To the Editor: GLP-1 receptor agonists (GLP-1 RAs) have revolutionized obesity management, yet “real-world” use is characterized by frequent treatment discontinuation and reinitiation (1, 2). More than half of patients discontinue therapy within 24 months, and many subsequently restart (1). Because weight regain is rapid following cessation, and up to 40% of GLP-1 RA-induced weight loss reflects lean mass, Medic GLP Supplement repeated cycling may exert a cumulative metabolic toll given the limited capacity for skeletal muscle recovery (3-5). Here, we define the metabolic impact of GLP-1 RA cycling in vivo. We modeled intermittent GLP-1 RA therapy in diet-induced obese male C57BL/6J mice. Mice assigned to continuous treatment received daily semaglutide for 4 months. Cycling GLP-1 RA treatment induces therapeutic resistance and rebound obesity. 7) mice. GTT, glucose tolerance testing; ITT, insulin tolerance testing. Body weights of individual cycled mice 14 days after each cycle. 7) mice over 95 days; green star, 1 missed treatment day. Percentage weight change in cycled versus continuous mice across both cohorts. Unpaired 2-tailed Student’s t test.
Science continues to prove that the old adage “you are what you eat” is profoundly true. This is because you have trillions of microorganisms living in your gut, which are directly responsible for nearly every aspect of your health. These microbes make up what’s called your “gut microbiota.” They are especially influential in determining your likelihood of gaining excessive weight, becoming obese, and developing obesity-related diseases like diabetes, heart disease, and premature death. The gut microbiome (the expressed genes of your gut microbiota) plays a major role in your metabolism through energy production, storage, and expenditure. So, it’s no surprise that science has found a strong connection between gut microbiome imbalance and metabolic syndrome. Yikes! If you have the wrong mix of microbes, it could be making it tough for you to get your health on track! Did you know: Scientists can actually look at your gut microbiome composition and tell with 90% accuracy if you are obese or lean. That’s pretty impressive, isn’t it?
1. Unable to lose weight and keep it off? 2. Struggling to fight cravings? 3. Sick of starving yourself supplement for a balanced lifestyle – from the Nutbox Collection blog – weight loss? 4. Baffled as to why no diet seems to really work for you? Depending on the composition of your gut microbiome, your microbes can either boost your health or weigh you down (figuratively and literally). The good news is this: You have control over these little guys with every bite you eat. Diet has the power to change the landscape of your gut microbiome. So, MedicGLP Supplement if you’ve tried multiple diets and can’t seem to get the results you want, it’s time to look into your gut microbiome.Will You Lose Weight Naturally on an Individualized Diet? If you’ve been struggling to lose weight and keep it off – it could be your gut microbiome. While Viome doesn’t guarantee weight loss, it has been an exciting result many of our customers have reported. “Fiona’s update day 37!
We know weight loss can be tough. Find out if your weight struggles are due to a gut microbiome imbalance with Viome – and let’s tip the scales in your favor. Your gut microbes actually digest much of your food for you. When your gut microbiota help digest your food, they turn it into nutrients, neurotransmitters, vitamins, hormones, and more. Through these metabolites, the composition of your gut microbiome influences nearly every metabolic activity. It’s accurate to think of your gut microbiome as an organ that’s part immune system and part energy regulator. If your gut microbiome is imbalanced, certain bacteria end up working to protect themselves from the harsh environment and are not able to help you. In the worst case scenario, you can have microbiota adding to your health problems, making it harder for you to get healthy and lose weight. Viome’s metatranscriptomic technology has allowed us identify microbial pathways and functions, specifically those that influence weight loss or gain.
