ADD ANI AS A TRUSTED SOURCE
googleads
Menu
Health

Study finds extracellular fluid association with spread of cancer

Study revealed a unique mechanism that promotes cancer cell spread, as well as providing a foundation for future research that may eventually lead to the discovery of possible new targets to combat cancer metastasis.

ANI Nov 03, 2022 06:02 IST googleads

Represnetative Image

Washington [US], November 3 (ANI): The increased viscosity, or resistance to movement, of the extracellular fluid that surrounds cells allows cancer cells to migrate more quickly from a primary tumour to other areas in the body, according to new research findings.
The findings were published in the journal Nature.
"We deciphered how cells sense and respond to physiologically relevant levels of fluid viscosity that are commonly found in the body of healthy and diseased patients," said Konstantinos Konstantopoulos, Ph.D., lead investigator of the study, the William H. Schwarz Professor of Chemical and Biomolecular Engineering with appointments in Biomedical Engineering and Oncology, and member of the Johns Hopkins Kimmel Cancer Center Invasion and Metastasis Program. "We also showed that cells have the ability to form memory when preexposed to elevated fluid viscosities. We believe these findings will compel researchers in other fields, beyond cancer mechanobiology, to consider fluid viscosity as a key physical cue that regulates cell responses."
The findings, which reveal a novel mechanism that promotes cancer cell dissemination, and provide a framework for ongoing research that may ultimately lead to the identification of potential new targets to combat cancer metastasis.
Although deregulated viscosity of bodily fluids has been correlated with many diseases for almost half a century, studies on cancer cell dissemination to date were primarily performed using fluids of low viscosity, similar to water, explains Kaustav Bera, Ph.D., a recent graduate from the Konstantopoulos lab and first author of the study. "The expectation was that since there is more resistance in more viscous fluids, cancer cells wouldn't move or metastasize efficiently, but we showed that the opposite is true," she said.
The researchers revealed how cells sense and respond to the physical cue of elevated viscosity, and how the cytoskeleton, which controls cell shape and intracellular organization and is involved in cell movement, cooperates with ion channels and ion transporters -- the proteins that channel the flow of charged molecules across the membrane of cells -- to mediate efficient migration at elevated viscosities.
Extracellular viscosity rises with the degradation of large proteins secreted by both normal and cancer cells and with the compromised drainage of lymphatic vessels due to primary tumor growth. The researchers found that a higher resistance environment drives the formation of a denser actin network, which promotes local enrichment of ion transporters that cooperate with water channels to facilitate water uptake, promote cell swelling and increase membrane tension. At the cell's leading edge, this increased membrane tension activates a signaling pathway, which includes an ion channel called TRPV4 that senses physical cues. Fluid viscosity instructs the cell to open its TRPV4 channels, facilitating the intake of calcium, which enhances the force- generating capacity of cells and ultimately drives faster cell movement.
"It is like the cells under high viscosity have gone to the gym to do hard training and develop muscle (actin and myosin), which improves their performance to reach their final destination faster," says Selma Serra, Ph.D., study co-author and researcher at Pompeu Fabra University in Barcelona, Spain.
It was previously thought that the mechanosensing cascades begin with ion channels like TRPV4, says Alex Kiepas, Ph.D., a postdoctoral fellow and the second author of the study. "We found that viscosity sensing starts with the formation ofmore dense and highly branched actin, and TRPV4 activation is actually downstream of actin," he says.
When the researchers knocked down TPRV4, they blocked the faster movement, of cells and their ability to form memory in response to preexposure to elevated viscosities. The researchers used 3-day-old zebrafish embryo models to show that memory of elevated viscosity can enable cells to move faster through blood vessels in vivo. They also used chicken embryo and mouse models to demonstrate that the memory can enhance cancer cell spread out of blood vessels, through a process called extravasation, and lead to a greater number of distant metastatic colonies.
Konstantopoulos said it will be informative to examine, in laboratory animal models, how primary tumors and cancer cells disseminating from primary tumors respond to local changes in extracellular fluid viscosity during disease progression and during invasion into the tissue microenvironment. The development and optimization of biosensors that enable real-time measurement of extracellular fluid viscosity together with imaging cancer cells in living animals will be crucial for addressing this point.
They also plan to investigate whether extracellular viscosity affects other physiologically relevant cellular processes. (ANI)

Get the App

What to Read Next

Health

'Brain activity can predict risky decisions before they happen'

'Brain activity can predict risky decisions before they happen'

Scientists at the University of California, San Francisco (UCSF) and the University of California, Berkeley have identified two neighbouring regions in the human brain that appear to compete when a person decides whether to take a risk, and found that their activity can predict the decision nearly half a second before it is made.

Read More
Health

Weight regain after dieting may be driven by brain biology

Weight regain after dieting may be driven by brain biology

Losing weight is not simply a matter of willpower. New research suggests the human brain is biologically programmed to defend body fat, making it difficult for many people to maintain weight loss even after successful dieting.

Read More
Health

Research finds why poor sleep may harm some brains more

Research finds why poor sleep may harm some brains more

New research from Edith Cowan University (ECU) suggests that sleep habits and genetics may interact to influence subtle brain and cognitive changes associated with Alzheimer's disease years before noticeable symptoms develop.

Read More
Health

Researchers unveil compound that can boost ageing muscle repair

Researchers unveil compound that can boost ageing muscle repair

A sulfur-based compound called LASSS appears to protect and supercharge a key protein involved in repairing damaged muscle. The discovery could eventually lead to new ways to slow muscle loss and preserve strength as people age.

Read More
Health

New cancer strategy can stop tumours before resistance takes hold

New cancer strategy can stop tumours before resistance takes hold

Researchers are applying evolutionary theory to cancer by changing treatments before tumours have time to develop resistance. Mathematical models suggest that rapid, carefully timed switches between multiple therapies could improve cure rates.

Read More
Home About Us Our Products Advertise Contact Us Terms & Condition Privacy Policy

Copyright © aninews.in | All Rights Reserved.