Home > Press > 'Electronic skin' could improve early breast cancer detection
![]() |
Using a silicone model of a breast and embedding objects representing lumps, scientists have successfully tested an electronic skin that can accurately "feel" and image lumps much smaller than those detectable by manual exams. Credit:American Chemical Society |
Abstract:
For detecting cancer, manual breast exams seem low-tech compared to other methods such as MRI. But scientists are now developing an "electronic skin" that "feels" and images small lumps that fingers can miss. Knowing the size and shape of a lump could allow for earlier identification of breast cancer, which could save lives. They describe their device, which they've tested on a breast model made of silicone, in the journal ACS Applied Materials & Interfaces.
Ravi F. Saraf and Chieu Van Nguyen point out that early diagnosis of breast cancer, the most common type of cancer among women, can help save lives. But small masses of cancer cells are not always easy to catch. Current testing methods, including MRI and ultrasounds, are sensitive but expensive. Mammography is imperfect, especially when it comes to testing young women or women with dense breast tissue. Clinical breast exams performed by medical professionals as an initial screening step are inexpensive, but typically don't find lumps until they're 21 millimeters in length, which is about four-fifths of an inch. Detecting lumps and determining their shape when they're less than half that size improves a patient's survival rate by more than 94 percent. Some devices already mimic a manual exam, but their image quality is poor, and they cannot determine a lump's shape, which helps doctors figure out whether a tumor is cancerous. Saraf and Nguyen wanted to fill this gap.
Toward that end, they made a kind of electronic skin out of nanoparticles and polymers that can detect, "feel" and image small objects. To test how it might work on a human patient, they embedded lump-like objects in a piece of silicone mimicking a breast and pressed the device against this model with the same pressure a clinician would use in a manual exam. They were able to image the lump stand-ins, which were as little as 5 mm and as deep as 20 mm. Saraf says the device could also be used to screen patients for early signs of melanoma and other cancers.
The authors acknowledge funding from the National Institutes of Health.
####
About American Chemical Society
The American Chemical Society is a nonprofit organization chartered by the U.S. Congress. With more than 161,000 members, ACS is the world's largest scientific society and a global leader in providing access to chemistry-related research through its multiple databases, peer-reviewed journals and scientific conferences. Its main offices are in Washington, D.C., and Columbus, Ohio.
For more information, please click here
Contacts:
Ravi F. Saraf, Ph.D.
Department of Chemical and Biomolecular Engineering
and the Nebraska Center for Materials and Nanoscience
University of Nebraska-Lincoln
Lincoln, NE 68588
General Inquiries:
Michael Bernstein
202-872-6042
Science Inquiries:
Katie Cottingham, Ph.D.
301-775-8455
Copyright © American Chemical Society
If you have a comment, please Contact us.Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.
Related Links |
Related News Press |
News and information
Closing the gaps — MXene-coating filters can enhance performance and reusability February 28th, 2025
Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025
Cancer
The mechanism of a novel circular RNA circZFR that promotes colorectal cancer progression July 5th, 2024
Govt.-Legislation/Regulation/Funding/Policy
Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025
Quantum engineers ‘squeeze’ laser frequency combs to make more sensitive gas sensors January 17th, 2025
Chainmail-like material could be the future of armor: First 2D mechanically interlocked polymer exhibits exceptional flexibility and strength January 17th, 2025
Nanomedicine
Multiphoton polymerization: A promising technology for precision medicine February 28th, 2025
Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025
SMART researchers pioneer first-of-its-kind nanosensor for real-time iron detection in plants February 28th, 2025
Announcements
Closing the gaps — MXene-coating filters can enhance performance and reusability February 28th, 2025
Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025
Interviews/Book Reviews/Essays/Reports/Podcasts/Journals/White papers/Posters
Leading the charge to better batteries February 28th, 2025
Quantum interference in molecule-surface collisions February 28th, 2025
New ocelot chip makes strides in quantum computing: Based on "cat qubits," the technology provides a new way to reduce quantum errors February 28th, 2025
Alliances/Trade associations/Partnerships/Distributorships
Chicago Quantum Exchange welcomes six new partners highlighting quantum technology solutions, from Chicago and beyond September 23rd, 2022
University of Illinois Chicago joins Brookhaven Lab's Quantum Center June 10th, 2022
![]() |
||
![]() |
||
The latest news from around the world, FREE | ||
![]() |
![]() |
||
Premium Products | ||
![]() |
||
Only the news you want to read!
Learn More |
||
![]() |
||
Full-service, expert consulting
Learn More |
||
![]() |