Menopause is the time in a woman's life when menstrual periods permanently stop, also called the "change of life." Menopause symptoms include hot flashes, night sweats, irregular vaginal bleeding, vaginal dryness, painful intercourse, urinary incontinence, weight gain, and emotional symptoms such as mood swings. Treatment of menopausal symptoms varies, and should be discussed with your physician.
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The popular belief that high-fat diets cause obesity and several other diseases such as coronary heart disease, diabetes, and cancer has not been observed in recent epidemiological studies. Studies carried out in animals that were fed high-fat diets did not show a specific causal relationship between dietary fat and obesity. On the contrary, very-low-carbohydrate and high-fat diets such as the ketogenic diet have shown to beneficial to weight loss.
The FOXO family of transcription factors is highly conserved and promotes longevity and resistance to cellular stress. Although there are a variety of FOXO isoforms with varying tissue distribution [318–320], FOXO3a has been the most thoroughly studied in relation to energy sensing, mitochondrial function, and antioxidant defense. Similar to PGC-1α, FOXO3a is activated through phosphorylation by AMPK [321–323] and deacetylation by SIRT1 [324, 325] and SIRT3 [326–329], and its transcriptional activity is at least partly dependent on AMPK  and SIRT1 . In a variety of organisms, tissues, and cell types, FOXO3a increases mitochondrial biogenesis and expression of TFAM , but is more known for increasing expression of antioxidant and repair proteins, including SOD2 [287, 330, 331], catalase [287, 330, 332, 333], glutathione S-transferase (GST) , thioredoxins [287, 323], Prx3 [287, 334], Prx5 , and metallothioneins I and II , as well as UCP2 [287, 322] and the DNA repair enzyme growth arrest and DNA damage-inducible 45 (GADD45) [322, 324, 335, 336]. FOXO3a is also activated by oxidative stress [324, 331, 333], possibly in a SIRT1-dependent manner , and likely mediated through c-Jun N-terminal protein kinase (JNK), which allows FOXOs to translocate to the nucleus by promoting dissociation of 14-3-3 [337, 338]. Furthermore, FOXO3a and SIRT3 interact in mitochondria to induce mitochondrial gene expression in an AMPK-dependent manner . FOXO3a also induces expression of LKB1  and NAMPT , indicating a feed-forward cycle of activation with AMPK and sirtuins. Like PGC-1α, FOXO3a transcriptional activity is inhibited by insulin through PKB .
This is the advice that people with type 2 diabetes received a hundred years ago. Even in Sweden, with the high fat-Petrén diet that included fatty pork cuts, butter and green cabbage. And when they start eating this way today the same thing happens as it did in the past. Their blood sugar levels improve dramatically from day one. This makes sense, as they avoid eating what raises blood sugar.
To get into ketosis without supplementation, you have to keep your insulin levels low. Supplementing with exogenous ketones can help get you into ketosis . However, you won’t have achieved the same beneficial physiological changes as you would have from a well-formulated ketogenic diet or fasting. This is why we at Nutrita don’t recommend exogenous ketones as a substitute for a well-formulated ketogenic diet.
Most people who have metabolic syndrome already have a closely related condition called insulin resistance, which is when the body stops responding to insulin (a hormone produced in the pancreas). After the food we eat is converted into a type of sugar called glucose, insulin is what enables the glucose to enter the body’s cells and be used as energy. For someone who is insulin resistant, however, the glucose builds up in the blood, setting the stage for damage.
The brain is a particularly greedy organ when it comes to energy requirement. To put this comment in perspective consider the following: though our brain represents only about 2% of our body mass, it accounts for about 20% of our energy expenditure. (In children, by the way, this may be closer to 40-50% of basal metabolic demand.) So, beyond the ATP issue, above, there is a substrate issue with the brain as neurons derive most of their energy from glucose. While there is emerging evidence that neurons can also oxidize fatty acids directly in small amounts and may even prefer lactate (over glucose), these two substrates do not approach the levels of consumption by neurons that glucose does. So, for the purpose of this discussion, let’s just focus on the need of the body to provide glucose to the brain.
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Hi Mindy, That sounds very odd. The salted butter is probably why it was too salty, but I think one of your ingredients must have gone bad, because the bread shouldn’t have a bitter or sour taste at all. Or did you use baking soda instead of baking powder? That would taste both bitter and sour, so that could be it. It needs to be baking powder, not baking soda. Hope you’ll try again!
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PGC-1α coactivates all three known PPAR isoforms (PPARα, PPARδ, and PPARγ) . Although each isoform is expressed in a variety of tissues, PPARα is prominently expressed in the liver, PPARδ in skeletal muscle, the heart, and the pancreas, and PPARγ in adipose [286, 296]. PGC-1α was discovered and named based on its promotion of brown adipose differentiation through coactivation of PPARγ and subsequent induction of mitochondrial biogenesis and UCP1 expression . However, it is the PGC-1α coactivation of PPARα that is responsible for the upregulated transcription of many of the enzymes responsible for increased ketogenesis and fatty acid metabolism in response to a ketogenic diet . Consistent with the role of PGC-1α in inducing mitochondrial biogenesis, it also shifts skeletal muscle fiber composition towards type I [298, 299] and type IIa , which are more oxidative. AMPK also contributes to fiber type changes and is required for the transition of highly glycolytic, type IIb fibers to more oxidative, type IIa fibers . Although PGC-1α is primarily known for inducing transcription of nuclear DNA, it may also, in conjunction with SIRT1, induce expression of mtDNA .
The metabolic syndrome can be induced by overfeeding with sugar or fructose, particularly concomitantly with high-fat diet. The resulting oversupply of omega-6 fatty acids, particularly arachidonic acid (AA), is an important factor in the pathogenesis of metabolic syndrome.[medical citation needed] Arachidonic acid (with its precursor – linoleic acid) serve as a substrate to the production of inflammatory mediators known as eicosanoids, whereas the arachidonic acid-containing compound diacylglycerol (DAG) is a precursor to the endocannabinoid 2-arachidonoylglycerol (2-AG) while fatty acid amide hydrolase (FAAH) mediates the metabolism of anandamide into arachidonic acid. Anandamide can also be produced from N-acylphosphatidylethanolamine via several pathways. Anandamide and 2-AG can also be hydrolized into arachidonic acid, potentially leading to increased eicosanoid synthesis.
While several national and international organizations use certain criteria to define metabolic syndrome, others, including the American Diabetes Association (ADA), question the value of the specific diagnosis of metabolic syndrome. They point out that the criteria, taken together, are no more useful at predicting the risk of cardiovascular disease or diabetes than the individual criteria considered separately. The science needs to be clearer, suggests the ADA, before metabolic syndrome be considered a definable syndrome.
Increased reliance on mitochondrial respiration will increase the flow of electrons through the mtETC and, in turn, increase the potential for mtROS formation. Although oxidative stress is traditionally viewed as harmful, a modest increase in ROS is now established as a signaling stimulus that induces hormetic adaptation . In regard to mitohormesis and mtROS, such adaptation is largely centered around antioxidant defense [4–6], making mitohormesis an attractive target for the prevention and treatment of chronic disease.
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In low carb and keto baking, we’re concerned with two things: 1) keeping carbs low, and 2) still achieving a baked good that has great flavor and texture (because if we can’t gag it down there’s just no point, right? Lol). Low carb bread recipes are usually gluten free and grain free (although we’ve seen a couple that use oat fiber), but then the challenge is to get creative to get the right combination of ingredients to yield something that rises properly and tastes good.