一种用于克服非小细胞肺癌治疗中抗原异质性的多靶向 CAR-T 细胞平台
A Multi-Targeting Chimeric Antigen Receptor-T Cell Platform to Overcome Antigen Heterogeneity in the Treatment of Non-Small Cell Lung Cancer.
这些发现支持采用多靶点CAR-T 策略来应对NSCLC及可能其他实体瘤中的抗原异质性。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Clinicopathological characteristics and tumor infiltrating immune cells associations of PD-L1 tumor expression in non-small cell lung cancer patients.
Clinicopathological characteristics and tumor infiltrating immune cells associations of PD-L1 tumor expression in non-small cell lung cancer patients.
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我们的结果证明了 PD-L1 表达与吸烟状态之间存在显著关联。然而,未观察到 PD-L1 表达与浸润性 ICs 的存在,以及 ICs 上 PD-L1 的 IHC 表达之间存在显著关联。我们的数据强调了参与研究影响 NSCLC 患者 PD-L1 表达的特定因素的重要性。
我们的研究旨在针对摩洛哥患者的非小细胞肺癌(NSCLC),探讨PD-L1肿瘤表达、临床病理特征与肿瘤浸润免疫细胞(ICs)之间的关系。我们的研究旨在针对摩洛哥患者的非小细胞肺癌(NSCLC),探讨PD-L1肿瘤表达、临床病理特征与肿瘤浸润免疫细胞(ICs)之间的关系。
这是一项回顾性研究(2019年至2021年),研究对象为卡萨布兰卡Ibn Rochd大学医院病理解剖实验室的摩洛哥NSCLC患者样本。符合我们研究条件的参与者必须满足以下预定义标准:年龄≥18岁,经组织学确诊为NSCLC,未接受过既往治疗干预,具备可用的临床和病理数据,以及可用于确定PD-L1状态的可使用肿瘤样本。排除标准适用于其他类型肺癌患者和肿瘤样本不可用的患者。PD-L1的肿瘤和免疫表达评估采用免疫组织化学(IHC)进行,使用Dako Autostainer Link 48平台上的22C3克隆。肿瘤PD-L1表达分为3个水平:TPS <1%(阴性表达)、TPS 1-49%(低表达)和TPS ≥50%(高表达)。浸润肿瘤且表达PD-L1的ICs在阳性ICs超过1%时被视为阳性。这是一项回顾性研究(2019年至2021年),研究对象为卡萨布兰卡Ibn Rochd大学医院病理解剖实验室的摩洛哥NSCLC患者样本。符合我们研究条件的参与者必须满足以下预定义标准:年龄≥18岁,经组织学确诊为NSCLC,未接受过既往治疗干预,具备可用的临床和病理数据,以及可用于确定PD-L1状态的可使用肿瘤样本。排除标准适用于其他类型肺癌患者和肿瘤样本不可用的患者。PD-L1的肿瘤和免疫表达评估采用免疫组织化学(IHC)进行,使用Dako Autostainer Link 48平台上的22C3克隆。肿瘤PD-L1表达分为3个水平:TPS <1%(阴性表达)、TPS 1-49%(低表达)和TPS ≥50%(高表达)。浸润肿瘤的IC表达PD-L1,当阳性IC超过1%时被视为阳性。
在分析的316例样本中,56.6%显示PD-L1阴性表达,16.8%显示PD-L1低表达,26.6%显示强表达。关于组织学类型,在TPS ≥ 50%的患者中,25.8%为腺癌。在TPS ≥ 50%的患者中,24.81%为吸烟者。PD-L1在肺(28.2%)和支气管(26.5%)中也呈强表达。在35.29%的早期患者中观察到PD-L1表达(TPS ≥ 50%)。关于肿瘤细胞(TCs),27.5%被ICs浸润的肿瘤具有TPS ≥ 50%。此外,在27.8%的肿瘤中发现PD-L1在浸润肿瘤的TCs和ICs上共表达。统计分析表明,肿瘤PD-L1表达与吸烟状况之间存在显著关联(P=0.019)。然而,PD-L1表达与浸润肿瘤的ICs存在之间(P=0.652),以及ICs上PD-L1的IHC表达之间(P=0.259)未观察到显著差异。在分析的316例样本中,56.6%显示PD-L1阴性表达,16.8%显示PD-L1低表达,26.6%显示强表达。关于组织学类型,
This is a retrospective study (2019 to 2021) conducted on samples from Moroccan patients with NSCLC at the Pathological Anatomy Laboratory of Ibn Rochd University Hospital in Casablanca. Eligible participants for our study had to meet the following predefined criteria: age ≥18 years, histologically confirmed NSCLC, no prior therapeutic interventions, availability of clinical and pathological data, and a usable tumor sample for determining PD-L1 status. Exclusion criteria applied to patients with other types of lung cancer and unusable tumor samples. The evaluation of tumor and immune expression of PD-L1 was performed using immunohistochemistry (IHC), with the 22C3 clone on the Dako Autostainer Link 48 platform. Tumor PD-L1 expression was categorized into 3 levels: TPS <1% (negative expression), TPS 1-49% (low expression), and TPS ≥50% (high expression). ICs infiltrating the tumor expressing PD-L1 were considered positive when more than 1% of positive ICs were present.
Among the 316 analyzed samples, 56.6% showed a negative expression of PD-L1, 16.8% displayed a low expression of PD-L1, and 26.6% exhibited a strong expression. Regarding the histological type, among patients with TPS ≥ 50%, 25.8% had adenocarcinoma. Among patients with TPS ≥ 50%, 24.81% were smokers. PD-L1 was also strongly expressed in the lung (28.2%) and bronchi (26.5%). PD-L1 expression (TPS ≥ 50%) was observed in 35.29% of early-stage patients. Concerning tumor cells (TCs), 27.5% of tumors infiltrated by ICs had TPS ≥ 50%. Furthermore, coexpression of PD-L1 on both TCs and ICs infiltrating the tumor was found in 27.8% of tumors. Statistical analysis demonstrated a significant association between tumor PD-L1 expression and smoking status (P=0.019). However, no significant difference was observed between PD-L1 expression and the presence of ICs infiltrating the tumor (P=0.652), as well as the IHC expression of PD-L1 on ICs (P=0.259).
Our results demonstrate a significant association between PD-L1 expression and smoking status. However, no significant association was observed between PD-L1 expression and the presence of infiltrating ICs, nor with the IHC expression of PD-L1 on ICs. Our data underscore the importance of participating in the study of specific factors influencing PD-L1 expression in patients with NSCLC. AIM: Our study aimed to perform on Moroccan patients' non-small cell lung carcinoma (NSCLC) concerning the relationship between PD-L1 tumor expression, clinicopathological features and tumor infiltrating immune cells (ICs).
This is a retrospective study (2019 to 2021) conducted on samples from Moroccan patients with NSCLC at the Pathological Anatomy Laboratory of Ibn Rochd University Hospital in Casablanca. Eligible participants for our study had to meet the following predefined criteria: age ≥18 years, histologically confirmed NSCLC, no prior therapeutic interventions, availability of clinical and pathological data, and a usable tumor sample for determining PD-L1 status. Exclusion criteria applied to patients with other types of lung cancer and unusable tumor samples. The evaluation of tumor and immune expression of PD-L1 was performed using immunohistochemistry (IHC), with the 22C3 clone on the Dako Autostainer Link 48 platform. Tumor PD-L1 expression was categorized into 3 levels: TPS <1% (negative expression), TPS 1-49% (low expression), and TPS ≥50% (high expression). ICs infiltrating the tumor expressing PD-L1 were considered positive when more than 1% of positive ICs were present.
Among the 316 analyzed samples, 56.6% showed a negative expression of PD-L1, 16.8% displayed a low expression of PD-L1, and 26.6% exhibited a strong expression. Regarding the histological type, am
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