Scientists have revealed that a drug that is widely used to treat asthma and allergies may also help fight aggressive cancers. The findings suggest that it is a new way to improve treatment for tough tumors, such as triple-negative breast cancer, where immunotherapy often fails.
The findings in mice as well as human cells and tumor samples point to a practical, new way to improve treatment for tough tumors, such as triple-negative breast cancer, where immunotherapy often fails.
(Source: Unsplash)
Chicago/USA – A drug widely used to treat asthma and allergies may also help fight aggressive cancers, reports a new Northwestern Medicine study that uncovered how tumors hijack common white blood cells to evade immunotherapy.
The findings in mice as well as human cells and tumor samples point to a practical, new way to improve treatment for tough tumors, such as triple-negative breast cancer, where immunotherapy often fails.
The study was published on May 19 in Nature Cancer.
At the center of the discovery is a molecule called Cysltr1, which is best known for its role in asthma and inflammation. Drugs that block it, such as montelukast (also called Singulair), have been prescribed for decades to treat asthma.
In this study, the Northwestern scientists found that many cancers exploit Cysltr1 to resist treatment. Specifically, the scientists found that tumors trick the immune system into helping them grow by increasing a group of white blood cells called neutrophils. And this process, they discovered, is controlled by the Cysltr1 molecule, which acts as an on/off switch.
“When we turned off this switch, either genetically or with existing drugs, we not only slowed tumor growth, but also helped the immune system recover its ability to fight the cancer,” said study senior author Dr. Bin Zhang, the Johanna Dobe Professor of Cancer Immunology at Northwestern University Feinberg School of Medicine.
How the study was conducted
Zhang and colleagues combined experiments in mouse models, human immune cells and human tumor samples with analysis of large patient cancer datasets.
The mouse studies included models with triple-negative breast cancer, melanoma, ovarian cancer, colon cancer and prostate cancer. The scientists either genetically removed Cysltr1 or blocked it using drugs such as montelukast.
In several mouse models, blocking the pathway slowed tumor growth, improved survival and restored response to immunotherapy. That worked even in tumors that had already stopped responding to treatment.
Zhang’s team also analyzed human immune cells and found, again, that blocking Cysltr1 prevented the formation of immune-suppressing neutrophils.
“Importantly, instead of simply removing these harmful white blood cells, we were able to reprogram them into cells that support immune attack,” Zhang explained. “That means we’re not just targeting the cancer; we’re re-training one type of abundant immune cells in the body to fight the tumor again.”
Finally, in analyses of human tumor samples and public cancer datasets, the scientists found more evidence that Cysltr1 plays a crucial role in promoting cancer growth. They found that patients with higher Cysltr1 activity tended to have worse survival and poorer response to immunotherapy across multiple cancer types.
Clinical trials
Because drugs that block Cysltr1, such as montelukast, are already FDA-approved, the findings could quickly move into patient trials.
“We may be able to quickly and safely test it in cancer patients to improve immunotherapy. Especially in aggressive cancers, like triple-negative breast cancer, where new options are urgently needed,” Zhang said.
“The next steps are to confirm this mechanism in patients, identify who will benefit most, optimize how we use these drugs especially in combination with immunotherapy, and begin carefully designed clinical trials,” he added.
The study is titled, “Targeting cysteinyl leukotriene receptor 1 reprograms tumor-promoting myelopoiesis and overcomes immune checkpoint therapy resistance.” It was partially funded by the National Cancer Institute (grant CA060553), the National Institutes of Health (grants CA222963 and CA250101) and Lynn Sage Scholar Award.
Date: 08.12.2025
Naturally, we always handle your personal data responsibly. Any personal data we receive from you is processed in accordance with applicable data protection legislation. For detailed information please see our privacy policy.
Consent to the use of data for promotional purposes
I hereby consent to Vogel Communications Group GmbH & Co. KG, Max-Planck-Str. 7-9, 97082 Würzburg including any affiliated companies according to §§ 15 et seq. AktG (hereafter: Vogel Communications Group) using my e-mail address to send editorial newsletters. A list of all affiliated companies can be found here
Newsletter content may include all products and services of any companies mentioned above, including for example specialist journals and books, events and fairs as well as event-related products and services, print and digital media offers and services such as additional (editorial) newsletters, raffles, lead campaigns, market research both online and offline, specialist webportals and e-learning offers. In case my personal telephone number has also been collected, it may be used for offers of aforementioned products, for services of the companies mentioned above, and market research purposes.
Additionally, my consent also includes the processing of my email address and telephone number for data matching for marketing purposes with select advertising partners such as LinkedIn, Google, and Meta. For this, Vogel Communications Group may transmit said data in hashed form to the advertising partners who then use said data to determine whether I am also a member of the mentioned advertising partner portals. Vogel Communications Group uses this feature for the purposes of re-targeting (up-selling, cross-selling, and customer loyalty), generating so-called look-alike audiences for acquisition of new customers, and as basis for exclusion for on-going advertising campaigns. Further information can be found in section “data matching for marketing purposes”.
In case I access protected data on Internet portals of Vogel Communications Group including any affiliated companies according to §§ 15 et seq. AktG, I need to provide further data in order to register for the access to such content. In return for this free access to editorial content, my data may be used in accordance with this consent for the purposes stated here. This does not apply to data matching for marketing purposes.
Right of revocation
I understand that I can revoke my consent at will. My revocation does not change the lawfulness of data processing that was conducted based on my consent leading up to my revocation. One option to declare my revocation is to use the contact form found at https://contact.vogel.de. In case I no longer wish to receive certain newsletters, I have subscribed to, I can also click on the unsubscribe link included at the end of a newsletter. Further information regarding my right of revocation and the implementation of it as well as the consequences of my revocation can be found in the data protection declaration, section editorial newsletter.