Strengthening CAR-T Therapy to Work Against Solid Tumors
"CAR-T cell therapy has revolutionized the treatment of blood cancers such as leukemia and lymphoma but hasn't worked well against solid tumors," said
Developing Personalized Cancer Killers
CAR-T cell therapy, short for chimeric antigen receptor (CAR)-T cell therapy, is a marvel of genetic engineering that transforms T cells (a type of immune cell) into cancer-seeking missiles programmed to attack on contact. The therapy involves extracting the patient's own T cells and equipping them with a single gene that codes for several different proteins. ("Chimeric" comes from the Chimera of Greek mythology with its lion's head, goat's body, and serpent's tail.) The genetically modified T cells are allowed to multiply and are then infused back into the patient.
Their specially designed gene enables the infused T cells to express synthetic CAR receptors on their surface. The CARs can recognize specific proteins, known as antigens, that protrude from cancer cells. Thanks to their new CARs, the T cells are able to home in on cancer cells and then switch to attack mode.
CARs contain four key proteins, and
Five CAR-Ts Confront Three Types of Cancer
All five CAR-T therapies developed by the Zang team used the same novel targeting protein: a monoclonal antibody that binds to B7-H3, a cancer-cell antigen widely expressed on most solid tumors and their blood vessels.
"We wanted our CARs to not only attach T cells to solid tumors but also—by binding specifically to B7-H3—to prevent B7-H3 from interfering with the T cells' ability to attack and destroy cancer cells and their blood vessels," said
Simply attaching CAR-T cells to tumor cells isn't enough to kill them. CARs must also include a costimulatory protein to help activate T cells once they've made contact with cancer cells. Four of the five CAR-T cell therapies developed by
"Factors such as low-oxygen levels and immune checkpoints inside solid tumors make for a hostile microenvironment that can strongly suppress immune attack by T cells—which also have trouble penetrating solid tumors' dense connective tissue network,"
These novel CAR-T therapies were tested on mice bearing three solid human tumors: pancreatic, lung, and glioblastoma. All were equally likely to bind their T cells to cancer cells, since their CARs all possessed the same novel antibody aimed at the B7-H3 antigen. The most effective one possessed both the novel antibody and the TMIGD2 protein—a CAR that
The TOP Choice
The CAR-T therapy with TOP CAR proved best at keeping mice with pancreatic, lung, and glioblastoma tumors alive. For example, TOP CAR treatment enabled 7 out of 9 mice with glioblastoma tumors to survive, compared with a maximum survival of 3 out of 9 mice achieved by any of the other CAR-T therapies. It was also superior with respect to key effectiveness and safety parameters.
The paper is titled "TOP CAR with TMIGD2 as a safe and effective costimulatory domain in CAR cells treating human solid tumors." Other Einstein authors are
About Montefiore Einstein Cancer Center
Montefiore Einstein Cancer Center (MECC) is a national leader in cancer research and care located in the ethnically diverse and economically disadvantaged borough of the
View original content to download multimedia:https://www.prnewswire.com/news-releases/strengthening-car-t-therapy-to-work-against-solid-tumors-302140196.html
SOURCE Montefiore Einstein Cancer Center
Serious News for Serious Traders! Try StreetInsider.com Premium Free!
You May Also Be Interested In
- Growth in Crypto Payroll a Boon for Stablecoin Adoption as Mercuryo Data Shows 57% Use Digital Dollars for Off-ramping
- AI Today Offers the Same Opportunity SEO did Two Decades Ago
- Older Adults Reclaim Total Autonomy as Forefront Living Takes the Stage on "All Access hosted by Andy Garcia"
Create E-mail Alert Related Categories
PRNewswire, Press ReleasesSign up for StreetInsider Free!
Receive full access to all new and archived articles, unlimited portfolio tracking, e-mail alerts, custom newswires and RSS feeds - and more!



Tweet
Share