When biopsies were so 2021

orange blue background
Invasive biopsies can determine if a tumor is cancerous, when blood tests won’t do. But going in and cutting up a cancer tumor, with a skin like an orange often spreads the cancer. A new test looking at DNA might eliminate biopsies forever.

In diagnostic medicine, biopsies, where a sample of tissue is extracted for analysis, is a common tool for the detection of many conditions.  It’s good news when the cancer is benign but often bad news if malignant because cancer tumors have shells. When ruptured tiny fragments of cancer can spill out and reinfect other parts of the body through the blood, spreading the cancer faster than ever.

There are other drawbacks – it can be painful, doesn’t always extract the diseased tissue, and can only be used in a sufficiently advanced disease stage, making it, in some cases, too late for intervention.  These concerns have encouraged researchers to find less invasive and more accurate options for diagnosing diseases like cancer.

Professor Nir Friedman (who developed a rapid test for Covid) and Dr. Ronen Sadeh from Hebrew University in Jerusalem have published a study in Nature Biotechnology that shows how a wide range of diseases can be detected through a simple blood test.  The test allows lab technicians to identify and determine the state of the dead cells throughout the body and thus diagnose various diseases including cancers and diseases of the heart and liver. 

hebrew university biopsy research team
The biopsy research team

The test is even able to identify specific markers that may differ between patients suffering from the same types of tumorous growths, a feature that has the potential to help physicians develop personalized treatments for individual patients.

The test relies on a natural process whereby every day millions of cells in our body die and are replaced by new cells. When cells die, their DNA is fragmented and some of these DNA fragments reach the blood and can be detected by DNA sequencing methods. However, all our cells have the same DNA sequence, and thus simply sequencing the DNA cannot identify from which cells it originated.

While the DNA sequence is identical between cells, the way the DNA is organized in the cell is substantially different.   The DNA is packaged into nucleosomes, small repeating structures that contain specialized proteins called histones. On the histone proteins, the cells write a unique chemical code that can tell us the identity of the cell and even the biological and pathological processes that are going on within it. In recent years, numerous studies have successfully developed a process where this information can  be identified and thus reveal abnormal cell activity.   

A new approach advanced by Hebrew University researchers, Professor Friedman and Dr. Ronen Sadeh is able to precisely read this information from DNA in the blood and use it to determine the nature of the disease or tumor, exactly where in the body it’s found and even how far developed it is. 

The approach relies on analysis of epigenetic information within the cell, a method which has been increasingly fine-tuned in recent years.  “As a result of these scientific advancements, we understood that if this information is maintained within the DNA structure in the blood, we could use that data to determine the tissue source of dead cells and the genes that were active in those very cells. Based on those findings, we can uncover key details about the patient’s health,” Professor Friedman explains.  “We are able to better understand why the cells died, whether it’s an infection or cancer and based on that be better positioned to determine how the disease is developing.”

Along with the clear diagnostic benefits of this process, the test is also non-invasive and far less expensive than traditional biopsies.  Dr. Ronen Sadeh said, “We hope that this approach will allow for earlier diagnosis of disease and help physicians to treat patients more effectively. 

Recognizing the potential of this approach and how this technology can be so beneficial for diagnostic and therapeutic purposes, we set up the company Senseera which will be involved with clinical testing in partnership with major pharmaceutical companies with the goal of making this innovative approach available to patients.”

TRENDING

Luxury tower in Jerusalem ruins its sacred heritage and eco-architects are worried

Critics of a new set of luxury towers including Israeli-Greek architect Elias Mesinas, warn that the scale of the towers, loss of public green space, and creeping luxury-led gentrification risk undermining Jerusalem’s historic skyline, community fabric, and long-standing planning principles — raising a fundamental question: not whether Jerusalem should densify, but how it can do so responsibly while preserving what makes the city unique.

Oil pollution in Basrah’s soil is 1,200% higher than it should be

Soil pollution levels in parts of Basra are 1,200% to 3,300% higher than those typically measured in cities like Toronto or New York, according to new comparative soil data. It's getting into water.

Factors That Determine the Payout of Asbestos Cases

Asbestos is found in eye shadow and talc. Know your rights of this deadly environmental hazard.

Mini medical machines destroy pancreas cancer cells in new study

The idea of using MENPs to wirelessly control local electric fields was first proposed by Khizroev and Liang in 2011. Over the past decade, the concept evolved through global research partnerships and technological breakthroughs, culminating in this study.

Blackdot’s painless AI-based tattoos will make inked skin less taboo?

Blackdot’s AI-powered tattoo machine promises precision and less pain, but sparks debate over health risks, artistry, and spirituality. From religious prohibitions to smart tattoos, the future of ink is being rewritten by technology.

Should You Invest in the Private Market?

startustartup Unlike public stock exchanges, which offer daily trading, strict...

How to build a 100-year-company

Kongō Gumi is a Japanese construction company, purportedly founded in 578 A.D., making it the world's oldest documented company. What can we learn about building sustainable businesses from them?

From Pilot Plant to Global Stage: How Aduro Clean Technologies’ 2026 Expansion Signals a Turning Point for Chemical Recycling Investors Like Yazan Al Homsi

The company's Next Generation Process (NGP) Pilot Plant in London, Ontario, has officially moved into initial operating campaigns, generating the kind of structured, repeatable data that separates laboratory promise from commercial viability.

How AI Helps SaaS Companies Reduce Repetitive Customer Support Work

SaaS products are designed for large numbers of users with different levels of experience, and also in renewable energy.

Pulling Water from the Air

Faced with water shortage in Amman, Laurie digs up...

Turning Your Energy Consultancy into an LLC: 4 Legal Steps for Founders in Texas

If you are starting a renewable energy business in Texas, learn how to start an LLC by the books.

Tracking the Impacts of a Hydroelectric Dam Along the Tigris River

For the next two months, I'll be taking a break from my usual Green Prophet posts to report on a transnational environmental issue: the Ilısu Dam currently under construction in Turkey, and the ways it will transform life along the Tigris River.

6 Payment Processors With the Fastest Onboarding for SMBs

Get your SMB up and running fast with these 6 payment processors. Compare the quickest onboarding options to start accepting customer payments without delay.

Related Articles

Popular Categories