PubMed HealthSearch

Biomedical subjects

B L Ferraiolo

Publications and source records attributed to B L Ferraiolo.

13 recordsLinked to original sources

The disposition of a human relaxin (hRlx-2) in pregnant and nonpregnant rats.

The pharmacokinetics and tissue distribution of a human relaxin were investigated after intravenous (iv) bolus administration to pregnant or nonpregnant rats. Human gene-2 relaxin (hRlx-2) serum concentrations after iv bolus administration were described as the sum of three exponentials. The pharmacokinetics were comparable in pregnant and nonpregnant rats. The serum clearance (CL) was 7.4-10.2 ml/min/kg at doses of 46-93 micrograms/kg and was linear in this range. The half-lives were 1.1-2.0, 15.1-16.4, and 53.7-67.9 min, respectively. The volume of the central compartment (Vc) was 48-79 ml/kg and the volume of distribution at steady state (Vss) was 271-336 ml/kg. Increasing the dose to 463 micrograms/kg increased the dose-corrected area under the serum concentration-time curve and significantly decreased CL and Vss. The distribution of radioactivity in the tissues of pregnant rats was followed after iv bolus dosing with hRlx-2 internally labeled with 35S-cysteine. Comparison of the extent of organ uptake of radiolabel after 35S-hRlx-2 or 35S-cysteine administration suggested that the kidneys were the principal site of uptake; the liver was of secondary importance. In perfusion experiments utilizing livers isolated from pregnant or nonpregnant rats, 36-52% of the dose of hRlx-2 was cleared from the perfusate in 2 hr. These studies showed that the pharmacokinetics of hRlx-2 in rats appeared to be unaffected by pregnancy and suggested that the kidneys and liver both play a role in the elimination of hRlx-2.

Animals

Interspecies scaling of clearance and volume of distribution data for five therapeutic proteins.

The clearance and volume of distribution of five human proteins (recombinant CD4, CD4 immunoglobulin G, growth hormone, tissue-plasminogen activator, and relaxin) in humans and laboratory animals were analyzed as a function of body weight using allometric scaling techniques. These proteins cover a 16-fold range of molecular weight (6 to 98 kD), are produced by recombinant or synthetic methods, and may be cleared by different mechanisms. The analyses revealed that the clearance and volume data for each protein were satisfactorily described by an allometric equation (Y = a Wb). The allometric exponent (b) for clearance (ml/min) ranged from 0.65 to 0.84, the allometric exponent for the initial volume of distribution (ml) ranged from 0.83 to 1.05, and the allometric exponent for the volume of distribution at steady state (ml) ranged from 0.84 to 1.02. Exponent values from 0.6 to 0.8 for clearance and 0.8 to 1.0 for volumes are frequently cited for small molecules and are expected based on empirical interspecies relationships. When the preclinical data were analyzed separately, the preclinical allometric relationships were usually predictive of the human results. These findings indicate that the clearance and volume of distribution of select biomacromolecules follow well-defined, size-related physiologic relationships, and preclinical pharmacokinetic studies provide reasonable estimates of human disposition. Employing this methodology during the early phases of drug development may provide a more rational basis for dose selection in the clinical environment.

Animals

The pharmacokinetics and metabolism of human relaxins in rhesus monkeys.

Two forms of chemically synthesized human relaxin (rHlx and hRlx-2) were administered as 88 micrograms/kg intravenous bolus doses to pregnant and nonpregnant rhesus monkeys. No significant differences in pharmacokinetics were observed between pregnant and nonpregnant animals for either form of relaxin; however, clearance of hRlx (3.1-3.4 ml/min/kg) was significantly slower than clearance of hRlx-2 (6.2-6.5 ml/min/kg) in both pregnant and nonpregnant animals. Although the terminal half-lives for hRlx and hRlx-2 were similar (148-157 min), the initial and steady-state volumes of distribution were somewhat larger for hRlx-2 (71-85 and 398-418 ml/kg, respectively) than for hRlx (61-65 and 294-319 ml/kg, respectively). The metabolism of hRlx-2 was also investigated in pregnant and non-pregnant rhesus monkeys after iv bolus (0.44 mg/kg) or 60-min infusion (1.1 mg/kg) administration. Fast atom bombardment mass spectral analysis of the relaxin immunoreactivity isolated from the plasma indicated that hRlx-2 was partially degraded by removal of amino acids from the C terminus of the B chain. The percentage of intact material declined over a 60-min time course. At 60 min post-dose, intact hRlx-2 was approximately 46-64% of the detected material. Degraded forms representing loss of one and four amino acids (hRlx) from the C terminus of the B chain were approximately 11-13 and approximately 19-34% of the detectable material, respectively.

Animals

Plasma clearance and tissue distribution of labelled insulin-like growth factor-I (IGF-I), IGF-II and des(1-3)IGF-I in rats.

Incubation of 125I-labelled insulin-like growth factor-I (IGF-I) with rat plasma at 4 degrees C led to the transfer of approximately half the radioactivity to 150 kDa and smaller complexes with IGF-binding proteins. The extent of association was greater with labelled IGF-II and essentially absent with the truncated IGF-I analogue, des(1-3)IGF-I. A greater degree of binding of IGF peptides with binding proteins occurred after i.v. injection of the tracers into rats, but most of the des(1-3)IGF-I radioactivity remained free. Measurement of the total plasma clearances showed the rapid removal of des(1-3)IGF-I compared with IGF-I and IGF-II; the mean clearances were 4.59, 1.20 and 1.34 ml/min per kg respectively. The mean steady-state volume of distribution was larger for des(1-3)IGF-I than for IGF-I and IGF-II (461, 167 and 181 ml/kg respectively), probably because of the differences in plasma protein binding. With all tracers, radioactivity appeared in the kidneys to a greater extent than in other organs. The amount of radioactivity found in the adrenals, brain, skin, stomach, duodenum, ileum plus jejunum and colon was in rank order, des(1-3)IGF-I greater than IGF-I greater than IGF-II. Since this ranking is the opposite of the abilities of the three IGF peptides to form complexes with plasma binding proteins, we propose that the plasma binding proteins inhibit the transfer of the growth factors to their tissue sites of action. Moreover, we suggest that IGF analogues that are cleared rapidly from blood may have greater biological potencies in vivo.

Adrenal Glands

The pharmacokinetics and pharmacodynamics of a human relaxin in the mouse pubic symphysis bioassay.

The effects of dose, route, regimen, and the presence or absence of a repository vehicle [benzopurpurine (BPP)] were determined for a human relaxin (hRlx) in the mouse pubic symphysis bioassay. Administration of 88 micrograms/kg hRlx sc in 1% BPP resulted in delayed, prolonged absorption. Although peak hRlx concentrations were lower, serum concentrations remained elevated longer in the presence of BPP compared to a single sc administration of hRlx in saline at the same dose. The bioavailabilities with and without BPP were similar (109 and 96%, respectively). While the pharmacodynamic effect (i.e. lengthening of the pubic ligament in estrogen-primed mice) was approximately maximum at 88 micrograms/kg hRlx sc with BPP, single sc administration of hRlx without BPP up to 264 micrograms/kg had no effect on pubic ligament length. In the absence of the BPP vehicle, manipulation of the regimen (e.g. multiple sc doses) showed that emulation of the serum concentration-time profile observed for hRlx in the presence of BPP resulted in similar pharmacodynamic effects. It appears that BPP delays the absorption of hRlx after sc administration, resulting in prolonged, elevated hRlx serum concentrations. hRlx has been shown to be effective in this model without BPP if it is administered by a multidose sc schedule. As has been observed with other protein therapeutics, the dosage regimen employed for hRlx delivery appears to be an important determinant of the expression of its pharmacodynamic effects.

Animals

Characterization of the in vitro and in vivo species preference of human and murine tumor necrosis factor-alpha.

The species preference of human and murine tumor necrosis factor-alpha (TNF-alpha) was evaluated in human and murine systems for cytotoxic/cytostatic effects and receptor binding in vitro and murine systems for toxicity and antitumor activity in vivo. The in vitro cytotoxic/cytostatic effects of both species TNF-alpha on human and murine cell lines as well as the receptor binding studies using 125I-labeled recombinant human TNF-alpha demonstrated homologous species preferences. Species preference of TNF-alpha was also apparent in toxicity studies with BALB/c nu/nu and CB6F1 mice, and antitumor responses of CB6F1 mice to s.c. Meth A sarcoma implants. Moreover the growth of Meth A sarcoma implanted i.p. was not inhibited by either human or murine TNF-alpha. These results are discussed in view of the potential for underestimation of the biological potency of TNF-alpha from heterologous sources.

Animals

Pharmacokinetics of recombinant human interferon-gamma in the rhesus monkey after intravenous, intramuscular, and subcutaneous administration.

The pharmacokinetics of recombinant human interferon-gamma (rIFN-gamma) were studied in rhesus monkeys. Intravenous administration of 0.1 mg/kg yielded half-lives of 12.3-13.4 min and 130 min. Clearance after intravenous administration was 18.7 ml/min/kg, and the steady-state volume of distribution (Vdss) was 510 ml/kg. The peak serum concentrations after intramuscular and subcutaneous administration of 0.25 mg/kg rIFN-gamma were 50.7 and 52.3 ng/ml, respectively. The time to reach the peak serum concentration was 480 min for both routes. The mean bioavailabilities after intramuscular and subcutaneous administration were 109 and 90%, respectively. Intravenous administration of 0.25 mg/kg rIFN-gamma resulted in no significant change in the clearance, half-life, or Vdss, suggesting that the kinetics of rIFN-gamma are linear over the range of doses tested. Nearly all of the animals developed antibodies to rIFN-gamma after three doses. The presence of nonneutralizing antibodies to rIFN-gamma had no discernible effect on the calculated pharmacokinetic parameters.

Animals

Characterization of the antitumor activities of human tumor necrosis factor-alpha and the comparison with other cytokines: induction of tumor-specific immunity.

We have investigated the in vitro and in vivo antitumor activities of recombinant human tumor necrosis factor-alpha (rHuTNF-alpha) against Meth A sarcoma. Meth A sarcoma cells were found to a) be relatively insensitive in vitro to rHuTNF-alpha, and b) express low numbers of TNF-alpha receptors. Intraperitoneally implanted Meth A sarcoma was insensitive to the antitumor effects of rHuTNF-alpha. In contrast, rHuTNF-alpha was highly efficacious against subcutaneously implanted Meth A sarcoma. Biodistribution studies with 125I- or 3H-labeled rHuTNF-alpha demonstrated that, after intravenous administration, the majority of the labeled rHuTNF-alpha localized in the kidney, lungs, and liver. Only low levels of radiolabel were found in subcutaneous Meth A implants. These results support the in vitro data on the low number of TNF-alpha receptors on Meth A sarcoma cells. The ability of rHuTNF-alpha to induce regression of established (7 days) subcutaneous Meth A implants, positively correlated with the degree of both macroscopic and microscopic tumor necrosis. In addition, recombinant human tumor necrosis factor-beta (lymphotoxin) and recombinant murine tumor necrosis factor-alpha induced similar levels of necrosis. Other lymphokines with known antitumor activities, recombinant human interferon-gamma, murine interferon-gamma, and human interleukin 1 alpha, failed to induce detectable necrosis of Meth A sarcoma. Mice which had rejected subcutaneous Meth A sarcoma implants after rHuTNF-alpha treatment and which were later challenged subcutaneously with Meth A sarcoma or other noncross-reacting chemically induced sarcomas were found to be specifically immune to Meth A sarcoma. In addition, low levels of cytotoxic antibodies reactive to Meth A sarcoma were detected in the sera of 21 of 30 Meth A immune mice. Histological evaluation of the hemorrhagic tumor necrosis induced by rHuTNF-alpha suggests that the primary lesion is vascular, possibly directly on the endothelial cells. The mechanisms involved in the generation of specific cell-mediated antitumor immunity in this model are at present unknown.

Animals

Pharmacokinetics and excretion of unique beta-adrenergic agonists.

beta-Adrenergic agonist analogs (congeners) of isoproterenol in which the N-isopropyl group has been linked to a p-methyl- (119) or p-trifluoromethyl- (143) anilide moiety through a four carbon methylene spacer have been investigated with respect to their plasma pharmacokinetic profiles and biliary and urinary elimination characteristics in rats. In spite of the differences in selectivity of pharmacologic effects and durations of action between these unique beta-adrenergic agonists and isoproterenol, no differences were observed in their pharmacokinetic parameters in plasma after intravenous administration. Plasma clearances were rapid (67-78 ml/min) and the compounds were widely distributed. In contrast to the known elimination characteristics of isoproterenol, biliary excretion was the major pathway for elimination of 119 and 143. Parent drug and 'one' major metabolite peak appeared in HPLC chromatograms of bile collected from rats that received 119 and 143 by intravenous administration. Preliminary evidence suggests that this metabolite peak consists of one or more glucuronide and/or sulfate conjugates. Urinary excretion appears to be of lesser quantitative importance for 119 and 143 than for isoproterenol. The protracted duration of residence of the derivatives in the heart may help to explain the unusual effects and tissue-specific pharmacological properties of these unique beta-adrenergic agonists.

Adrenergic beta-Agonists

Digoxin-induced decrease in intraocular pressure in the cat.

A constant intravenous infusion of digoxin (2 micrograms/kg/min) to alpha-chloralose-anesthetized cats produced a progressive decrease in intraocular pressure with increasing doses of digoxin between 60 micrograms/kg and drug-induced ventricular arrhythmia which occurred at a mean dose of 172 micrograms/kg. Digoxin elicited a 40% decrease in intraocular pressure just prior to ventricular arrhythmia compared to a decrease of only 10% with a control infusion of diluent in the same animal (P less than 0.05). There was no significant difference (P less than 0.1) between changes in blood pressure and heart rate observed in the experimental versus the control infusions. The decrease in intraocular pressure may result from inhibition of the Na-K-ATPase in the ciliary body.

Animals

Pharmacokinetics of recombinant human tumor necrosis factor-alpha in rats. Effects of size and number of doses and nephrectomy.

The serum pharmacokinetics of recombinant human tumor necrosis factor-alpha (rHuTNF) were determined in male and female rats under various conditions. The clearance of rHuTNF after iv administration was determined to be saturable over the dose range of 10-63 micrograms/kg. Multiple iv administration did not significantly change the clearance of rHuTNF. Nephrectomy significantly reduced but did not eliminate the clearance of rHuTNF. The data suggest that sites other than the kidney also contribute to the elimination of rHuTNF. Female rats showed significantly reduced clearance of rHuTNF compared to male rats at all doses after single and multiple iv administration in control and nephrectomized animals.

Animals

Pharmacokinetics and tissue distribution of recombinant human tumor necrosis factor-alpha in mice.

The serum pharmacokinetics and the major organs of accumulation of recombinant human tumor necrosis factor-alpha (rHuTNF) were determined in BDF1 mice after intravenous and intramuscular administration. Serum concentrations of immunoreactive protein were determined by enzyme-linked immunosorbent assay, and radioactivity was quantitated by beta and gamma scintigraphy. The serum pharmacokinetics of labeled and unlabeled rHuTNF were identical when administered by the intravenous route. After intravenous doses of 165 to 320 micrograms/kg, the clearance was 2.9-3.6 ml/hr, the initial volume of distribution was 1.4-1.6 ml (70-80 ml/kg), and the half-life was 18.5-19.2 min. Intramuscular administration of 320 micrograms/kg resulted in a peak serum concentration of 112 ng/ml. The time of the peak concentration was 1 hr, and the bioavailability of the intramuscular dose was 12%. The data suggest that the disposition of this protein may be biexponential. If this is the case, the terminal phase would appear to account for less than 1% of the total AUC. Since serum concentrations in the terminal phase are at the sensitivity limit of the assay, a single half-life is reported. 125I-Labeled and metabolically labeled 3H-rHuTNF were used to examine tissue distribution. After intravenous 125I-rHuTNF administration, the rank order of accumulation of the 125I-radiolabel in the major organs (per cent dose per organ over 1440 min) was: liver greater than kidney greater than lung greater than heart greater than spleen. This rank order of accumulation was confirmed by intravenous 3H-rHuTNF administration.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals