The Oil & Gas Journal, first published in 1902, is the world's most widely read petroleum industry publication. OGJ delivers international oil and gas industry news; analysis of issues and events; practical technology for design, operation, and maintenance of oil and gas operations; and important statistics on energy markets and industry activity.

OGJ is edited to meet the needs of engineers, geoscientists, managers, and executives throughout the oil and gas industry. It is part of Endeavor Business Media, Nashville, Tenn., which also publishes Offshore Magazine.

Endeavor Business Media’s Petroleum Group also produces targeted e-Newsletters; hosts global conferences and exhibitions, seminars, and forums; and publishes directories, technical books, print and electronic databases, surveys, and maps.

Additional Information

Website & Technical Help

For help with subscription purchases or refunds, or trouble logging into the paid subscription content on www.ogj.com, please contact Customer Service at [email protected] or call 1-847-559-7598.

For more customer service information, please click here.

Certara & Ichnos Glenmark Innovation Collaboration Optimizes Dosing Strategy for Potential First-In-Class Cancer Drug

RADNOR, Pa., Sept. 18, 2024 (GLOBE NEWSWIRE) -- Certara, Inc. (Nasdaq: CERT), a global leader in model-informed drug development, today shared the results from its collaboration with Ichnos Glenmark Innovation (IGI) on the first-in-human dose prediction and selection for ISB 2001. IGI’s drug candidate is a trispecific T-cell engager (TCE) being studied as a potential cancer treatment. Preclinical research and biosimulation findings were recently published in Nature Cancer. This publication highlighted ISB 2001’s therapeutic potential for relapsed/refractory multiple myeloma patients.

Difficulties translating data from animals to patients traditionally limit first-in-human (FIH) dose selection to the most conservative approach. IGI sought to optimize the FIH dose of ISB 2001 to maximize patient safety and efficacy. They turned to Certara to develop an innovative virtual clinical trial platform leveraging their expertise in QSP (quantitative systems pharmacology) and PBPK (physiologically-based pharmacokinetics).

“We were honored to work with IGI to develop a comprehensive biosimulation approach that allowed the team to successfully test ISB 2001 in virtual trials,” said Piet van der Graaf, PharmD, Ph.D., Senior Vice President and Head of Applied Biosimulation, Certara. “Our unique expertise and experience using virtual patients plus mechanistic modeling solutions allowed us to accelerate the speed at which ISB 2001 gets to patients. Virtual patient technology is the future of optimizing dosing for human patients.”

As a result of this collaboration, the clinical starting dose increased by approximately 50-100 fold over the conventional starting dose. Using this higher dose reduces the likelihood of exposing cancer patients to ineffective doses. Accepted by the U.S. FDA and Australian HREC, this approach paves the way for determining FIH dosing for ISB 2001 and other TCEs.

In addition, leveraging virtual trials to optimize ISB 2001 dosing saves time and costs. This efficiency is key as the industry faces mounting pressure to get drugs to patients faster. Using a more optimized dose eliminates time spent dosing patient cohorts with sub-therapeutic doses. This approach also minimizes the quantity of animal studies needed aligning with U.S. and European regulatory goals including the FDA Modernization Act 2.0.

“The collaboration with Certara was important for the success of ISB 2001," said Mario Perro, Ph.D., Head of Biologics Research, IGI. "With the innovative QSP model adapted for our trispecific T cell engager, we could predict a first-in-human dose with an acceptable safety margin that will expose fewer patients to sub-therapeutic dosing.”

To learn more about this research collaboration, please read this article, “ISB 2001 trispecific T-cell engager shows strong tumor cytotoxicity and overcomes immune escape mechanisms of multiple myeloma cells.

To learn more about the phase 1 clinical trial informed by this research, please refer to “Study of ISB 2001 in Relapsed/Refractory Multiple Myeloma.”

About Certara
Certara accelerates medicines using biosimulation software, technology, and services to transform traditional drug discovery and development. Its clients include more than 2,400 biopharmaceutical companies, academic institutions, and regulatory agencies across 66 countries. Learn more at certara.com.

Certara Contact:
Sheila Rocchio
sheila.rocchio@certara.com

Media Contact:
Alyssa Horowitz
certara@pancomm.com


Primary Logo

Stock Quote API & Stock News API supplied by www.cloudquote.io
Quotes delayed at least 20 minutes.
By accessing this page, you agree to the following
Privacy Policy and Terms Of Service.