OnCo
technologiesTechnologyApproved

CAR-T cell therapy

A patient's T cells are removed, given a synthetic receptor that recognises the cancer, multiplied, and put back as a living drug.

Seven approved autologous products: CD19 (tisagenlecleucel, axicabtagene, lisocabtagene, brexucabtagene, obecabtagene) and BCMA (idecabtagene, ciltacabtagene). Curative in a substantial fraction of relapsed large B-cell lymphoma and ALL; moving to second line and earlier in myeloma (CARTITUDE-4). Solid tumours: CLDN18.2 (satri-cel), GPC3, GD2 (neuroblastoma, glioma), B7-H3, IL13Rα2, and regionally delivered CARs. FDA removed REMS requirements in 2025; secondary T-cell malignancy warning added in 2024.

Schematic · not to scale
Tumour cell

How it works

T cells are transduced with a lentiviral or retroviral chimeric antigen receptor (scFv + costimulatory domain + CD3ζ), infused after lymphodepletion, and expand in vivo.

Strengths
  • Single infusion, durable remissions
  • MHC-independent recognition
Limitations
  • Manufacturing time and cost (~$400k+)
  • CRS, ICANS, cytopenias
  • Solid-tumour antigen heterogeneity, trafficking, exhaustion
Since
2017

Products

10top
Phase 3CAR-T (BCMA, D-domain binder)
Anitocabtagene autoleucel

Anitocabtagene autoleucel is a BCMA CAR-T with a novel small synthetic binder that produced responses in 97% of heavily pretreated patients; an FDA decision is due in December 2026.

ApprovedCAR-T (CD19)
Axicabtagene ciloleucel · Yescarta

A CD19 CAR-T that cures about 40% of patients with large B-cell lymphoma who had failed everything, and beat transplant in second line.

Not mapped hereAutologous CD19 CAR-T (CD28 costimulatory domain)
Brexucabtagene autoleucel · Tecartus

Brexucabtagene autoleucel is the CAR-T therapy for mantle cell lymphoma and adult acute lymphoblastic leukaemia, giving long remissions after BTK inhibitors fail.

ApprovedCAR-T (BCMA)
Ciltacabtagene autoleucel · Carvykti

Ciltacabtagene autoleucel is a one-time BCMA CAR-T for myeloma that, in CARTITUDE-4, cut the risk of death by about 45% compared with standard regimens.

Not mapped hereAlkylating agent (oxazaphosphorine prodrug)
Cyclophosphamide · Cytoxan / Endoxan

One of the most widely used chemotherapy drugs: part of CHOP for lymphoma, AC for breast cancer, VAC for childhood sarcomas, and used to prepare patients for CAR-T and transplant.

ApprovedCAR-T (BCMA)
Idecabtagene vicleucel · Abecma

Idecabtagene vicleucel was the first myeloma CAR-T (2021) and is now approved after two prior lines based on KarMMa-3.

ApprovedCAR-T (CD19, defined CD4:CD8)
Lisocabtagene maraleucel · Breyanzi

Lisocabtagene maraleucel is the only CAR-T approved for chronic lymphocytic leukaemia, for patients whose disease has outrun both BTK and BCL-2 inhibitors.

ApprovedCAR-T (CD19, fast off-rate)
Obecabtagene autoleucel · Aucatzyl

A CD19 CAR-T built to grip and release quickly, which cut severe side effects and gave adults with relapsed ALL a real chance at durable remission.

Under reviewCAR-T (Claudin 18.2)
Satricabtagene autoleucel

Satricabtagene autoleucel (satri-cel) is the first CAR-T therapy approved for a solid tumour (gastric cancer), in China.

ApprovedCAR-T (CD19)
Tisagenlecleucel · Kymriah

Tisagenlecleucel was the first CAR-T therapy ever approved (2017), for children and young adults whose leukaemia had come back after everything else.

Key papers

11top
rctNew England Journal of Medicine 2023changed practice
CARTITUDE-4: cilta-cel CAR-T versus standard combinations after one to three prior lines of myeloma therapy

CARTITUDE-4 is the first randomised trial to show that a CAR-T improves survival in myeloma, and it moved cilta-cel into second-line use (FDA approval 2024). For patients whose disease returns after first-line lenalidomide, a one-off cell therapy now competes with continuous drug combinations. Capacity, cost and the need for bridging therapy still limit who actually receives it.

rctNew England Journal of Medicine 2023changed practice
KarMMa-3: ide-cel CAR-T versus standard regimens in triple-class-exposed relapsed myeloma

KarMMa-3 was the first randomised evidence that CAR-T beats conventional drugs in myeloma and led to ide-cel's approval after two prior lines. It confirmed that earlier use of CAR-T produces deeper and longer remissions than in the end-stage setting. Because responses are shorter than with cilta-cel and OS was not improved, it also sharpened debate about which BCMA CAR-T to use and when.

rctThe Lancet 2022changed practice
TRANSFORM: liso-cel CAR-T versus salvage chemotherapy and transplant in early-relapsing large B-cell lymphoma

TRANSFORM confirmed ZUMA-7's conclusion with a different CD19 CAR-T and a more permissive design that allowed bridging chemotherapy, making the results closer to real-world practice. Liso-cel's low toxicity makes it attractive for older or frailer patients and for outpatient delivery. Together the two trials made CAR-T the standard second-line therapy for early-relapsing aggressive lymphoma.

rctNew England Journal of Medicine 2022changed practice
ZUMA-7: axi-cel CAR-T instead of salvage chemotherapy and transplant for large B-cell lymphoma that relapses early

ZUMA-7 rewrote second-line treatment for aggressive lymphoma: patients whose disease returns within a year of R-CHOP should be offered CAR-T rather than salvage chemotherapy and transplant. It is also one of the few cell-therapy trials to show an overall survival benefit despite crossover. Patients relapsing later than 12 months were not studied and transplant remains standard for them if chemosensitive.

translationalThe Lancet 2021changed practice
CARTITUDE-1: cilta-cel, a BCMA CAR-T, in heavily pretreated myeloma

CARTITUDE-1 showed that a single CAR-T infusion can put late-stage myeloma into deep, multi-year remission, leading to FDA approval of cilta-cel in 2022 for heavily pretreated disease. It set the efficacy bar for BCMA-directed therapy and motivated moving CAR-T earlier (CARTITUDE-4). Late neurological toxicity and secondary malignancies remain the safety questions.

translationalThe Lancet 2020
UCART19: the first gene-edited, donor-derived CAR-T cells in children and adults with relapsed B-cell ALL

The UCART19 report was the first clinical evidence that a universal, pre-manufactured CAR-T made from a donor can work, avoiding the weeks of autologous manufacturing and the problem of patients whose own T cells are too damaged. It set the template for later allogeneic programmes (including cemacabtagene autoleucel in the ALPHA studies) and for in vivo CAR generation. Short persistence and the need for deep lymphodepletion remain the central weaknesses.

translationalNew England Journal of Medicine 2020changed practice
ZUMA-2: brexu-cel CAR-T for mantle cell lymphoma that has failed BTK inhibitors

ZUMA-2 gave patients with BTK-inhibitor-refractory mantle cell lymphoma, who previously had a median survival under a year, a therapy with durable remissions in a substantial fraction. Brexu-cel is now standard after BTK inhibitor failure and CAR-T is being tested earlier in the disease. Neurotoxicity rates are higher than in other lymphoma CAR-T trials.

translationalNew England Journal of Medicine 2019changed practice
JULIET: tisagenlecleucel for adults with relapsed or refractory diffuse large B-cell lymphoma

JULIET, with ZUMA-1, showed that CAR-T could rescue a substantial minority of adults with chemotherapy-refractory lymphoma and that complete responders often stay in remission. The lower toxicity of a 4-1BB construct and the option of bridging therapy made it usable in a broader population. The high drop-out between enrolment and infusion remains a lesson about turnaround time.

translationalNew England Journal of Medicine 2018changed practice
ELIANA: the global trial that made tisagenlecleucel the first approved CAR-T therapy for children and young adults with relapsed ALL

ELIANA turned CAR-T from a single-centre experiment into a licensed product and created the regulatory and logistical template every later cell therapy has followed. For children with refractory leukaemia it offers a chance of durable remission without transplant. The trial also exposed the gaps: manufacturing failures, patients dying while waiting, and roughly half relapsing within a few years.

translationalNew England Journal of Medicine 2017changed practice
ZUMA-1: axicabtagene ciloleucel for refractory large B-cell lymphoma, the first CAR-T approved for lymphoma

ZUMA-1 showed that CAR-T can cure a meaningful fraction of adults whose aggressive lymphoma no longer responds to chemotherapy, a group with a historical median survival of about six months (SCHOLAR-1). Axi-cel became the first CAR-T approved for lymphoma and later the first to beat standard second-line therapy in ZUMA-7. The comparatively high neurotoxicity of CD28-costimulated products was also first characterised here.

translationalNew England Journal of Medicine 2014changed practice
Maude 2014: CD19 CAR-T cells produce complete remission in 27 of 30 children and adults with relapsed ALL

This paper is the proof-of-concept for a living drug: a single infusion of a patient's own engineered T cells could eradicate leukaemia that had survived chemotherapy, transplant and antibody therapy. It defined cytokine release syndrome and its antidote, tocilizumab, and revealed antigen-loss relapse. It led directly to the first approved gene-modified cell therapy three years later.

Latest papers

top
Literature trend4,659 papers in the last 12 months+23% vs prior 12How this is computed
Latest papers · live from Europe PMC
Open in Europe PMC

Query for this technology: (TITLE:"CAR T" OR ABSTRACT:"CAR T" OR TITLE:"CAR-T" OR ABSTRACT:"CAR-T" OR TITLE:"chimeric antigen receptor T" OR ABSTRACT:"chimeric antigen receptor T"). Results are unfiltered search hits about CAR-T cell therapy, not a curated reading list.

Connected

238top

Pages like this

not linked directly; found by shared links

cancers

17

fronts

1

technologies

15

targets

11

drugs

10

companies

5

institutions

70
Abramson Cancer Center, University of PennsylvaniaAdvanced Centre for Treatment, Research and Education in CancerAdvanced Research Projects Agency for HealthAll India Institute of Medical Sciences, New DelhiAmerican Society of HematologyBarts Cancer Institute / Barts Health NHS TrustCancer Center Clínica Universidad de Navarra / CIMACentral Drugs Standard Control OrganizationChan Zuckerberg BiohubChildren's Hospital of PhiladelphiaChinese PLA General HospitalChristian Medical College, VelloreCity of HopeCity of Hope Orange CountyCleveland Clinic Abu DhabiComprehensive Cancer Center Mainfranken, University Hospital WürzburgComprehensive Cancer Center Vienna – Medical University of Vienna / AKHDan L Duncan Comprehensive Cancer Center, Baylor College of MedicineEuropean Hematology AssociationEuropean Medicines AgencyFred Hutchinson Cancer CenterGeneva University Hospitals (HUG)Great Ormond Street Hospital for ChildrenHadassah Medical CenterHenan Cancer HospitalHospital Clínic de Barcelona / IDIBAPSHospital del Mar / Hospital del Mar Research InstituteHospital Universitario 12 de OctubreHUS Comprehensive Cancer Center, Helsinki University HospitalInselspital, Bern University Hospital / University Cancer Center InselspitalInstitut Paoli-CalmettesInstituto Português de Oncologia do Porto Francisco GentilIRCCS Azienda Ospedaliero-Universitaria di Bologna – Policlinico Sant'OrsolaIRCCS Ospedale San RaffaeleIUCT Oncopole – Institut Universitaire du Cancer de ToulouseJuravinski Cancer Centre / Escarpment Cancer Research InstituteKing Faisal Specialist Hospital and Research CentreLYSA – The Lymphoma Study AssociationMayo Clinic Comprehensive Cancer Center – ArizonaMayo Clinic Comprehensive Cancer Center – FloridaMemorial Sloan Kettering Cancer CenterNational Cancer Centre SingaporeNational Medical Products Administration / Center for Drug EvaluationNational University Hospital / National University Cancer Institute, SingaporeNationwide Children's HospitalNCI Center for Cancer Research (intramural programme)Northwell Health Cancer InstitutePeking University Cancer HospitalPrincess Máxima Center for Pediatric OncologyRigshospitalet – Copenhagen University HospitalRuijin Hospital, Shanghai Jiao Tong UniversitySahlgrenska University Hospital / Sahlgrenska Center for Cancer ResearchSeoul St. Mary's HospitalSheba Medical CenterSidney Kimmel Comprehensive Cancer Center at Jefferson HealthSiriraj Hospital, Mahidol UniversitySociety for Immunotherapy of CancerSt. Jude Children's Research HospitalStanford Health Care / Stanford Cancer InstituteTaipei Veterans General HospitalTexas Children's Cancer and Hematology CenterThe Ottawa Hospital Cancer Centre / Ottawa Hospital Research InstituteTongji Hospital, Huazhong University of Science and TechnologyUNC Lineberger Comprehensive Cancer CenterUnion Hospital, Tongji Medical CollegeUniversity Cancer Center Frankfurt (UCT)University Cancer Center Mainz (UCT Mainz) / Universitätsmedizin MainzUniversity College London Hospitals / UCL Cancer InstituteUniversity Hospital Basel / Tumour CentreUniversity Hospitals Birmingham / University of Birmingham Cancer Research Centre

pathways

5

terms

16

trials

9

pairings

1

roadmaps

3

ideas

38
A neutral slot exchange so unused CAR-T manufacturing slots go to the next patientAn open interoperability standard for closed automated cell-processing machinesCD30 CAR-T for multiply relapsed Hodgkin lymphomaCollect and freeze T cells at diagnosis for high-risk patients, before chemotherapyComparability by design: a digital twin and sentinel panel for cell process changesDeliver CAR-T cells straight into the fluid around the brainDigital batch records and AI process control to halve cell therapy batch failuresEngineered immune surveillance: long-lived programmed immune cells that patrol for early cancerFull refund for CAR-T if the patient has not responded at three monthsGD2 CAR-T as consolidation in high-risk neuroblastomaHarmonise Europe's hospital exemption for academic cell therapies, with one registryHead-to-head bispecific vs CAR-T in second-line LBCLHospital-based CAR-T manufacturing at cost through a public networkHospital-exemption cell therapies at scale, backed by a shared registryHospital-made CAR-T under one shared regulatory master fileIn vivo CAR-T against solid-tumour antigensIn vivo CAR-T as a vial on the shelf: a cost and access trial in lymphomaIn vivo CAR-T manufactured and priced like a generic biologicMandatory public reporting of vein-to-vein time and failure rate per CAR-T productMutual recognition of GMP inspections for cell, gene and radiopharmaceutical plantsNon-profit, open-licence lentiviral vectors and producer cell lines for CAR-TNon-viral CAR-T (transposon or CRISPR knock-in) as the default manufacturing routeOne CAR-T infusion instead of autologous transplantOpen the barrier so engineered immune cells can enter the brainOutcome-based annuity payments for potentially curative one-time therapiesPay for one-time curative therapies as an annuity that stops at relapsePay-for-cure contracts: instalment payments for curative therapies contingent on durable remissionPlan the second CAR-T target before the first one is lostPublic cell-therapy foundries at cancer centres for academics and start-upsPublic payers cover academic CAR-T at cost as a benchmark for commercial pricesPublic reference standards and potency assays for CAR-T so every lab measures alikePublic-sector CAR-T manufacturing in India, Brazil and South Africa under $50,000Regional translational institutes with academic GMP suites and IND teamsRegionally delivered mesothelin CAR-T with PD-1 blockadeShared modular GMP facilities for academic personalised vaccines and cell productsTreat the body cavity, not the bloodstream, for surface spreadTwo-day CAR-T manufacture paired with rapid release tests that regulators acceptUse patient organoids to check a cell therapy will work before infusing it

collections

1

people

21

bottlenecks

4

key papers

11