PO.CL01.19 · 临床研究
COPD诊断对有或无肺癌受试者气道上皮中TP53突变集落大小分布的影响
Effect of COPD diagnosis on TP53-mutated colony size distribution in airway epithelium of subjects with or without lung cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:我们此前基于气道上皮中TP53突变集落的患病率鉴定了一种用于肺癌(LC)早期检测的生物标志物,并确定该生物标志物在有或无COPD的受试者中均表现良好。为更好地理解该生物标志物的生物学基础,我们比较了有或无COPD和/或LC受试者中TP53突变集落的大小分布。
方法:根据经IRB批准的研究方案,从接受支气管镜检查的受试者中收集气道上皮细胞标本。从每份标本中提取DNA,使用超灵敏NGS测量TP53突变,变异等位基因分数(VAF)低至0.01%。假设细胞对突变为杂合,估算TP53突变集落大小。评估了来自59名受试者的标本,分为四个队列:伴COPD的肺癌(LC-CO)(N=14)、伴COPD的非肺癌(NLC-CO)(N=7)、不伴COPD的肺癌(LC-NCO)(N=16)和不伴COPD的非肺癌(NLC-NCO)(N=22)。通过分段斜率分析和Kaplan-Meier分析评估集落大小分布。
结果:在59名受试者中共鉴定出192个独特的TP53突变,在各队列中的分布如下:LC-CO为72个;NLC-CO为19个;LC-NCO为87个;NLC-NCO为14个。突变VAF值范围为0.01%(0.0001)至6%(0.06),对应的TP53突变集落大小范围为200至30,000个细胞。对于每个队列,集落患病率与集落大小成反比,并在400-600个细胞/集落处存在一个拐点(IP1)。在IP1之前,集落数量相对于大小几乎没有变化;在IP1之后,下降呈陡峭斜率。CO受试者的IP1值(400个细胞)小于NCO受试者(600个细胞)。在约1,800个细胞处存在第二个拐点(IP2),此后NLC受试者中存活的集落很少,但LC受试者中存活的集落很多。根据Kaplan-Meier分析,在LC-CO受试者中,LC中>1,800个细胞集落的较高患病率是TP53生物标志物准确性的关键。相比之下,对于LC-NCO受试者,在所有大小范围内集落的患病率均较高。
结论:TP53突变集落与微环境之间的相互作用在CO与非CO受试者中不同。这种差异可能部分归因于CO肺组织特征性的适应性免疫炎症增加。
查看英文原文 English abstract
Background: We previously identified a biomarker for the early detection of lung cancer (LC) based on the prevalence of TP53-mutated colonies in airway epithelium, and determined that this biomarker performs well in subjects with or without COPD. To better understand the biological basis for this biomarker, we compared TP53-mutated colony size distributions in subjects with or without COPD and/or LC.
Methods: Airway epithelial cell specimens were collected from subjects undergoing bronchoscopy under an IRB-approved research protocol. DNA was extracted from each specimen and ultra-sensitive NGS was used to measure TP53 mutations, with variant allele fraction (VAF) as low as 0.01%. TP53-mutated colony size was estimated assuming cells were heterozygous for the mutation. Specimens from 59 subjects were assessed in four cohorts: lung cancer with COPD [LC-CO) (N=14), non-lung cancer with COPD (NLC-CO) (N=7), lung cancer without COPD (LC-NCO) (N=16) and non-lung cancer without COPD (NLC-NCO) (N=22). Colony size distributions were assessed by piecemeal slope analysis and Kaplan-Meier analysis.
Results: A total of 192 unique TP53 mutations were identified among the 59 subjects, distributed among the cohorts as follows: LC-CO, 72; NLC-C0, 19; LC-NCO, 87; and NLC-NCO, 14. The mutation VAF values ranged from 0.01% (0.0001) to 6% (0.06), corresponding to a TP53-mutated colony size range of 200 to 30,000 cells. For each cohort, colony prevalence was inversely proportional to colony size, and there was an inflection point (IP1) at 400-600 cells/colony. Prior to IP1 there was little change in colony number relative to size; after IP1 the decline had a steep slope. The IP1 value was smaller for CO subjects (400 cells) than for NCO subjects (600 cells). There was a second inflection point (IP2) at about 1,800 cells, after which there were few surviving colonies for NLC subjects, but many surviving colonies for LC subjects. According to Kaplan-Meier analysis, among LC-CO subjects the higher prevalence of colonies >1,800 cells in LC was key to accuracy of the TP53 biomarker. In contrast for LC-NCO subjects there was a higher prevalence of colonies across the range of sizes.
Conclusions: Interactions between TP53 mutated colonies and the microenvironment are different in CO vs non-CO subjects. This difference may be partly due to the increased adaptive immune inflammation characteristic of CO lung tissue.
利益披露 Disclosure
J. C. Willey,
Accugenomics, Inc. g., Board of Directors, non-salaried role), Stock, Stock Option, Other Intellectual Property.
Grail Employment.
Gradalis g., Board of Directors, non-salaried role).
E. L. Crawford,
Accugenomics, Inc. Other Intellectual Property.
D. J. Craig, None..
C. Heidi, None..
R. Ahmad, None..
K. Lei, None..
M. Omballi, None..
S. A. Deppen, None..
E. Grogan, None.