4.5 Article

Liposome-Loaded Targeted Theranostic Fluorescent Nano-Probes for Diagnosis and Treatment of Cervix Carcinoma

期刊

JOURNAL OF BIOMEDICAL NANOTECHNOLOGY
卷 18, 期 5, 页码 1289-1301

出版社

AMER SCIENTIFIC PUBLISHERS
DOI: 10.1166/jbn.2022.3332

关键词

Cervix Carcinoma; Doxorubicin; Liposomes; Near-Infrared Fluorescence Imaging; Chemotherapy; Heptamethine Cyanine Dye IR783

资金

  1. Natural Science Foundation of Xinjiang Uygur Autonomous Region [2020D01C151]
  2. National Natural Science Foundation of China (NSFC) [82060326, 62035011]
  3. Xinjiang Medical University/State Key Laboratory of Pathogenesis, Prevention and Treatment of High Incidence Diseases in Central cultivation project of National Science Foundation for outstanding young people [xyd2021Y005]

向作者/读者索取更多资源

The combination of near-infrared fluorescence imaging and chemotherapy is a promising method for precise diagnosis and treatment of cervical cancer. Therapeutic nanoparticles with detection abilities show significant chemotherapeutic effects.
Near-infrared fluorescence imaging, with its high sensitivity, non-invasiveness, and superior real-time feedback properties, has become a powerful skill for accurate diagnosis in the clinic. Nanoparticle-assisted chemotherapy is an effective cure for cancer. Specifically, the combination of near-infrared fluorescence imaging with chemotherapy represents a promising method for precise diagnosis and treatment of cervical cancer. To realize this approach, it is necessary to design and synthesize therapeutic nano-probesIP:withdetection203.8.109.20abilities.On:InThuthis22work,Sepan2022organic09:45:12NIRF emissive heptamethine cyanine dye, IR783, was utilized and encapsulated in biocompatible drug-arrier liposomes). Then, the anticancer drug doxorubicin Copyright: American Scientif c Publishers was loaded, to form LP-IR783-DOX nanoparticles. The LP-IR783-DOX nanoparticles had spherical shapes and were Delivered by Ingenta smoothly dispersed in aqueous solutions. Favorable absorption (a peak of 800 nm) and fluorescence (a peak of 896 nm) features were obtained from LP-IR783-DOX nanoparticles in the near-infrared region. Moreover, the specific detection abilities of nanoparticles were confirmed in different cell lines, and nanoparticles exhibited strong detection abilities in human cervix carcinoma cells in particular. To analyze the chemotherapeutic properties of LP-IR783-DOX nanoparticles, live HeLa cells were studied in detail, and the application of these NPs resulted in a chemotherapeutic efficiency of 56.75% based on fluorescein isothiocyanate staining and flow cytometry. The results indicate that nanoparticles have great potential for theranostic application of fluorescence imaging and chemotherapy in cases of cervical cancer.

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