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91.
The acquisition of chemoresistance remains a major cause of cancer mortality due to the limited accessibility of targeted or immune therapies. However, given that severe alterations of molecular features during epithelial‐to‐mesenchymal transition (EMT) lead to acquired chemoresistance, emerging studies have focused on identifying targetable drivers associated with acquired chemoresistance. Particularly, AXL, a key receptor tyrosine kinase that confers resistance against targets and chemotherapeutics, is highly expressed in mesenchymal cancer cells. However, the underlying mechanism of AXL induction in mesenchymal cancer cells is poorly understood. Our study revealed that the YAP signature, which was highly enriched in mesenchymal‐type lung cancer, was closely correlated to AXL expression in 181 lung cancer cell lines. Moreover, using isogenic lung cancer cell pairs, we also found that doxorubicin treatment induced YAP nuclear translocation in mesenchymal‐type lung cancer cells to induce AXL expression. Additionally, the concurrent activation of TGFβ signaling coordinated YAP‐dependent AXL expression through SMAD4. These data suggest that crosstalk between YAP and the TGFβ/SMAD axis upon treatment with chemotherapeutics might be a promising target to improve chemosensitivity in mesenchymal‐type lung cancer.

Abbreviations

AUC
area under the curve
AXL
AXL receptor tyrosine kinase
BCL2
B‐cell lymphoma 2
CTD2
cancer target discovery and development
CTGF
connective tissue growth factor
DEG
differentially expressed genes
DOXO
doxorubicin
EMT
epithelial–mesenchymal transition
Eto
etoposide
FDA
Food and Drug Administration
ITGB3
integrin beta‐3
MAPK
mitogen‐activated protein kinase
MMP2
matrix metalloproteinase‐2
MMP9
matrix metalloproteinase‐9
mRNA
messenger RNA
NF‐κB
nuclear factor kappa‐light‐chain‐enhancer of activated B cells
SBE
SMAD binding element
SERPINE1
serpin family E member 1
siRNA
small interfering RNA
ssGSEA
single‐sample gene set enrichment analysis
TCGA
The Cancer Genome Atlas
TGFβ
transforming growth factor beta
YAP
Yes‐associated protein
YAP8SA
mutants of inhibitory phosphorylation site at eight serine to Alanine of YAP
ZEB1
zinc finger E‐box binding homeobox 1
ZEB2
zinc finger E‐box‐binding homeobox 2
  相似文献   
92.
93.

Purpose

Suppression of respiratory movement of the liver would be desirable for high-precision radiation therapy for liver tumors. We aimed to investigate the effect of our original device-free compressed shell fixation method and breathing instruction on suppression of respiratory movement. The characteristics of liver motion based on the movement of a fiducial marker were also analyzed.

Methods and Materials

First, respiratory amplitudes of the liver with the device-free compressed shell were analyzed from the data of 146 patients. The effect of this shell fixing method on liver movement was evaluated. Second, as another cohort study with 166 patients, interfractional internal motion of the liver for patients fixed in the shell was calculated using the fiducial marker coordinate data of images for position setting before daily irradiation. Third, in another 12 patients, intrafractional internal motion was calculated from the fiducial marker coordinate data using x-ray images before and after irradiation.

Results

The median respiratory movement without the shell, after fixing with the shell, and after instructing on the breathing method with the shell was 14.2 (interquartile range, 10.7-19.8), 11.5 (8.6-17.5), and 10.4 mm (7.3-15.8), respectively. Systematic and random errors of interfractional internal motion were all ≤2 mm in the left-right and anteroposterior directions and 3.7 and 3.0 mm, respectively, in the craniocaudal direction. Systematic and random errors of intrafractional internal motion were all ≤1.3 mm in the left-right and anteroposterior directions and 0.8 and 2.4 mm, respectively, in the craniocaudal direction.

Conclusions

The device-free compressed shell fixation method was effective in suppressing the respiratory movement of the liver. Irradiation position matching using the fiducial marker can correct the interfractional internal motion on each day, which would contribute to the reduction of the margin to be given around the target.  相似文献   
94.
95.
背景 呼吸道合胞病毒(RSV)毛细支气管炎易出现反复喘息,且下呼吸道分泌物中半胱氨酸白三烯(CysLTs)水平升高。而孟鲁司特是一种白三烯受体拮抗剂,关于其治疗RSV毛细支气管炎症状的研究相对较少。目的 探讨孟鲁司特改善婴幼儿RSV毛细支气管炎后症状及减轻反复喘息发作的有效性和安全性。方法 2015年6月-2017年6月连续纳入在潍坊市妇幼保健院出院的RSV毛细支气管炎患儿,随机分为治疗组、对照组。Ⅰ期,治疗组:口服孟鲁司特颗粒(4 mg)12周,1次/d;对照组:口服安慰剂12周,1次/d。对两组无症状天数、个人日记评分进行评估。随访9个月(Ⅱ期),观察Ⅰ+Ⅱ期反复喘息人数和医疗资源应用情况等。依据意向性分析(ITT)原则,应用全分析集(FAS)分析数据。结果 共纳入研究对象186例,治疗组92例,对照组94例。治疗组完成Ⅰ期研究的患儿为89例,对照组为90例;治疗组完成Ⅰ+Ⅱ期的患儿为84例,对照组为86例。治疗组平均依从性为97.8%(7 560/7 728),对照组平均依从性为97.4%(7 690/7 896),两组患儿平均依从性比较,差异无统计学意义(χ2=3.16,P=0.07)。在Ⅰ期研究期间,两组无症状天数、日间无症状天数、夜间无症状天数、个人日记评分比较,差异均无统计学意义(P>0.05)。在整个研究过程中(Ⅰ+Ⅱ期),治疗组RSV毛细支气管炎喘息复发人数少于对照组(P<0.05),治疗组喘息患儿出现2次及以上喘息比例低于对照组(χ2=5.14,P=0.02)。Ⅰ+Ⅱ期研究期间治疗组医疗资源应用人数、β-受体激动剂应用人数、糖皮质激素应用人数、住院人数低于对照组(P<0.05)。在事后亚组分析中,治疗组有湿疹史与父母哮喘史的患儿中无症状天数〔(49.7±20.2)、(51.3±20.9)d〕多于对照组〔(36.3±20.4)、(37.8±19.3)d〕(t=2.19,P=0.03;t=2.24,P=0.03)。整个研究过程中没有患儿因不良反应退出研究,两组间胃肠道紊乱、皮疹、转氨酶升高发生率比较,差异均无统计学意义(χ2=0.23,P=0.63;χ2=0.03,P=0.86;χ2=0.15,P=0.69)。结论 口服孟鲁司特(4 mg)12周不能改善RSV毛细支气管炎患儿呼吸道症状,但能降低患儿反复喘息发作次数。口服孟鲁司特(4 mg)有一定效果且安全。  相似文献   
96.
ABSTRACT

Introduction

Type 1 diabetes mellitus (T1DM) is a chronic, autoimmune disease that is characterized by total absence of insulin production. Hypertension is a common comorbidity in T1DM with complex pathophysiology, while it is also a well-recognized risk factor for the development of cardiovascular disease (CVD), as well as other microvascular diabetic complications.  相似文献   
97.
目的探讨1 470 nm激光剜除治疗高危前列腺增生的手术技巧及临床效果。 方法回顾分析2018年6月至2018年9月中山大学附属第三医院泌尿外科采用1 470 nm激光治疗共89例高危前列腺增生患者的临床资料,年龄平均(68±3)岁,前列腺体积(57.4±2.6)ml。所有患者均采用"寻找层面,先易后难,剜切结合"的层面递进法思路行激光腔内前列腺剜除术,比较患者术中及术后情况。 结果89例均顺利完成手术,与术前相比,术后3个月患者最大尿流率明显增加,[(6.9±2.1) ml/s vs(19.8±3.6) ml/s]。国际前列腺症状评分显著好转,[(24.6±1.7) vs(8.0±1.2)]。术中无输血、无电切综合征、无直肠和膀胱穿孔病例,无输尿管损伤、大出血、心脑血管意外等严重并发症发生。 结论层面递进法激光剜除技术构想对于高危前列腺增生外科包膜层面的寻找、减少术后并发症有独到优势,且易于掌握,或可为业界同行提供一个新的思路。  相似文献   
98.
支气管哮喘是由多种细胞和细胞组分参与的气道慢性炎症性疾病,其气道炎症反应的复杂性,给临床诊断和治疗带来了困难[1]。2009年全球哮喘防治倡议(GINA)第一次提出“表型”这一概念,并提出基于表型分类有助于哮喘治疗及判断预后[2]。中医药治疗哮喘有其独特优势,但辨证分型缺乏明确统一的客观化、量化指标。  相似文献   
99.
Esophageal adenocarcinoma is the fastest rising cancer in the United States. It develops from long‐standing gastroesophageal reflux disease which affects >20% of the general population. It carries a very poor prognosis with 5‐year survival <20%. The disease is known to sequentially progress from reflux esophagitis to a metaplastic precursor, Barrett''s esophagus and then onto dysplasia and esophageal adenocarcinoma. However, only few patients with reflux develop Barrett''s esophagus and only a minority of these turn malignant. The reason for this heterogeneity in clinical progression is unknown. To improve patient management, molecular changes which facilitate disease progression must be identified. Animal models can provide a comprehensive functional and anatomic platform for such a study. Rats and mice have been the most widely studied but disease homology with humans has been questioned. No animal model naturally simulates the inflammation to adenocarcinoma progression as in humans, with all models requiring surgical bypass or destruction of existing antireflux mechanisms. Valuable properties of individual models could be utilized to holistically evaluate disease progression. In this review paper, we critically examined the current animal models of Barrett''s esophagus, their differences and homologies with human disease and how they have shaped our current understanding of Barrett''s carcinogenesis.  相似文献   
100.
 Û   ¬  ࿞ ¿   ¬ í  &#x; ྽   &#x;         &#x; 《中国肺癌杂志》2021,24(3):161
背景与目的以免疫检查点抑制剂(immune checkpoint inhibitors, ICIs)为代表的免疫治疗越来越广泛地应用于肺癌治疗。然而,对于程序性死亡受体配体1(programmed cell death-ligand 1, PD-L1)高表达,即肿瘤比例评分(tumor proportion score, TPS)≥50%的晚期非小细胞肺癌(non-small cell lung cancer, NSCLC)患者,采用单纯免疫治疗还是免疫联合化疗在临床上仍存争议。本研究旨在评估PD-L1高表达的晚期NSCLC患者接受单纯免疫治疗与免疫联合化疗的疗效。方法本研究回顾性分析了49例PD-L1高表达晚期NSCLC患者的临床资料。PD-L1表达采用22C3抗体行免疫组化染色,按TPS判读PD-L1表达水平。比较不同临床特征分组患者的客观缓解率(objective response rate,ORR)和无进展生存时间(progression free survival, PFS)。结果免疫单药与免疫联合化疗组的ORR分别为47.1%(8/17)和43.8%(14/32),差异无统计学意义(P=0.825)。免疫单药与免疫联合化疗组的中位PFS分别为8.0个月和6.8个月,差异无统计学意义(P=0.502)。并对本组PD-L1高表达患者免疫治疗的预测因素进行了分析,结果显示,一线免疫治疗ORR(12/19, 63.2%)显著优于二线及以上免疫治疗(10/30, 33.3%),差异有统计学意义(P=0.041),二者间PFS无差异。年龄、性别、吸烟史、功能状态评分(performance status, PS)、病理类型、肿瘤大小、肿瘤淋巴结转移(tumor node metastasis, TNM)分期与ORR和PFS不相关。结论PD-L1高表达的晚期NSCLC患者接受免疫单药和免疫联合化疗的疗效相近。PD-L1高表达患者一线免疫治疗的ORR更佳。对此类人群的最佳治疗方案有待于前瞻性临床研究进一步探索。  相似文献   
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