Close Menu
    Facebook X (Twitter) Instagram
    SciTechDaily
    • Biology
    • Chemistry
    • Earth
    • Health
    • Physics
    • Science
    • Space
    • Technology
    Facebook X (Twitter) Pinterest YouTube RSS
    SciTechDaily
    Home»Biology»Unlocking the Lizard’s Secret: A Breakthrough in Cartilage Regeneration
    Biology

    Unlocking the Lizard’s Secret: A Breakthrough in Cartilage Regeneration

    By Keck School of Medicine of USCAugust 10, 2023No Comments5 Mins Read
    Facebook Twitter Pinterest Telegram LinkedIn WhatsApp Email Reddit
    Share
    Facebook Twitter LinkedIn Pinterest Telegram Email Reddit
    Lizard Tail Regeneration
    Researchers from the Keck School of Medicine of USC have identified key cells involved in lizard cartilage regeneration, offering potential insights for treating osteoarthritis. The study uncovers the unique interaction between two cell types, and the findings could eventually lead to methods for regenerating damaged cartilage in humans.

    Scientists from the Keck School of Medicine of USC identify key cells involved in the process of cartilage regeneration in lizards—a discovery that could offer insights into novel approaches to treating osteoarthritis.

    A team of researchers from the Keck School of Medicine of USC has published the first detailed description of the interplay between two cell types that allow lizards to regenerate their tails. This research focused on lizards’ unusual ability to rebuild cartilage, which replaces bone as the main structural tissue in regenerated tails after tail loss. The study will be published today (August 10) in the journal Nature Communications and was funded by the National Institutes of Health (NIH).

    Potential Applications to Osteoarthritis Treatment

    The discovery could provide insight for researchers studying how to rebuild cartilage damaged by osteoarthritis in humans, a degenerative and debilitating disease that affects about 32.5 million adults in the United States, according to the Centers for Disease Control and Prevention. There is currently no cure for osteoarthritis.

    “Lizards are kind of magical in their ability to regenerate cartilage because they can regenerate large amounts of cartilage and it doesn’t transition to bone,” said the study’s corresponding author Thomas Lozito, assistant professor of orthopedic surgery and stem cell biology and regenerative medicine at the Keck School of Medicine of USC.

    Lizards are among the only higher vertebrates capable of regenerating cartilage that does not ossify and are the closest relatives to mammals that can regenerate an appendage with multiple tissue types, including cartilage. Humans, by contrast, cannot repair cartilage that has been damaged once they reach adulthood.

    Green Anole Lizard Regenerating Its Tail
    A green anole lizard regenerating its tail. Credit: Ariel Vonk/Lozito Lab

    Understanding Super Healing Powers

    Lozito explained that understanding how organisms with super healing powers regenerate tissue could help researchers find ways to recreate those processes in mammals.

    “The dream is to find a way to translate that process in humans because they cannot repair cartilage,” said Lozito. “This represents an important step because we need to understand the process in great detail before we can try to recreate it in mammals.”

    Key Cells Identified

    First author Ariel Vonk, who is a PhD student in the Lozito Lab, and the research team determined that cells called fibroblasts, which help build tissue, are the critical cell type that builds cartilage in the lizard’s regenerated tail, the skeletons of which are almost entirely made of cartilage. The research described the changes in gene activity that took place among certain fibroblast cells that enabled cartilage building.

    They also discovered that a type of immune cell called a septoclast plays an important role in inhibiting fibrosis, or scarring, allowing the process of regeneration to take place.

    “Those two cell types working together laid the foundation for the beginning of the regenerative process,” said Lozito, who noted that a major difference between humans and lizards is that human tissue tends to scar and that scarring prevents tissue regeneration.

    One future avenue for research, according to Lozito, is to use single-cell RNA sequencing to better describe the molecular mechanisms that halt scarring in lizards so that they can try to recreate the process in mammals.

    Cartilage Regeneration Induced in Lizard Limbs

    Given what they learned about the cell types and molecular processes involved, the team ran tests to determine if they could recreate the process of rebuilding cartilage in lizard limbs which, unlike tails, do not regenerate after a loss.

    They extracted septoclasts from lizard tails and implanted them into limbs, which were deficient in pro-regenerative immune cells found to be responsible for inhibiting scarring. They were able to successfully induce cartilage building in a lizard limb by recreating a tail-like signaling environment.

    Lozito added that they hope to test whether they can induce cartilage building in mammals, beginning with mice, using the techniques they employed in their experiments on lizard limbs.

    Reference: “Single-cell analysis of lizard blastema fibroblasts reveals phagocyte-dependent activation of Hedgehog- responsive chondrogenesis” by Ariel C. Vonk, Xiaofan Zhao, Zheyu Pan, Megan L. Hudnall, Conrad G. Oakes, Gabriela A. Lopez, Sarah C. Hasel-Kolossa, Alexander W. C. Kuncz, Sasha B. Sengelmann, Darian J. Gamble and Thomas P. Lozito, 10 August 2023, Nature Communications.
    DOI: 10.1038/s41467-023-40206-z

    Additional authors of the study include Ariel Vonk, Xiaofan Zhao, Zheyu Pan, Megan Hudnall, Conrad Oakes, Gabriela Lopez, Sarah Hasel-Kolossa, Alexander Kuncz, Sasha Sengelmann, and Darian Gamble from the Keck School of Medicine of USC.

    The research was funded by the National Institutes of Health (R01GM115444), and support from the Molecular Genomics Core at the USC Norris Comprehensive Cancer Center.

    Never miss a breakthrough: Join the SciTechDaily newsletter.

    Arthritis Keck School of Medicine of USC Regeneration Regenerative Biology University of Southern California
    Share. Facebook Twitter Pinterest LinkedIn Email Reddit

    Related Articles

    This Fish Can Regrow Its Hearing Cells – And Scientists Just Found Out How

    Gene Switch Reboots Sight and Sound: A Breakthrough in Sensory Regeneration

    Researchers Link New Neuron Growth to Enhanced Memory and Learning in Adults

    Regeneration and Beyond: Scientists Discover Starfish Secrets to Limb Loss and Regrowth

    USC Scientists Rewrite Kidney Research With Groundbreaking Cell Cultivation

    Regenerative Superpower Uncovered: How Jellyfish Tentacles Grow Back in Days

    From Aging to Regeneration: The Unexpected Benefits of Senescent “Zombie” Cells

    Stem Cells Help Lizard Regenerate a Perfect Tail for First Time in More Than 250 Million Years

    Geneticists Fully Decode a New Genome for Regeneration Research

    Leave A Reply Cancel Reply

    • Facebook
    • Twitter
    • Pinterest
    • YouTube

    Don't Miss a Discovery

    Subscribe for the Latest in Science & Tech!

    Trending News

    Why Is a Floating Seaweed Taking Over an Entire Ocean? Researchers Have the Answer

    This Special Diet May Slow Brain Aging, Harvard Study Reveals

    Strange Mars Mudstones May Hold the Strongest Clues Yet of Ancient Life

    Scientists Just Found a Way to Simulate the Universe on a Laptop

    Scientists Discover Massive DNA “Inocles” Living in the Human Mouth

    Scientists Discover Hidden Driver of Aging That May Be Reversed

    What if Your Refrigerator Was Twice As Efficient and Completely Silent?

    Cancer Found To Trigger Premature Aging in the Body

    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
    • Scientists Use Electricity To “Reprogram” the Immune System for Faster Healing
    • “Young” Immune Cells Reverse Signs of Alzheimer’s and Aging
    • This Over-the-Counter Vitamin B3 Supplement May Help Prevent Skin Cancer
    • Webb Telescope Detects Gas on Distant Dwarf Planet Makemake for the First Time
    • This Star’s Violent Feeding Frenzy May End in a Blinding Supernova
    Copyright © 1998 - 2025 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.