4.6 Article

Hyperthermal paclitaxel-bound albumin nanoparticles co-loaded with indocyanine green and hyaluronidase for treating pancreatic cancers

期刊

ARCHIVES OF PHARMACAL RESEARCH
卷 44, 期 2, 页码 182-193

出版社

PHARMACEUTICAL SOC KOREA
DOI: 10.1007/s12272-020-01264-9

关键词

Indocyanine green; Hyaluronidase; Hyperthermal therapy; Albumin nanoparticles; Tumor targeting

资金

  1. National Research Foundation of Korea(NRF) - Korea government (MSIT) [NRF-2019R1A5A2027340]
  2. Ministry of Food and Drug Safety [16173MFDS542]
  3. National Research Foundation of Korea [2019R1A5A2027340, 4120200813689, 5199990514442] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Albumin nanoparticles loaded with paclitaxel, indocyanine green, and hyaluronidase showed excellent hyperthermal effects and cytotoxicity, with the ability to penetrate into three-dimensional tumor tissue structures and maintaining good colloidal stability.
Albumin nanoparticles have become an attractive cancer nanomedicine platform due to their pharmaceutical advantages. Recently, photothermal therapy has been extensively applied to cancer treatment due to heat-induced tumor ablation. Herein, we fabricated albumin nanoparticles (HSA-NPs) loaded with paclitaxel (PTX), indocyanine green (ICG; a hyperthermal agent) and hyaluronidase (HAase) that breaks down hyaluronan, a major component of the extracellular matrix (ECM) in tumors. Synthesis was based on a slightly modified nanoparticle albumin-bound (Nab (TM)) technique. The prepared nanoparticles (PTX/ICG/HAase-HSA-NPs) had a spherical shape with an average size of similar to 110 nm and a zeta potential of similar to -30.4 mV. They displayed good colloidal stability and typical patterns of ICG, HSA and HAase in UV-VIS-NIR and circular dichroism spectroscopic analysis. PTX/ICG/HAase-HSA-NPs were found to have excellent hyperthermal effects in response to near-infrared laser irradiation (808 nm) (up to > 50 degrees C over 4 min). The hyperthermia conducted by PTX/ICG/HAase-HSA-NPs resulted in significant cytotoxicity to pancreatic AsPC-1 cells at both severe (> 50 degrees C) and mild (41-42 degrees C) hyperthermal states in conjunction with the inherent cytotoxic activity of paclitaxel. Furthermore, the confocal images of AsPC-1 cell spheroids proved PTX/ICG/HAase-HSA-NPs were able to permeate deeply into the three-dimensional tumor tissue mimicry structure. Most of all, PTX/ICG/HAase-HSA-NPs maintained all these physicochemical and anti-cancer properties irrespective of the amount of embedded HAase (1-5 mg). Our results demonstrated that PTX/ICG/HAase-HSA-NPs are a promising hyperthermal/chemotherapeutic anticancer agent.

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