Gold nanocluster-loaded hybrid albumin nanoparticles with fluorescence-based optical visualization and photothermal conversion for tumor detection/ablation
Sanghyun Park
1
,
HanJu Kim
1
,
Su Chan Lim
1
,
Kyungseop Lim
1
,
Eunsol Lee
2
,
K S Oh
3
,
Han-Gon Choi
4
,
Yu Seok Youn
1
Тип публикации: Journal Article
Дата публикации: 2019-06-01
scimago Q1
wos Q1
БС1
SJR: 2.470
CiteScore: 19.4
Impact factor: 11.5
ISSN: 01683659, 18734995
PubMed ID:
31028785
Pharmaceutical Science
Краткое описание
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/cm2, 10 min), which remarkably suppressed tumor growth (17.8 ± 16.9 mm3vs. PBS and AuNCs/BSA-NPs (formula E): ~1850 and ~1250 mm3, 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.
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Park S. et al. Gold nanocluster-loaded hybrid albumin nanoparticles with fluorescence-based optical visualization and photothermal conversion for tumor detection/ablation // Journal of Controlled Release. 2019. Vol. 304. pp. 7-18.
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Park S., Kim H., Lim S. C., Lim K., Lee E., Oh K. S., Choi H., Youn Yu. S. Gold nanocluster-loaded hybrid albumin nanoparticles with fluorescence-based optical visualization and photothermal conversion for tumor detection/ablation // Journal of Controlled Release. 2019. Vol. 304. pp. 7-18.
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TY - JOUR
DO - 10.1016/j.jconrel.2019.04.036
UR - https://doi.org/10.1016/j.jconrel.2019.04.036
TI - Gold nanocluster-loaded hybrid albumin nanoparticles with fluorescence-based optical visualization and photothermal conversion for tumor detection/ablation
T2 - Journal of Controlled Release
AU - Park, Sanghyun
AU - Kim, HanJu
AU - Lim, Su Chan
AU - Lim, Kyungseop
AU - Lee, Eunsol
AU - Oh, K S
AU - Choi, Han-Gon
AU - Youn, Yu Seok
PY - 2019
DA - 2019/06/01
PB - Elsevier
SP - 7-18
VL - 304
PMID - 31028785
SN - 0168-3659
SN - 1873-4995
ER -
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@article{2019_Park,
author = {Sanghyun Park and HanJu Kim and Su Chan Lim and Kyungseop Lim and Eunsol Lee and K S Oh and Han-Gon Choi and Yu Seok Youn},
title = {Gold nanocluster-loaded hybrid albumin nanoparticles with fluorescence-based optical visualization and photothermal conversion for tumor detection/ablation},
journal = {Journal of Controlled Release},
year = {2019},
volume = {304},
publisher = {Elsevier},
month = {jun},
url = {https://doi.org/10.1016/j.jconrel.2019.04.036},
pages = {7--18},
doi = {10.1016/j.jconrel.2019.04.036}
}