Ví dụ về việc sử dụng Agnps trong Tiếng anh và bản dịch của chúng sang Tiếng việt
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The concentration of κ-carrageenan isused to influence particle size distribution of the AgNPs.
This suggests that although AgNPs activate autophagy, they eventually lead to autophonic tide being blocked.
In addition to autophagic dysfunction,RNP and apoptosis were also increased after AgNPs exposure.
In general, Silver Nanoparticle Agnps is considered to be a sufficient and necessary condition for inducing cytotoxicity.
Due to the breakthrough of nanotechnology, silver nanoparticles(hereinafter referred to as AgNPs) have gained more benefits.
Considering that AgNPs endocytosis is considered to be a sufficient and noninvasive condition for inducing cytotoxicity.
Silver Nanoparticle Due to the breakthrough of nanotechnology,nano silver particles(hereinafter referred to as AgNPs) have gained more benefits.
Considering that AgNPs endocytosis is considered to be a sufficient and noninvasive condition for inducing cytotoxicity.
Autophagy can serve as a cell defenseprocess that is crucial to counteract the toxicity of AgNPs but does not maintain autophagic activity.
AgNPs exposure increased LC3-I to LC3-II in a dose-dependent manner, and the accumulation of p62 protein was dose-dependent.
There is no obvious cytotoxic effect on AgNPs that are involved in active transport(ie, endocytosis) into cells.
Silver Nanoparticle Metallic silver is widely used in our daily life as well as in various medical treatments, as a result of nanotechnology breakthroughs,silver nanoparticles(hereinafter called AGNPS) have gained greater benefits.
In contrast, Agnps, which is mainly exchanged with internal swallowing to the internal lysosomal interval, has a significant toxicity to the cells.
In recent years, researchers have assessed the toxicity of AGNPS and sought to explore their cellular and molecular toxicity mechanisms.
In addition, Agnps may destroy the integrity of the cell membrane by inducing lipid peroxidation, thus directly infiltrating into the cell membrane.
In recent years,Silver Nanoparticle researchers have assessed the toxicity of AGNPS and sought to explore their cellular and molecular toxicity mechanisms.
In contrast, internalization of AgNPs, which are predominantly exchanged into the lysosomal interval through endocytosis, has a significant toxic effect on cells.
This pattern of organ distribution suggests that the potential toxicity of AgNPs causes neurotoxicity, immunotoxicity, nephrotoxicity and reproductive toxicity in the body.
But the growth of AGNPS applications in various fields inevitably leads to increased potential risk of nanoparticles, causing concern for environmental safety and human health.
Autophagy can act as a cell defenseprocess that is essential to counteract the toxicity of AgNPs, but does not maintain autophagic activity, accompanied by reduced energy, which may contribute to the onset of apoptosis and subsequent liver function damage.
Agnps once in the human body, some may remain in the original target tissue, but in principle they will be transported through the bloodstream or lymphatic system, distributed to the body's secondary target organs, causing specific organs or systems to respond.
In contrast, the internalization of AgNPs, Silver Nanoparticle which are mainly exchanged into the lysosomal interval, is significantly toxic by endocytosis.
Agnps once in the human body, some may remain in the original target tissue, but in principle they will be transported through the bloodstream or lymphatic system, distributed to the body's secondary target organs, causing specific organs or systems to respond.
Silver Nanoparticle In addition, AgNPs may destroy the integrity of the cell membrane by inducing lipid peroxidation and thus penetrate directly into the cell membrane.
Once in the body, AgNPs may remain in the target tissue, but in principle they will be transported through the bloodstream or lymphatic system and distributed to the body's secondary target organs, causing specific organ or systemic reactions.
However, the increase in the use of AgNPs in various fields inevitably leads to an increase in the potential risk of nanoscale particles, which raise concerns about environmental safety and human health.
But the growth of AGNPS applications in various fields inevitably leads to increased potential risk of nanoparticles, causing concern for environmental safety and human health.
However, the growth of application of AgNPs in various fields inevitably leads to an increase in the potential risks of nanoscale particles, causing concerns about environmental safety and human health.