Related Experiment Video
Updated: Nov 21, 2025

Author Spotlight: Purifying High-Quality Tubulin to Study Protein Dynamics and Therapeutic Applications
Published on: October 11, 2024
Pharmacokinetics and Safety of PTC596, a Novel Tubulin-Binding Agent, in Subjects With Advanced Solid Tumors
Geoffrey I Shapiro1, Edward O'Mara2, Oscar L Laskin2
1Dana-Farber Cancer Institute, Department of Medical Oncology, Boston, Massachusetts, USA.
Abstract:
PTC596 is a novel, orally bioavailable, small-molecule tubulin-binding agent that reduces B-cell-specific Moloney murine leukemia virus insertion site 1 activity and is being developed for the treatment of solid tumors. A phase 1, open-label, multiple-ascending-dose study was conducted to evaluate the pharmacokinetics and safety of the drug in subjects with advanced solid tumors. PTC596 was administered orally biweekly based on body weight. Dose escalation followed a modified 3 + 3 scheme using doses of 0.65, 1.3, 2.6, 5.2, 7.0, and 10.4 mg/kg. Following oral administration, PTC596 was rapidly absorbed, and between 0.65 and 7.0 mg/kg reached a maximum plasma concentration 2 to 4 hours after dosing. Area under the plasma concentration-time curve increased proportionally with body weight-adjusted doses. Maximum plasma concentration increased with dose, although the increase was less than dose proportional at dose levels >2.6 mg/kg. No accumulation occurred after multiple administrations up to 7.0 mg/kg. PTC596 had a terminal half-life ranging 12 to 15 hours at all doses except for the highest dose of 10.4 mg/kg, where the half-life was approximately 20 hours. Overall, PTC596 was well tolerated. The most frequently reported PTC596-related treatment-emergent adverse events were mild to moderate gastrointestinal symptoms, including diarrhea (54.8%), nausea (45.2%), vomiting (35.5%), and fatigue (35.5%). Only 1 patient treated with 10.4 mg/kg experienced dose-limiting toxicity of neutropenia and thrombocytopenia, both of which were reversible. Stable disease as best overall response was observed among 7 patients, with 2 patients receiving the study drug up to 16 weeks. These results support the further development of PTC596 for the treatment of solid tumors.
Insights
PTC596, a novel oral medication, shows promising safety and pharmacokinetic profiles in patients with advanced solid tumors. Further development is supported by its tolerability and potential to stabilize disease.
Area of Science:
- Oncology
- Pharmacology
- Drug Development
Background:
- PTC596 is a novel, orally bioavailable small-molecule tubulin-binding agent.
- It targets B-cell-specific Moloney murine leukemia virus insertion site 1 activity.
- The drug is under development for treating solid tumors.
Purpose of the Study:
- To evaluate the pharmacokinetics and safety of PTC596.
- To assess the safety and tolerability of escalating oral doses of PTC596.
- To determine the maximum tolerated dose and dose-limiting toxicities.
Main Methods:
- Phase 1, open-label, multiple-ascending-dose study.
- Oral administration of PTC596 biweekly based on body weight.
- Modified 3+3 dose escalation scheme with doses ranging from 0.65 to 10.4 mg/kg.
Main Results:
- PTC596 was rapidly absorbed with dose-proportional area under the curve up to 7.0 mg/kg.
- Maximum plasma concentration increased with dose, with less than dose proportionality above 2.6 mg/kg.
- The drug was well tolerated, with common adverse events including diarrhea, nausea, vomiting, and fatigue. Dose-limiting toxicity was observed in one patient at the highest dose.
Conclusions:
- PTC596 exhibits favorable pharmacokinetic properties and is generally well-tolerated in patients with advanced solid tumors.
- The observed stable disease in some patients supports further clinical investigation.
- These findings support the continued development of PTC596 for solid tumor treatment.
More Related Videos
08:13Spatiotemporal Subcellular Manipulation of the Microtubule Cytoskeleton in the Living Preimplantation Mouse Embryo using Photostatins
Published on: November 30, 2021
10:27Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Related Concept Videos
Drugs that Stabilize Microtubules
Drugs that Destabilize Microtubules