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Cancer Nanotechnology

Cancer Nanotechnology杂志,由Springer Vienna出版,于2010年创刊,1 issue/year,出版语言English,ISSN:1868-6958,E-ISSN:1868-6966。

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Cancer Nanotechnology
Cancer Nanotechnology
Cancer Nanotechnology
SCI SCIE

杂志介绍

JCR分区
Q1
中科院分区
3区
影响因子
5.8
CiteScore
9.1
期刊收录
SCI、SCIE

Cancer Nanotechnology(中文译名:《癌症纳米技术》),ISSN:1868-6958,EISSN:1868-6966,是Springer Vienna出版的国际性学术期刊,创刊于2010年,以1 issue/year形式稳定发行,2026年总发文量约55篇。该刊采用OA开放访问,学科归属为Pharmacology, Toxicology and Pharmaceutics - Pharmaceutical Science。该刊是医学、肿瘤学领域的国际权威刊物,已被SCI(科学引文索引)、SCIE(科学引文索引扩展版)等国际主流学术数据库收录。2026年期刊影响因子达5.8,2025年期刊CiteScore为9.1,2025年期刊自引率约1.7%,在中科院期刊分区体系中位列医学大类3区,在所属学科领域具备高学术影响力与国际认可度。Cancer Nanotechnology长期聚焦医学、肿瘤学及相关产业的技术应用前沿,平均审稿周期15 Weeks,审稿流程高效稳定。在稿件录用评判中,该刊将创新性与前沿性作为核心遴选标准,重点收录能够对医学、肿瘤学领域的落地与发展产生实质性推动价值的研究成果。

从全球发文格局来看,USAGERMANY (FED REP GER)、Canada、England、Iran、CHINA MAINLAND、France等为核心发文国家与地区;OAKLAND UNIVERSITYCENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE (CNRS)、MBN RES CTR、QUEENS UNIVERSITY BELFAST、UNIVERSITY OF VICTORIA、ISLAMIC AZAD UNIVERSITY、MINISTRY OF EDUCATION & SCIENCE OF UKRAINE等高校与科研机构是期刊的主要发文单位。

期刊评价

名词解释:

影响因子(Impact Factor, IF):指该期刊前两年发表的文章,在第三年的平均被引用次数。它反映了期刊的近期平均影响力和热度。

中科院分区:中科院分区表是国内主流的学术期刊分级评价工具,核心意义是建立跨学科可比的统一评价标尺,为职称评审、学位授予、科研立项等科研管理工作提供标准化量化依据,同时帮助科研人员筛选优质期刊、规避学术风险,适配国内本土化的科研评价需求。

期刊分区表

《新锐期刊分区表》(2026年3月发布)

大类学科 小类学科 Top期刊 综述期刊
医学
3区
ONCOLOGY 肿瘤学 NANOSCIENCE & NANOTECHNOLOGY 纳米科技
3区 3区

期刊分区表(2025年3月升级版)

大类学科 小类学科 Top期刊 综述期刊
医学
3区
NANOSCIENCE & NANOTECHNOLOGY 纳米科技 ONCOLOGY 肿瘤学
3区 3区

期刊分区表(2023年12月升级版)

大类学科 小类学科 Top期刊 综述期刊
工程技术
2区
NANOSCIENCE & NANOTECHNOLOGY 纳米科技 ONCOLOGY 肿瘤学
3区 3区

JCR分区

2025-2026年最新版

按JCI指标学科分区 收录子集 分区 排名 百分位
学科:NANOSCIENCE & NANOTECHNOLOGY SCIE Q2 57 / 148

61.8

学科:ONCOLOGY SCIE Q1 67 / 333

80

学科:NANOSCIENCE & NANOTECHNOLOGY SCIE Q2 45 / 148

69.93

学科:ONCOLOGY SCIE Q2 102 / 333

69.52

2023-2024年最新版

按JCI指标学科分区 收录子集 分区 排名 百分位
学科:NANOSCIENCE & NANOTECHNOLOGY SCIE Q2 61 / 140

56.8

学科:ONCOLOGY SCIE Q1 78 / 322

75.9

学科:NANOSCIENCE & NANOTECHNOLOGY SCIE Q2 50 / 140

64.64

学科:ONCOLOGY SCIE Q2 109 / 322

66.3


中国学者近期发文

1
Targeting and sensitizing MDR cancer by an MMP2 and pH dual-responsive ZnO-based nanomedicine (vol 14, 56, 2023

Author:Zhou, Qing; Zhang, Li; Li, Yujiao; Wang, Jiao; He, Xiaolu; Zhang, Jieyu; Qiao, Youbei; Wu, Hong; Zhu, Lin

Journal: CANCER NANOTECHNOLOGY. 2026; Vol. 17, Issue 1, pp. -. DOI: 10.1186/s12645-026-00372-3

2
Advance of nanobody drug conjugates (NDCs) for cancer therap

Author:Wang, Huihui; Liu, Xianglei

Journal: CANCER NANOTECHNOLOGY. 2026; Vol. 17, Issue 1, pp. -. DOI: 10.1186/s12645-026-00373-2

3
Imaging-guided sonodynamic therapy of glioma through iRGD-modified manganese-porphyrin loaded nanoparticle

Author:Yan, Chunhong; Chen, Wei; Jiang, Tianan; Xu, Danxia; Zhao, Qiyu; Lu, Qifeng; Qiu, Xiaoying; Wang, Baohua

Journal: CANCER NANOTECHNOLOGY. 2026; Vol. 17, Issue 1, pp. -. DOI: 10.1186/s12645-026-00371-4

4
Photosensitive gel vaccine with enzyme-like properties for remodeling tumor microenvironment with STING activation for tumor synergistic therap

Author:Pang, Ji; Yang, Jing; Zhu, Wenrong; Song, Li; Geng, Yiming; Yan, Zhihui

Journal: CANCER NANOTECHNOLOGY. 2026; Vol. 17, Issue 1, pp. -. DOI: 10.1186/s12645-026-00369-y

5
Exosome-encapsulated perfluorocarbon nanoprobes for precise imaging and persistent monitoring of liver metastasi

Author:Xu, Zuoyu; Zou, Hongyan; Cheng, Lixin; Dong, Xiaoqiu; Li, Daoshuang

Journal: CANCER NANOTECHNOLOGY. 2026; Vol. 17, Issue 1, pp. -. DOI: 10.1186/s12645-026-00367-0

6
NIR-activated phase-transition thermal-propagation nanosystem for precision photothermal eradication of malignant melanom

Author:Wang, Xin; Liu, Purui; Cao, Chuanxi; Yan, Qinhan; Qin, Ruoshan; He, Dengqi

Journal: CANCER NANOTECHNOLOGY. 2026; Vol. 17, Issue 1, pp. -. DOI: 10.1186/s12645-026-00366-1

7
Three-birds-one-stone environment responsive delivery system with tumor microenvironment remodeling to enhance solid tumor therap

Author:Deng, Chunmin; Shen, Dong; Li, Mengyi; Zhang, Changsong; Wang, Qingzhen

Journal: CANCER NANOTECHNOLOGY. 2026; Vol. 17, Issue 1, pp. -. DOI: 10.1186/s12645-026-00368-z

8
Anti-glioma efficacy of Quercetin-Iron nanodots with peroxidase-mimicking activity and photothermal conversion capabilit

Author:Chen, Min; Wang, Rui; Qiao, Yang; Liu, Menghui; Cheng, Sheng; Dai, Xingliang; Gao, Peng; Zha, Zhengjiang

Journal: CANCER NANOTECHNOLOGY. 2026; Vol. 17, Issue 1, pp. -. DOI: 10.1186/s12645-026-00363-4

9
Bacteria-triggered liposomes for synergistic tumour therapy based on the hypoxic microenvironment (vol 16, 44, 2025

Author:Wang, Lu; Jiang, Fujie; Ding, Chang; Wu, Xiaoming; Xiao, Xinqi; Dong, Guifang; Yang, Qianmei; Zou, Jianzhong; Chen, Chun

Journal: CANCER NANOTECHNOLOGY. 2026; Vol. 17, Issue 1, pp. -. DOI: 10.1186/s12645-025-00361-y

10
Iron-quercetin complex reprograms tumor-associated macrophages toward M1 phenotype and enables MRI tracking in ex vivo tumor-mimicking spheroid

Author:Dechsupa, Nathupakorn; Innuan, Phattarawadee; Ihsan, Waqas; Korbuakesorn, Cherdphong; Siri, Kawinna; Tepinta, Pimwipa; Ariyawatkul, Pitchayapon; Khamphorn, Rattawish; Phohiran, Saran; Wen, Chengli; Laopajon, Witida; Kantapan, Jiraporn

Journal: CANCER NANOTECHNOLOGY. 2026; Vol. 17, Issue 1, pp. -. DOI: 10.1186/s12645-026-00362-5


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Cancer Nanotechnology

国际简称:CANCER NANOTECHNOL参考译名:癌症纳米技术

年发文量:55 CiteScore:9.1 是否预警:否 Gold OA文章占比:100.00% 研究类文章占比:70.91%

杂志社联系方式:CAMPUS, 4 CRINAN ST, LONDON, ENGLAND, N1 9XW

Cancer Nanotechnology