Multifunctional Thermosensitive Liposomes Based on Natural Phase-Change Material: Near-Infrared Light-Triggered Drug Release and Multimodal Imaging-Guided Cancer Combination Therapy.
Yeneng DaiJinzhong SuKun WuWenkang MaBing WangMeixing LiPengfei SunQingming ShenQi WangQu-Li FanPublished in: ACS applied materials & interfaces (2019)
Multifunctional theranostic nanoplatforms (NPs) in response to environment stimulations for on-demand drug release are highly desirable. Herein, the near-infrared (NIR)-absorbing dye, indocyanine green (ICG), and the antitumor drug, doxorubicin (DOX), were efficiently coencapsulated into the thermosensitive liposomes based on natural phase-change material. Folate and conjugated gadolinium (Gd) chelate-modified liposome shells enhance active targeting and magnetic resonance performance of the NPs while maintaining the size of the NPs. The ICG/DOX-loaded and gadolinium chelate conjugated temperature-sensitive liposome nanoplatforms (ID@TSL-Gd NPs) exhibited NIR-triggered drug release and prominent chemo-, photothermal, and photodynamic therapy properties. With the coencapsulated ICG, DOX, and the conjugated gadolinium chelates, the ID@TSL-Gd NPs can be used for triple-modal imaging (fluorescence/photoacoustic/magnetic resonance imaging)-guided combination tumor therapy (chemotherapy, photothermotherapy, and photodynamic therapy). After tail vein injection, the ID@TSL-Gd NPs accumulated effectively in subcutaneous HeLa tumor of mice. The tumor was effectively suppressed by accurate imaging-guided NIR-triggered phototherapy and chemotherapy, and no tumor regression and side effects were observed. In summary, the prepared ID@TSL-Gd NPs achieved multimodal imaging-guided cancer combination therapy, providing a promising platform for improving diagnosis and treatment of cancer.
Keyphrases
- drug release
- photodynamic therapy
- fluorescence imaging
- drug delivery
- combination therapy
- cancer therapy
- papillary thyroid
- high resolution
- magnetic resonance
- magnetic resonance imaging
- contrast enhanced
- squamous cell
- oxide nanoparticles
- squamous cell carcinoma
- type diabetes
- computed tomography
- bone marrow
- lymph node metastasis
- cell death
- adipose tissue
- childhood cancer
- diffusion weighted imaging
- wound healing
- metal organic framework
- metabolic syndrome
- cell proliferation
- young adults
- chemotherapy induced