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Lo studio di Stanford rivela i segreti della perdita di peso sostenibile: rivelati comportamenti e biomarcatori

Lo studio di Stanford rivela i segreti della perdita di peso sostenibile: rivelati comportamenti e biomarcatori

I ricercatori della Stanford University hanno scoperto biomarcatori in grado di prevedere la capacità di un individuo di perdere peso e mantenere la perdita di peso a lungo termine. Questi biomarcatori includono firme del microbioma intestinale, proteine ​​prodotte dal corpo umano e livelli di anidride carbonica espirata. Lo studio ha scoperto che i batteri nell’intestino e la quantità di alcune proteine ​​prodotte dal corpo possono influenzare la capacità di un individuo di tollerare la perdita di peso. Inoltre, la ricerca ha scoperto che alcuni individui perdono più peso con diete a basso contenuto di grassi, mentre altri hanno risultati migliori con diete a basso contenuto di carboidrati.

Una nuova analisi dei dati di uno studio sulla perdita di peso durato un anno ha identificato comportamenti e biomarcatori che contribuiscono alla perdita di peso a breve e lungo termine.

Una dieta rigorosa, che fosse una dieta sana a basso contenuto di carboidrati o una dieta sana a basso contenuto di grassi, era ciò che contava per la perdita di peso a breve termine durante i primi sei mesi. Ma le persone che hanno mantenuto la loro perdita di peso a lungo termine per un anno hanno mangiato lo stesso numero di calorie di quelle che hanno riguadagnato o non hanno perso peso durante i secondi sei mesi.

Quindi cosa spiega questa differenza?

Secondo lo studio, i batteri che vivono nell’intestino e la quantità di alcune proteine ​​prodotte dal tuo corpo possono influenzare la tua capacità di mantenere la perdita di peso. Si scopre che alcune persone perdono più chili con diete a basso contenuto di grassi, mentre altre hanno fatto meglio con diete a basso contenuto di carboidrati.

I ricercatori della Stanford Medicine hanno identificato diversi biomarcatori che prevedono quanto bene un individuo sarà in grado di perdere peso e mantenerlo a lungo termine. Questi biomarcatori includono firme del microbioma intestinale, proteine ​​prodotte dal corpo umano e livelli di anidride carbonica espirata. I ricercatori hanno pubblicato le loro scoperte il 13 dicembre sulla rivista Nature

“Weight loss is enigmatic and complicated, but we can predict from the outset with microbiome and metabolic biomarkers who will lose the most weight and who will keep it off,” said Michael Snyder, PhD, professor and chair of genetics and co-senior author on the paper.

Willpower does not drive weight loss

The data came from 609 participants who logged everything they ate for a year while following either a low-fat or low-carb diet made up of mostly high-quality, minimally processed foods. The researchers tracked participant exercise, how well they followed their diet, and the number of calories consumed.

The study showed that just cutting calories or exercising were not enough to sustain weight loss over a year. To try and understand why, the team turned their focus to biomarkers of metabolism.

“We found specific microbiome ecologies and amounts of proteins and enzymes at the beginning of the study period — before people started following the diet — that indicated whether they would be successful at losing weight and keeping it off,” said Dalia Perelman, research dietician and co-lead author on the paper.

Throughout the study, the researchers measured the ratio of inhaled oxygen to exhaled carbon dioxide, known as a respiratory quotient, which serves as a proxy for whether carbohydrates or fats are the body’s primary fuel. A lower ratio means the body burns more fat, while a higher ratio means it burns more carbohydrates. So, those who started the diet with a higher respiratory quotient lost more weight on a low-carb diet.

“There are people who can be eating very few calories but still sustain their weight because of how their bodies metabolize fuels. It is not for lack of will: It is just how their bodies work,” Perelman said.

In other words, if your body prefers carbs and you’re predominately eating fat, it will be much harder to metabolize and burn off those calories.

“If you are following a diet that worked for someone you know and it is not working for you, it might be that that specific diet is not as suited for you,” added Xiao Li, PhD, co-lead author of the paper, a former postdoctoral fellow at Stanford Medicine who is now at Case Western University.

For now, focus on nutrients

The predictive information gleaned from the gut microbiome, proteomic analysis, and respiratory quotient signatures is laying the foundation for personalized diets. Snyder said he thinks tracking amounts of certain gut microbe strains will be a way for people to determine which diets are best for weight loss.

We’re not there yet, so until then, according to the researchers, the focus should be on eating high-quality foods that are unprocessed and low in refined flours and sugar.

The research team identified specific nutrients that were correlated with weight loss during the first six months. Low-carb diets should be based on monounsaturated fats — such as those that come from avocados, rather than bacon — and high in vitamins K, C, and E. These vitamins are in vegetables, nuts, olives, and avocados. Low-fat diets should be high in fiber, such as is found in whole grains and beans, and avoid added sugars.

“Your mindset should be on what you can include in your diet instead of what you should exclude,” Perelman said. “Figure out how to eat more fiber, whether it is from beans, whole grains, nuts, or vegetables, instead of thinking you shouldn’t eat ice cream. Learn to cook and rely less on processed foods. If you pay attention to the quality of food in your diet, then you can forget about counting calories.”

Reference: “Distinct factors associated with short-term and long-term weight loss induced by low-fat or low-carbohydrate diet intervention” by Xiao Li, Dalia Perelman, Ariel K. Leong, Gabriela Fragiadakis, Christopher D. Gardner and Michael P. Snyder, 13 December 2022, Cell Reports Medicine.
DOI: 10.1016/j.xcrm.2022.100870

Christopher Gardner, professor of medicine and co-senior author on the paper, also contributed to this work.

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