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:Establishment of a patient-derived adrenocortical carcinoma 3D tumor construct platform for evaluation of therapeutic strategies.
Establishment of a patient-derived adrenocortical carcinoma 3D tumor construct platform for evaluation of therapeutic strategies.
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肾上腺皮质癌(ACC)是一种研究不足、侵袭性强的肾上腺恶性肿瘤,目前手术切除是唯一有效的根治性治疗选择。然而,多数患者术后仍会出现肿瘤进展。自1970年米托坦获批以来,中位总生存期仍为12个月,未见改善。ACC缺乏有效治疗,部分原因是缺少能够准确模拟人ACC的临床前模型。建立ACC细胞系或动物模型的尝试大多未能成功,少数现有模型也无法充分反映人ACC的致癌信号通路或瘤内异质性。这些有限的模型系统阻碍了肿瘤进展驱动因素和免疫逃逸机制的识别,进而限制靶向治疗或免疫治疗等新疗法的开发与测试。
我们建立了人源ACC患者来源肿瘤构建体(PTC),并将其包埋于合成细胞外基质中。ACC PTC保留了ACC的特征,包括增殖、表达SF1等关键ACC生物标志物以及分泌皮质醇。
我们通过ACC生物标志物免疫荧光染色进行表征,并确认PTC增殖和皮质醇分泌这一ACC标志特征。随后,我们展示了ACC PTC用于评估临床常用化疗(米托坦)、联合依托泊苷/多柔比星/顺铂的实验性方案、实验性靶向疗法以及细胞免疫疗法的用途,后者主要为自然杀伤(NK)细胞疗法。这些前沿的细胞免疫疗法研究尤其展示了该平台在ACC临床情境中评估免疫治疗的潜力。
综上,这些数据表明,患者来源ACC模型可作为重要工具,用于发现未来干预靶点并测试新型治疗策略,从而改善ACC临床照护。
Adrenocortical carcinoma (ACC) is an under-studied, aggressive cancer of the adrenal glands where surgical resection is currently the only effective curative option.
However, after surgery the majority of patients experience tumor progression. The median overall survival of 12 months has not improved since approval of mitotane in 1970. The lack of effective therapies in ACC is partially due to the lack of preclinical models that accurately represent human ACC. Most attempts to generate ACC cell lines or animal models have been unsuccessful.
The few existing models do not adequately reflect the oncogenic signaling pathways or intratumoral heterogeneity of human ACC. These limited model systems have hindered identification of drivers of tumor progression and immune escape mechanisms, thereby limiting development and testing of novel therapeutic approaches such as targeted therapies or immunotherapies.
We developed human ACC patient-derived tumor constructs (PTCs) encapsulated in synthetic extracellular matrix.
Our ACC PTCs exhibit hallmarks of ACC: proliferation, expression of key ACC biomarkers, such as SF1, and production of cortisol.
We provide characterization in the form of immunofluorescence staining for ACC biomarkers, and confirmation of PTC proliferation and cortisol production - a hallmark of ACC.
We then demonstrate the utility of ACC PTCs for evaluation of chemotherapies currently used clinically (mitotane) with and without experimental cocktails of etoposide, doxorubicin, and cisplatin, experimental targeted therapies, and cellular immunotherapies, primarily in the form of natural killer (NK) cell therapy. In particular, the latter - cellular immunotherapies - are cutting edge studies demonstrating potential to evaluate immunotherapies in ACC clinical scenarios.
Together these data provide evidence that patient-derived ACC models can serve as an important tool for identification of future points of intervention and testing of novel therapeutic strategies to improve ACC clinical care.
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