首站-论文投稿智能助手
典型文献
Immunological effects of nano-enabled hyperthermia for solid tumors:opportunity and challenge
文献摘要:
Compared to conventional hyperthermia that is limited by low selectivity and severe side effects,nano-enabled hyperthermia yields great potentials to tackle these limitations for cancer treatment.Another major advance is the observation of immunological responses associated with nano-enabled hyperthermia,which introduces a new avenue,allowing a potential paradigm shift from the acutely effective and cytotoxicity-centric response to the next-phase discovery,i.e.,long-lasting and/or systemic anti-tumor immunity.This perspective first discusses the temperature-gradient and the spatially-structured immuno-logical landscape in solid tumors receiving nano-enabled hyperthermia.This includes the discussion about under-lying mechanism such as immunogenic cell death,which initiates a profound immunological chain reaction.In order to propagate the immune activation as a viable therapeutic principle,we further discussed the tumor type-specific complexity in the immunological tumor microenviron-ment,including the creative design of nano-enabled combination therapy to synergize with nano-enabled hyperthermia.
文献关键词:
作者姓名:
Xiangsheng Liu;Hui Sun;Xueqing Wang;Huan Meng
作者机构:
CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety,National Center for Nanoscience and Technology (NCNST),Beijing 100190,China;The Cancer Hospital of the University of Chinese Academy of Sciences (Zhejiang Cancer Hospital),Institute of Basic Medicine and Cancer (IBMC),Chinese Academy of Sciences,Hangzhou 310022,China;Beijing Key Laboratory of Molecular Pharmaceutics and New Drug Delivery Systems,School of Pharmaceutical Sciences,Peking University,Beijing 100191,China
引用格式:
[1]Xiangsheng Liu;Hui Sun;Xueqing Wang;Huan Meng-.Immunological effects of nano-enabled hyperthermia for solid tumors:opportunity and challenge)[J].化学科学与工程前沿,2022(03):333-344
A类:
B类:
Immunological,effects,nano,enabled,hyperthermia,solid,tumors,opportunity,challenge,Compared,conventional,that,limited,by,selectivity,severe,side,yields,great,potentials,tackle,these,limitations,cancer,treatment,Another,major,advance,observation,immunological,responses,associated,which,introduces,new,avenue,allowing,paradigm,shift,from,acutely,effective,cytotoxicity,centric,next,phase,discovery,long,lasting,systemic,anti,immunity,This,perspective,first,discusses,temperature,gradient,spatially,structured,landscape,receiving,includes,discussion,about,under,lying,mechanism,such,immunogenic,cell,death,initiates,profound,chain,reaction,In,order,propagate,immune,activation,viable,therapeutic,principle,we,further,discussed,type,specific,complexity,microenviron,including,creative,design,combination,therapy,synergize
AB值:
0.659143
相似文献
Enhanced bioactivity and interfacial bonding strength of Ti3Zr2Sn3Mo25Nb alloy through graded porosity and surface bioactivation
Sen Yu;Zhe Yu;Dagang Guo;Hui Zhu;Minghua Zhang;Jianye Han;Zhentao Yu;Yemin Cao;Gui Wang-State Key Laboratory for Mechanical Behavior of Materials,School of Material Science and Engineering,Xi'an Jiaotong University,Xi'an 710049,China;Shaanxi Key Laboratory of biomedical metallic materials,Northwest Institute for Non-ferrous Metal Research,Xi'an 710016,China;Orthopedics Oncology Institute of Chinese PLA,Tangdu Hospital,Air Force Medical University,Xi'an 710038,China;Shanghai Hospital of Integrated Traditional Chinese and Western Medicine,Shanghai University of Traditional Chinese Medicine,Shanghai 201203,China;Centre for Advanced Materials Processing and Manufacturing(AMPAM),The University of Queensland,St Lucia,QLD 4072,Australia
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。