Skip to content
Saturday 29 August 2026London --:--Frankfurt --:--Zurich --:--
NewslettersSearchEN · DE · FR
MorningWire

European business, markets and politics

FTSE 100
10,824.26
+0.29%
DAX
26,569.99
+0.77%
CAC 40
8,401.18
+0.98%
STOXX 50
6,485.67
+0.95%
  • Europe
  • Markets
  • Business
  • Economy
  • Regulation
  • Politics
  • Opinion
More
GermanyFranceEU InstitutionsCompetitionPublic AffairsBankingTechnologyEnergy
  • Germany
  • France
  • Europe
  • Markets
  • Business
  • Economy
  • Regulation
  • Politics
  • Opinion
  • DE
Monday 22 September 2014 10:12 am  |  Updated:  Friday 07 June 2019 7:24 am

Antibiotic resistance: Genome editor could provide the cure

By: Sarah Spickernell

Add as a preferred source on Google

The threat posed by antibiotic resistance to human health is growing. Every year, more bacterial strains emerge which are able to to resist even the most powerful drugs. 
 
At the moment, roughly two million people are infected by drug resistant bacteria in the UK every year, leading to around 23,000 deaths. 
 
Traditional methods for killing bacteria involve interfering with specific parts of their life cycle, such as cell division and protein synthesis. But some bacteria have mutated their genes to prevent these processes from being identifiable to the drugs used to stop them – the result is that they are extremely proficient at evading recognition and so can easily multiply in the human body.  
 
Scientists at the Massachusetts Institute of Technology (MIT) have now developed a gene-editing technique, details of which were published in Nature Biotechnology, that may prove capable of ridding even the most evasive bacterial strains of their resistance. 
 
Called CRISPR, it works by targeting and disabling the specific genes that confer resistance to the bacteria. Sections of the drug's gene-altering software are built to look for and alter these genes.
 
When they put the new technique to the test, they found that it was able to specifically target and kill more than 99 per cent of the resistant bacteria, while antibiotics to which the bacteria were resistant did not induce any significant killing. 
 
In addition, the researchers showed that the CRISPR system could be used to selectively remove specific bacteria from diverse bacterial communities based on their genetic signatures, thus opening up the potential for "microbiome editing" beyond antimicrobial applications.
 
The researchers are now testing this approach in mice, and they envision that eventually the technology could be adapted to deliver the CRISPR components to treat infections or remove other unwanted bacteria in human patients.
 
Another technology, developed last month by researchers at the same lab, works by identifying combinations of genes that work together to make bacteria more susceptible to antibiotics. 
 
Timothy Lu, lead researcher of both studies, hopes that a combination of these two technologies could lead to the development of new drugs to help fight the growing threat of antibiotic-resistant bacteria on a large scale. 
 
"This is a pretty crucial moment when there are fewer and fewer new antibiotics available, but more and more antibiotic resistance evolving," he said. "We've been interested in finding new ways to combat antibiotic resistance, and these papers offer two different strategies for doing that."

Share this article

  • Facebook
  • X
  • LinkedIn
  • WhatsApp
  • Email

Similarly tagged content:

Sections

  • News

Categories

  • Business

Trending Articles

  • Pensioners to hand over bank statements in government benefits crackdown

  • Jamie Carragher: HMRC petitions for Sky Sports star to be declared bankrupt

  • Brewdog founder James Watt hits out at ‘total silence’ over new venture

  • Lloyds Bank and Halifax users unable to use app in latest outage

  • Economists urge Bank of England to halt bond sales as borrowing costs climb

More from Morning Wire

  • Whey and weight-loss drugs to eat into Applied Nutrition profit

    Retail
    Woman lifting dumbbells with a trainer in a busy gym, promoting fitness and health
  • Plaud Unveils Plaud One Explorer Edition, the Wearable AI Earbuds Built for the Agent Era

    Business Wire
  • The best weapon against AI slop is a good lunch

    Opinion
    Pub in Leadenhall Market, London
  • ‘Absurd’: Government seeks quantum tech chief – no experience necessary

    Tech
    Advanced quantum computer with intricate circuits and glowing interface, illustrating cutting-edge technology innovations
  • U.S. FDA approves ViiV Healthcare’s Tivicay PD, helping close a critical HIV treatment gap for young children

    Business Wire
  • Nanochon Receives Regulatory Approval from Panamá’s Ministry of Health to Initiate First-in-Human Clinical Study of Chondrograft™

    Business Wire
  • Why Albania’s Tirana could be the city break of the future

    Life&Style
    Radisson Collection hotel in Tirana, Albania, featuring a swimming pool, palm trees, and an external fire escape.
  • Cycle Pharmaceuticals Selects Forma Life Sciences to Establish U.S. Commercial Supply for FDA-Approved CAVHANZA™ (nilotinib) Orally Disintegrating Tablets

    Business Wire
MorningWire

Independent European business, markets and political news for decision-makers.

Morning Briefing

Europe

  • Germany
  • France
  • EU Institutions
  • Europe

Business

  • Markets
  • Business
  • Economy
  • Regulation
  • Competition
  • Public Affairs

Editorial

  • Opinion
  • Editorial Policy
  • Corrections
  • Contact

Company

  • About Morning Wire
  • Privacy Policy
  • Terms of Use
  • Cookie Policy
© 2026 Morning Wire Ltd · Published by Morning Wire Media, Bahnhofstrasse 65, 8001 Zürich, Switzerland
Privacy · Terms · Cookies · Facebook