Independent education resourceInformation here does not replace care from a qualified health professional.
Peptide Therapy GuideClear peptide education

Educational guide

Medicenna, MD Anderson Partner on IL4R-targeting Fusion Proteins

Medicenna BioPharma established a sponsored research agreement with the University of Texas MD Anderson Cancer Center to develop fusion protein therapeutics targeting the interleukin-4 receptor (IL4R). The partnership aims to develop preclinical candidates, wh

Written by Peptide Therapy Guide Editorial Team
For education only

This guide cannot diagnose a condition or recommend a personal treatment plan. Discuss medical questions with a qualified professional.

Medicenna BioPharma established a sponsored research agreement with the University of Texas MD Anderson Cancer Center to develop fusion protein therapeutics targeting the interleukin-4 receptor (IL4R). The partnership aims to develop preclinical candidates, which Medicenna calls Empowered Cytokines™, based on the firm’s IL-4 and IL-13 Superkine™ (engineered cytokine) platform, which has been licensed from Stanford University.

The joint research with MD Anderson will be headed by Dr. Michael Rosenblum at the immunopharmacology and targeted therapy (ITT) laboratory at MD Anderson’s department of experimental therapeutics. The ITT laboratory has expertise in the development of recombinant therapeutics targeting solid tumors, tumor vasculature, and the tumor microenvironment.

Financial details were not disclosed, but Medicenna said it will fund the collaboration in part using a grant awarded by the Cancer Prevention Research Institute of Texas (CPRIT). Medicenna BioPharma will also retain global rights to develop and commercialize products developed through the collaboration with MD Anderson.

Medicenna Biopharma is a subsidiary of immuno-oncology company Medicenna Therapeutics, which is developing a pipeline of IL4R-targeting Interleukin-4 Empowered Cytokines™ (IL4-ECs). Lead IL-4EC candidate MDNA55 is undergoing a Phase IIb trial, started in December 2016, as a treatment for recurrent glioblastoma (rGB) in adult patients.

MDNA55 has been awarded fast-track designation by the FDA and also orphan drug status in both the U.S. and EU. The candidate is also ready to start in Phase II trials for treating brain metastases and newly diagnosed glioblastoma multiforme and is poised to start in Phase I trials against pediatric glioma. Medicenna says the candidate could have utility against other solid and central nervous system cancers, bladder and prostate cancers, and blood cancers.

Medicenna closed the fourth tranche of a CDN$10 million ($7.5 million) round of fundraising in December 2016, which qualified the firm to receive the full $14.1 million of a nondilutive development milestone-dependent, staged grant from the CPRIT. Medicenna was required to raise at least $7 million in matched funding to unlock the full grant.

Connected reading

Helpful context for this guide

Source-derived material selected through this article’s indexed topics.

Related questions

01Undruggable or unscreenable?

Another obstacle to discovering new PPI inhibitors is the lack of libraries designed to hunt for them, points out Philippe Roche, PhD, senior scientist at the Integrative Structural and Chemical Biology team at the Cancer Research Center of Marseilles, France. “If you screen PPIs using libraries that were designed for kinases or GPCRs, that’s why you don’t get a lot of good results,” he says. To that end, his group began assembling a library focused on orthosteric inhibitors of PPIs. The result was 2P2Idb, a hand-curated, structural database cataloguing orthosteric inhibitors of PPIs for which the interface had been 3D characterized. From analyzing these known PPI inhibitors, and what structures they had in common, Roche and his colleagues developed a model to predict whether compounds would likely inhibit PPIs. Using this method, 2P2Idb creates an enriched screening library that dramatically increases the hit rate compared to standard libraries. Having proven their success with a small library of 1600 compounds, they are in the process of expanding the library to 10,000 compounds. Once that’s published, “the idea is to make this library available to labs around the world,” Roche says. “We will provide the library free of charge for people to be able to screen PPI targets.”

Source: www.genengnews.com ↗
02How stable is the antibody?

A crucial question often addressed during preclinical development focuses on the in vivo stability of therapeutic antibodies. Increasing the half-life of a therapeutic antibody has several benefits ranging from higher treatment efficacy to increased advantages for the patients who will have a fewer number of therapy sessions and a reduced cost. Given these compelling benefits, following the identification of therapeutic antibodies with the desired specificity, developers usually subject them to a refinement step to increase their stability. This process is often hindered by the lack of reliable experimental tools to predict the half-life of antibodies in patients. The major hurdle of using mouse models to predict antibody stability in the serum lies in the way immunoglobulin proteins are processed by the organism. In mammals, most proteins circulating in the serum undergo constant uptake by endothelial cells and are routed through the endosomes to the lysosomal compartment for degradation. In the endosomes, immunoglobulin G (IgG) proteins are recognized and bound by a transmembrane protein, called the neonatal Fc receptor (FcRn), which mediates their recycling to the plasma membrane and subsequent release back into the serum. As a result, the half-life of IgGs are significantly extended by this mechanism. Since most therapeutic antibodies belong to the IgG class, this recycling system is very relevant for their relative stability in the body. Remarkably, the relative affinity between IgGs and FcRn is extremely disparate between different species, with the mouse receptor showing a much higher affinity than its human counterpart.

Source: www.genengnews.com ↗
P

About the author

Peptide Therapy Guide Editorial Team

Editorial team for Peptide Therapy Guide.

View all articles →