U of T researchers create microchip that can detect type and severity of cancer
UofT researchers have used nanomaterials to develop a microchip sensitive enough to quickly determine the type and severity of a patient's cancer so that the disease can be detected earlier for more effective treatment. Their groundbreaking work, reported Sept. 27 in Nature Nanotechnology heralds an era when sophisticated molecular diagnostics will become commonplace.
"This remarkable innovation is an indication that the age of nanomedicine is dawning," says Professor David Naylor, president of the University of Toronto and a professor of medicine. "Thanks to the breadth of expertise here at U of T, cross-disciplinary collaborations of this nature make such landmark advances possible."
The researchers' new device can easily sense the signature biomarkers that indicate the presence of cancer at the cellular level, even though these biomolecules – genes that indicate aggressive or benign forms of the disease and differentiate subtypes of the cancer – are generally present only at low levels in biological samples. Analysis can be completed in 30 minutes, a vast improvement over the existing diagnostic procedures that generally take days.
"Today, it takes a room filled with computers to evaluate a clinically relevant sample of cancer biomarkers and the results aren't quickly available," says Shana Kelley, a professor in the Leslie Dan Faculty of Pharmacy and the Faculty of Medicine, who was a lead investigator on the project and a co-author on the publication.
"Our team was able to measure biomolecules on an electronic chip the size of your fingertip and analyse the sample within half an hour. The instrumentation required for this analysis can be contained within a unit the size of a BlackBerry."
Kelley, along with engineering professor Ted Sargent – a fellow lead investigator and U of T's Canada Research Chair in Nanotechnology – and an interdisciplinary team from Princess Margaret Hospital and Queen's University, found that conventional, flat metal electrical sensors were inadequate to sense cancer's particular biomarkers. Instead, they designed and fabricated a chip and decorated it with nanometre-sized wires and molecular "bait."
"Uniting DNA – the molecule of life – with speedy, miniaturized electronic chips is an example of cross-disciplinary convergence," says Sargent. "By working with outstanding researchers in nanomaterials, pharmaceutical sciences, and electrical engineering, we were able to demonstrate that controlled integration of nanomaterials provides a major advantage in disease detection and analysis."
The speed and accuracy provided by their device is welcome news to cancer researchers.
"We rely on the measurement of biomarkers to detect cancer and to know if treatments are working," says Dr. Tom Hudson, president and scientific director of the Ontario Institute for Cancer Research. "The discovery by Dr. Kelley and her team offers the possibility of a faster, more cost-effective technology that could be used anywhere, speeding up diagnosis and helping to deliver a more targeted treatment to the patient."
The team's microchip platform has been tested on prostate cancer, as described in a paper published in ACS Nano, and head and neck cancer models. It could potentially be used to diagnose and assess other cancers, as well as infectious diseases such as HIV, MRSA and H1N1 flu.
"The system developed by the Kelley/Sargent team is a revolutionary technology that could allow us to track biomarkers that might have significant relevance to cancer, with a combination of speed, sensitivity, and accuracy not available with any current technology," says Dr. Fei-Fei Liu, a radiation oncologist at Princess Margaret Hospital and Head of Applied Molecular Oncology Division, Ontario Cancer Institute. "This type of approach could have a profound impact on the future management for our cancer patients."
Source: University of Toronto
Related
- OU researchers developing new tool to detect cancerTue, 26 Aug 2008, 11:15:33 EDT
- Bioluminescence imaging used for eye cancer detectionTue, 13 Oct 2009, 13:26:00 EDT
- Novel test following prostate surgery could detect cancer recurrence earlierWed, 29 Sep 2010, 16:23:41 EDT
- Circulating tumor cells can reveal genetic signature of dangerous lung cancersThu, 3 Jul 2008, 5:15:08 EDT
- MIT: New blood-testing device can quickly spot cancer cells, HIVTue, 29 Mar 2011, 12:08:49 EDT
Other sources
- Microchip That Can Detect Type And Severity Of Cancer Createdfrom Science DailyTue, 29 Sep 2009, 20:28:05 EDT
- Researchers create microchip that can detect type and severity of cancerfrom Science CentricTue, 29 Sep 2009, 14:42:11 EDT
- Microchip uses nanotechnology to detect cancerfrom CBC: Technology & ScienceMon, 28 Sep 2009, 13:14:07 EDT
- Microchip uses nanotechnology to detect cancerfrom CBC: HealthMon, 28 Sep 2009, 12:49:05 EDT
- Microchip can detect type and severity of cancerfrom PhysorgMon, 28 Sep 2009, 11:14:06 EDT
Latest Science Newsletter
Get the latest and most popular science news articles of the week in your Inbox! It's free!Learn more about
Check out our next project, Biology.Net
Popular science news articles
- Good news for nanomedicine: Quantum dots appear safe in pioneering study on primates
- UCLA researchers map damaged connections in Phineas Gage's brain
- Using graphene, scientists develop a less toxic way to rust-proof steel
- Taking solar technology up a notch
- Human-like spine morphology found in aquatic eel fossil
- Good news for nanomedicine: Quantum dots appear safe in pioneering study on primates
- Pacific islands may become refuge for corals in a warming climate, study finds
- In metallic glasses, researchers find a few new atomic structures
- New graphene-based material could revolutionize electronics industry
- UCLA researchers map damaged connections in Phineas Gage's brain
- UCLA researchers map damaged connections in Phineas Gage's brain
- Modern dog breeds genetically disconnected from ancient ancestors
- Google goes cancer: Researchers use search engine algorithm to find cancer biomarkers
- New silicon memory chip developed
- Pollution teams with thunderclouds to warm atmosphere
- Italian merchants funded England's discovery of North America
- New graphene-based material could revolutionize electronics industry
- Babies' brains benefit from music lessons, researchers find
- Happiness model developed by MU researcher could help people go from good to great
- UCLA researchers map damaged connections in Phineas Gage's brain