CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Preoperative prediction of glypican-3 positive expression in solitary hepatocellular carcinoma on gadoxetate-disodium enhanced magnetic resonance imaging.
Preoperative prediction of glypican-3 positive expression in solitary hepatocellular carcinoma on gadoxetate-disodium enhanced magnetic resonance imaging.
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基于血清 AFP 和五个 EOB-MRI 特征,我们开发了一种易于使用且无创的风险评分,该评分能够准确预测 GPC-3 阳性 HCC,这可能有助于识别 GPC-3 靶向免疫治疗的潜在应答者。
作为Wnt和HGF信号通路的共受体,glypican-3(GPC-3)促进肿瘤进展,并与肝细胞癌(HCC)的不良预后相关。GPC-3已成为多种免疫治疗的靶分子,包括CAR-T 细胞。然而,其评估仍依赖于有创的组织病理学检查。因此,我们旨在开发一种简便易用且无创的风险评分,整合术前钆塞酸增强磁共振成像(EOB-MRI)和临床指标,以预测HCC中GPC-3阳性表达。
回顾性纳入2016年1月至2021年11月期间接受术前EOB-MRI检查且经手术确诊为孤立性HCC的连续患者。EOB-MRI特征由两名设盲的腹部放射科医师独立评估,GPC-3的表达由两名肝脏病理科医师确定。在训练数据集上,通过logistic回归分析开发了针对病理的GPC-3预测评分系统。通过计算受试者工作特征曲线下面积(AUC)来表征模型性能。
共纳入278例孤立性HCC患者(训练集,n=156;内部验证集,n=39;外部验证集,n=83),其中208例(75%)GPC-3表达阳性。血清甲胎蛋白>10 ng/ml(AFP,比值比[OR]=2.3,4分)及5项EOB-MR影像特征,包括肿瘤大小>3.0cm(OR=0.5,-3分)、非周边“廓清”(OR=3.0,5分)、浸润性外观(OR=9.3,10分)、明显弥散受限(OR=3.3,5分)以及实性肿块内铁 sparing(OR=0.2,-7分)与GPC-3阳性表达显著相关。评分系统预测GPC-3阳性表达的最佳阈值为5.5分,在内部和外部验证集上的AUC分别为0.726和0.681。
As a coreceptor in Wnt and HGF signaling, glypican-3 (GPC-3) promotes the progression of tumor and is associated with a poor prognosis in hepatocellular carcinoma (HCC). GPC-3 has evolved as a target molecule in various immunotherapies, including chimeric antigen receptor T cell. However, its evaluation still relies on invasive histopathologic examination. Therefore, we aimed to develop an easy-to-use and noninvasive risk score integrating preoperative gadoxetic acid-enhanced magnetic resonance imaging (EOB-MRI) and clinical indicators to predict positive GPC-3 expression in HCC. METHODS AND MATERIALS: Consecutive patients with surgically-confirmed solitary HCC who underwent preoperative EOB-MRI between January 2016 and November 2021 were retrospectively included. EOB-MRI features were independently evaluated by two masked abdominal radiologists and the expression of GPC-3 was determined by two liver pathologists. On the training dataset, a predictive scoring system for GPC-3 was developed against pathology via logistical regression analysis. Model performances were characterized by computing areas under the receiver operating characteristic curve (AUCs).
A total of 278 patients (training set, n=156; internal validation set, n=39; external validation set, n=83) with solitary HCC (208 [75%] with positive GPC-3 expression) were included. Serum alpha-fetoprotein >10 ng/ml (AFP, odds ratio [OR]=2.3, four points) and five EOB-MR imaging features, including tumor size >3.0cm (OR=0.5, -3 points), nonperipheral "washout" (OR=3.0, five points), infiltrative appearance (OR=9.3, 10 points), marked diffusion restriction (OR=3.3, five points), and iron sparing in solid mass (OR=0.2, -7 points) were significantly associated with positive GPC-3 expression. The optimal threshold of scoring system for predicting GPC-3 positive expression was 5.5 points, with AUC 0.726 and 0.681 on the internal and external validation sets, respectively.
Based on serum AFP and five EOB-MRI features, we developed an easy-to-use and noninvasive risk score which could accurately predict positive GPC-3 HCC, which may help identify potential responders for GPC-3-targeted immunotherapy.
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