简要介绍
这是一项 I 期注册临床试验,评估 T 细胞治疗神经母细胞瘤的安全性、可行性及初步疗效。当前状态:招募中。计划入组 70 例。试验地点:美国 · 休斯顿(共 1 个中心)。登记号:NCT03294954。
入组条件决定能不能参加
不限性别 · ≥ 1 Year 且 ≤ 21 Years
采集阶段纳入标准:
• 复发/难治性高危神经母细胞瘤;预期生存期≥12周。
• 年龄>1岁且<21岁;Karnofsky/Lansky评分≥60%。
• 既往接受鼠源抗体治疗者,入组前HAMA(人抗鼠抗体)阴性。
• 能耐受白细胞单采;父母/监护人及儿童(适用时)已提供知情同意/同意参与。
• ANC≥500/μL、血小板≥20,000/μL;可输注血小板以达到该标准。室内空气下血氧≥90%。AST<ULN的3倍、总胆红素<ULN的1.5倍、肌酐<ULN的1.5倍。
• 经入组医生评估,既往化疗急性毒性已恢复;预计长期存在的某些影响不妨碍入组,前提是满足其他标准。体重>12 kg。
• 采集前3个月内QuantiFERON-TB或T-SPOT检测阴性。
采集阶段排除标准:
• 疾病快速进展;对含鼠源蛋白制品有过敏史或超敏反应。
• 肿瘤可能造成气道梗阻。
• 正在使用免疫抑制药物,如糖皮质激素、他克莫司或环孢素。
• 入组医生评估既往环磷酰胺或氟达拉滨治疗出现严重毒性。
• HIV感染;或依那西普相关超敏反应、过敏性休克和/或不良事件史。
治疗阶段纳入标准:
• 复发/难治性高危神经母细胞瘤;预期生存期≥12周;年龄>1岁且<21岁;Karnofsky/Lansky评分≥60%。
• ANC≥500/μL、血小板≥20,000/μL(可输注达标);室内空气血氧≥90%;AST<ULN的3倍、总胆红素<ULN的1.5倍、肌酐<ULN的1.5倍。
• 入组医生评估既往化疗急性毒性已恢复;如部分毒性预计长期存在,患者仍须符合其他资格且能耐受淋巴清除。既往接受鼠源抗体治疗者入组前HAMA阴性。
• 自体转导NKT细胞中表达GD2特异性CAR的细胞比例≥20%。
• 父母/监护人及儿童(适用时)已提供知情同意/同意参与;体重>12 kg。
• 淋巴清除开始前3个月内QuantiFERON-TB或T-SPOT检测阴性。
治疗阶段排除标准:
• 疾病快速进展;当前正在使用任何研究性药物;对含鼠源蛋白制品有过敏史或超敏反应。
• 胸片或CT显示心脏增大或双侧肺浸润。影像提示心脏增大者,如方案治疗开始前3周内超声心动图或MUGA显示心功能正常,可入组;双侧肺浸润若功能影像(PET或MIBG)或病理评估不支持活动性神经母细胞瘤,也可入组。
• 肿瘤可能造成气道梗阻。妊娠、哺乳或不愿避孕。
• 正在使用糖皮质激素、他克莫司、环孢素等免疫抑制药物;既往环磷酰胺或氟达拉滨治疗出现严重毒性;HIV感染。
• 既往依那西普相关超敏反应、过敏性休克和/或不良事件。
核对登记原文(英文)
Procurement Inclusion Criteria:
1. Relapsed or refractory high risk neuroblastoma
2. Life expectancy of at least 12 weeks
3. Age greater than 1 year and less than 21 years old
4. Karnofsky/Lansky score of 60% or greater
5. Absence of HAMA prior to enrollment (only in patients that have been previously treated with murine antibodies)
6. Ability to tolerate leukocyte apheresis
7. Informed consent and assent (as applicable) obtained from parent/guardian and child.
8. Patients must have an ANC greater than or equal to 500/µl, platelet count greater than or equal to 20,000/µl. Patients may be transfused to obtain a platelet count greater than or equal to 20,000/µl.
9. Pulse Ox greater than or equal to 90% on room air
10. Serum AST less than 3 times the upper limit of normal
11. Total Bilirubin less than 1.5 times the upper limit of normal
12. Creatinine \< 1.5 times the upper limit of normal
13. Recovered from the acute toxic effects of all prior chemotherapy based on the enrolling physician's assessment (if some effects of chemotherapy are expected to last long term, patient is eligible if meeting other eligibility criteria).
14. Weight greater than 12kg
15. Negative QuantiFERON-TB or T-SPOT testing within 3 months prior to procurement
Procurement Exclusion Criteria:
1. Rapidly progressive disease
2. History or hypersensitivity to murine protein-containing products
3. Tumor causing airway obstruction
4. Currently receiving immunosuppressive drugs such as corticosteroids, tacrolimus or cyclosporine
5. Severe previous toxicity from cyclophosphamide or fludarabine based on the enrolling physician's assessment
6. HIV infection
7. History of hypersensitivity, anaphylaxis, and/or adverse event with Etanercept
Treatment Inclusion Criteria:
1. Relapsed or refractory high risk neuroblastoma
2. Life expectancy of at least 12 weeks
3. Age greater than 1 year and less than 21 years old
4. Karnofsky/Lansky score of 60% or greater
5. Patients must have an ANC greater than or equal to 500/µl, platelet count greater than or equal to 20,000/µl. Patients may be transfused to obtain a platelet count greater than or equal to 20,000/µl.
6. Pulse Ox greater than or equal to 90% on room air
7. Serum AST less than 3 times the upper limit of normal
8. Total Bilirubin less than 1.5 times the upper limit of normal
9. Creatinine \< 1.5 times the upper limit of normal
10. Recovered from the acute toxic effects of all prior chemotherapy based on the enrolling physician's assessment (if some effects of chemotherapy are expected to last long term, patient is eligible if meeting other eligibility criteria and expected to tolerate lymphodepletion).
11. Absence of human anti-mouse antibodies (HAMA) prior to enrollment for patients who have received prior therapy with murine antibodies
12. Patients must have autologous transduced NKTs with greater than or equal to 20% expression of GD2-specific CAR.
13. Informed consent and assent (as applicable) obtained from parent/guardian and child.
14. Weight greater than 12kg
15. Negative QuantiFERON-TB or T-SPOT testing within 3 months prior to the start of LD
Treatment Exclusion Criteria:
1. Rapidly progressive disease
2. Currently receiving any investigational drugs
3. History or hypersensitivity to murine protein-containing products
4. Cardiomegaly or bilateral pulmonary infiltrates on chest radiograph or CT. However, patients with cardiomegaly on imaging may be enrolled if they have an assessment of cardiac function (i.e., ECHO or MUGA) within 3 weeks of starting protocol therapy that is within normal limits. Additionally, patients with bilateral pulmonary infiltrates on imaging may be enrolled if the lesions are not consistent with active neuroblastoma (i.e., negative on functional imaging with PET or MIBG, or by pathologic assessment).
5. Tumor potentially causing airway obstruction
6. Pregnancy or lactation or not willing to use birth control
7. Currently receiving immunosuppressive drugs such as corticosteroids, tacrolimus or cyclosporine
8. Severe previous toxicity form cyclophosphamide or fludarabine based on the enrolling physician's assessment
9. HIV infection
10. History of hypersensitivity, anaphylaxis, and/or adverse event with Etanercept
以上为辅助阅读译文。是否适合入组须由主治医生判断,最终以登记平台与研究者确认为准。
研究终点衡量什么算有效
- 主要终点联合依那西普时,复发/难治性神经母细胞瘤患者接受表达第二代GD2特异性CAR的自体NKT细胞的最大耐受剂量28天
- 次要终点复发/难治性神经母细胞瘤患者自体GINAKIT细胞的抗肿瘤应答,并比较接受或不接受依那西普患者的抗肿瘤应答
核对登记原文(英文)
主要终点:Maximum tolerated dose of autologous NKTs expressing a 2nd generation GD2-specific chimeric antigen receptor administered to patients with relapsed or refractory neuroblastoma in combination with Etanercept. · Defined as the highest dose level that will have at most a 33% chance of inducing the following NKT-cell-related dose limiting toxicities (DLTs) within 28 days after infusion of NKTs in combination with Etanercept. · 28 days
次要终点:Anti-tumor response of autologous GINAKIT cells in patients with relapsed/refractory neuroblastoma and compare the anti-tumor response in patients treated with and without Etanercept.
研究设计怎么做的
- 研究类型
- 干预性研究
- 入组人数
- 70 人(预计)
- 分组方式
- 非随机分组
核对分组登记原文(英文)
- GINAKIT cells · EXPERIMENTAL · GINAKIT cells will be administer to patients with Neuroblastomas on Day 0.
- Experimental: GINAKIT cells + Etanercept. · EXPERIMENTAL · GINAKIT cells will be administer to patients with Neuroblastomas on Day 0 in combination of Etanercept.
关键日期
- 开始日期
- 2018-01-18
- 主要完成日期
- 2027-12
- 全部完成日期
- 2040-08-10
- 登记状态核实于
- 2025-09
联系与责任方公示信息
- 主要研究者
- Gengwen Tian, MD, PhD
- 申办方
- Baylor College of Medicine
- 合作方
- Center for Cell and Gene Therapy, Baylor College of Medicine
以上邮箱 / 电话是登记库里的申办方联系方式,通常不直达某家医院。中国中心的联系方式请以医院或登记平台最新公示为准。
登记简述
本研究将GD2特异性嵌合抗原受体(CAR)和白细胞介素15(IL-15)导入自体自然杀伤T细胞(NKT),制成GINAKIT细胞,用于治疗难治性神经母细胞瘤患儿。NKT细胞可进入肿瘤组织并杀伤帮助肿瘤生长的巨噬细胞;GD2-CAR可识别几乎所有神经母细胞瘤细胞上的GD2。研究设计旨在确定安全有效剂量,并评估其抗肿瘤作用及细胞在患者血液中的持续时间;部分治疗方案联合依那西普。
核对登记原文(英文)
This research study combines two different ways of fighting cancer: antibodies and Natural Killer T cells (NKT). Antibodies are types of proteins that protect the body from infectious diseases and possibly cancer. T cells, also called T lymphocytes, are special white blood cells that can kill other cells, including cells infected with viruses and tumor cells. Both antibodies and T cells have been used to treat patients with cancers. Investigators have found from previous research that they can put a new gene into T cells that will make them recognize cancer cells and kill them. In a previous clinical trial, investigators made artificial genes called a chimeric antigen receptors (CAR), from an antibody called 14g2a that recognizes GD2, a molecule found on almost all neuroblastoma cells (GD2-CAR). Investigators put these genes into the patients' own T cells and gave them back to patients that had neuroblastoma.
NKT cells are another special subgroup of white blood cells that can specifically go into tumor tissue of neuroblastoma. Inside the tumor, there are other white blood cells called macrophages which help the cancer cells to grow and recover from injury. NKT cells can specifically kill these macrophages and slow the tumor growth.
We will expand NKT cells and add GD2-specific chimeric antigen receptors to the cells. We think these cells might be better able to attack NB since they also work by destroying the macrophages that allows the tumor to grow. The chimeric antigen receptor will also contain a gene segment to make the NKT cells last longer. This gene segment is called CD28. In addition, to further improve the antitumor activity of the GINAKIT cells we added another gene expressing a molecule called Interleukin -15 (IL-15). The combination of these 3 components showed the most antitumor activity by CAR expressing NKT cells and improved these cells' survival in animal models. We also found that a medicine called ETANercept can slow down neuroblastoma growth, which might enhance the effects of the modified cells. In this part of our study, we aim to treat children with hard-to-treat neuroblastoma using these modified NKT cells along with ETANercept. Though ETANercept has been used to treat other diseases, such as rheumatoid arthritis in children, there is limited information about the safety, efficacy, and risk of ETANercept treatment in combination with cellular therapies.
GD2-CAR expressing NKTs have not been tested in patients so far. The purpose of this study is to find the largest effective and safe dose of GD2-CAR NKT cells (GINAKIT cells), to evaluate their effect on the tumor and how long they can be detected in the patient's blood and what affect they have on the patient's neuroblastoma.