Close Menu
  • News
  • Medical
  • Technology
  • Nanomaterials
  • Research
  • Blog
    • Nasiol.com
  • Contact
    • Tech7685@gmail.com
What's Hot

Ballistic electrons chart a new course for next-gen terahertz devices

June 6, 2025

‘Stealthy’ lipid nanoparticles give mRNA vaccines a makeover

June 5, 2025

Single-layer waveguide display uses achromatic metagratings for more compact augmented reality eyewear

June 5, 2025
Facebook X (Twitter) Instagram
Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily
  • News
  • Medical
  • Technology
  • Nanomaterials
  • Research
  • Blog
    • Nasiol.com
  • Contact
    • Tech7685@gmail.com
Facebook X (Twitter) Instagram
Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily
Home»Research»Revolutionizing Cancer Treatment with Graphene Quantum Dot Nanozymes
Research

Revolutionizing Cancer Treatment with Graphene Quantum Dot Nanozymes

January 18, 2024No Comments2 Mins Read
Facebook Twitter Pinterest Telegram LinkedIn Tumblr WhatsApp Email
Revolutionizing Cancer Treatment with Graphene Quantum Dot Nanozymes
Share
Facebook Twitter LinkedIn Pinterest Telegram Email

In an innovative stride within the field of cancer therapy, a research group led by Prof. Wang Hui from the Hefei Institutes of Physical Science, which is part of the Chinese Academy of Sciences, has introduced a groundbreaking approach.

They have developed a metal-free enzyme based on graphene quantum dots (GQDs) that holds great promise for highly efficient tumour hemodynamic therapy (CDT), as reported in their study published in Matter.

Graphene quantum dots, emerging as a safer and more effective alternative to traditional metal-based nanozymes, address significant toxicity concerns in tumour CDT. However, until now, their clinical application has been limited due to their relatively low catalytic activity under challenging conditions. This has been a significant hurdle in leveraging their full potential in cancer treatment.

Addressing this challenge, the team made a significant leap forward. According to Liu Hongji, a prominent research team member, they developed GQDs from red blood cell membranes, which showed high effectiveness in treating tumours with minimal side effects. The non-metallic nature of these GQDs is a crucial advantage, coupled with their exceptional performance as peroxidase-like biocatalysts, setting a new precedent in the field.

The researchers employed a strategic approach further to enhance the catalytic efficiency of these GQD-based nanocatalytic adjuvants. They introduced a combination of nitrogen and phosphorus into the GQDs, creating a synergistic electron effect. This dual doping method resulted in highly localised states near the Fermi level, significantly boosting the enzymatic activity beyond what was achievable with single heteroatom doping.

The GQDs, which are derived from erythrocyte membranes, have shown remarkable peroxidase-mimicking activity in laboratory settings. They have been particularly effective in inducing apoptosis and ferroptosis in cancer cells. This specificity in targeting tumour cells has led to impressive results: a tumour inhibition rate of 77.71% was observed with intravenous injection and an even more significant 93.22% with intratumoral injection, all without any detectable side effects on non-targeted areas.

See also  High-performance 3D-printed graphene composites developed for efficient ice control

This development represents a significant step toward seeking safe and effective cancer treatments. The biologically benign nature of these GQDs, combined with their targeted efficacy, underscores their potential as a potent biocatalyst in cancer therapy. This novel approach could pave the way for more effective, safer cancer treatments, potentially transforming the landscape of oncological care.

COMPANIES TO WATCH:

Arbutus Bio, Aera, Aduro

Author

Isabella Sterling

Content Producer and Writer

Nano Magazine

Image

Source link

cancer Dot Graphene Nanozymes quantum Revolutionizing Treatment
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email

Related Posts

2D hybrid material integrates graphene and silica glass for next-generation electronics

June 4, 2025

A new molecular model of bilayer graphene with higher semiconducting properties

May 31, 2025

Drug-loaded nanoparticles can enhance precision and safety of ultrasound tumor treatment

May 27, 2025

Biosensor uses pH-responsive DNA nanoswitches for highly sensitive bladder cancer detection in urine

May 24, 2025

Physicists create ultra-stretchable graphene via an accordion-like rippling effect

May 14, 2025

Depositing quantum dots on corrugated chips improves photodetector capabilities

May 8, 2025

Comments are closed.

Top Articles
News

Microrobots Swarm the Seas, Capturing Microplastics and Bacteria [Video]

News

Team presents VO₂@VS₂ one-step hydrothermal synthesis for stable and highly efficient Zn-ion storage

News

What Role Does Boron Nitride Play in 3D Printing?

Editors Picks

Ballistic electrons chart a new course for next-gen terahertz devices

June 6, 2025

‘Stealthy’ lipid nanoparticles give mRNA vaccines a makeover

June 5, 2025

Single-layer waveguide display uses achromatic metagratings for more compact augmented reality eyewear

June 5, 2025

2D hybrid material integrates graphene and silica glass for next-generation electronics

June 4, 2025
About Us
About Us

Your go-to source for the latest nanotechnology breakthroughs. Explore innovations, applications, and implications shaping the future at the molecular level. Stay informed, embrace the nano-revolution.

We're accepting new partnerships right now.

Facebook X (Twitter) Instagram Pinterest
Our Picks

How to Achieve Nanomechanical Characterization with AFM

July 16, 2024

New nanotech weapon takes aim at hard-to-treat breast cancer

September 21, 2023

Researchers develop technique to synthesize water-soluble alloy nanoclusters

January 24, 2024

Subscribe to Updates

Get the latest creative Nano Tech news from Elnano.com

© 2025 Elnano.com - All rights reserved.
  • Contact
  • Privacy Policy
  • Terms & Conditions

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

Cleantalk Pixel