Latest Product news can be found here. GSHWorld spares no efforts to share our experience with you,so that you can find a better solution for your projects.And we share successful cases we have done for different industries, including L-glutathione (GSH),β-Nicotinamide Mononucleotide (NMN),Oxidized glutathione (GSSG),S-Acetyl-L-Glutathione (SAG),Citicoline Sodium (CDPC).
Scientists find that boosting NAD+ with NMN and NR supplementation alleviates diabetes-related nerve fiber degeneration and loss in rodents.
Tumor has become a very important medical research problem due to its complex mechanism. glutathione can also affect the survival of cancer stem cells by participating in regulation of some signaling molecules.
In recent years, the role of glutathione in regulating stem cell differentiation by participating in the energy metabolism of stem cells has become increasingly clear.
Preclinical studies suggest that elevations in nicotinamide adenine dinucleotide (NAD+) following administration of the NAD++ precursor nicotinamide mononucleotide (NMN) can alleviate aging-related diseases;
Glutathione is a tripeptide compound found in all living cells and is a combination of glutamic acid, cystine and glycine.
Nicotinamide mononucleotide (NMN)-treated antitumor CAR-T cells display enhanced effectiveness to combat cancer cells and reduce tumor growth in mice.
In addition to the damage protection of stem cells, reduced glutathione is also closely related to the immune regulation function of stem cells.
Glutathione can prevent the damage of stem cells and promote the self-renewal of stem cells as a potential activation signal in the early stage of apoptosis.
The redox state of stem cells is jointly determined by reactive oxygen species and the cellular antioxidant system. When the production of reactive oxygen species exceeds the processing capacity of
Nicotinamide mononucleotide (NMN)-treated antitumor immune cells display enhanced and sustained effectiveness to combat cancer cells and reduce tumor growth in mice.
Stroke is an acute cerebrovascular disease caused by cerebral blood circulation disorder, which has high mortality and morbidity, and seriously threatens human health. Studies have found that NMN can protect
Researchers from the Washington University School of Medicine in St. Louis show that the enzyme behind NMN biosynthesis – NAMPT – reversion metabolic derangements in obese mice.
A recently-published University of Toyama study from Japan reveals that a daily intake of 250 mg of nicotinamide mononucleotide (NMN) significantly raises blood NAD+.
Another serious threat to health related to aging is cardiovascular disease (Cardiovascular diseases, CVD), which has the characteristics of high morbidity, high disability rate, and harm to a wide range of people.
COVID-19 patients treated with a nicotinamide mononucleotide (NMN) cocktail showed clinical improvements.
Recently, a team from the Chinese Academy of Sciences, together with Peking University and Tsinghua University, published their preclinical research in the top journal Cell Discovery.
In recent years, the huge profits of the NMN market have made many enterprises enter the market, willing to take a share of the pie.
Cardiac ischemia-reperfusion is a life-threatening ischemic injury accompanied by inevitable myocardial cell death and severe organ dysfunction.
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