Clinical and Pathological Evidence of Anti-GD2 Immunotherapy Induced Differentiation in Relapsed/Refractory High-Risk Neuroblastoma
Клинические и патологические свидетельства индуцированной анти‑GD2 иммунотерапией дифференцировки при рецидивирующем/резистентном высоко‑рисковом нейробластоме
2021-03-12
SCID: 54.1/2tatm6uw
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FDG-PETMIBG uptakeanti-GD2 immunotherapyapparent diffusion coefficientbiopsy-confirmed differentiationdifferentiating neuroblastomaganglioneuromahigh-risk neuroblastomanaxitamabrelapsed/refractory neuroblastoma
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Abstract (AI)
BACKGROUND: Neuroblastic tumors (NBTs) originate from a block in the process of differentiation. Histologically, NBTs are classified in neuroblastoma (NB), ganglioneuroblastoma (GNB), and ganglioneuroma (GN). Current therapy for high-risk (HR) NB includes chemotherapy, surgery, radiotherapy, and anti-GD2 monoclonal antibodies (mAbs). Anti-GD2 mAbs induce immunological cytoxicity but also direct cell death. METHODS: I-Metaiodobenzylguanidine (MIBG) uptake after 4 cycles of immunotherapy were further evaluated by functional Magnetic Resonance Imaging (MRI) and/or Fluorodeoxyglucose (FDG)-positron emission tomography (PET). MIBG avid lesions that became non-restrictive on MRI (apparent diffusion coefficient (ADC) > 1) and/or FDG-PET negative (SUV < 2) were biopsied. RESULTS: Twenty-seven relapse/refractory (R/R) HR-NB patients were enrolled on protocol Ymabs 201. Two (7.5%) of the 27 showed persistent bone lesions on MIBG, ADC high, and/or FDG-PET negative. Forty-four R/R HR-NB patients received chemo-immunotherapy. Twelve (27%) of the 44 developed persistent MIBG+ but FDG-PET- and/or high ADC lesions. Twelve (86%) of the 14 cases identified were successfully biopsied producing 16 evaluable samples. Histology showed ganglioneuroma maturing subtype in 6 (37.5%); ganglioneuroma mature subtype with no neuroblastic component in 4 (25%); differentiating NB with no Schwannian stroma in 5 (31%); and undifferentiated NB without Schwannian stroma in one (6%). Overall, 10 (62.5%) of the 16 specimens were histopathologically fully mature NBTs. CONCLUSIONS: Our results disclose an undescribed mechanism of action for naxitamab and highlight the limitations of conventional imaging in the evaluation of anti-GD2 immunotherapy clinical efficacy for HR-NB.
Key Findings
1
Among 16 evaluable biopsy samples, specific histologies included ganglioneuroma maturing subtype (37.5%), ganglioneuroma mature subtype without neuroblastic component (25%), differentiating neuroblastoma without Schwannian stroma (31%), and undifferentiated neuroblastoma (6%).
2
Anti-GD2 immunotherapy (naxitamab) is associated with pathological differentiation of relapsed/refractory high-risk neuroblastoma into more mature neuroblastic tumor subtypes.
3
Conventional imaging alone may be insufficient to evaluate anti-GD2 immunotherapy efficacy, as it can miss immunotherapy-induced tumor differentiation detectable only via biopsy and advanced imaging criteria.
4
In biopsied persistent MIBG-positive but FDG-PET-negative and/or high ADC lesions, 62.5% (10/16) were histopathologically fully mature neuroblastic tumors (ganglioneuroma maturing/mature).
5
Persistent MIBG-avid lesions that became non-restrictive on MRI (ADC > 1) and/or FDG-PET negative (SUV < 2) were targeted for biopsy, revealing differentiation rather than residual aggressive disease in many cases.
Research Object
Relapsed/refractory high-risk neuroblastoma lesions in patients treated with anti-GD2 immunotherapy (naxitamab)
Research Subject
Therapy-induced tumor differentiation and maturation (histopathological conversion to ganglioneuroma or differentiating neuroblastoma) and the discordance between conventional imaging and pathological response following anti-GD2 immunotherapy
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2021-03-12
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