RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Generation of orthotopic intracranial glioblastoma patient-derived xenograft models: insights into extrachromosomal DNA-driven MYC(N) and PDGFRA oncogene amplification and preliminary therapeutic evaluation.
Generation of orthotopic intracranial glioblastoma patient-derived xenograft models: insights into extrachromosomal DNA-driven MYC(N) and PDGFRA oncogene amplification and preliminary therapeutic evaluation.
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通过皮下扩增,从冷冻保存的 GBM 组织中成功建立了颅内 PDX 模型。
本研究旨在建立原位颅内患者来源异种移植(PDX)模型,以研究胶质母细胞瘤(GBM)的分子和病理特征,并评估潜在的临床前治疗方法。
首先将新鲜或冷冻保存的患者肿瘤组织扩增为皮下PDX,随后用于构建原位颅内PDX。通过磁共振成像(MRI)、病理学分析及多组学分析评估肿瘤生长及其与患者肿瘤的相似性。进一步选取一种颅内PDX,评估自然杀伤(NK)细胞联合阿瓦斯汀和伊立替康的潜在临床前疗效;同时在该PDX原始肿瘤来源的原代GBM细胞中检测联合方案的细胞毒作用。
16例中有13例成功建立皮下PDX(81.3%),其中6例进一步成功构建颅内PDX,成功率为100%。皮下肿瘤在9至31周内扩增,颅内肿瘤则在4至14周内形成。皮下生长受Ki-67指数和冷冻保存时长影响。多组学分析发现,两名患者来源PDX存在由染色体外DNA(ecDNA)驱动的MYC(N)、PDGFRA、CDK4和MDM2扩增。PDGFRA、CDK4和MDM2扩增与原发肿瘤一致;而患者样本中最初极少或不存在的MYC(N)扩增,在PDX中显著富集。同一患者的多个PDX中,携带ecDNA驱动MYCN扩增的模型生长速度明显加快。值得注意的是,含ecDNA驱动MYC扩增的PDX出现向原始胚胎样特征的组织学转化。NK细胞联合阿瓦斯汀和伊立替康,在体外增强细胞毒作用,并延长携带ecDNA驱动MYC和PDGFRA扩增的颅内PDX模型小鼠生存期。
通过皮下扩增冷冻保存的GBM组织,成功建立了颅内PDX模型。这些模型可作为具有临床相关性的研究平台,用于探索GBM生物学并评估化学免疫疗法的治疗效果。
This study aimed to establish orthotopic intracranial patient-derived xenograft (PDX) models to investigate molecular and pathological features and to evaluate potential preclinical therapeutic approaches in glioblastoma (GBM).
Fresh or cryopreserved patient tumor tissues were first expanded as subcutaneous PDXs and subsequently used to generate orthotopic intracranial PDXs. Tumor growth and similarity to patient tumors were assessed by magnetic resonance imaging (MRI), pathological analyses, and multi-omics profiling. A selected intracranial PDX was further used to evaluate the potential preclinical efficacy of natural killer (NK) cells combined with Avastin and irinotecan. The cytotoxic effects of this combination were also examined in primary GBM cells obtained from the original tumor of the same PDX.
Subcutaneous PDX engraftment was successful in 13 out of 16 cases (81.3 %), and orthotopic intracranial PDXs were established from six of these with a 100 % success rate. Subcutaneous tumors expanded within 9 to 31 weeks, while intracranial tumors formed within 4 to 14 weeks. Subcutaneous growth was influenced by the Ki-67 index and the cryopreservation duration. Multi-omics analysis revealed extrachromosomal DNA (ecDNA)-driven amplifications of MYC(N), PDGFRA, CDK4, and MDM2 in PDXs from two patients. PDGFRA, CDK4, and MDM2 amplifications were consistent with those in the primary tumors, whereas MYC(N) amplification, initially minimal or absent in patient samples, was markedly enriched in the PDXs. Of the multiple PDXs from a single patient, the one PDX harboring ecDNA-driven MYCN amplification showed a greatly accelerated growth rate. Notably, PDXs containing ecDNA-driven MYC amplification exhibited a histological transformation toward primitive embryonal features. Combining NK cells with Avastin and irinotecan enhanced cytotoxicity in vitro and prolonged survival in intracranial PDXs harboring ecDNA-driven MYC and PDGFRA amplifications.
Intracranial PDX models were successfully established from cryopreserved GBM tissues through subcutaneous expansion. These models offer a clinically relevant platform for investigating GBM biology and evaluating the therapeutic efficacy of chemoimmunotherapy.
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