This is an investigator-initiated trial aimed at assessing the safety of anti-CD19 CAR-T cells in the treatment of refractory systemic lupus erythematosus.
Systemic lupus erythematosus (SLE) is a serious autoimmune disease that can lead to extensive damage in multiple organs and systems, ultimately resulting in disability and even death. Children with SLE are particularly at risk of organ damage, especially to the kidneys, and tend to have a more severe and protracted course of the disease compared to adults. Currently, the primary treatment for SLE relies on glucocorticoids and immunosuppressants to alleviate symptoms. However, due to the absence of a curative treatment, patients often require lifelong medication. In recent years, biological agents such as belimumab and rituximab have been introduced for the treatment of SLE, but these agents cannot completely eliminate autoimmune B cells in the bone marrow, leading to unsatisfactory overall outcomes. Furthermore, stopping the drugs can lead to relapse, and there is still no cure for SLE, leaving patients facing the challenges of lifelong medication and an incurable disease. Since 2019, CAR-T cell therapy has been successfully applied to autoimmune diseases. Clinical studies have demonstrated that targeted CD19 CAR-T cells hold significant therapeutic potential for SLE. These cells effectively slow down the pathological progression of SLE and can also effectively treat severe cases. Furthermore, targeted CD19 CAR-T cells are also expected to restore the immune system in SLE patients, potentially allowing them to discontinue lifelong medication and avoid serious long-term side effects of drugs like hormones and immunosuppressants. The purpose of this study is to assess the safety and efficacy of the anti-CD19 CAR-T cells in the treatment of refractory SLE.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
22
The study will primarily evaluate the Target Dose of 1×10\^5 CAR+ cells/kg. The majority of subjects will be enrolled at this level to characterize efficacy and safety. Two exploratory dose levels-Low Dose (0.3×10\^5CAR+ cells/kg) and High Dose (3×10\^5 CAR+ cells/kg)-are reserved for dose modification based on safety signals or preliminary efficacy data.
Children's Hospital, Zhejiang University School of Medicine
Hangzhou, Zhejiang, China
The safety of CAR-T cells in refractory Systemic Lupus Erythematosus
Incidence, type, and severity of adverse events. The grading of CRS and neurotoxicity follow the ASTCT Consensus Grading for Cytokine Release Syndrome and Neurologic Toxicity Associated with Immune Effector Cells, published by ASTCT in 2019. Other AEs are graded using the NCI CTCAE 5.0.
Time frame: 3 Months
The efficacy of CAR-T cells in refractory Systemic Lupus Erythematosus
Proportion of participants achieving an SRI-4 response at 3 months post-infusion, defined by: a ≥4-point reduction in SLEDAI-2K score; no worsening in Physician's Global Assessment (increase \<0.3); and no new major organ involvement as assessed by BILAG.
Time frame: 3 months
LLDAS response rate.
LLDAS response rate, defined as the percentage of subjects who meet the following conditions simultaneously after infusion: ①SLEDAI-2K score ≤4, with no activity in major organ systems (including kidney, central nervous system, heart and lungs), no vasculitis and no fever; ② no new lupus disease activity compared with the previous assessment; ③PGA score ≤1; ④serological activity permitted; ⑤ prednisolone dose ≤7.5mg daily and well-tolerated standard maintenance doses of immunosuppressive drugs or biological agents permitted.
Time frame: 12 months
DORIS response rate.
DORIS response rate, defined as the percentage of subjects who meet the following conditions simultaneously after infusion: ① clinical SLEDAI-2K score =0; ② PGA score \<0.5; ③ serological activity permitted; ④low-dose glucocorticoid (i.e. prednisolone ≤5mg daily) and well-tolerated standard maintenance doses of antimalarials, immunosuppressive drugs or biological agents permitted.
Time frame: 12 months
Evaluate the Pharmacokinetics parameters.
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PK parameters: The highest concentration (Cmax) of CD19-targeted CAR-T cells expanded in peripheral blood after infusion, the time to reach the highest concentration (Tmax).
Time frame: 3 months
Evaluate the Pharmacodynamics parameters.
PD parameters: The degree of B cell depletion at various time points, the concentration levels of CAR-T-related serum cytokines.
Time frame: 3 months
Changes in serological biomarkers related with SLE
Changes in serological biomarkers, including anti-dsDNA antibodies and complement C3/C4 levels, which used for evaluating the SLEDAI score
Time frame: 12 months