News

A new way of diagnosing and treating disease -- without cutting skin

University of British Columbia researchers have developed a specialized microscope that has the potential ability to both diagnose diseases that include skin cancer and perform incredibly precise surgery -- all without cutting skin.

advertisement

The researchers describe the technology in a study published today in Science Advances.

"Our technology allows us to scan tissue quickly, and when we see a suspicious or abnormal cell structure, we can perform ultra-precise surgery and selectively treat the unwanted or diseased structure within the tissue -- without cutting into the skin," said Yimei Huang, co-lead author of the study and a former postdoctoral fellow at the department of dermatology and skin science at UBC and BC Cancer.

Huang co-led the study with Zhenguo Wu, a UBC PhD student.

The device is a specialized type of multiphoton excitation microscope that allows imaging of living tissue up to about one millimeter in depth using an ultrafast infrared laser beam. What sets the researchers microscope apart from previous technology is that it s capable of not only digitally scanning living tissue, but also treating the tissue by intensifying the heat produced by the laser.

When applied to treating diseases of the skin, the microscope allows medical professionals to pinpoint the exact location of the abnormality, diagnose it and treat it instantly. It could be used to treat any structure of the body that is reached by light and that requires extremely precise treatment, including nerves or blood vessels in the skin, eye, brain or other vital structures.

"We can alter the pathway of blood vessels without impacting any of the surrounding vessels or tissues," said study co-author Harvey Lui, professor at the department of dermatology and skin science at UBC and the Vancouver Coastal Health Research Institute, and a dermatologist at BC Cancer. "For diagnosing and scanning diseases like skin cancer, this could be revolutionary."

The researchers wanted to make multiphoton microscope technology more versatile while also increasing its precision.

"We wanted to be able to identify what was happening under the skin from many different angles and to have the capability of imaging different body sites," said senior author Haishan Zeng, professor of dermatology, pathology and physics at UBC and distinguished scientist with BC Cancer.

"Once we achieved that, we wondered whether we could transform this diagnostic device into a treatment device by simply turning up the power of the laser."

The results were incredibly exciting.

"We are not only the first to achieve fast video-rate imaging that enables clinical applications, but also the first to develop this technology for therapeutic uses," said Zeng.

The researchers have partnered with several UBC departments, including mechanical engineering, electrical engineering and ophthalmology, to develop different versions of the technology. Exploration includes research into the development of a miniature version that could be used to perform microscopic examinations and treatment during endoscopy -- a non-surgical procedure used to examine a person s digestive tract using an endoscope, a flexible tube with a light and camera attached to it.

This work was supported by the Canadian Institutes of Health Research, the National Key Basic Research Program of China, the National Natural Science Foundation of China, the Canadian Dermatology Foundation, the VGH & UBC Hospital Foundation and the BC Hydro Employees Community Services Fund.

advertisement

Materials provided by University of British Columbia . Note: Content may be edited for style and length.

University of British Columbia. "A new way of diagnosing and treating disease -- without cutting skin: Researchers develop new laser microscope that could be revolutionary for treatment of diseases such as skin cancer." ScienceDaily. ScienceDaily, 15 May 2019. .

University of British Columbia. "A new way of diagnosing and treating disease -- without cutting skin: Researchers develop new laser microscope that could be revolutionary for treatment of diseases such as skin cancer." ScienceDaily. www.sciencedaily.com/releases/2019/05/190515144020.htm (accessed May 15, 2019).
Read more on sciencedaily.com
News Topics :
RELATED STORIES :
Technology
Diagram showing differences that can be observed in cell morphology in normal skin cells versus melanomas. Pink images show differences following biopsy and staining by a pathologist. Green slices show...
Technology
Biotechnologists at Friedrich Alexander Universität Erlangen Nürnberg FAU have developed a system to accurately measure muscle weakness caused by structural changes in muscle tissue. The new method allows muscle function to be assessed...
Technology
Researchers have developed a combination of commercially available hardware and open source software, named PySight, which improves rapid 2D and 3D imaging of the brain and other tissues. By seamlessly enabling...
Technology
Close A newly developed tissue scanner allows looking under the skin of psoriasis patients. This provides clinically relevant information, such as the structure of skin layers and blood vessels, without...
Health
Called the MasSpec Pen, the pen like handheld device releases a droplet of water on the tissue’s surface, attracts biomolecules from the tissue and sucks it back up to test it. It...