal peptide at the N terminus. The predicted oncostatin M amino acid sequence shared no homology with other known proteins, but the sequence of the 3' noncoding region of the cDNA contained an A + T-rich stretch with sequence motifs found in the 3' untranslated regions of many cytokine and lymphokine cDNAs. Oncostatin M mRNA of approximately 2 kilobase pairs was detected in phorbol 12-myristate 13-acetate-treated U937 cells and in activated human T cells. Transfection of cDNA encoding the oncostatin M precursor into COS cells resulted in the secretion of proteins with the structural and functional properties of oncostatin M. The unique amino acid sequence, expression by lymphoid cells, and growth-regulatory activities of oncostatin M suggest that it is a novel cytokine.

Amino Acid Sequence↗

Expression of human uterine tissue-type plasminogen activator in mouse cells using BPV vectors.

Human tissue-type plasminogen activator (t-PA) cDNA was cloned from uterine tissue and engineered in expression vectors for production in mouse C127 cells. The vectors consisted of the bovine papilloma virus-1 (BPV-1) genome and t-PA transcriptional unit with a mouse metallothionein (MT-1) promoter at the 5' end and MT-1 genomic sequences or SV40 early introns and polyadenylation signals at the 3' end. Analysis of the expression vectors transfected into cells revealed that t-PA is expressed 100- to 200-fold more with an intronless vector utilizing the SV40 polyadenylation signal than with other, intron-containing vectors. RNA analysis of stable cell lines indicated that t-PA expression levels correlated with mRNA abundance. DNA copy number and transcriptional rate of the MT-1 promoter remained constant in cell lines transformed by different BPV expression vectors. Uterine t-PA produced by recombinant DNA means was enzymatically active and similar in properties to Bowes melanoma t-PA.

Animals↗