Close Menu
    What's Hot

    AI may finally make ‘women’s work’ valuable. But will women benefit?

    3 Clever Things You Can Do With an Old Amazon Kindle

    Live Updates: Hundreds of Thousands Flee as Fires Rage in Spain and France

    Facebook X (Twitter) Instagram
    Trending
    • AI may finally make ‘women’s work’ valuable. But will women benefit?
    • 3 Clever Things You Can Do With an Old Amazon Kindle
    • Live Updates: Hundreds of Thousands Flee as Fires Rage in Spain and France
    • Bank of America: A Welcome Dividend Increase (NYSE:BAC)
    • Commonwealth Games: England cruise past Northern Ireland to open netball campaign as Scotland fall to New Zealand | Netball News
    • Cl0p Affiliates Target Internet-Exposed PTC Windchill and FlexPLM with Unauthenticated RCE
    • Troy Jackson Picked to Replace Platner as Democratic Nominee in Maine Senate Race
    • One fallen power line exposed a growing AI data center problem. Here’s how to fix it.
    interluknewsinterluknews
    • Home
    • Business
      • Corporate News
      • Industry Insights
      • Startups & Entrepreneurship
      • Technology & Innovation
    • Economy
      • Economic Policy
      • Financial Analysis
      • Inflation & Interest Rates
      • Trade & Markets
    • Global
      • Conflicts & Security
      • Diplomacy
      • Global Trends
      • International Affairs
    • Lifestyle
      • Fashion
      • Food & Dining
      • Personal Development
      • Travel
    • Opinion
      • Columns
      • Editorials
      • Expert Opinions
      • Reader Voices
    • More
      • Politics
        • Elections
        • Government & Policy
        • International Relations
        • Political Analysis
      • Sports
        • Cricket
        • Football / Soccer
        • International Sports
        • Local Sports
      • Technology
        • Artificial Intelligence
        • Cybersecurity
        • Gadgets & Reviews
        • Tech News
      • South Africa News
    Facebook X (Twitter) Instagram
    interluknewsinterluknews
    Tech News

    Venom and Hot Peppers Offer a Key to Killing Resistant Bacteria

    adminBy adminMay 8, 2026No Comments3 Mins Read
    Share Facebook Twitter Pinterest Copy Link Telegram LinkedIn Tumblr Email
    Venom and Hot Peppers Offer a Key to Killing Resistant Bacteria
    Share
    Facebook Twitter LinkedIn Pinterest Email

    Researchers from the National Autonomous University of Mexico (UNAM) have identified new ways to combat tuberculosis and reduce bacterial resistance, developing three new antibiotics derived from scorpion venom and habanero peppers.

    A team led by Lourival Domingos Possani Postay, from the Institute of Biotechnology’s Morelos campus, created two drugs that demonstrated efficacy against the bacterium Mycobacterium tuberculosis, responsible for tuberculosis, as well as against Staphylococcus aureus, a microorganism that in hospital environments can cause various clinical complications, from skin infections to potentially fatal diseases such as pneumonia, meningitis, septicemia, and endocarditis.

    The antibiotics were derived from the venom of the scorpion Diplocentrus melici, native to the state of Veracruz. The team was able to isolate two colorless molecules called benzoquinones—heterocyclic compounds that do not contain amino acids—from the arachnid’s toxin.

    These molecules have a particular property: When they come into contact with air, they oxidize and change color. One becomes blue and the other red. This behavior allowed scientists to determine their chemical structure, synthesize them in the laboratory, and evaluate their biological properties.

    The results showed that the blue benzoquinone has the capacity to act against the bacteria that cause tuberculosis, while the red one is effective against Staphylococcus aureus. Richard Zare, a renowned expert in the field of physical chemistry and a professor of chemistry at Stanford University, participated in this process, which strengthened the validation of the findings.

    The project also involved the collaboration of Rogelio Hernández Pando, from the Salvador Zubirán National Institute of Medical Sciences and Nutrition, who evaluated the effect of blue benzoquinone in a mouse model with induced tuberculosis. After the trials, he concluded that the molecule works as a highly effective antibiotic against this disease.

    Subsequently, the team conducted further tests and found that the same substance is also capable of eliminating other bacteria, such as Acinetobacter baumannii, a highly resistant opportunistic pathogen that is often associated with infections in the blood, urinary tract, lungs, and wounds, especially in hospitals.

    The molecules obtained from the scorpion venom have already been patented in Mexico and South Africa. Currently, researchers are working on the development of nanoparticles that function as stabilizers and protection systems, so that antibiotics can be administered safely in the body.

    According to Possani Postay, the next step is to carry out clinical trials, although he recognizes that these involve considerable investment. For this reason, he expressed interest in collaborating with a national pharmaceutical company to bring the compounds to large-scale production.

    From a Sauce to an Antibiotic

    At the same time, another group from the UNAM Biotechnology Institute identified a peptide in the habanero chili bell pepper that has the capacity to fight opportunistic bacteria that can cause serious infections, particularly in patients with weakened immune systems.

    This project, led by Gerardo Corzo Burguete together with Georgina Estrada Tapia from the Yucatan Scientific Research Center, focused on the bacterium Pseudomonas aeruginosa, considered by the World Health Organization as a high-priority pathogen due to its resistance to conventional antibiotics.

    The scientists identified a peptide called defensin J1-1 in the habanero bell pepper (Capsicum chinense). Based on this finding, they developed a biotechnological process to produce a drug called XisHar J1-1, which proved effective against Pseudomonas aeruginosa and has the potential to treat infections caused by fungi.

    The procedure involved the genetic modification of a bacterium to induce the production of J1-1 defensin. Subsequently, the modified microorganism was cultured by submerged fermentation, an industrial technique that allows the generation of compounds on a large scale. Finally, the peptide was extracted and purified for use as an antibiotic.

    bacteria hot key Killing offer Peppers Resistant Venom
    Follow on Google News Follow on Flipboard
    Share. Facebook Twitter Pinterest LinkedIn Tumblr Email Copy Link
    Previous ArticleThe Best Cat Water Fountains of 2026: Petlibro, Petkit, Oneisall
    Next Article Flyers in 3-0 hole vs. Canes as penalties, power play costly
    admin
    • Website

    Related Posts

    Fund firms deploy ETF ‘spaghetti cannon’ in hunt for next hot trade

    July 24, 2026

    Kagan Says Supreme Court Has Stood Up to Trump in Key Cases

    July 23, 2026

    Key Republican Senator Says He Will Support Erica Schwartz for C.D.C. Director

    July 23, 2026
    Leave A Reply Cancel Reply

    Demo
    Latest Posts

    AI may finally make ‘women’s work’ valuable. But will women benefit?

    3 Clever Things You Can Do With an Old Amazon Kindle

    Live Updates: Hundreds of Thousands Flee as Fires Rage in Spain and France

    Bank of America: A Welcome Dividend Increase (NYSE:BAC)

    Latest Posts

    Subscribe to News

    Get the latest sports news from NewsSite about world, sports and politics.

    Advertisement
    Demo

    We are a digital news platform delivering timely, accurate, and insightful coverage of politics, global affairs, business, economy, sports, and more. Our mission is to keep readers informed with reliable news, clear analysis, and stories that truly matter.
    We're social. Connect with us:

    Facebook X (Twitter) Instagram Pinterest YouTube

    Subscribe to Updates

    Get the latest creative news from FooBar about art, design and business.

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

    Powered by
    ...
    ►
    Necessary cookies enable essential site features like secure log-ins and consent preference adjustments. They do not store personal data.
    None
    ►
    Functional cookies support features like content sharing on social media, collecting feedback, and enabling third-party tools.
    None
    ►
    Analytical cookies track visitor interactions, providing insights on metrics like visitor count, bounce rate, and traffic sources.
    None
    ►
    Advertisement cookies deliver personalized ads based on your previous visits and analyze the effectiveness of ad campaigns.
    None
    ►
    Unclassified cookies are cookies that we are in the process of classifying, together with the providers of individual cookies.
    None
    Powered by