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Development and Preclinical Assessment of a Palbociclib Nanostructured Lipid Carrier for Potential Breast Cancer
Nida Nehal1, Devika Unnithan1, Nasr A Emad1
1Department of Pharmaceutics, School of Pharmaceutical Education and Research, Jamia Hamdard, New Delhi 110062, India.
Abstract:
Breast cancer has the highest incidence rates among all cancers, which represent a global health concern. Effective chemotherapy for breast cancer must minimize adverse effects to improve patient outcomes. Palbociclib (PB), a CDK 4/6 inhibitor, restricts cell growth and suppresses DNA replication in the retinoblastoma tumor suppressor gene (RB). Despite its breakthrough status postapproval, PB is associated with severe side effects, including neutropenia, leukopenia, infections, and thrombocytopenia. The current study aims to develop and optimize a PB-loaded lipidic nanocarrier. The development method was solvent evaporation, and formulation optimization was performed using a central composite rotatable design. Characterization of the nanostructured lipid carrier (NLC) showed a particle size of 129.8 ± 7.6 nm with a PDI of 0.2694 ± 0.04 and a zeta potential of -29.8 ± 2.4 mV. Surface morphology was studied using transmission electron microscopy, which confirmed the particles' uniform and spherical shape. In vitro release studies in 0.1 N HCl and pH 6.8 phosphate buffer demonstrated cumulative drug releases of 91.23 ± 2.1% and 72.9 ± 2.0%, respectively. Intestinal permeation studies demonstrated a 3.76-fold increase in gut permeation with PB-NLC compared to that with PB-Sus. The lipolysis study indicated an enhanced drug availability at the site of absorption. Confocal studies revealed improved drug penetration depth in the intestine with PB-NLC compared to that with PB-Sus. In vivo pharmacokinetic studies demonstrated that incorporating PB into a lipidic nanocarrier (PB-NLC) significantly enhanced its bioavailability by approximately 5.9-fold (p < 0.05) compared to PB suspension. Additionally, acute toxicity studies in Wistar rats confirmed the safety of the developed NLC for oral administration in managing breast cancer. Therefore, the PB-loaded NLC shows significant promise for breast cancer treatment, providing improved drug delivery and minimized side effects.
Insights
This study developed novel nanostructured lipid carriers (NLCs) for palbociclib (PB) to improve breast cancer treatment. The PB-loaded NLCs enhanced drug bioavailability and showed promise for safer oral administration.
Area of Science:
- Nanotechnology
- Pharmacology
- Oncology
Background:
- Breast cancer is a global health concern with high incidence rates.
- Palbociclib (PB), a CDK 4/6 inhibitor, is effective but causes severe side effects.
- Minimizing adverse effects is crucial for improving patient outcomes in breast cancer chemotherapy.
Purpose of the Study:
- To develop and optimize palbociclib (PB)-loaded nanostructured lipid carriers (NLCs).
- To evaluate the physicochemical properties, in vitro release, intestinal permeation, and in vivo pharmacokinetics of PB-NLCs.
- To assess the safety and efficacy of PB-NLCs for oral administration in breast cancer treatment.
Main Methods:
- Solvent evaporation method for NLC development.
- Central composite rotatable design for formulation optimization.
- Characterization using particle size analysis, zeta potential, TEM, in vitro release studies, intestinal permeation, lipolysis, confocal microscopy, pharmacokinetic, and toxicity studies.
Main Results:
- Optimized NLCs exhibited a particle size of 129.8 ± 7.6 nm and a negative zeta potential (-29.8 ± 2.4 mV).
- PB-NLC demonstrated enhanced intestinal permeation (3.76-fold increase) and improved drug penetration depth.
- In vivo studies showed a 5.9-fold increase in PB bioavailability with PB-NLC compared to PB suspension, with confirmed safety in acute toxicity studies.
Conclusions:
- Developed PB-loaded NLCs offer a promising approach for improved oral drug delivery in breast cancer.
- The nanocarrier system enhances palbociclib bioavailability and potentially reduces side effects.
- PB-NLCs represent a safe and effective strategy for breast cancer management.
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