Jump to HeaderJump to Main ContentJump to Footer
Michigan State University
  • Browse Stories By

    Topics

    Explore stories by subject area

    • Arts and Culture
    • Business and Economy
    • Climate and Environment
    • Education and Learning
    • Engineering, Science and Technology
    • Government and Society
    • Health and Medicine
    • Media and Communications
    • MSU Leadership and Impact
    • Sports and Recreation
    • Student and Campus Experience
    View All Stories

    Collections

    Curated story series

    • Turfgrass
    • Ask the Expert
    • Big Ideas
    • Climate solutions
    • Water at MSU
    • Mobility
    • Spartan Perspectives
    • Student views
    • Graduate voices
    • Faculty voices
    View All Collections

    Featured

    Editor's picks

    • The Spartans behind your favorite Michigan golf courses

      July 22, 2026

      The Spartans behind your favorite Michigan golf courses

    • MSU in the 1990s: 10 Spartan milestones

      July 14, 2026

      MSU in the 1990s: 10 Spartan milestones

MSUTODAY
  • Browse Stories By

< Browse Stories By

Topics

Explore stories by subject area

  • Arts and Culture
  • Business and Economy
  • Climate and Environment
  • Education and Learning
  • Engineering, Science and Technology
  • Government and Society
  • Health and Medicine
  • Media and Communications
  • MSU Leadership and Impact
  • Sports and Recreation
  • Student and Campus Experience
  • View All Stories

Collections

Curated story series

  • Turfgrass
  • Ask the Expert
  • Big Ideas
  • Climate solutions
  • Water at MSU
  • Mobility
  • Spartan Perspectives
  • Student views
  • Graduate voices
  • Faculty voices
  • View All Collections

Featured

Editor's picks

  • The Spartans behind your favorite Michigan golf courses

    July 22, 2026

    The Spartans behind your favorite Michigan golf courses

  • MSU in the 1990s: 10 Spartan milestones

    July 14, 2026

    MSU in the 1990s: 10 Spartan milestones

  • For Media
  • Experts
  • Releases and Statements
  • Sign Up
  • Update Information

Resources

  • A to Z Index
  • Find People
  • Maps
  • Email
  • Student Information System (SIS)
  • D2L
  • Libraries
  • Tech Support
  • MSU Misconduct Hotline
  • Social Media Directory
  • Events Calendar
  • For Media
Michigan State University
MSUToday
  • For Media
  • Experts
  • Releases and Statements
  • Sign Up
  • Update Information
MSUTODAY
Engineering

April 29, 2020

Researchers measure cancer cell mechanics in living animals using nanoparticles

By: Alice Walton

A first-of-its-kind nanoparticle-based in vivo imaging technique that may one day be used to help diagnose and even treat cancer has been developed by researchers collaborating from Michigan State, Johns Hopkins and Stanford universities.

The technique captures mechanical properties in living subjects that probe fundamental relationships between physics and in vivo (in a living organism) biology. The results are published in the journal Materials Today.

Bryan Smith, associate professor of biomedical engineering at MSU, worked with colleagues to develop the tiny particles, which, once inside living cells, can reveal important information about cell structure — including how tumor cells physically change as they form a tumor.

“We engineered the ability to measure and quantify the nanomechanical properties of individual living cells within the body of a living animal for the first time,” Smith said.

In a study earlier this year, Smith and his team designed nanoparticles that helped “eat” away atherosclerosis, the plaque buildup in arteries that can lead to heart attack. The particles selectively entered immune system cells known as macrophages, delivering a drug instructing cells to devour the harmful plaques.

Now, Smith and his colleagues have created a technique using different nanoparticles that can be embedded into various cell types, including cancerous breast cells, in live animals. Analyzing how the particles move within the cell can reveal a lot about its internal physical properties.

“There previously existed no method to examine mechanical properties in living subjects — for example, in mammals — with high spatial resolution,” Smith said. “Such techniques promise to open entirely new avenues of inquiry for both disease diagnosis and treatment.”

The mechanical properties of biological tissues have been known to play a major role in many disease states, including heart disease, inflammation and cancer, as well as normal physiology such as cell migration and organism development. In the current study, Smith and his team used nanoparticles to first compare the mechanical properties between cells in culture — both standard 2D and 3D — and in live animals.

Tracking the movement of the nanoparticles revealed that the environment in which the cells are observed greatly affects their mechanical properties – which could mean that certain cell models may not be such valid representations of live animals.

“This tells cancer scientists interested in cancer mechanics that 2D conditions may poorly replicate, and that certain 3D conditions get substantially closer, to mimicking conditions within the live mouse,” Smith said.

The next part of the experiment looked at what actually happens to the internal structure of cancer cells as they begin to form tumors. Previous methods couldn’t answer the question because they were too invasive to test in living subjects.

Again, observing the movement of the nanoparticles within the cells, the team measured how “compliant,” or soft, the cells were. Importantly, they found that normal cells’ pliability remained steady over time, but as cancer cells formed a tumor over the period of a week, they stiffened.

“We found that as a tumor begins to form in a living mouse, individual tumor cells mechanically stiffen. This is a fundamental finding which is ultimately likely to have implications for cancer spread (metastasis) and tumor lethality,” Smith said. “The discovery was made possible by integrating state-of-the-art imaging and particle tracking technologies from our and our collaborators’ labs.”

The research has a number of promising applications in medicine. One of these is simply evaluating which cell culture methods are enough like living organisms to provide meaningful information. Another is measuring the cell mechanical properties of common biological functions, including organ development, in living organisms.

Perhaps the most exciting application may be in disease diagnosis and treatment, Smith said. Nanoparticles might be used to monitor the health of cells and the types of changes they undergo in disease processes – and may even alter that course.

Smith and his colleagues plan to look at the formation and dissemination of cancer metastases, which cause about 90% of cancer deaths.

“I hope one day we’ll be able to treat the physics of metastasis,” he said. “But, we must first understand the mechanics and how changing them impacts cell behavior. We’re now looking into this.”

Note for media: Please include a link to the original paper in online coverage: https://www.sciencedirect.com/science/article/abs/pii/S1369702120300985?via%3Dihub 

MEDIA CONTACTS

Caroline Brooks, Bryan Smith
EngineeringEngineering, Science and TechnologyDiseases, Conditions and TreatmentsHealth and Medicine

Latest News

MSUToday Weekly Update

The MSUToday Weekly Update email showcases how Spartans are making a difference through academic excellence, research impact and community outreach. Get inspired by these stories of innovation, collaboration and determination. Plus, enjoy photos and videos of campus and more MSU content to help keep you connected to the Spartan community.

Sign UpUpdate My Information

Connect With Us

Visit our Facebook pageVisit our page on XVisit our Instagram pageVisit our LinkedIn pageVisit our YouTube pageVisit our TikTok page

Health and Safety

  • MSU Police and Public Safety
  • Olin Health Center
  • Counseling & Psychiatric Services (CAPS)
  • University Health and Wellbeing
  • MSU Health Care
  • Civil Rights and Title IX
  • Our Commitment
  • Center for Survivors
  • Security & Fire Safety Report
  • University Policy on Relationship Violence and Sexual Misconduct
  • Notice of Non-Discrimination, Anti-Harassment and Non-Retaliation
  • Health Care Non-Discrimination Notice

Support Services

  • Disability Resources
  • Supportive Services
  • Learning Resources

Working at MSU

  • Human Resources
  • EBS Login
  • Job Postings
  • Employee Assistance Program

Reports

  • CARES Act Funding
  • Student Achievement and Outcomes

Contact us

517-355-1855

Address

Michigan State University 426 Auditorium Road East Lansing, MI 48824

Follow Us

  • Visit our Facebook page
  • Visit our page on X
  • Visit our Instagram page
  • Visit our TikTok page
  • Visit our LinkedIn page
  • Visit our YouTube page

If you're having accessibility issues, please let us know.

Know More: Campus Safety Information and ResourcesTransparency Reporting: Budget & Salary/Compensation
  • Contact Information|
  • Site Map|
  • Privacy Statement|
  • Site Accessibility|
  • Call MSU: (517) 355-1855|
  • Visit: msu.edu|
  • Notice of Nondiscrimination|

SPARTANS WILL|© Michigan State University|