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Death Pathways of Cancer Cells Modulated by Surface Molecule Density on Gold Nanorods
Author(s) -
Zhang Fulei,
Hou Yi,
Zhu Minhui,
Deng Bo,
Zhao Mengxin,
Zhu Xiandi,
Sun Yun,
Chen Di,
Jiang Cheng,
Wang Liming,
Chen Chunying,
Chen Huaiwen,
Chen Han,
Zheng Hongliang,
Li Wei
Publication year - 2021
Publication title -
advanced science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.388
H-Index - 100
ISSN - 2198-3844
DOI - 10.1002/advs.202102666
Subject(s) - microbiology and biotechnology , apoptosis , lysosome , necrosis , programmed cell death , intracellular , tumor necrosis factor alpha , necroptosis , caspase , chemistry , biophysics , nanotechnology , materials science , biology , biochemistry , immunology , enzyme , genetics
Necrosis induces strong inflammation with undesirable implications in clinics compared with apoptosis. Fortunately, the switch between necrosis and apoptosis could be realized by tailoring the appropriate structural properties of gold nano rods (GNRs) that could precisely modulate cell death pathways. Herein, the intracellular interaction between GNRs and organelles is monitored and it is found that lysosomes dominates necrosis/apoptosis evoking. Then the surface molecule density of GNRs, which is first defined as ρ surf. molecule ( N surf. molecules /( a × π × Diameter × Length)), mediates lysosome activities as the membrane permeabilization (LMP), the Cathepsin B and D release, the cross‐talk between lysosome and different organelles, which selectively evokes apoptosis or necrosis and the production of TNF‐ α from macrophages. GNRs with small ρ surf. molecule mainly induce apoptosis, while with large ρ surf. molecule they greatly contribute to necrosis. Interestingly, necrosis can be suppressed by GNRs with higher ρ surf. molecule due to the overexpression of key protease caspase 8, which cleaves the RIP1‐RIP3 complex and activates caspase 3 followed by necrosis to apoptosis transition. This investigation indicates that the ρ surf. molecule greatly affects the utility of nanomaterials and different structural properties of nanomaterials have different implications in clinics.

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