AI Article Synopsis

  • CPX-351 is a liposomal drug combining cytarabine and daunorubicin, designed for intravenous treatment of blood cancers.
  • The formulation contains the two drugs in a 5:1 ratio, which has shown to be effective in laboratory studies and mouse models.
  • Research involved tracking drug behavior in mice to understand how the drugs are absorbed, distributed, and eliminated, allowing predictions about their effectiveness in targeting cancer cells.

Article Abstract

CPX-351 (cytarabine/daunorubicin liposome injection) is a liposomal formulation of a synergistic, fixed combination of the antineoplastic drugs cytarabine and daunorubicin for intravenous infusion. The two drugs are contained within the liposome in a 5:1 molar ratio, shown to be synergistic in vitro and in murine models of hematological malignancies. Mice were given a single intravenous dose of CPX-351 or conventional cytarabine and daunorubicin in saline and plasma and bone marrow were assayed for drug and lipid concentrations. A pharmacokinetic model was developed to assess the disposition of the coencapsulated drugs in mice, including the free and encapsulated fractions after measurement of the total plasma concentrations. Through the measurement of the loss of both encapsulated drug and liposomal lipid from the plasma, the routes of elimination, extravasation (uptake of encapsulated drugs into the tissues) and leak (passage of the drugs across the liposome membrane into the plasma), could be discerned. Knowing the leak rates from the liposome into the plasma and the plasma pharmacokinetics of the conventional drugs, the free drug concentrations could be predicted. The free concentrations in the bone marrow from the liposome leak in plasma could also be predicted using the bone marrow responses to the conventional drugs.

Download full-text PDF

Source
http://dx.doi.org/10.1002/jps.21620DOI Listing

Publication Analysis

Top Keywords

bone marrow
12
cpx-351 cytarabine/daunorubicin
8
liposome injection
8
cytarabine daunorubicin
8
conventional drugs
8
drugs
7
plasma
7
liposome
6
pharmacokinetics cpx-351
4
cytarabine/daunorubicin hcl
4

Similar Publications

How I diagnose and treat systemic mastocytosis with an associated hematologic neoplasm.

Blood

January 2025

Guy's & St Thomas' NHS Foundation Trust, London, United Kingdom.

Over the last decade significant advances have been made by honing in on the diagnostic evaluation and the significance of molecular profiles in patients with systemic mastocytosis (SM), non-advanced and advanced.This is reflected in the 2022 iterations of the World Health Organization Edition 5 and International Consensus Criteria classifications.The impact of targeted KIT inhibitor therapies on patients treated within global trials has demonstrated significant improvements in the prognosis and overall survival for patients, leading to a change the treatment paradigm.

View Article and Find Full Text PDF

Anemia is a common consequence of myelofibrosis. The treatment of myelofibrosis-associated anemia is complicated by a multifactorial pathobiology, as well as a lack of therapies that result in normalization of the bone marrow and complete restoration of its function. Established agents that are used to treat anemia in other bone marrow failure states such as myelodysplastic syndromes and aplastic anemia, are used for the treatment of myelofibrosis-associated anemia.

View Article and Find Full Text PDF

The biology centered around the TGF-beta type I receptor Activin Receptor-Like Kinase (ALK)1 (encoded by ACVRL1) has been almost exclusively based on its reported endothelial expression pattern since its first functional characterization more than two decades ago. Here, in efforts to better define the therapeutic context in which to use ALK1 inhibitors, we uncover a population of tumor-associated macrophages (TAMs) that, by virtue of their unanticipated Acvrl1 expression, are effector targets for adjuvant anti-angiogenic immunotherapy in mouse models of metastatic breast cancer. The combinatorial benefit depended on ALK1-mediated modulation of the differentiation potential of bone marrow-derived granulocyte-macrophage progenitors, the release of CD14+ monocytes into circulation, and their eventual extravasation.

View Article and Find Full Text PDF

B-cell acute lymphoblastic leukemia (B-ALL) is the most common form of cancer diagnosed in children. While the majority of patients survive with conventional treatment, chemotherapeutic agents have adverse effects and the potential for relapse persists even after full recovery. Given their pivotal function in anti-cancer immunity, there has been a surge in research exploring the potential of natural killer (NK) cells in immunotherapy, which has emerged as a promising avenue for treating leukemia.

View Article and Find Full Text PDF

Purpose: Despite advances in the treatment of adult acute lymphoblastic leukemia (ALL), relapse remains the most significant challenge in improving prognosis. Measurable residual disease (MRD) assessment can predict bone marrow relapse based on MRD positivity. As access to innovative therapies remains limited because of the high cost, chemotherapy is the widely utilized treatment option.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!