• About
  • Advertise
  • Privacy & Policy
  • Contact
HK Businesswire
  • Home
  • News
    • All
    • Business
    • Politics
    • PR Newswire
    • Science
    • World

    Juventus triumph over Chelsea at Kai Tak Stadium

    Corals Spin Tiny Vortices to Get Oxygen, but Not if It’s Too Hot

    China and U.S. Business Communities Strengthen Ties, Explore New Opportunities for Supply Chain Cooperation

    China and U.S. Business Communities Strengthen Ties, Explore New Opportunities for Supply Chain Cooperation

    Scientists unveil more than 600 new tissue models of human cancer

    Researchers make air-stable, ultrathin superconductors, for more scalable quantum devices

    Mother jailed for 22 years for starving son to death

    Trending Tags

    • Trump Inauguration
    • United Stated
    • White House
    • Market Stories
    • Election Results
  • PR Newswire
  • Business
  • World
  • Entertainment
  • Sports
  • Tech
    • All
    • Apps
    • Gadget
    • Mobile
    • Startup

    HKT Posts 4% Profit Rise Amid Steady Local Recovery and AI-Driven Demand

    Alipay Launches AI-Powered Version ‘Abao’ to Streamline Services

    Xiaohongshu Prepares Confidential Hong Kong IPO Filing

    SpaceX Raises $75 Billion in Historic IPO Amid $350 Billion Investor Demand

    Chinese firms double down on tech: Xiaomi, Haier

    Xiaomi Launches MiMo Code AI Programming Assistant to Enter Coding Agent Market

    Apple Unveils Overhauled Siri AI and Major OS Updates at WWDC 2026

    Trending Tags

    • Nintendo Switch
    • CES 2017
    • Playstation 4 Pro
    • Mark Zuckerberg
  • Feature
No Result
View All Result
  • Home
  • News
    • All
    • Business
    • Politics
    • PR Newswire
    • Science
    • World

    Juventus triumph over Chelsea at Kai Tak Stadium

    Corals Spin Tiny Vortices to Get Oxygen, but Not if It’s Too Hot

    China and U.S. Business Communities Strengthen Ties, Explore New Opportunities for Supply Chain Cooperation

    China and U.S. Business Communities Strengthen Ties, Explore New Opportunities for Supply Chain Cooperation

    Scientists unveil more than 600 new tissue models of human cancer

    Researchers make air-stable, ultrathin superconductors, for more scalable quantum devices

    Mother jailed for 22 years for starving son to death

    Trending Tags

    • Trump Inauguration
    • United Stated
    • White House
    • Market Stories
    • Election Results
  • PR Newswire
  • Business
  • World
  • Entertainment
  • Sports
  • Tech
    • All
    • Apps
    • Gadget
    • Mobile
    • Startup

    HKT Posts 4% Profit Rise Amid Steady Local Recovery and AI-Driven Demand

    Alipay Launches AI-Powered Version ‘Abao’ to Streamline Services

    Xiaohongshu Prepares Confidential Hong Kong IPO Filing

    SpaceX Raises $75 Billion in Historic IPO Amid $350 Billion Investor Demand

    Chinese firms double down on tech: Xiaomi, Haier

    Xiaomi Launches MiMo Code AI Programming Assistant to Enter Coding Agent Market

    Apple Unveils Overhauled Siri AI and Major OS Updates at WWDC 2026

    Trending Tags

    • Nintendo Switch
    • CES 2017
    • Playstation 4 Pro
    • Mark Zuckerberg
  • Feature
No Result
View All Result
HK Businesswire
No Result
View All Result
Home News Science

Scientists unveil more than 600 new tissue models of human cancer

David Lee by David Lee
5 August 2026
in Science
0
0
SHARES
2
VIEWS
Share on FacebookShare on Twitter

To develop new targeted treatments for cancer, scientists need tissue models that accurately represent the genetic and molecular traits of the cancer they’re studying. An international team led by researchers at MIT’s Koch Institute, the Broad Institute, the Dana-Farber Cancer Institute, the National Cancer Institute, and numerous other partnering institutions has developed nearly 700 new cancer models, derived from patient tumors, which they hope will aid in drug development. These cells, which represent 25 different types of cancer, are now available for cancer researchers around the world to use. The project is described in a new paper appearing today in Nature, with contributors from more than two dozen institutions.The models are the result of a 10-year initiative, funded by the National Cancer Institute, to expand the number of patient-derived tissue models available. For most of these models, the researchers converted tumor cells into organoids — 3D cell cultures that can survive indefinitely and mimic the genetic and molecular features of the tumors that they originally came from.This type of model could help researchers identify new drug targets and test potential new treatments for many more types of cancer.“Since the sequencing of the human genome and the analysis of cancer genomes over the last 20 years, we have had many ideas about cancer targets, but we need experimental systems in the lab to validate those targets and launch drug discovery projects,” says Jesse Boehm, a research scientist at the Koch Institute and one of the senior authors of the study.From tumors to organoidsThe Human Cancer Models Initiative was launched in 2016, following the completion of the Cancer Genome Atlas, an effort to catalog the genomic alterations responsible for cancer growth. For the atlas project, researchers sequenced cancer cell samples from thousands of patients. That work revealed that the diversity of tumor genetic profiles was not fully captured by the roughly 1,000 patient-derived cancer cell lines that existed at the time.“We realized that a thousand wasn’t enough, that the international community needed to invest in many more thousands to represent all cancers, all genotypes, all ethnicities,” Boehm says. “Most existing models come from European and Southeast Asian patients, and many rare cancers are missing.”Funded by the National Cancer Institute and the United Kingdom’s Wellcome Trust, hundreds of scientists across dozens of institutions participated in obtaining patient samples and developing them into cell lines that could be used for research.“It’s been an enormous initiative, and this Nature paper is the culmination of that 10-year swath of activity,” Boehm says.More than 2,700 tumor samples were obtained from hospitals participating in the study, from patients who gave their permission for their cells to be used for research. These samples were collected by hospitals in the United States, the United Kingdom, and the Netherlands. “A resource of this scale depends on the kind of systematic effort that often happens behind the scenes,” says Mushriq Al-Jazrawe, scientific director of the High Throughput Sciences (HTS) platform at the Koch Institute and one of the lead authors of the study. “I’m especially grateful to the technical and scientific teams across the participating institutes whose careful, expert work turns patient tumor samples into well-characterized models and data that researchers everywhere can use with confidence.”Most of these samples came from commonly seen cancers such as lung, liver, and pancreatic, but they also included about 150 rare types including tumors of the gallbladder and the small intestine.To convert these samples into cells that can survive indefinitely in the lab, the researchers developed techniques for culturing the cells in specialized growth media with a scaffold that helps them grow into a 3D structure. Overall, the researchers were able to successfully convert about one-third of the patient samples that they received.Most of these new models consist of organoids, which in some cases more closely mimic the structure of the tissue that the cells came from. Traditional cancer cell lines, which were developed beginning in the 1950s, exist as single layers of cells grown in a lab dish, while organoids consist of three-dimensional balls of cells embedded in a gelatin-like structure.Once the organoids and cell lines were established, which can take up to a year, the researchers analyzed them to make sure that their genomic sequences, RNA expression, and epigenomic modifications closely matched those of the tumor cells that they were derived from.Cancer vulnerabilitiesAll of the models developed as part of the HCMI were deposited at the American Type Culture Collection (ATCC), a nonprofit distributor of cell lines. Each model also has extensive data from the patient whose cells were used to start the cell line, including mutations that the patient inherited from their parents (germline mutations), and information on the cancer treatments they received.Using these models, scientists should be able to perform much larger scale screens that could aid in drug development efforts. In another paper also appearing in Nature today, Broad Institute researchers reported that they were able to profile more than 300 of the new models using high-throughput genome-sequencing, RNA sequencing, and more than 100 with CRISPR loss-of-function screens. This enabled them to identify vulnerabilities in each model that could be targeted with new drugs.These findings have been added to a resource known as the Cancer Dependency Map (DepMap), which now includes information on more than 2,000 types of cancer.In another Nature companion paper, researchers at the Sanger Institute led an effort to characterize an additional 256 organoids developed through the HCMI project. Additionally, even though most aspects of the formal HCMI project are currently winding down, researchers hope to continue developing models derived from additional patient tumor samples, including more pediatric cancers and rare cancers.“We now have about 2,000, but if we really want to represent all humans with cancer in our preclinical research, more work is needed. We have to invite patients to donate tissue to make research tools that the whole world can use,” Boehm says. “I think this will hopefully be not the end, but the beginning.”“A major opportunity now is to carry the lessons of HCMI forward, so we can generate as much insight as possible from these precious tissue donations,” says Al-Jazrawe, who is also a researcher in the Broad Institute’s Cancer Program. “Here at HTS, we are continuing the work by developing methods to study patient-derived samples and models reproducibly and at scale, and by providing a platform for close collaboration with clinical and research teams.”Other senior authors of the HCMI paper are Mathew Garnett of the Wellcome Sanger Institute, David Tuveson of Cold Spring Harbor Laboratory, Andrea Califano of Columbia University Vagelos College of Physicians and Surgeons, Paul Spellman of the University of California at Los Angeles, Keith Ligon of Dana-Farber Cancer Institute, Daniela Gerhard of the NCI Center for Cancer Genomics, and Louis Staudt of the NCI Center for Cancer Research.In addition to Al-Jazrawe, the paper’s lead authors are Dina El-Harouni of the Broad Institute and Dana Farber, Seongmin Choi of Memorial Sloan Kettering Cancer Center, Merve Dede of the University of Texas MD Anderson Cancer Center, Toshinori Hinoue of the Van Andel Institute, Sean Misek of the Broad Institute and Dana-Farber, Heeju Hoh of the Institute of Systems Biology and the Columbia University Vagelos College of Physicians and Surgeons, and Luca Zanella of the Columbia University Vagelos College of Physicians and Surgeons. The research was funded primarily by the National Cancer Institute and the Wellcome Trust.

Tags: Science
David Lee

David Lee

Read More

Corals Spin Tiny Vortices to Get Oxygen, but Not if It’s Too Hot

5 August 2026

Researchers make air-stable, ultrathin superconductors, for more scalable quantum devices

5 August 2026
  • Trending
  • Comments
  • Latest
EV, gas station site put up for sale

EV, gas station site put up for sale

31 July 2026
Elite Robots Collaborates with Generalist AI on Next-Gen Embodied AI

Elite Robots Collaborates with Generalist AI on Next-Gen Embodied AI

21 July 2026
From Volatility to Income Opportunity — CSOP KOSPI 200 Covered Call Active ETF (3537.HK) Debuts on HKEX Tomorrow

From Volatility to Income Opportunity — CSOP KOSPI 200 Covered Call Active ETF (3537.HK) Debuts on HKEX Tomorrow

30 July 2026
Enzene Launches NeX™, a Comprehensive Suite of Solutionsto Enable Cost-Efficient, High-Yielding Local Biomanufacturing

Enzene Launches NeX™, a Comprehensive Suite of Solutionsto Enable Cost-Efficient, High-Yielding Local Biomanufacturing

3 August 2026

Juventus triumph over Chelsea at Kai Tak Stadium

5 August 2026

Corals Spin Tiny Vortices to Get Oxygen, but Not if It’s Too Hot

5 August 2026
China and U.S. Business Communities Strengthen Ties, Explore New Opportunities for Supply Chain Cooperation

China and U.S. Business Communities Strengthen Ties, Explore New Opportunities for Supply Chain Cooperation

5 August 2026

Researchers make air-stable, ultrathin superconductors, for more scalable quantum devices

5 August 2026

Recent News

Juventus triumph over Chelsea at Kai Tak Stadium

5 August 2026

Corals Spin Tiny Vortices to Get Oxygen, but Not if It’s Too Hot

5 August 2026
China and U.S. Business Communities Strengthen Ties, Explore New Opportunities for Supply Chain Cooperation

China and U.S. Business Communities Strengthen Ties, Explore New Opportunities for Supply Chain Cooperation

5 August 2026

Researchers make air-stable, ultrathin superconductors, for more scalable quantum devices

5 August 2026
HK Businesswire

Stay ahead with the latest insights on Hong Kong’s economy, finance, and investments. From market trends to policy updates, we bring you in-depth analysis and expert opinions.

📩 Subscribe to our newsletter for exclusive updates.
📍 Follow us on social media for real-time news.
📧 Contact us: info@hongkong-invest.com

Follow Us

  • About
  • Advertise
  • Privacy & Policy
  • Contact

© 2025 by HKBusinesswire.com

No Result
View All Result

© 2025 by HKBusinesswire.com