Living longer could hinge on one surprising dietary change, study review suggests

Eating less protein, not cutting calories, may be an easier path to a longer, healthier life for sedentary adults, according to a new scientific review.While previous research has long tied calorie restriction to improved lifespan and lower rates of age-related disease, studies have found that many people have difficulty maintaining strict low-calorie diets.A review of more than 350 studies published in the journal Cell Press Blue suggests that targeted protein restriction can deliver similar metabolic benefits without the need to cut calories.LEADING ONCOLOGIST REVEALS 6 HABITS THAT COULD PROMOTE LONGEVITY AND REDUCE YOUR RISK OF CHRONIC ILLNESSAcross the reviewed studies, lower protein intake was associated with better metabolism, altered nutrient signaling, reduced cellular damage and improved cellular maintenance, according to the published review.While research has shown the benefits of high protein intake for active people, new research says the opposite may be true for sedentary individuals.(iStock)Much of the benefit stems from a metabolic hormone known as fibroblast growth factor 21, or FGF21.
Restricting protein triggers a surge in FGF21, which animal studies have shown can boost energy expenditure, reduce inflammation, improve blood sugar control and extend lifespan.Researchers highlighted three essential amino acids that are building blocks of protein — methionine, isoleucine and valine.Under certain conditions, they may contribute to biological pathways associated with aging under certain conditions.FORGET THE GYM: A 30-SECOND TEST MAY BE ONE OF THE BEST INDICATORS OF LONGEVITYFor people who don't exercise regularly, high levels of these amino acids may keep certain growth-related processes constantly active.
Over time, that stimulation can create cellular damage, systemic inflammation and weight gain.CLICK HERE TO DOWNLOAD THE FOX NEWS APP"It's absolutely crystal-clear that there are benefits of protein for muscle growth and exercise response of ac...