AAV2 基因治疗儿童芳香族 L-氨基酸脱羧酶缺陷的疗效和安全性:开放标签 1/2 期试验
Efficacy and safety of AAV2 gene therapy in children with aromatic L-amino acid decarboxylase deficiency: an open-label, phase 1/2 trial
AADC 缺陷导致神经递质耗竭和严重运动障碍,此前无有效治疗。这项开放标签 1/2 期试验在台湾大学医院纳入 10 名 AADC 缺陷患儿,通过立体定向手术将携带人 AADC 基因的 AAV2 载体双侧注射入壳核。12 个月后,所有患者均达到主要疗效终点:Peabody 运动量表评分中位增加 62 分,脑脊液 HVA 浓度中位增加 25 nmol/L。最常见不良事件为发热和口面部运动障碍,多数可控制。该研究为 AADC 缺陷的基因治疗提供了早期阳性证据。
为什么推荐给您:针对罕见遗传病的 AAV 基因治疗首次系统性 1/2 期试验,显示运动功能显著改善,属新模态早期阳性结果。
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摘要Abstract
BACKGROUND: Aromatic l-amino acid decarboxylase (AADC) deficiency is an inherited disease that causes depletion of neurotransmitters and severe motor dysfunction in infants and children. We previously reported compassionate use of an adeno-associated virus (AAV) vector containing the human AADC gene (AAV2-hAADC) in four children with AADC deficiency (aged 4-6 years). In this study, we aimed to establish the efficacy and safety of this treatment.
METHODS: We did an open-label, phase 1/2 trial at the National Taiwan University Hospital (Taipei, Taiwan). We included patients who had a definitive diagnosis and clinical symptoms of AADC deficiency (hypotonia, dystonia, and oculogyric crisis), who were older than 24 months or had skull bones suitable for stereotactic surgery, and who had an anti-AAV2 antibody titre lower than 1·0 optical density. All patients received bilateral intraputaminal injections of AAV2-hAADC (1·81 × 10^11 vg in total) through stereotactic brain surgery. Primary efficacy outcomes were an increase in the Peabody Developmental Motor Scales (second edition; PDMS-2) score of greater than 10 points and an increase in homovanillic acid (HVA) or 5-hydroxyindoleacetic acid (5-HIAA) concentrations in the cerebrospinal fluid 12 months after gene therapy. We assessed patients at baseline and at 3, 6, 9, and 12 months after gene therapy, and every 6 months thereafter for one further year; all patients who received the treatment were included in the analysis. We assessed for surgical complications (cerebrospinal fluid leakage and intracerebral haemorrhage) at days 3-7 after AAV2 gene therapy, and we assessed adverse events during the follow-up evaluations for 12 months. This study is registered with ClinicalTrials.gov, number NCT01395641.
FINDINGS: Ten patients (median age 2·71 years, IQR 2·46-6·35) were enrolled from Oct 1, 2014, to Dec 2, 2015. All patients tolerated the surgeries and vector injections. One patient died from influenza B encephalitis during an endemic outbreak 10 months after treatment; therefore, 9 months of data were included in the analyses for this patient. All patients met the primary efficacy endpoint: 12 months after gene therapy, PDMS-2 scores were increased by a median of 62 points (IQR 39-93; p=0·005) and HVA concentrations by a median of 25 nmol/L (IQR 11-48; p=0·012); however, there was no significant change in 5-HIAA concentrations (median difference 0, IQR 0-5; p=0·20). In total, 101 adverse events were reported, with the most common being pyrexia (16 [16%] of 101 events) and orofacial dyskinesia (ten [10%]). 12 serious adverse events occurred in six patients, including one death (treatment-unrelated encephalitis due to influenza B infection), one life-threatening pyrexia, and ten events that led to hospital admission. Transient post-gene therapy dyskinesia occurred in all patients but was resolved with risperidone. Of 31 treatment-related adverse events, only one (patient 1) was severe in intensity, and none led to hospital admission or death.
INTERPRETATION: Our findings suggest that intraputaminal injection of AAV2-hAADC is well tolerated and might improve motor development in children with AADC deficiency.
FUNDING: AADC Research Fund at National Taiwan University Hospital and the National Research Programme for Biopharmaceuticals.