PO.CT01.01 · 临床试验
225 Actinium-DOTA-daratumumab(一种α粒子发射型放射免疫治疗药物)在daratumumab难治性多发性骨髓瘤患者中的首次人体试验
First-in-human trial of 225 Actinium-DOTA-daratumumab, an alpha-emitting radioimmunotherapy, in patients with daratumumab-refractory multiple myeloma
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作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
目的:鉴于大多数多发性骨髓瘤(MM)患者对daratumumab(Dara)产生耐药,但仍保留CD38表达,我们通过使用DOTA螯合剂将α粒子发射体actinium-225与Dara偶联(225 Ac-Dara),研发出一种靶向CD38的放射免疫治疗(RIT)。
方法:我们开展了一项225 Ac-Dara与显像剂111 Indium-DOTA-Dara(111 In-Dara)共同输注的首次人体试验。合格受试者已接受过具有明确临床获益的现有疗法,且对Dara难治(12周Dara洗脱期)。患者具有充分的血液学和器官功能,体能状态ECOG≤2,既往未接受过RIT或对骨髓、肝或肾累及≥25%的放疗。三个放射性剂量水平(DLs)分别为20、40和60 kBq/kg。我们采用BOIN设计进行剂量递增决策。患者在RIT前2-4小时接受45mg未标记Dara的静脉给药。随后接受111 In-Dara静脉输注进行显像,紧接着单次输注与5mg Dara偶联的225 Ac-Dara。进行了系列平面显像(2h、24h和144h-168h)和SPECT/CT显像(24h)。主要终点为毒性,以确定MTD/RP2D。次要终点包括ORR和PFS。探索性相关分析包括肿瘤摄取、器官剂量学以及免疫微环境评估。
结果:共治疗9例患者。1例患者不可评估DLTs并被替换。DL1的6例中有1例发生DLT。DL2治疗的2例患者均发生DLT。MTD被确定为DL1(20 kBq/kg)。非血液学AEs为≤2级。所有DLTs均为血液学毒性,见于高疾病负荷或早期进展的患者。1例伴长期血细胞减少的患者经自体造血祖细胞输注后恢复。全部9例患者均可评估次要疗效终点。单次225 Ac-Dara给药后,8例最佳疗效为疾病稳定;另1例为PD。中位PFS为96天(95% CI:29-154天)。骨髓浆细胞(CD138⁺CD38⁺)的质谱流式分析显示基线CD38高表达(中位MFI≈110),表明尽管对Dara难治,靶点表达仍持续存在。PBMC分析显示CD38⁺群体早期减少、检查点调控以及伴免疫抑制亚群耗竭的固有免疫激活。基线与约24h的配对中位数显示CD38⁺ NK细胞(−73%)、总NK细胞(−57.5%)和CD38⁺ Tregs(−28%)显著下降。事后探索性评估显示,在接受双特异性抗体或CAR-T作为后续治疗线的患者中,ORR达80%,中位DOR为620天(n=5)。111 In-Dara显像显示靶点特异性,在骨髓和髓外病灶中有摄取。
结论:225 Ac-Dara用于Dara难治性MM是一种规避免疫耗竭并重新利用CD38靶向的新策略。重复给予较低剂量可能改善治疗窗口和持续时间。本试验的转化和临床观察结果支持225 Ac-Dara与后续免疫疗法之间可能存在协同作用。我们正在临床前对这些假设进行建模,以支持未来的研究。
查看英文原文 English abstract
Purpose: Given that most patients with multiple myeloma (MM) become refractory to daratumumab (Dara) but retain CD38 expression, we developed a CD38-targeting radioimmunotherapy (RIT) by conjugating the alpha emitter actinium-225 to Dara using a DOTA chelator ( 225 Ac-Dara).
Methods: We conducted a first-in-human trial of 225 Ac-Dara co-infused with the imaging agent 111 Indium-DOTA-Dara ( 111 In-Dara). Eligible participants had received available therapies with proven clinical benefit and were Dara-refractory (12-week Dara washout). Patients had adequate hematologic and organ function, performance status ECOG ≤2, no prior RIT or radiation ≥25% to marrow, liver, or kidneys. Three radioactivity dose levels (DLs) were 20, 40 and 60 kBq/kg. We used a BOIN design for dose escalation decisions. Patients received an IV dose of unlabeled Dara at 45mg 2-4h prior to RIT. They then received an IV infusion of 111 In-Dara for imaging, immediately followed by a single infusion of 225 Ac-Dara conjugated to 5mg of Dara. Serial planar (2h, 24h and 144h-168h) and SPECT/CT (24h) imaging were performed. Primary endpoint was toxicity to define MTD/RP2D. Secondary endpoints included ORR and PFS. Exploratory correlatives included tumor uptake, organ dosimetry, and assessment of immune microenvironment.
Results: Nine patients were treated. One patient was not evaluable for DLTs and was replaced. One of 6 had a DLT at DL1. Both patients treated at DL2 had DLT. MTD was defined as DL1 (20 kBq/kg). Non-hematologic AEs were grade ≤ 2. All DLTs were hematologic, seen in patients with high disease burden or early progression. One patient with prolonged cytopenias recovered with autologous hematopoietic progenitor cell infusion. All nine patients were evaluable for secondary efficacy endpoints. Eight had best response of stable disease after the single 225 Ac-Dara dose; the other had PD. Median PFS was 96d (95% CI: 29-154d). Mass cytometry of marrow plasma cells (CD138⁺CD38⁺) showed high baseline CD38 expression (median MFI ≈ 110), indicating continued target expression despite Dara-refractoriness. PBMC analysis revealed early reductions in CD38⁺ populations, checkpoint modulation, and innate activation with depletion of immunosuppressive subsets. Paired medians at baseline and ~24 h showed marked declines in CD38⁺ NK cells ( −73%), total NK cells (−57.5%), and CD38⁺ Tregs (−28%). Post-hoc exploratory evaluation revealed an 80% ORR among those receiving bispecific antibody or CAR-T as next line of therapy, with median DOR of 620d (n=5). 111 In-Dara imaging showed target specificity, with uptake in marrow and extramedullary disease.
Conclusion: 225 Ac-Dara in Dara-refractory MM is a novel strategy to circumvent immune exhaustion and repurpose CD38-targeting. Repeated administration of lower doses may improve the therapeutic window and duration. Translational and clinical observations from this trial support possible synergy between 225 Ac-Dara and subsequent immunotherapies. We are modeling these hypotheses preclinically to support future study.
利益披露 Disclosure
S. R. Goldsmith,
BMS ), Other, Advisory Board, Speaker.
Johnson and Johnson Other, Advisory Board, Speaker.
Bioline Other, Advisory Board.
V. Adhikarla, None.
M. Janakiram,
Legend Biotech ), Consultancy.
Fate Therapeutics ).
Janssen ), Other, Consultancy, Advisory Board.
M. Rosenzweig, None..
S. Dandapani, None..
S. Lee, None..
N. Nathwani, None.
A. Borogovac,
Janssen ), Other.
M. Htut, None..
T. Tandoh, None..
A. Pozhitkov, None..
E. Caserta, None..
M. Murtadha, None..
N. Tsai, None..
A. Chowdhury, None..
J. Palmer, None..
J. Keats, None..
J. Sanchez, None..
E. Poku, None..
R. Rockne, None..
P. Yazaki, None..
J. Wong, None..
J. E. Shively, None..
F. Pichiorri, None.
A. Krishnan,
Sanofi Other, Consultancy.
Johnson and Johnson Other, Consultancy.
Adaptive Biosciences Other, Consultancy.
GSK Other, Consultancy.
BMS Other, Consultancy.
Abbvie Other, Consultancy.