Molecular Imaging of Cancer with Nanoparticle-Based Theranostic Probes

Although advancements in medical technology supporting cancer diagnosis and treatment have improved survival, these technologies still have limitations. Recently, the application of noninvasive imaging for cancer diagnosis and therapy has become an indispensable component in clinical practice. Howev...

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Published inContrast media and molecular imaging Vol. 2017; no. 2017; pp. 1 - 11
Main Authors Mou, Xiao-Zhou, Tong, Xiang-Min, Wang, Hui-Ju, Wang, Shi-Bing, Jin, Ke-Tao, Ma, Ying-Yu, Huang, Dongsheng
Format Journal Article
LanguageEnglish
Published Cairo, Egypt Hindawi Publishing Corporation 01.01.2017
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Hindawi Limited
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Abstract Although advancements in medical technology supporting cancer diagnosis and treatment have improved survival, these technologies still have limitations. Recently, the application of noninvasive imaging for cancer diagnosis and therapy has become an indispensable component in clinical practice. However, current imaging contrasts and tracers, which are in widespread clinical use, have their intrinsic limitations and disadvantages. Nanotechnologies, which have improved in vivo detection and enhanced targeting efficiency for cancer, may overcome some of the limitations of cancer diagnosis and therapy. Theranostic nanoparticles have great potential as a therapeutic model, which possesses the ability of their nanoplatforms to load targeted molecule for both imaging and therapeutic functions. The resulting nanosystem will likely be critical with the growth of personalized medicine because of their diagnostic potential, effectiveness as a drug delivery vehicle, and ability to oversee patient response to therapy. In this review, we discuss the achievements of modern nanoparticles with the goal of accurate tumor imaging and effective treatment and discuss the future prospects.
AbstractList Although advancements in medical technology supporting cancer diagnosis and treatment have improved survival, these technologies still have limitations. Recently, the application of noninvasive imaging for cancer diagnosis and therapy has become an indispensable component in clinical practice. However, current imaging contrasts and tracers, which are in widespread clinical use, have their intrinsic limitations and disadvantages. Nanotechnologies, which have improved in vivo detection and enhanced targeting efficiency for cancer, may overcome some of the limitations of cancer diagnosis and therapy. Theranostic nanoparticles have great potential as a therapeutic model, which possesses the ability of their nanoplatforms to load targeted molecule for both imaging and therapeutic functions. The resulting nanosystem will likely be critical with the growth of personalized medicine because of their diagnostic potential, effectiveness as a drug delivery vehicle, and ability to oversee patient response to therapy. In this review, we discuss the achievements of modern nanoparticles with the goal of accurate tumor imaging and effective treatment and discuss the future prospects.
Author Ma, Ying-Yu
Mou, Xiao-Zhou
Wang, Hui-Ju
Huang, Dongsheng
Tong, Xiang-Min
Wang, Shi-Bing
Jin, Ke-Tao
AuthorAffiliation 3 Department of Gastrointestinal Surgery, Shaoxing People's Hospital, Shaoxing Hospital of Zhejiang University, Shaoxing 312000, China
1 Clinical Research Institute, Zhejiang Provincial People's Hospital, Hangzhou 310014, China
4 School of Basic Medical Sciences, Hangzhou Medical College, Hangzhou 310053, China
2 Key Laboratory of Cancer Molecular Diagnosis and Individualized Therapy of Zhejiang Province, Hangzhou 310014, China
AuthorAffiliation_xml – name: 3 Department of Gastrointestinal Surgery, Shaoxing People's Hospital, Shaoxing Hospital of Zhejiang University, Shaoxing 312000, China
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/29097909$$D View this record in MEDLINE/PubMed
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ContentType Journal Article
Copyright Copyright © 2017 Ying-Yu Ma et al.
Copyright © 2017 Ying-Yu Ma et al.; This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright © 2017 Ying-Yu Ma et al. 2017
Copyright_xml – notice: Copyright © 2017 Ying-Yu Ma et al.
– notice: Copyright © 2017 Ying-Yu Ma et al.; This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
– notice: Copyright © 2017 Ying-Yu Ma et al. 2017
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Snippet Although advancements in medical technology supporting cancer diagnosis and treatment have improved survival, these technologies still have limitations....
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SubjectTerms Biocompatibility
Biomedical materials
Breast cancer
Cancer
Contrast agents
Diagnosis
Diagnostic systems
Drug delivery
Drug delivery systems
Gene therapy
Humans
Imaging
Kinases
Medical diagnosis
Medical imaging
Medical technology
Molecular Imaging - methods
Nanoparticles
Nanoparticles - therapeutic use
Neoplasms - diagnostic imaging
NMR
Nuclear magnetic resonance
Precision medicine
Review
Theranostic Nanomedicine - methods
Therapy
Tracers
Tumors
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Title Molecular Imaging of Cancer with Nanoparticle-Based Theranostic Probes
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https://dx.doi.org/10.1155/2017/1026270
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