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Biomedical subjects

Peter C Adamson

Publications and source records attributed to Peter C Adamson.

34 records · Page 2Linked to original sources

Drug utilization in the pediatric intensive care unit: monitoring prescribing trends and establishing prioritization of pharmacotherapeutic evaluation of critically ill children.

The primary objective of this study was to characterize the drug exposure for children hospitalized in the authors' institution's pediatric intensive care unit for the year 2002. Secondary objectives included the examination of drug utilization differences among various age criteria and the suitability of the most prevalent resources for pediatric dosing guidance. Many of the most commonly prescribed agents in the pediatric intensive care unit fall into the broad categories of pain management/sedation and anti-infectives. Based on the generally narrow windows afforded by each of these drug classes, it is obvious that more, well-defined investigations in critically ill children are warranted. The existing dosing guidance for many of these agents is neither generalizable nor sufficient to accommodate the diversity in pediatric intensive care unit patients, and the current drug monographs fall short of any practical dosing information.

Adolescent↗

Tissue collection for correlative studies in childhood cancer clinical trials: ethical considerations and special imperatives.

Federal regulations prescribe distinct protections for children participating in research studies. Procedures for collecting tissue specimens from children solely for research purposes must pose no more than a minor increase over minimum risk, thereby limiting the approvable correlative biologic studies to evaluate molecularly targeted agents in children with cancer. Ethical issues arise when approvable correlative studies are a mandatory component of an early-phase pediatric clinical trial of new anticancer agents. The National Cancer Institute Cancer Therapy Evaluation Program sponsored a workshop in 2002 to discuss tissue collection for correlative biologic studies in early-phase childhood cancer clinical studies of molecularly targeted agents. Workshop participants recommended the following: (1) tissue specimens for correlative studies should provide vital clinical and scientific results to qualify for early-phase pediatric study consideration; (2) parents should receive a realistic appraisal of the risks, requirements, and potential for benefit of phase I protocol participation; (3) investigators should clearly distinguish clinically necessary procedures from research procedures of no benefit to the child to improve correlative study informed consent; and (4) participation in correlative research studies included in clinical trials generally should be voluntary. The need to acquire important biologic data regarding new molecular agents will challenge the ingenuity of pediatric cancer researchers, necessitating the application of highly sensitive laboratory assay methods, new imaging procedures, and preclinical models of childhood cancer. Such innovative methods can allow necessary scientific information to be obtained while simultaneously respecting the protections appropriately afforded to children participating in research studies and minimizing the burden of research participation for children with cancer and their families.

Child↗

Phase I study of the proteasome inhibitor bortezomib in pediatric patients with refractory solid tumors: a Children's Oncology Group study (ADVL0015).

PURPOSE: To determine the maximum-tolerated dose, dose-limiting toxicity (DLT), and pharmacodynamics of the proteasome inhibitor bortezomib (formerly PS-341) in children with recurrent or refractory solid tumors. PATIENTS AND METHODS: An intravenous bolus of bortezomib was administered twice weekly for 2 consecutive weeks at either 1.2 or 1.6 mg/m2/dose followed by a 1-week rest. The pharmacodynamics of bortezomib were evaluated by measurement of whole blood 20S proteasome activity. RESULTS: Fifteen patients, 11 assessable, were enrolled between November 2001 and February 2003. Dose-limiting thrombocytopenia, which prevented administration of a complete course (four doses in 2 weeks) of therapy, occurred in two of five assessable children enrolled at the 1.6 mg/m2 dose level. There were no other DLTs. Inhibition of 20S proteasome activity seemed to be dose dependent. The average inhibition 1 hour after drug administration on day 1 was 67.2% +/- 7.6% at the 1.2 mg/m2/dose and 76.5% +/- 3.3% at the 1.6 mg/m2/dose. There were no objective antitumor responses. CONCLUSION: Bortezomib is well tolerated in children with recurrent or refractory solid tumors. The recommended phase II dose of bortezomib for children with solid tumors is 1.2 mg/m2/dose, administered as an intravenous bolus twice weekly for 2 weeks followed by a 1-week break.

Biological Availability↗

Treatment of accidental intrathecal methotrexate overdose with intrathecal carboxypeptidase G2.

The bacterial enzyme carboxypeptidase G2 (CPDG2) rapidly hydrolyzes methotrexate to inactive metabolites. We administered recombinant CPDG2 (2000 U) intrathecally to seven cancer patients 3 to 9 hours after they had received an accidental overdose of intrathecal methotrexate (median dose = 364 mg; range = 155-600 mg). Four of the seven patients had cerebrospinal fluid (CSF) exchange to remove methotrexate before CPDG2 administration. Immediate symptoms of the methotrexate overdoses included seizures (n = 5), coma (n = 2), and cardiopulmonary compromise (n = 2). Before CPDG2 administration, the median concentrations of methotrexate in CSF were 264 microM (range = 97-510 microM) among patients who had CSF exchange and 8050 microM (range = 2439-16 500 microM) among patients who did not. After intrathecal CPDG2 administration, methotrexate concentrations in CSF declined by more than 98%. All patients recovered completely from the intrathecal methotrexate overdose except for two patients who had memory impairments. Antibodies to CPDG2 were not detected in plasma after treatment with intrathecal CPDG2. Intrathecal CPDG2 is well tolerated, rapidly decreases CSF methotrexate concentrations, and appears to be efficacious for treating accidental intrathecal methotrexate overdoses.

Adult↗

High-dose methotrexate-induced nephrotoxicity in patients with osteosarcoma.

BACKGROUND: High-dose methotrexate (HDMTX)-induced renal dysfunction can be life threatening, because it delays methotrexate (MTX) excretion, thereby exacerbating the other toxicities of MTX. HDMTX-induced nephrotoxicity has been managed with high-dose leucovorin, dialysis-based methods of MTX removal, thymidine, and with the recombinant enzyme, carboxypeptidase-G2 (CPDG2), which cleaves MTX to inactive metabolites. The objectives of the current study were to estimate the current incidence of HDMTX-induced renal dysfunction in patients with osteosarcoma and to compare the efficacy and recovery of renal function for dialysis-based methods of MTX removal with treatment using CPDG2. METHODS: The literature was reviewed for osteosarcoma trials, use of dialysis-based methods for MTX removal, and reports of MTX-induced nephrotoxicity, including information regarding recovery of renal function. Clinical trial databases of select osteosarcoma studies were reviewed. The efficacy of CPDG2 and renal recovery after CPDG2 rescue was obtained from the database of a compassionate-release trial. RESULTS: Approximately 1.8% of patients with osteosarcoma (68 of 3887 patients) who received HDMTX developed nephrotoxicity Grade >/= 2. The mortality rate among those patients was 4.4% (3 of 68 patients). Dialysis-based methods of MTX removal were used frequently but had limited effectiveness in removing MTX compared with the rapid reductions > 98% in plasma MTX concentrations achieved with CPDG2. CPDG2 did not appear to increase the time to recovery of renal function compared with supportive treatment that included dialysis-based methods. CONCLUSIONS: HDMTX-induced renal dysfunction continues to occur in approximately 1.8% of patients with osteosarcoma who are treated on clinical protocols with optimal supportive care. For patients with delayed MTX excretion and high plasma MTX concentrations, CPDG2 should be considered over hemodialysis to lower plasma MTX concentrations rapidly and efficiently.

Acute Kidney Injury↗

The plasma pharmacokinetics and cerebral spinal fluid penetration of intravenous topiramate in newborn pigs.

INTRODUCTION: Pre-clinical studies suggest that the anticonvulsant topiramate confers neurologic protection against ischemia. An intravenous formulation of topiramate has been developed for administration during conditions such as hypoxia-ischemia when enteral absorption may be unpredictable. The plasma pharmacokinetics, cerebrospinal fluid (CSF) penetration and pharmacodynamics of intravenous topiramate were studied in an established piglet model of hypoxia-ischemia. METHODS: The plasma pharmacokinetics of topiramate were studied in a group of chronically instrumented conscious piglets (n = 8), and in a group of piglets following an episode of hypoxia-ischemia (n = 8). These groups were divided into equal dose cohorts in which two doses of intravenously administered topiramate, 5 and 40 mg/kg, were studied. The animals' heart rate, arterial pressure and EEG were monitored. Plasma for topiramate concentration was sampled for up to 26 h. A single CSF topiramate concentration was determined 1 h following drug administration. Topiramate was quantified using a specific LC/MS assay. RESULTS: The animals tolerated intravenous topiramate well, with no significant changes in physiologic and neurologic parameters. Plasma topiramate concentrations following an intravenous dose were best described by a bi-exponential equation, with a mean clearance of 39+/-18 ml/h/kg, and a terminal half-life of 14.3 (range 7.5-48.1) h. A dose of 5 mg/kg was sufficient to maintain plasma drug concentrations greater than 10 micro M for 24 h. CSF topiramate concentration at 1 h was 12+/-1 micro M and 109+/-26 micro M at the 5 and 40 mg/kg doses, respectively. CONCLUSION: Topiramate administered intravenously was well tolerated. Slow clearance of the drug allowed for maintenance of potential neuroprotective concentrations following a single dose of drug for 24 h. High drug penetration into the CSF is an ideal pharmacologic characteristic of any potential neuroprotective agent. The pharmacokinetic profile of intravenously administered topiramate, including its penetration into the CSF, appears to achieve this goal.

Animals↗

Amifostine for children with medulloblastoma treated with cisplatin-based chemotherapy.

In adult patients, amifostine appears to ameliorate cisplatin-related nephrotoxicity and ototoxicity. We assessed the safety and efficacy of amifostine in 11 children with newly diagnosed medulloblastoma/primitive neuroectodermal tumor treated with radiotherapy and vincristine, lomustine, and cisplatin. Amifostine was administered immediately prior to and 4 hr into the cisplatin infusion. Amifostine caused assymptomatic hypotension and hypocalcemia in 18 and 82% of patients, respectively. Despite amifostine use, 78% of patients developed significant ototoxicity. Although relatively well tolerated, amifostine does not appear to have a major impact on ameliorating the risk of developing significant nephro- and ototoxicity in children with medulloblastoma. Larger studies will help clarify these findings.

Amifostine↗

Congenital neuroblastoma arising in the deltoid muscle.

Neuroblastoma almost always arises in association with sympathetic neural crest tissues that flank the spinal axis, including the paravertebral sympathetic ganglia of the neck, mediastinum, retroperitoneum, and pelvis, or in the adrenal glands. Neuroblastoma in the newborn period, which can present as localized or metastatic disease, often resolves spontaneously and requires little or no therapy. The authors describe a 5-week-old infant with an isolated primary neuroblastoma arising in the deltoid muscle. Histologic and biologic characteristics were consistent with a favorable-prognosis stage 1 neuroblastoma. Following a complete local excision, the child remains in complete remission 3 years from diagnosis.

Biomarkers, Tumor↗

The effect of a thyroid hormone infusion on vasopressor support in critically ill children with cessation of neurologic function.

OBJECTIVE: To determine the impact of a thyroid hormone infusion (T4) on the vasopressor requirements in children with cessation of neurologic function (i.e., brain death) during evaluation for organ recovery DESIGN: Retrospective cohort study. SETTING: The 1998-2002 database of a regional organ recovery program. PATIENTS: Children </=18 yrs with cessation of neurologic function during evaluation for organ recovery (n = 171) were included. The treated group (n = 91) received a weight-based bolus and continuous infusion of T4 according to the organ procurement agency protocol. All other children (n = 80) were considered untreated. INTERVENTIONS: T4 was administered at the clinician's discretion. All children (treated and untreated) had identical goals for fluids, blood pressure, and organ function criteria. Vasopressor score ([dopamine x 1] + [dobutamine x 1] + [epinephrine x 100] + [norepinephrine x 100] + [phenylephrine x 100]) at the time of the program's involvement (T0) and at organ recovery (TOR) were recorded. The Wilcoxon rank sum and Student's two-sample t-test were used to compare the average vasopressor score at T0 vs. TOR. The Wilcoxon signed rank test was used to analyze the difference in median vasopressor score at T0 vs. TOR. Multivariable linear regression was used to assess the impact of T4 on the ability to wean vasopressor support while accounting for the effects of several potential confounders. MEASUREMENTS AND MAIN RESULTS: One hundred seventy-one subjects were included in the final analysis. T4 administration was associated with an unadjusted decrease in the vasopressor score of 32 (95% confidence interval, 12-53; p = .002). After adjusting for steroid administration, fluid balance, and baseline vasopressor score, T4 administration was associated with a decrease in vasopressor score of 24 (95% confidence interval, 6-43; p = .011). CONCLUSIONS: T4 reduced vasopressor needs in children with cessation of neurologic function and hemodynamic instability. A prospective study of T4 in critically ill and hemodynamically unstable children appears warranted.

Adolescent↗

Liquid chromatography-electrospray mass spectrometry (LC-MS) method for determination of esmolol concentration in human plasma.

Esmolol is a very short-acting beta-blocker commonly used in critically ill patients. To study the pharmacokinetics of esmolol in pediatric patients, a liquid chromatography-electrospray mass spectrometry (LC-MS) method to quantitate esmolol concentration in plasma was developed. Following methylene chloride extraction from 200 microl aliquots of plasma containing internal standard and reconstitution in 0.05% formic acid, 10 microl are injected onto column, eluted using a methanol/formic acid gradient over 15 min, and monitored with selected ion recording at 296.2 and 282.2. The assay is linear between 2 and 1000 ng/ml. The intra-day and inter-day coefficients of variation are less than 8 and 10%, respectively.

Adrenergic beta-Antagonists↗

The importance of pharmacokinetic limited sampling models for childhood cancer drug development.

Since the development of effective chemotherapy for children with cancer, it has been recognized that the response of children to apparently identical therapy, both in terms of efficacy and toxicity, can vary widely. Our understanding of the interindividual differences in drug metabolism and disposition as significant determinants of drug response continues to evolve. An increasing area of clinical investigation is focused on studies to gain a better understanding of the variability in critical drug metabolic and elimination pathways and how this variability translates into varied pharmacological effects. Analyzing how drug metabolism and elimination are affected by patient characteristics such as age, sex, race, organ function, drug interactions, and, perhaps most importantly, genetic polymorphisms, is now a routine component of drug development studies. Recent advances in analytical methodologies, computer hardware, and pharmacokinetic software have improved our ability to conduct studies of the disposition of anticancer drugs in larger, more representative pediatric cancer populations. Along with advances in pharmacogenetics, the advances made in the conduct of pharmacokinetic studies in children with cancer have enabled establishment of sophisticated phenotype-genotype correlations, which may ultimately improve care. However, unique challenges and limitations remain that complicate the performance of pharmacokinetic studies in the child with cancer. This review addresses the need to perform pharmacokinetic studies throughout the drug development process in pediatric oncology patients, methods used to develop and validate limited sampling models, and selected examples of limited sampling models used in pharmacokinetic studies in children with cancer.

Antineoplastic Agents↗

Anti-angiogenic agents for the treatment of brain tumors.

It is accepted that novel therapeutic approaches are needed for the majority of patients with malignant brain tumors. The vascularity of many primary brain tumors and the encouraging preclinical studies suggest that antiangiogenic agents have the potential to become an important component of multimodality treatment of patients with brain tumors. The understanding of the biology of angiogenesis is improving rapidly, offering the hope for more specific vascular targeting of brain tumor neovasculature. Neuroimaging techniques evaluating the angiogenic process and the impact of antiangiogenic agents will be an important tool for the rapid development of these novel therapeutic agents.

Angiogenesis Inducing Agents↗

Testing of new agents in childhood cancer preclinical models: meeting summary.

A workshop on pediatric preclinical testing, sponsored by the National Cancer Institute and the Children's Oncology Group Phase 1 Consortium, was held on June 26-27, 2001 in Bethesda, Maryland. Drs. Peter Adamson, Peter Houghton, and Malcolm Smith organized and hosted the meeting. There were 20 participants from 12 institutions. The primary objectives of the workshop included: (a) development of a working inventory of available preclinical models (including human tumor xenografts in immunodeficient mice, transgenic and syngeneic tumors, and selected in vitro models), with a basic understanding of the strengths and weaknesses of each as possible components of a preclinical testing program; (b) identification of the key scientific issues related to establishment of a program for preclinical testing of new agents for their applicability to childhood cancers; and (c) identification of the key infrastructure requirements for a program for preclinical testing of new agents for their applicability to childhood cancers. This report is a synthesis of the workshop's presentations and discussions.

Animals↗

New approaches to drug development in pediatric oncology.

This article reviews the changing paradigm of new drug development for childhood cancer. Although there have been dramatic improvements in the treatment and outcome for childhood cancer over the past 50 years, in some cancers, only limited progress has been made. New strategies to improve the outcome for poor-prognosis tumors and to minimize the long-term sequelae associated with therapy are required. Such strategies include a new pediatric-specific initiative for the preclinical testing of anticancer drugs for childhood malignancies, and ongoing research into the molecular heterogeneity of childhood tumors to facilitate the evaluation of molecularly targeted drugs. In addition, continued investigation into the genetic basis underlying interpatient variability in drug exposure and response is a priority. The goal of these initiatives is to improve the overall outcome for childhood cancer while minimizing the short and long-term sequelae associated with current treatment strategies.

Antineoplastic Agents↗