Biotherapeutic Department, Chinese PLA General Hospital
Beijing, Beijing Municipality, China
Location contact
Weidong Han, Ph.D
CONTACT
Yang Liu, M.D
CONTACT
NCT Number: NCT06939270
In this single-center, single-arm,prospective, open-label, phase 1/2 study, the safety and efficacy of novel autologous hypoxia-activated CAR-T cell therapy targeting CD73 and AXL ( CD73/AXL.HypoSti.CAR-T) will be evaluated in patients with CD73/AXL antigen positive advanced/metastatic solid tumors. In this clinical trial, at least 12 eligible patients in dose escalation period will be enrolled to receive 3 doses Of CD73/AXL.HypoSti.CAR-T cell therapy according to the "3+3" principle. In dose expansion period, additional at most 21 eligible patients will be enrolled to receive CD73/AXL.HypoSti.CAR-T cell therapy at dose of recommended phase 2 dose(RP2D).
Trial opening soon.
Get Notified18 year–75 year
All sexes
Interventional
Phase 1 / Phase 2
Beijing, Beijing Municipality, China
Weidong Han, Ph.D
CONTACT
Yang Liu, M.D
CONTACT
Currently, CAR T-cell therapy still faces significant challenges in its application to solid tumors due to multiple obstacles, including the lack of tumor-specific antigens, the complex immunosuppressive tumor microenvironment (TME), tumor heterogeneity, and on targeted/non-targeted (OTOT) toxicity. Previous studies have found that intratumoral hypoxic microenvironment facilitated the development and metastasis of tumor cells. Meanwhile, cytotoxic T cells, including CAR-T cells, struggle to survive and proliferate in this low-oxygen microenvironment.
CD73 (also known as 5'-nucleotidase) and AXL (a receptor tyrosine kinase) are both overexpressed in multiple solid tumors, but less so in normal tissues. They are both involved in regulating tumorigenesis, development, metastasis processes, correlating with inferior prognosis.Dual targeting of CD73 and AXL can effectively address antigen escape and tumor heterogeneity, representing a promising novel immunotherapy strategy.
In this study, combining hypoxia-activated precision with dual-targeting synergy,Investigators have developed a novel CD73/AXL.HypoSti.CAR-T that could effectively expand and survive in hypoxic TME ,offering enhanced efficacy and safety for solid tumors in animal models. Further clinical development is warranted to validate these promising preclinical results. So we conduct this clinical trial in order to test the the safety profiles and anti-tumor activities of CD73/AXL.HypoSti.CAR-T cell in vivo. In dose escalation period, at least 12 eligible patients will be enrolled and receive 3 doses of CD73/AXL.HypoSti.CAR-T cell therapy (1 × 10^6 cells/ kg, 3 × 10^6 cells/kg, 1 × 10^7 cells/kg) according to the "3+3" principle. In dose expansion period, additional at most 21 eligible patients will be enrolled to receive CD73/AXL.HypoSti.CAR-T cell infusion at RP2D, which is determined by data from dose escalation period, including occurrence of dose limiting toxicities (DLT), pharmacokinetics/pharmacodynamics, efficacy and other parameters, to furtherly evaluate the safety and efficacy profiles of CD73/AXL.HypoSti.CAR-T cell therapy.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Dose escalation: Dose1 (1×10^6 cells/kg) , Dose 2(3×10^6 cells/kg) ,Dose 3 (1×10^7cells/kg); Dose expansion: RP2D.
Administered intravenously at dose of 100-200mg/m2 on day -5 .
Other names: Albumin-bound paclitaxel for Injection
Administered intravenously at a total dose of 15-30mg/kg on day -3 and day -2 .
Other names: Cyclophosphamide for Injection
Administered intravenously at dose of 30mg/m2/d on day -3 and day -2.
Other names: Cyclophosphamide for Injection
Time frame: Up to 12 months
TRAEs are defined as any medical events since the initiation of CD73/AXL.HypoSti.CAR-T cell therapy . Cytokine release syndrome (CRS) and immune cell-associated neurotoxicity syndrome (ICANS) will be evaluated according to the standards released by American Society for Transplantation and Cellular Therapy (ASTCT) criteria in 2019, and the others will be graded by common terminology criteria for adverse events (CTCAE) V5.0.
Time frame: Up to 28 days after infusion.
DLTs are defined as CD73/AXL.HypoSti.CAR-T cell therapy related adverse events within the first 28 days that meet the following criteria:
Time frame: Up to 12 months.
The recommended dose for phase 2 was determined through phase 1 study.
Time frame: Up to 3 years.
ORR includes complete response(CR) and partial response (PR), as defined by investigators according to investigators Response Evaluation Criteria in Solid Tumours 1.1 (RECIST 1.1) or Immune Response Evaluation Criteria in Solid Tumours (iRECIST) criteria.
Time frame: Up to 12 months.
Number and copy number of CD73/AXL.HypoSti.CAR-T cells were assessed by number in peripheral blood. Blood samples were collected before and one year after cell infusion (until CD73/AXL.HypoSti.CAR-T cells were not detected for two consecutive times) to detect the number and copy number of CD73/AXL.HypoSti.CAR-T cells, and to evaluate the pharmacokinetics of CD73/AXL.HypoSti.CAR-T.
Time frame: Up to 28 days after infusion.
The cytokines mainly include interleukin-2 (IL-2 ), IL-6, IL-8, IL-10, tumor necrosis factor-α (TNF-α), C reactive protein (CRP), ferritin. Peak was defined as the maximum post-baseline level of the cytokine.
Time frame: Up to 3 years.
PFS is defined as the time from the initiation of CD73/AXL.HypoSti.CAR-T cell therapy to documented disease progression or death.
Time frame: Up to 3 years.
TTR is defined as the time from the initiation of CD73/AXL.HypoSti.CAR-T cell therapy to first assessed CR or PR by investigators according to RECIST 1.1or iRECIST criteria.
Time frame: Up to 3 years.
DOR is defined as the time from objective response until documented tumor progression among responders.
Time frame: Up to 3 years.
OS is defined as the time from the initiation of CD73/AXL.HypoSti.CAR-T cell therapy to documented disease progression or death.
Time frame: Up to 12 months.
The relationship between the number of CD73/AXL.HypoSti.CAR-T, copy number, cytokines level, and anti-tumor effect of CD73/AXL.HypoSti.CAR-T cells was analyzed. Peripheral blood was collected at the day of infusion (day 0), day1,day 4, day 7, day 11, day 14, day 28, at least once every month after 28 days, at least once every three months after half a year, and at least once every six months after a year. The number of CD73/AXL.HypoSti.CAR-T cells was detected by flow cytometry, and the copy number was detected by quantitative PCR (qPCR).
Time frame: Up to 12 months.
The dynamic changes of the number and copy number of CAR-T cells in patients after CD73/AXL.HypoSti.CAR-T treatment were analyzed. The peak, expansion pattern,continuous expansion time and evolution of CD73/AXL.HypoSti.CAR-T cells in vivo was summarized. To analyze the evolution of CD73/AXL antigen and other changes at the cellular or molecular level after treatment, and to summarize the key cellular and molecular mechanisms of resistance.
Contact information is provided by the study sponsor or research team.
Chinese PLA General Hospital
Other
Phase I/II Clinical Trial of CD73/AXL Targeted HypoSti.CAR-T Cells in Treating Patients With CD73/AXL Positive Advanced/Metastatic Solid Tumors
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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