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April 27, 20260 citationsOpen Access

Phamacokinetic Optimisation of Treatment Schedules for Anthracycline and Paclitaxel in Patients with Cancer:

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RDR. DanesiMTM. DEL TACCAPCPierfranco CONTE

Key Result

Schedule-dependent interactions between paclitaxel and anthracyclines alter pharmacokinetics, with doxorubicin followed by paclitaxel resulting in an 18-20% incidence of congestive heart failure.

Key Points

  • To analyze the pharmacokinetic interactions between paclitaxel and anthracyclines and optimize treatment schedules in patients with breast cancer.
  • Patients received paclitaxel 125-200 mg/m2 over 3-24 hours and doxorubicin 48-60 mg/m2 as a 48-hour infusion or bolus.
  • Pharmacokinetic data including Cmax and AUC were collected for pharmacodynamic analysis.
  • Toxicity and myelosuppression were evaluated through neutrophil count assessments.
  • Cmax of doxorubicin significantly increased when administered after paclitaxel.
  • 18-20% incidence of congestive heart failure noted with the paclitaxel-->doxorubicin sequence.
  • Epirubicinol AUC was significantly higher when paclitaxel was given after epirubicin, indicating enhanced pharmacokinetic interaction.

Structured PICO

Does the administration schedule of paclitaxel and anthracyclines affect pharmacokinetics and toxicity in patients with breast cancer?

P
Population
Patients with breast cancer
I
Intervention
Combination chemotherapy with paclitaxel and anthracyclines (doxorubicin or epirubicin)
C
Comparator
Different administration sequences (paclitaxel followed by doxorubicin vs doxorubicin followed by paclitaxel) or anthracycline alone
O
Outcome
Pharmacokinetic interactions and toxicity (congestive heart failure, myelosuppression)safety

The pharmacokinetic interaction between paclitaxel and anthracyclines is highly schedule-dependent, significantly impacting drug clearance and the risk of severe toxicities such as congestive heart failure.

Abstract

The integration of paclitaxel into chemotherapy regimens with anthracyclines offers a new opportunity for devising effective therapy for patients with breast cancer. High response rates have been obtained by combining epirubicin or doxorubicin with paclitaxel. The pharmacokinetic analysis of paclitaxel and anthracyclines, as well as the identification of relationships with their pharmacodynamics, represents a rational approach for treatment optimisation. A schedule-dependent interaction between paclitaxel and anthracyclines has been demonstrated in clinical pharmacokinetic studies. In patients given paclitaxel 125 to 200 mg/m2 as 3- to 24-hour infusions in combination with doxorubicin 48 to 60 mg/m2 as a 48-hour infusion or intravenous bolus, the peak plasma drug concentration (Cmax) of doxorubicin increased significantly and drug clearance was reduced in the sequence paclitaxel-->doxorubicin as compared with doxorubicin-->paclitaxel. The schedule paclitaxel-->doxorubicin was more toxic as compared with doxorubicin-->paclitaxel, and an incidence of 18 to 20% of congestive heart failure was observed in patients with breast cancer given doxorubicin 60 mg/m2 followed by paclitaxel 125 to 200 mg/m2. Likewise, patients given epirubicin 90 mg/m2 had a sudden rebound of epirubicinol plasma concentrations shortly after the start of infusion of paclitaxel 200 mg/m2, with a significant increase in the area under the concentration-time curve (AUC) of epirubicinol as compared with epirubicin alone (1.27 +/- 0.2 vs 0.61 +/- 0.1 mumol/L.h). Moreover, the severity of the myelosuppression induced by paclitaxel, as defined by a sigmoid maximum effect (Emax) relationship between the decrease in neutrophil count and the duration of drug plasma concentrations above the threshold value of 0.1 mumol/L, was significantly enhanced by epirubicin. Finally, chemotherapy with paclitaxel and anthracyclines may be improved by designing pharmacologically guided regimens in order to control the extent of pharmacokinetic interaction and reduce the risk of severe toxicity while maintaining the therapeutic efficacy of the combination. Future protocols should explore the activity of a prolonged paclitaxel infusion in association with an anthracycline separated from the taxane by a washout time interval in order to minimise the inhibitory effects exerted by paclitaxel on P-glycoprotein-mediated biliary clearance of anthracyclines, the most likely cause of pharmacokinetic interaction

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Cite This Study

Danesi et al. (1999) conducted a review in Breast cancer. Paclitaxel and anthracyclines (doxorubicin or epirubicin) vs. Alternative administration sequences or single agents was evaluated on Pharmacokinetic interactions and toxicity (congestive heart failure, myelosuppression). Schedule-dependent interactions between paclitaxel and anthracyclines alter pharmacokinetics, with doxorubicin followed by paclitaxel resulting in an 18-20% incidence of congestive heart failure.

synapsesocial.com/papers/69eefdd1fede9185760d485ahttps://doi.org/10.2165/00003088-199937030-00000
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