典型文献
Construction and applications of DNA-based nanomaterials in cancer therapy
文献摘要:
As a biologically active macromolecule,deoxyribonucleic acid(DNA)has the advantages of sequence pro-grammability and structure controllability and can accurately transmit sequence information to specific biological functions.Facing the complex internal microenvironment and heterogeneity in tumor treat-ment,the construction and applications of DNA-based nanomaterials have become a focus point of re-search.In particular,the hybridization of DNA molecules with other materials endows DNA-based nano-materials with multiple functions such as targeting,stimulus responsiveness and regulations of biolog-ical activities,making DNA nanostructures great potential in the treatment of major human diseases.In this review,the construction and characteristics of DNA-based nanomaterials are introduced.Then,the functions and applications of DNA-based nanomaterials in the delivery of chemotherapy drugs and gene drugs,stimulus-responsive release and regulation of cell homeostasis are reviewed.Finally,the fu-ture development and challenges of DNA-based nanomaterials are prospected.We envision that DNA-based nanomaterials can enrich the nanomaterial system by rational design and synthesis and address the growing demands on biological and biomedical applications in the real world.
文献关键词:
中图分类号:
作者姓名:
Hedong Qi;Yuwei Xu;Pin Hu;Chi Yao;Dayong Yang
作者机构:
Frontiers Science Center for Synthetic Biology,Key Laboratory of Systems Bioengineering(MOE),School of Chemical Engineering and Technology,Tianjin University,Tianjin 300350,China
文献出处:
引用格式:
[1]Hedong Qi;Yuwei Xu;Pin Hu;Chi Yao;Dayong Yang-.Construction and applications of DNA-based nanomaterials in cancer therapy)[J].中国化学快报(英文版),2022(03):1131-1140
A类:
grammability
B类:
Construction,applications,nanomaterials,cancer,biologically,active,macromolecule,deoxyribonucleic,acid,has,advantages,sequence,controllability,accurately,transmit,information,specific,functions,Facing,complex,internal,microenvironment,heterogeneity,tumor,construction,have,become,focus,point,search,In,particular,hybridization,molecules,endows,multiple,such,targeting,stimulus,responsiveness,regulations,activities,making,nanostructures,great,potential,treatment,major,human,diseases,this,characteristics,are,introduced,Then,delivery,chemotherapy,drugs,release,cell,homeostasis,reviewed,Finally,development,challenges,prospected,We,envision,that,enrich,system,by,rational,design,synthesis,address,growing,demands,biomedical,real,world
AB值:
0.52885
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