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Advanced Optical Imaging-Guided Nanotheranostics towards Personalized Cancer Drug Delivery

期刊

NANOMATERIALS
卷 12, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/nano12030399

关键词

nanomedicine; theranostics; optical imaging; personalized medicine; cancer

资金

  1. Spanish Ministry of Science and Innovation [PID2019-109450RB-I00/AEI/10.13039/501100011033]
  2. European Research Council [ERC-StG-757397]
  3. la Caixa Foundation [100010434]

向作者/读者索取更多资源

Nanomedicine utilizes nanotechnology for clinical applications and holds promise for improving cancer treatments. Personalized Medicine aims to match the most effective treatment to individual patients, and nanotheranostics, which combine therapy and diagnostic imaging, can help in treatment selection, monitoring response, and planning therapy.
Nanomedicine involves the use of nanotechnology for clinical applications and holds promise to improve treatments. Recent developments offer new hope for cancer detection, prevention and treatment; however, being a heterogenous disorder, cancer calls for a more targeted treatment approach. Personalized Medicine (PM) aims to revolutionize cancer therapy by matching the most effective treatment to individual patients. Nanotheranostics comprise a combination of therapy and diagnostic imaging incorporated in a nanosystem and are developed to fulfill the promise of PM by helping in the selection of treatments, the objective monitoring of response and the planning of follow-up therapy. Although well-established imaging techniques, such as Magnetic Resonance Imaging (MRI), Computed Tomography (CT), Positron Emission Tomography (PET) and Single-Photon Emission Computed Tomography (SPECT), are primarily used in the development of theranostics, Optical Imaging (OI) offers some advantages, such as high sensitivity, spatial and temporal resolution and less invasiveness. Additionally, it allows for multiplexing, using multi-color imaging and DNA barcoding, which further aids in the development of personalized treatments. Recent advances have also given rise to techniques permitting better penetration, opening new doors for OI-guided nanotheranostics. In this review, we describe in detail these recent advances that may be used to design and develop efficient and specific nanotheranostics for personalized cancer drug delivery.

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