Nanotechnology Now

Our NanoNews Digest Sponsors
Heifer International



Home > Press > One Nanoparticle Plus One Antibody Equals Targeted Drug Delivery to Tumors

Abstract:
Herceptin and camptothecin are both powerful anticancer agents with key characteristics that limit their effectiveness in treating cancer. Patients treated with Herceptin, a monoclonal antibody that targets a growth promoting factor common to breast cancers (Her2), often relapse as their tumors become resistant to the drug. Overcoming camptothecin"s toxicity and low solubility represent major therapeutic challenges. Now, researchers at the California Institute of Technology have used nanotechnology to combine the two into what so far appears to be a highly effective drug for treating aggressive breast cancer.

One Nanoparticle Plus One Antibody Equals Targeted Drug Delivery to Tumors

Bethesda, MD | Posted on July 15th, 2013

Mark E. Davis and his graduate student Han Han report their developmental work in the journal Molecular Pharmaceutics. Dr. Davis is also a project leader at Caltech's Center of Cancer Nanotechnology Excellence.

Drugs based on monoclonal antibodies and nanoparticles are not new, but what Dr. Davis and Ms. Han have done for the first time is use a single antibody molecule, bound to a nanoparticle, as both a targeting agent for that drug-loaded nanoparticle and a therapeutic agent. They created this construct by first linking insoluble camptothecin to a natural biopolymer known as mucin and the widely used biocompatible polymer, polyethylene glycol (PEG). The camptothecin-mucin-PEG combination self-assembles into a tightly packed nanoparticle that readily dissolves in water and biological fluids such as blood. They then chemically linked one molecule of Herceptin per nanoparticle to create their final therapeutic agent.

In a previous study the group showed that a line of aggressive breast tumor cells that overexpress the Her2 protein readily took up the Herceptin-linked nanoparticle. Based on these results, the Caltech researchers conducted tests in mice with tumors grown from this same cell line, which cancer researchers consider one of the most resistant cell lines to anticancer drugs, including camptothecin. First, they determined the maximum tolerated dose of the camptothecin nanoparticle drug without Herceptin, that is, the highest dose that would not cause the mice to lose more than 15 percent of their body weight. They then treated tumor-bearing animals with a dose of the Herceptin-bound nanoparticle that was approximately 10 percent of this maximum tolerated dose.

The results were impressive. All animals that received the Herceptin-camptothecin nanoparticle were free of any evidence of tumor by day nine of the experiment after a single injection, and the animals remained tumor-free at the end of the six week study (while being injected every three weeks). Animals treated with an equivalent amount of Herceptin alone every two weeks or untargeted camptothecin-loaded nanoparticles responded positively, with the majority of the treated mice showing significant tumor shrinkage, though only half the animals experienced complete tumor regression. Tumors grew rapidly with no signs of positive response in animals that received either saline or free camptothecin and none of the animals in those two groups survived to the end of the study.

####

About The National Cancer Institute (NCI)
To help meet the goal of reducing the burden of cancer, the National Cancer Institute (NCI), part of the National Institutes of Health, is engaged in efforts to harness the power of nanotechnology to radically change the way we diagnose, treat and prevent cancer.

The NCI Alliance for Nanotechnology in Cancer is a comprehensive, systematized initiative encompassing the public and private sectors, designed to accelerate the application of the best capabilities of nanotechnology to cancer.

Currently, scientists are limited in their ability to turn promising molecular discoveries into benefits for cancer patients. Nanotechnology can provide the technical power and tools that will enable those developing new diagnostics, therapeutics, and preventives to keep pace with today’s explosion in knowledge.

For more information, please click here

Contacts:
National Cancer Institute
Office of Technology & Industrial Relations
ATTN: NCI Alliance for Nanotechnology in Cancer
Building 31, Room 10A49
31 Center Drive , MSC 2580
Bethesda , MD 20892-2580

Copyright © The National Cancer Institute (NCI)

If you have a comment, please Contact us.

Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.

Bookmark:
Delicious Digg Newsvine Google Yahoo Reddit Magnoliacom Furl Facebook

Related Links

View abstract - “Single-antibody, targeted nanoparticle delivery of camptothecin.”

Related News Press

News and information

New class of protein misfolding simulated in high definition: Evidence for recently identified and long-lasting type of protein misfolding bolstered by atomic-scale simulations and new experiments August 8th, 2025

Sensors innovations for smart lithium-based batteries: advancements, opportunities, and potential challenges August 8th, 2025

Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025

Lab to industry: InSe wafer-scale breakthrough for future electronics August 8th, 2025

Govt.-Legislation/Regulation/Funding/Policy

New imaging approach transforms study of bacterial biofilms August 8th, 2025

INRS and ELI deepen strategic partnership to train the next generation in laser science:PhD students will benefit from international mobility and privileged access to cutting-edge infrastructure June 6th, 2025

Electrifying results shed light on graphene foam as a potential material for lab grown cartilage June 6th, 2025

Institute for Nanoscience hosts annual proposal planning meeting May 16th, 2025

Nanomedicine

New molecular technology targets tumors and simultaneously silences two ‘undruggable’ cancer genes August 8th, 2025

New imaging approach transforms study of bacterial biofilms August 8th, 2025

Cambridge chemists discover simple way to build bigger molecules – one carbon at a time June 6th, 2025

Electrifying results shed light on graphene foam as a potential material for lab grown cartilage June 6th, 2025

Discoveries

Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025

ICFO researchers overcome long-standing bottleneck in single photon detection with twisted 2D materials August 8th, 2025

New molecular technology targets tumors and simultaneously silences two ‘undruggable’ cancer genes August 8th, 2025

Simple algorithm paired with standard imaging tool could predict failure in lithium metal batteries August 8th, 2025

Announcements

Sensors innovations for smart lithium-based batteries: advancements, opportunities, and potential challenges August 8th, 2025

Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025

Japan launches fully domestically produced quantum computer: Expo visitors to experience quantum computing firsthand August 8th, 2025

ICFO researchers overcome long-standing bottleneck in single photon detection with twisted 2D materials August 8th, 2025

NanoNews-Digest
The latest news from around the world, FREE




  Premium Products
NanoNews-Custom
Only the news you want to read!
 Learn More
NanoStrategies
Full-service, expert consulting
 Learn More











ASP
Nanotechnology Now Featured Books




NNN

The Hunger Project