PubMed Health⌕ Search

Biomedical subjects

L Price

Publications and source records attributed to L Price.

At least 73 records · Page 4Linked to original sources

Inaccuracy of glomerular filtration rate estimation from height/plasma creatinine ratio.

Use of a height/plasma creatinine formula to estimate glomerular filtration rate (GFR) is simpler and less invasive than renal or plasma clearance methods. The aim of this study was to determine whether these formulas enabled accurate prediction of GFR measured from the plasma clearance of 51Cr labelled ethylenediaminetetra-acetic acid (51Cr-EDTA). Thirty nine patients underwent GFR measurement at least six months after potentially nephrotoxic chemotherapy. Altman-Bland analysis was performed on the measured GFR and that estimated simultaneously using the original and a modified Counahan-Barratt formula and the Schwartz formula. The limits of agreement of the estimated GFR with the measured GFR were unacceptably wide in each case, despite highly significant correlation coefficients. The bias was smallest for the modified Counahan-Barratt formula. Use of these formulas to estimate GFR in children is insufficiently accurate for research purposes and has limitations in clinical practice. Furthermore, use of correlation coefficients to evaluate different methods of measuring GFR is inappropriate.

Adolescent↗

Effects of physiological hyperinsulinemia on counterregulatory response to prolonged hypoglycemia in normal humans.

To test the hypothesis that differing physiological insulin levels can modify the counter-regulatory response to prolonged hypoglycemia, experiments were carried out in 10 healthy male subjects. Insulin was infused subcutaneously for 8 h in two separate randomized protocols, so that steady-state levels of 132 +/- 6 pM (low) and 402 +/- 18 pM (high) were obtained. The fall in plasma glucose was controlled by the glucose-clamp technique. Plasma glucose fell slowly and similarly in both groups, reaching an identical steady-state (final 120 min of each study) level of 3.4 +/- 0.1 mM. Steady-state plasma epinephrine (2.5 +/- 0.4 vs. 1.5 +/- 0.2 nM) and norepinephrine (1.5 +/- 0.2 vs. 1.1 +/- 0.1 nM) were significantly (P < 0.05) greater during high- compared with low-dose insulin infusions. Plasma glucagon was reduced during high compared with low infusions (104 +/- 9 vs. 150 +/- 19 ng/l, P < 0.05). Growth hormone, cortisol, and pancreatic polypeptide increased significantly but were not different during the two insulin infusions. Hepatic glucose production (HGP) was equal during the steady-state period (8.4 +/- 1.0 mumol.kg-1.min-1) of each infusion. Blood lactate levels (1,255 +/- 73 vs. 788 +/- 69 mumol/l, P < 0.02) were increased in high compared with low, but nonesterified fatty acid (205 +/- 43 vs. 579 +/- 65 mumol/l) and 3-hydroxybutyrate (40 +/- 36 vs. 159 +/- 51 mumol/l) were reduced (P < 0.002) during the high-compared with low-dose infusions.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Pharmacokinetics and metabolism of ifosfamide administered as a continuous infusion in children.

The pharmacokinetics and metabolism of ifosfamide was investigated in a group of 16 pediatric patients (5 girls) aged 1-17 years. Each received a dose of 3 g/m2/day for up to 3 days by continuous infusion. Plasma and urine were collected, and concentrations of ifosfamide and its principal metabolites were determined by a quantitative high-performance thin layer chromatography method. During 3 days of continuous infusion, the plasma concentrations of parent drug decreased. This was accompanied by a continuous increase in dechloroethylated products in plasma but not in urine. Estimated pharmacokinetic parameters (clearance, volume of distribution, and half-life) were dependent on body size and age but not any other patient variable. Renal clearance was a relatively minor route of elimination for parent drug and corresponded to < 25% of glomerular filtration rate. Metabolite data from plasma and urine indicated a high degree of interindividual variation in metabolism. Comparison of metabolite recoveries in urine indicated a positive correlation between activation and inactivation routes of metabolism. Prior exposure to ifosfamide was associated with a higher recovery in urine of dechloroethylated metabolites. The severity of hematological toxicity was inversely correlated with glomerular filtration rate but not to parameters of ifosfamide metabolism. There was marked variation in levels of the carboxy metabolite, which could not be detected in the plasma of 5 subjects. However, evidence for a polymorphism in metabolism to this metabolite was weaker than that seen with the isomeric oxazaphosphorine cyclophosphamide. There appeared to be a higher clearance of ifosfamide in pediatric patients compared to adults. The significance of this, and of the variation in metabolism of ifosfamide, for clinical outcome remains to be established, but the increase in the dechloroethylation route of metabolism may be associated with an increased risk of toxicity.

Adolescent↗

Mutations in U1 snRNA bypass the requirement for a cell type-specific RNA splicing factor.

Previous studies have demonstrated that efficient splicing of the primary transcript of the yeast MER2 gene requires the MER1 protein, which is produced only in meiotic cells. A genetic selection was devised to recover second-site mutations that bypass the requirement for MER1 in MER2 RNA-splicing. This selection identified a mutation in SNR19, the gene for U1 snRNA. The suppressor mutation affects the first residue in U1 snRNA, allowing this nucleotide to base pair with the eighth nucleotide in the MER2 intron. This base in MER2 lies outside the conserved hexanucleotide that defines the 5' splice site in yeast. The MER2 5' splice site (GUUCGU) differs from the consensus in yeast (GUAYGU) at the third position. When this nucleotide is mutated to restore the consensus, base pairing with U1 snRNA is increased and the requirement for MER1 is alleviated.

Base Sequence↗

Effects of insulin on the counterregulatory response to equivalent hypoglycemia in normal females.

The aim of this study was to determine if insulin could augment the counterregulatory response to equivalent hypoglycemia in normal females similarly to males. Experiments were carried out in nine normal lean overnight-fasted female subjects. Insulin was infused in two separate randomized protocols so that steady-state levels of 794 +/- 62 (low) and 3,620 +/- 476 pM (high) were obtained. Despite an identical plasma glucose level (2.8 +/- 0.1 mM), epinephrine (5.7 +/- 0.9 vs. 3.9 +/- 0.6 nM), norepinephrine (2.7 +/- 0.4 vs. 1.8 +/- 0.3 nM), cortisol (918 +/- 55 vs. 826 nM), and growth hormone (35.8 +/- 3.7 vs. 28.4 +/- 2.7 micrograms/l) were increased (P < 0.05) during high compared with low insulin infusion, respectively. Glucagon and pancreatic polypeptide levels increased significantly but were not different during the two insulin infusions. Hepatic glucose production was increased during the high-compared with low-dose infusions (9.5 +/- 1.1 vs. 5.1 +/- 2.2 mumol.kg-1 x min-1; P < 0.05). Lipolysis, as indicated by the blood glycerol level, increased significantly during high- compared with low-dose insulin infusions (121 +/- 29 vs. 65 +/- 13 microM; P < 0.05). The hormonal and metabolic responses to hypoglycemia were significantly different in females compared with previous results in males.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Carboplatin pharmacokinetics in children: the development of a pediatric dosing formula. The United Kingdom Children's Cancer Study Group.

PURPOSE: The aim of this study was to define the pharmacokinetics of carboplatin in children and use the data to develop a pediatric dose formula. It was anticipated that renal function would be a major determinant of carboplatin disposition and the relationship between carboplatin clearance and glomerular filtration rate (GFR) was examined in detail. PATIENTS AND METHODS: Plasma carboplatin pharmacokinetics were measured as ultrafiltrable platinum in 22 patients (5 to 63 kg) following 200 to 1,000 mg/m2 of carboplatin. GFR was measured by the plasma clearance of chromium 51-edathamil (51Cr-EDTA). RESULTS: Carboplatin pharmacokinetics in children were best described in most patients (16 of 22) by a two-compartment model. The dose-normalized area under the plasma carboplatin concentration versus time curve (AUC) ranged from 3.1 to 9.6 mg/mL.min/400 mg/m2 and there was only a weak linear relationship between carboplatin dose and AUC (R2 = .31). There was a significant relationship between absolute carboplatin and 51Cr-EDTA clearances (R2 = .56), but the relationship was weaker (R2 = .28) when both clearances were normalized for body surface area. Carboplatin plasma clearance was predicted by the equation: clearance = GFR (mL/min) + 0.36 x body weight (BW; kg), and a modified form of the adult carboplatin dose formula is proposed: dose (mg) = target AUC x (GFR [mL/min] + [0.36 x BW(kg)]). Two further equations were developed that use the 51Cr-EDTA half-life (t1/2) to calculate the GFR and these may reduce errors resulting from inaccurate measurement of the volume of distribution for 51Cr-EDTA. In patients treated with single-agent carboplatin or carboplatin plus vincristine, there was a significant sigmoidal relationship between AUC and thrombocytopenia (R2 = .56). CONCLUSION: GFR-based carboplatin dosing in children should be feasible and will be evaluated prospectively.

Adolescent↗

The effects of insulin on the counterregulatory response to equivalent hypoglycemia in patients with insulin-dependent diabetes mellitus.

We previously demonstrated that hyperinsulinemia can amplify the counterregulatory response to hypoglycemia in normal subjects. The aim of the present study was to determine if differing concentrations of insulin can modify the counterregulatory response to equivalent fixed hypoglycemia in insulin-dependent-diabetic subjects (IDDM). Experiments were carried out in seven lean, overnight-fasted, moderately controlled (hemoglobin A1c, 10.9%; normal range, 5-9) IDDM subjects with a disease duration of 13 +/- 3 yr. All were maintained normoglycemic overnight so that basal plasma glucose (5.6 +/- 0.2 and 5.4 +/- 0.2 mmol/L) and insulinemia (63 +/- 18 and 48 +/- 10 pmol/L) were similar at the start of each study. Insulin was infused for 120 min in two separate randomized protocols, so that steady state levels (mean +/- SE) of 742 +/- 212 pmol/L (low) and 3360 +/- 710 pmol/L (high) were obtained. Glucose was infused during both protocols to ensure that the rate of fall of plasma glucose (0.09 mmol/L.min) and the hypoglycemic plateau (2.8 +/- 0.1 mmol/L) were similar. In response to hypoglycemia, plasma levels of epinephrine, norepinephrine, cortisol, GH, and pancreatic polypeptide increased similarly during both insulin infusions. During the final 30 min, despite similar levels of counterregulatory hormones, hepatic glucose production was significantly reduced in the presence of high compared to low insulin levels (1.7 +/- 2.8 vs. 8.3 +/- 1.7 mumol/kg.min; P < 0.05). Similarly, plasma nonesterified fatty acids (472 +/- 94 vs. 787 +/- 105 mumol/L) and blood 3-hydroxybutyrate levels (30 +/- 12 vs. 106 +/- 29 mumol/L) were significantly reduced (P < 0.05) during high compared to low dose infusions. Cardiovascular parameters (heart rate and systolic, diastolic, and mean arterial pressures) responded similarly during both infusions. We conclude that 1) insulin per se does not amplify the counterregulatory response to equivalent hypoglycemia in individuals with moderately controlled, long duration IDDM; and 2) there may be a relative autonomic adrenomedullary deficit in some IDDM subjects that prevents the amplified epinephrine response to hyperinsulinemia during hypoglycemia.

Adult↗

The effects of differing insulin levels on the hormonal and metabolic response to equivalent hypoglycemia in normal humans.

The aim of this study was to determine if differing concentrations of insulin can modify the counterregulatory response to equivalent hypoglycemia in normal humans. Experiments were conducted in 9 normal, lean men, who had fasted overnight. Insulin was infused in two separate, randomized protocols so that steady-state levels of 486 +/- 33 (low) and 3056 +/- 236 pM (high) were obtained. Glucose was infused during both protocols to ensure that the rate of fall of plasma glucose (0.07 mM/min) and hypoglycemic plateau (2.8 +/- 0.1 mM) were similar. Despite similar plasma glucose levels, EPI (8.7 +/- 0.7 vs. 5.5 +/- 0.7 nM), NE (3.3 +/- 0.3 vs. 2.3 +/- 0.2 nM), and cortisol (811 +/- 36 vs. 611 +/- 72 nM) significantly increased during high compared with low insulin infusion, respectively (P < 0.05). Glucagon, growth hormone, and pancreatic polypeptide levels increased briskly and significantly but were not different during the two insulin infusions. HGP rose significantly from 12.1 +/- 0.3 to 18.1 +/- 1.1 mumol.kg-1 x min-1 in response to the high insulin level (P < 0.05) but remained unchanged (12.1 +/- 0.4 and 11.7 +/- 1.4 mumol.kg-1 x min-1) in the presence of th low insulin level. GRa increased significantly during high insulin levels (3.4 +/- 0.3 to 4.8 +/- 0.7 mumol.kg-1 x min-1, P < 0.05) but remained at a basal rate (3.0 +/- 0.3 to 2.7 +/- 0.6 mumol.kg-1 x min-1) in the presence of low insulin levels. sBP and heart rate increased more during high insulin infusion (18 +/- 5 vs. 6 +/- 5 mmHg and 18 +/- 4 vs. 7 +/- 2 beats/min, respectively, P < 0.05). In summary, the 6-fold higher insulin level resulted in significantly greater increases in catecholamine and cortisol secretion, HGP, lipolysis, heart rate, and sBP despite equivalent hypoglycemia. We conclude that at moderate hypoglycemia, high doses of insulin can augment certain aspects of the counterregulatory response in normal humans.

Adult↗

The Indented Paragraph Reading Test in the assessment of left hemi-neglect.

We investigated the validity of the Indented Paragraph Reading Test (IPRT), designed to assess left hemi-neglect (LHN) in reading behavior, with regard to education effects, scoring properties, and sensitivity to recovery of LHN. The IPRT was administered aspart of a larger battery to 50 right-hemisphere stroke patients approximately 1, 2, 3, and 7 months post-stroke if, and only if, the patient demonstrated LHN on the previous test battery. Contrary to expectations, performance on the IPRT was not correlated with education and even patients with minimal formal education were able to complete the test. We demonstrated that the author's suggested scoring criterion was valid and sensitive to the presence of LHN as well as to its recovery over time.

Journal Article↗

Pharmacokinetics and metabolism of cyclophosphamide in paediatric patients.

The pharmacokinetics and metabolism of cyclophosphamide were studied in nine paediatric patients. Plasma samples were obtained from eight subjects and urine was collected from six children during a 24-h period after drug administration. Cyclophosphamide and its major metabolites phosphoramide mustard (PM), carboxyphosphamide (CX), dechloroethylcyclophosphamide (DCCP) and 4-ketocyclophosphamide (KETO) were determined in plasma and urine using high-performance thin-layer chromatography-photographic densitometry (HPTLC-PD). Cyclophosphamide (CP) was nearly, if not completely, cleared from plasma by 24 h after its administration. The plasma half-life of CP ranged from 2.15 to 8.15 h; it decreased following higher doses and was shorter than that previously reported for adult patients. Both the apparent volume of distribution (0.49 +/- 1.4 l/kg) and the total body clearance (2.14 +/- 1.4 l m-2 h-1) increased with increasing dose. Renal clearance ranged between 0.12 and 0.58 l/h (mean, 0.43 +/- 0.19 l/h). Between 5.4% and 86.1% of the total delivered dose was recovered as unchanged drug in the urine. The major metabolites identified in plasma and urine were PM and CX. One patient appeared to be deficient in CX formation. This study suggests that there is interpatient variability in the pharmacokinetics and metabolism of CP in paediatric patients. The shorter half-life and higher clearance as compared with adult values indicate faster CP metabolism in children.

Absorptiometry, Photon↗

The influence of age on nephrotoxicity following chemotherapy in children.

Nephrotoxicity is an important adverse effect of chemotherapy in children. Renal function after treatment with either ifosfamide or cisplatinum in children aged 5 years or less ('younger children') was compared with that in those over 5 years ('older children'). Eighteen children (six younger, 12 older) given ifosfamide were studied after completion of chemotherapy, and 28 patients (16 younger, 12 older) were evaluated after cisplatinum. Glomerular filtration rate was measured from the plasma clearance of 51chromium-labelled edetic acid. Proximal tubular function was assessed by determination of plasma and urine calcium, phosphate, magnesium and glucose concentration; calculations of their fractional excretions, and of the renal threshold for phosphate; and measurement of urinary excretion of beta 2-microglobulin. Distal tubular function was evaluated by measurement of the early morning urine osmolality. Younger children had more severe proximal tubular toxicity than older children treated with ifosfamide, with significantly lower plasma phosphate concentrations and higher fractional excretions of glucose. However, there was no evidence of any such difference in glomerular or distal tubular damage after ifosfamide, and no difference in any aspect of renal function between younger and older children treated with cisplatinum. Increased proximal tubular toxicity after ifosfamide in younger children may have serious implications for future growth and development.

Age Factors↗