Gold nanocluster-loaded hybrid albumin nanoparticles with fluorescence-based optical visualization and photothermal conversion for tumor detection/ablation

  • Park, S.; 
  • Kim, H.; 
  • Lim, S.C.; 
  • Lim, K.; 
  • Lee, E.S.; 
  • ... Oh, K.T.; 
  • 외 2명
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초록

Gold nanoclusters (AuNCs) are viewed as effective hyperthermal agents for the treatment of tumors. Whereas AuNCs formed by the agglomeration of several to tens of gold atoms (<1–2 nm) possess significant fluorescence, they have a negligible hyperthermal effect, while AuNCs comprised of spherical gold nanoparticles (AuNPs > a few nanometers) have a marked hyperthermic effect but lose their inherent fluorescence and obstruct the intensity of neighboring fluorescent dyes due to Forster resonance energy transfer (FRET). To achieve both hyperthermia and fluorescence-based optical visualization, we generated hybrid albumin nanoparticles containing AuNCs (~88 nm) comprising AuNPs (~4.5 nm). We generated a series of formulated AuNCs and optimized the size, morphology, NIR absorbance (600–900 nm), hyperthermal activity, and fluorescence spectral characters of the resulting hybrid albumin nanoparticles (AuNCs/BSA-NPs) by considering the interparticle distance between the AuNPs and Cy5.5. Among these, AuNCs/BSA-NPs (formula D) had a strong hyperthermic effect and had well-preserved fluorescence intensity (from the attached Cy5.5) due to localized surface plasmon resonance (LSPR) and a reduction in FRET. These AuNCs/BSA-NPs were able to elevate the surface tumor temperature of HCT116-bearing mice to >50 °C following 808 nm laser irradiation (1.5 W/cm 2 , 10 min), which remarkably suppressed tumor growth (17.8 ± 16.9 mm 3 vs. PBS and AuNCs/BSA-NPs (formula E): ~1850 and ~1250 mm 3 , respectively). Also, Cy5.5-modified AuNCs/BSA-NPs (formula D) showed good performance in optical fluorescence imaging of target tumors in HCT116 tumor-bearing mice. Together, our results indicate that the interparticle distance between albumin or Cy5.5 and AuNPs/AuNCs can be optimized to achieve both hyperthermia and fluorescence emission by striking a balance between LSPR and FRET effects. We believe that the AuNC/BSA-NPs formulation presented here can serve as a potential platform for both optically visualizing and treating colon cancers. © 2019 Elsevier B.V.

키워드

Albumin nanoparticles; Antitumor therapy; FRET; Gold nanoclusters; Hyperthermia; LSPR; Energy transfer; Fluorescence imaging; Forster resonance energy transfer; Gold nanoparticles; Hyperthermia therapy; Mammals; Morphology; Multilayers; Nanoclusters; Nanoparticles; Surface plasmon resonance; Tumors; Visualization; Albumin nanoparticles; Anti-tumors; FRET; Gold nanocluster; Hyperthermia; LSPR; Gold compounds; bovine serum albumin; fluorescent dye; gold nanocluster loaded bovine serum albumin nanoparticle; gold nanoparticle; photosensitizing agent; unclassified drug; animal cell; animal experiment; animal model; animal tissue; Article; cancer diagnosis; cancer size; chemical structure; colon carcinoma; controlled study; drug synthesis; fluorescence imaging; fluorescence resonance energy transfer; HCT 116 cell line; histopathology; in vitro study; in vivo study; male; mouse; nanofabrication; nonhuman; optics; particle size; photothermal therapy; priority journal; process optimization; surface plasmon resonance; tissue distribution; tumor ablation; tumor growth
제목
Gold nanocluster-loaded hybrid albumin nanoparticles with fluorescence-based optical visualization and photothermal conversion for tumor detection/ablation
저자
Park, S.; Kim, H.; Lim, S.C.; Lim, K.; Lee, E.S.; Oh, K.T.; Choi, H.-G.; Youn, Y.S.
DOI
10.1016/j.jconrel.2019.04.036
발행일
2019-06
유형
Article
저널명
Journal of Controlled Release
권
304
페이지
7 ~ 18