4.5 Article

Construction of Nucleolin-Targeted Lipid Nanobubbles and Contrast-Enhanced Ultrasound Molecular Imaging in Triple-Negative Breast Cancer

期刊

PHARMACEUTICAL RESEARCH
卷 37, 期 7, 页码 -

出版社

SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s11095-020-02873-1

关键词

targeted lipid nanobubbles; nucleolin; aptamer AS1411; ultrasound molecular imaging; triple-negative breast cancer

资金

  1. International Science & Technology Cooperation Program of China [2015DFA30920]
  2. Science & Technology (International Science & Technology Cooperation) Research Base Construction Program of Chongqing [cstc2014gjhz110004]
  3. National Natural Science Foundation of China [81771856]

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Purpose To construct aptamer AS1411-functionalized targeted lipid nanobubbles that could simultaneously target abnormally highly expressed nucleolin (NCL) on tumor tissue and neovasculature. Additionally, the study of their contrast-enhanced ultrasound molecular imaging capabilitiesin vitroandin vivoto explore new methods and approaches for the early and accurate diagnosis of triple-negative breast cancer (TNBC). Methods First, the targeted lipid-nucleic acid molecules were constructed by an amide reaction. Then, the targeted lipid nanobubbles (AS1411-NBs) and nontargeted lipid nanobubbles (NBs) were prepared by membrane hydration, mechanical vibration and centrifugal floatation. The physicochemical characteristics and contrast-enhanced ultrasound imaging capabilities of AS1411-NBs and NBs were compared and analyzedin vitroandin vivo. Results There were no significant differences between the AS1411-NBs and NBs in their concentration, average particle size or ultrasound imaging capabilitiesin vitro(P > 0.05). However, AS1411-NBs could simultaneously target NCL in tumor tissue and neovasculature to effectively prolong the duration of contrast-enhanced ultrasound imaging compared to NBsin vivo.The area under the time-intensity curve was significantly different between AS1411-NBs and NBs (P < 0.001), and the drug loading capacity of the AS1411-NBs was also significantly higher than that of the NBs (P < 0.05). Conclusions Aptamer AS1411-functionalized targeted lipid nanobubbles could significantly prolong the duration of contrast-enhanced ultrasound imaging to achieve dual-targeted ultrasound molecular imaging of tumor tissue and neovasculature. AS1411-NBs also have higher drug loading and targeted drug delivery capabilities compared with NBs, which can provide new methods and approaches for the early accurate diagnosis and effective treatment of TNBC.

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