Suppr超能文献

瘤周金属植入物降低不可逆电穿孔消融治疗结直肠癌肝转移的疗效。

Peri-tumoral Metallic Implants Reduce the Efficacy of Irreversible Electroporation for the Ablation of Colorectal Liver Metastases.

机构信息

Department of Radiology, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY, 10065, USA.

Tenon Hospital, ISCD, Sorbonne Université, 4 Rue de la Chine, 75020, Paris, France.

出版信息

Cardiovasc Intervent Radiol. 2020 Jan;43(1):84-93. doi: 10.1007/s00270-019-02300-y. Epub 2019 Aug 5.

Abstract

PURPOSE

To evaluate the effect of peri-tumoral metallic implants (MI) on the safety and efficacy of percutaneous irreversible electroporation (IRE) of colorectal liver metastasis (CRLM).

MATERIALS AND METHODS

In this retrospective study, 25 patients (12 women, 13 men; MI: 13, no MI: 12) were treated for 29 CRLM. Patient characteristics, tumor location and size, treatment parameters and the presence of MI were evaluated as determinants of local tumor progression (LTP) with the competing risks model (univariate and multivariate analyses). Patient-specific computer models were created to examine the effect of the MI on the electric field used to induce IRE, probability of cell kill and potential thermal effects.

RESULTS

Patients had a median follow-up of 25 months, during which no IRE-related major complications were reported. Univariate analysis showed that tumor size (> 2 cm), probe spacing (> 20 mm) and the presence of MI (p < 0.05) were significant predictors of time to LTP, but only the latter was found to be an independent predictor on multivariate analysis (sub-hazard ratio = 6.5; [95% CI 1.99, 21.4]; p = 0.002). The absence of peri-tumoral MI was associated with higher progression-free survival at 12 months (92.3% [56.6, 98.9] vs 12.5% [2.1, 32.8]). Computer simulations indicated significant distortions and reduction in electric field strength near MI, which could have contributed to under-treatment of the tumor.

CONCLUSIONS

Peri-tumoral MI increases the risk of treatment failure following IRE of CRLM.

摘要

目的

评估肿瘤周围金属植入物(MI)对结直肠癌肝转移(CRLM)经皮不可逆电穿孔(IRE)安全性和疗效的影响。

材料与方法

在这项回顾性研究中,对 25 例(12 例女性,13 例男性;有 MI:13 例,无 MI:12 例)CRLM 患者进行了 29 次治疗。采用竞争风险模型(单因素和多因素分析)评估患者特征、肿瘤位置和大小、治疗参数以及 MI 的存在与局部肿瘤进展(LTP)的相关性。为了评估 MI 对用于诱导 IRE 的电场、细胞杀伤概率和潜在热效应的影响,创建了患者特定的计算机模型。

结果

患者的中位随访时间为 25 个月,在此期间未报告与 IRE 相关的重大并发症。单因素分析显示,肿瘤大小(>2cm)、探头间距(>20mm)和 MI 的存在(p<0.05)是 LTP 时间的显著预测因素,但只有后者在多因素分析中被发现是独立的预测因素(亚危险比=6.5;[95%CI 1.99, 21.4];p=0.002)。肿瘤周围无 MI 与 12 个月时无进展生存率较高相关(92.3%[56.6, 98.9]比 12.5%[2.1, 32.8])。计算机模拟表明 MI 附近的电场强度会出现显著的扭曲和降低,这可能导致肿瘤治疗不足。

结论

肿瘤周围 MI 会增加 CRLM 经 IRE 治疗后治疗失败的风险。

相似文献

1
Peri-tumoral Metallic Implants Reduce the Efficacy of Irreversible Electroporation for the Ablation of Colorectal Liver Metastases.
Cardiovasc Intervent Radiol. 2020 Jan;43(1):84-93. doi: 10.1007/s00270-019-02300-y. Epub 2019 Aug 5.
4
Irreversible Electroporation for Colorectal Liver Metastases.
Tech Vasc Interv Radiol. 2015 Sep;18(3):159-69. doi: 10.1053/j.tvir.2015.06.007. Epub 2015 Jun 18.
5
Ablation of colorectal liver metastases by irreversible electroporation: results of the COLDFIRE-I ablate-and-resect study.
Eur Radiol. 2014 Oct;24(10):2467-75. doi: 10.1007/s00330-014-3259-x. Epub 2014 Jun 18.
9
Percutaneous irreversible electroporation for the treatment of colorectal cancer liver metastases with a proposal for a new response evaluation system.
J Vasc Interv Radiol. 2014 Aug;25(8):1233-1239.e2. doi: 10.1016/j.jvir.2014.04.007. Epub 2014 May 24.

引用本文的文献

1
Electrochemotherapy in the Treatment of Bone Metastases: A Narrative Review.
Cardiovasc Intervent Radiol. 2025 Jun 6. doi: 10.1007/s00270-025-04077-9.
3
Calcium Electrochemotherapy for Tumor Eradication and the Potential of High-Frequency Nanosecond Protocols.
Pharmaceuticals (Basel). 2023 Jul 31;16(8):1083. doi: 10.3390/ph16081083.
4
Irreversible Electroporation for Liver Metastases from Colorectal Cancer: A Systematic Review.
Cancers (Basel). 2023 Apr 24;15(9):2428. doi: 10.3390/cancers15092428.
6
Percutaneous Therapies for Hepatocellular Carcinoma: Evolution of Liver Directed Therapies.
J Hepatocell Carcinoma. 2021 Sep 23;8:1181-1193. doi: 10.2147/JHC.S268300. eCollection 2021.
8
Irreversible Electroporation: Background, Theory, and Review of Recent Developments in Clinical Oncology.
Bioelectricity. 2019 Dec 1;1(4):214-234. doi: 10.1089/bioe.2019.0029. Epub 2019 Dec 12.
9
10
Efficacy and safety of irreversible electroporation for malignant liver tumors: a systematic review and meta-analysis.
Eur Radiol. 2021 Sep;31(9):6511-6521. doi: 10.1007/s00330-021-07742-y. Epub 2021 Feb 27.

本文引用的文献

1
Numerical workflow of irreversible electroporation for deep-seated tumor.
Phys Med Biol. 2019 Mar 7;64(5):055016. doi: 10.1088/1361-6560/ab00c4.
2
Effects of internal electrode cooling on irreversible electroporation using a perfused organ model.
Int J Hyperthermia. 2018;35(1):44-55. doi: 10.1080/02656736.2018.1473893. Epub 2018 May 28.
3
Electrochemotherapy as treatment option for hepatocellular carcinoma, a prospective pilot study.
Eur J Surg Oncol. 2018 May;44(5):651-657. doi: 10.1016/j.ejso.2018.01.090. Epub 2018 Feb 2.
4
Irreversible electroporation and thermal ablation of tumors in the liver, lung, kidney and bone: What are the differences?
Diagn Interv Imaging. 2017 Sep;98(9):609-617. doi: 10.1016/j.diii.2017.07.007. Epub 2017 Aug 30.
5
Predictive therapeutic planning for irreversible electroporation treatment of spontaneous malignant glioma.
Med Phys. 2017 Sep;44(9):4968-4980. doi: 10.1002/mp.12401. Epub 2017 Jul 25.
6
Cirse Quality Assurance Document and Standards for Classification of Complications: The Cirse Classification System.
Cardiovasc Intervent Radiol. 2017 Aug;40(8):1141-1146. doi: 10.1007/s00270-017-1703-4. Epub 2017 Jun 5.
7
The importance of censoring in competing risks analysis of the subdistribution hazard.
BMC Med Res Methodol. 2017 Apr 4;17(1):52. doi: 10.1186/s12874-017-0327-3.
8
KRAS Mutation Status Dictates Optimal Surgical Margin Width in Patients Undergoing Resection of Colorectal Liver Metastases.
Ann Surg Oncol. 2017 Jan;24(1):264-271. doi: 10.1245/s10434-016-5609-1. Epub 2016 Sep 30.
10
The Influence of a Metal Stent on the Distribution of Thermal Energy during Irreversible Electroporation.
PLoS One. 2016 Feb 4;11(2):e0148457. doi: 10.1371/journal.pone.0148457. eCollection 2016.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验