We use cookies to understand how you use our site and to improve your experience. This includes personalizing content and advertising. To learn more, click here. By continuing to use our site, you accept our use of cookies. Cookie Policy.

Features Partner Sites Information LinkXpress
Sign In
Advertise with Us
BIO-RAD LABORATORIES

Download Mobile App




First-in-Class Masked Antibody Therapeutic Effective in Fighting Pancreatic Tumor Models

By LabMedica International staff writers
Posted on 13 Nov 2013
Print article
In research conducted with multiple preclinical models, the data indicate that a new masked antibody therapeutic has been shown to be effective in fighting pancreatic cancer models as both a single agent and in combination with gemcitabine, a currently available antimetabolite drug approved by the US Food and Drug Administration (FDA) to treat pancreatic and other cancers.

Furthermore, the data show that the agent is locally activated in the tumor microenvironment and it spares systemic side effects, such as skin toxicity associated with systemically blocking Notch pathway signaling.

CytomX Therapeutics (South San Francisco, CA, USA), a Probody therapeutics company, recently presented data demonstrating preclinical proof-of-concept of the company’s Jagged Probody blocking Jagged-dependent Notch signaling for the treatment of cancer. These data were presented for the first time at the AACR-NCI-EORTC International Conference on Molecular Targets and Cancer Therapeutics being held October 19-23, 2013, in Boston (MA, USA).

“The Notch pathway is centrally implicated in tumor biology and is involved in the progression of a number of cancers, including pancreatic cancer, triple negative breast cancer, and multiple myeloma,” stated Henry Lowman, PhD, chief scientific officer of CytomX and senior author of the poster. “Our anti-Jagged Probody represents a novel approach to targeting the Notch signaling pathway, and our data establish preclinical proof-of-concept that selective activation of CTX-033 in the tumor microenvironment results in robust efficacy with an acceptable therapeutic index.”

Probodies are masked antibodies that remain inert in healthy tissue but are activated or “unmasked” in the disease microenvironment. CytomX is developing a novel, first-in-class Probody program that blocks Notch signaling by both the Jagged-1 and Jagged-2 ligands locally in the tumor microenvironment.

“Following our recent publication on the Probody platform in Science Translational Medicine, these data provide further validation of our unique and highly differentiated Probody approach,” said Sean McCarthy, D.Phil., chief executive officer of CytomX. “Our Jagged Probody program showcases the value of the Probody platform in targeting a pathway that has been challenging with traditional antibodies because of healthy tissue toxicities, and we look forward to advancing this novel concept towards clinical testing.”

CytomX’s Probody platform represents a disruptive approach to discovering and developing the next-generation of antibody therapeutics and is enabling the development of a diversified pipeline in major unmet medical needs including cancer and inflammation. Probodies are masked antibodies that remain inert in healthy tissue but are activated specifically in the disease microenvironment. This breakthrough selectivity allows CytomX to drug previously undruggable antibody targets, unlock new therapeutic targets for antibody-drug conjugates (ADCs), and focus activity in the tumor microenvironment, thereby redefining the landscape for therapeutic antibodies.

Related Links:

CytomX Therapeutics


Platinum Member
COVID-19 Rapid Test
OSOM COVID-19 Antigen Rapid Test
Magnetic Bead Separation Modules
MAG and HEATMAG
POCT Fluorescent Immunoassay Analyzer
FIA Go
New
Gold Member
TORCH Panel Rapid Test
Rapid TORCH Panel Test

Print article

Channels

Clinical Chemistry

view channel
Image: The 3D printed miniature ionizer is a key component of a mass spectrometer (Photo courtesy of MIT)

3D Printed Point-Of-Care Mass Spectrometer Outperforms State-Of-The-Art Models

Mass spectrometry is a precise technique for identifying the chemical components of a sample and has significant potential for monitoring chronic illness health states, such as measuring hormone levels... Read more

Hematology

view channel
Image: The CAPILLARYS 3 DBS devices have received U.S. FDA 510(k) clearance (Photo courtesy of Sebia)

Next Generation Instrument Screens for Hemoglobin Disorders in Newborns

Hemoglobinopathies, the most widespread inherited conditions globally, affect about 7% of the population as carriers, with 2.7% of newborns being born with these conditions. The spectrum of clinical manifestations... Read more

Immunology

view channel
Image: The groundbreaking treatment approach has shown promise in hard-to-treat cancers (Photo courtesy of 123RF)

Genetic Testing Combined With Personalized Drug Screening On Tumor Samples to Revolutionize Cancer Treatment

Cancer treatment typically adheres to a standard of care—established, statistically validated regimens that are effective for the majority of patients. However, the disease’s inherent variability means... Read more

Microbiology

view channel
Image: Microscope image showing human colorectal cancer tumor with Fusobacterium nucleatum stained in a red-purple color (Photo courtesy of Fred Hutch Cancer Center)

Mouth Bacteria Test Could Predict Colon Cancer Progression

Colon cancer, a relatively common but challenging disease to diagnose, requires confirmation through a colonoscopy or surgery. Recently, there has been a worrying increase in colon cancer rates among younger... Read more

Pathology

view channel
Image: Fingertip blood sample collection on the Babson Handwarmer (Photo courtesy of Babson Diagnostics)

Unique Hand-Warming Technology Supports High-Quality Fingertip Blood Sample Collection

Warming the hand is an effective way to facilitate blood collection from a fingertip, yet off-the-shelf solutions often do not fulfill laboratory requirements. Now, a unique hand-warming technology has... Read more
Copyright © 2000-2024 Globetech Media. All rights reserved.