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Oaxaca Dataset

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created byO SebastianO Sebastian
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Dataset Records

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  • record.text
    { "id": "clpqe1o6c03so2m0tiny0c3ri", "text": "What is the mechamism by which Metformin slows down environmental stresses?\nAnother proposed mechanism of action is that Metformin may reduce environmental stress by reducing the production of certain molecules\nthat can cause stress in cells. Metformin has been shown to decrease the production of reactive oxygen species (ROS), which are molecules\nthat can cause damage to cells and contribute to cellular stress." }
  • record.text
    { "id": "clpqe19iq03sm2m0tk9cbd6ni", "text": "What is the mechamism by which Metformin slows down environmental stresses?\nMetformin's ability to mitigate the effects of environmental stresses is an area of ongoing research. While there isn't a definitive answer to this question, several mechanisms have been proposed. One hypothesis suggests that metformin activates a protein called AMP-activated protein kinase (AMPK), which plays a role in cellular energy regulation. This activation can lead to various downstream effects, including the reduction of oxidative stress and the modulation of inflammatory responses.\nAnother proposed mechanism is metformin's impact on mitochondrial function. It is suggested that metformin can alter mitochondrial metabolism, leading to decreased production of reactive oxygen species (ROS) and improved cellular resilience against environmental stresses.\nIt's important to note that our understanding of these mechanisms is still evolving, and further research is needed to fully elucidate how metformin slows down environmental stresses." }
  • record.text
    { "id": "clpqe0yb003sk2m0tmcchf3hk", "text": "What is the mechamism by which Metformin slows down environmental stresses?\nMetformin's mechanism of slowing down environmental stresses primarily involves its ability to activate the AMP-activated protein kinase (AMPK) pathway. More specifically, it inhibits the mitochondrial respiratory chain complex 1, leading to an increased ratio of AMP to ATP, which in turn activates AMPK.\nActivated AMPK triggers several biochemical reactions that enable cells to deal with energy shortage during times of stress. For instance, it promotes the breakdown of glucose and fatty acids for energy, while inhibiting energy-consuming processes such as protein synthesis and cell growth and division.\nFurther, the AMPK pathway is involved in numerous cellular responses to stress. It has been shown to enhance the resistance of cells to oxidative and inflammatory stress, both of which often result from various environmental challenges. Consequently, it's believed to promote longevity and healthspan." }

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