Close Menu
    Facebook X (Twitter) Instagram
    SciTechDaily
    • Biology
    • Chemistry
    • Earth
    • Health
    • Physics
    • Science
    • Space
    • Technology
    Facebook X (Twitter) Pinterest YouTube RSS
    SciTechDaily
    Home»Biology»Nanoparticles Stop Lymphoma in Mice
    Biology

    Nanoparticles Stop Lymphoma in Mice

    By Bill Hathaway, Yale UniversityMay 29, 2012No Comments3 Mins Read
    Facebook Twitter Pinterest Telegram LinkedIn WhatsApp Email Reddit
    Share
    Facebook Twitter LinkedIn Pinterest Telegram Email Reddit
    DNA Molecule Model Illustration
    Yale University biologists halted lymphoma in mice by directly injecting tumors with nanoparticles containing a compound that targets miR-155.

    Using nanoparticles that deliver a compound that specifically targets miR-155, biologists at Yale University were able to stop lymphoma in mice when injected directly into tumors.

    Yale biologists and engineers have designed drug-loaded nanoparticles that target the soft underbelly of many types of cancer — a tiny gene product that tumors depend upon to replicate and survive.

    The novel therapy successfully stopped lymphoma in mice when injected directly into tumors, the researchers report in the Proceedings of the National Academy of Sciences, published the week of May 28.

    The interdisciplinary collaboration takes advantage of a new concept in cancer research — that tumors become “addicted” to a few genetic abnormalities they need to survive, grow, and spread throughout the body.

    “Thousands of genes are mis-expressed in cancer, but so far cancer researchers have only found 10 or so that cancer cells absolutely need to survive,” said Frank Slack, professor of molecular, cellular, and developmental biology, director of the Cancer Genetics and Genomics Program for the Yale Cancer Center, and senior author of the study.

    Slack’s lab studies microRNAs, or small pieces of genetic material that determine when and where much larger genes that code for proteins are used. One of these miRNAs, miR-155, helps regulate cell survival and is overactive in many forms of cancer. For instance, mice with excessive amounts of miR-155 develop lymphoma tumors.

    One of Slack’s graduate students collaborated with a student working in the lab of Mark Saltzman, the Goizueta Foundation Professor of Chemical and Biomedical Engineering and Yale Cancer Center researcher, about ways to use nanoparticles to help block actions of miR-155 in mice with lymphoma. The team discovered that injecting nanoparticles that deliver a compound that specifically targets miR-155 into tumors stopped them from growing in mice.

    Slack pointed out that miR-155 is also overactive in lung cancer and many other treatment-resistant forms of the disease.

    “At this point, we want to improve the technique so we can load even more of this compound into the nanoparticles and make it easier for them to enter tumor cells,” Slack said. “Ultimately, we would like to take this to human clinical trials for difficult-to-treat cancers.”

    Reference: “Nanoparticle-based therapy in an in vivo microRNA-155 (miR-155)-dependent mouse model of lymphoma” by Imran A. Babar, Christopher J. Cheng, Carmen J. Booth, Xianping Liang, Joanne B. Weidhaas, W. Mark Saltzman and Frank J. Slack, 8 June 2012, Proceedings of the National Academy of Sciences.
    DOI: 10.1073/pnas.1201516109

    Imran A. Babar and Christopher J. Cheng were co-lead authors of the paper. Other Yale authors are Carmen J. Booth, Xianping Liang, and Joanne B. Weidhaas.

    The research was funded by James S. McDonnell Foundation and the National Institutes of Health.

    Never miss a breakthrough: Join the SciTechDaily newsletter.
    Follow us on Google and Google News.

    Cancer Disease MicroRNA Nanoparticles Yale University
    Share. Facebook Twitter Pinterest LinkedIn Email Reddit

    Related Articles

    DNA2 Molecule Helps Repair Chromosome Rearrangements Linked to Cancer

    Yale Research Provides New Clues to How Cancer Cells Spread

    Yale Scientists Reveal Underlying Cause of Myeloma

    Yale Researchers Identify RNA That Controls Cholesterol

    Biologists Identify a New Approach to Cancer Immunotherapy

    DNA Sequencing Technologies Help Characterized the Mutational Landscape of Melanoma

    Searching for the Best Shape for Cancer Fighting Nanoparticles

    Nucleic Acid Nanoparticles to Target Genes that Promote Tumor Growth

    A Potential Therapeutic Target for Treating Pulmonary Fibrosis

    Leave A Reply Cancel Reply

    • Facebook
    • Twitter
    • Pinterest
    • YouTube

    Don't Miss a Discovery

    Subscribe for the Latest in Science & Tech!

    Trending News

    A SpaceX Falcon 9 Rocket Hit the Moon and Blasted Open a 60-Foot Crater

    Study Reveals Your Organs May Be Aging at Very Different Speeds

    Scientists Finally Solve a 20-Year Mystery About Diamond Melting

    Ultra-Processed Foods Linked to 30% Higher Prostate Cancer Risk

    More Screen Time, Better Thinking? An 8-Year Study Finds a Surprising Link

    Cleaner Cars May Be Hiding a New Pollution Problem

    Common Plant Chemical Linked to Widespread Organ Damage in Aquatic Animals

    Dogs and Humans May Share a Surprising Biological Secret to Longevity

    Follow SciTechDaily
    • Facebook
    • Twitter
    • YouTube
    • Pinterest
    • Newsletter
    • RSS
    SciTech News
    • Biology News
    • Chemistry News
    • Earth News
    • Health News
    • Physics News
    • Science News
    • Space News
    • Technology News
    Recent Posts
    • Tiny Stars Are Making the Early Universe Much Harder to Explain
    • Dark Stars May Have Left a Gravitational-Wave Signal We Can Detect Today
    • NASA’s Powerful New Roman Space Telescope Is Cleared for Launch
    • Scientists Reveal How Cells Tame One of Biology’s Most Dangerous Metals
    • Hurricane Forecast Maps Are Getting Better – but One Big Problem Remains
    Copyright © 1998 - 2026 SciTechDaily. All Rights Reserved.
    • Science News
    • About
    • Contact
    • Editorial Board
    • Privacy Policy
    • Terms of Use

    Type above and press Enter to search. Press Esc to cancel.