The distribution of adipose tissue appears to affect its role in metabolic syndrome. Fat that is visceral or intra-abdominal correlates with inflammation, whereas subcutaneous fat does not. There are a number of potential explanations for this, including experimental observations that omental fat is more resistant to insulin and may result in a higher concentration of toxic free fatty acids in the portal circulation. 
Formation of O2•− at complexes I and III primarily occurs in the mitochondrial matrix, but some of the O2•− produced at complex III is produced in the intermembrane space . Within the matrix, O2•− is rapidly dismutated into hydrogen peroxide (H2O2) by manganese superoxide dismutase (SOD2) [41, 53]. Some O2•− may escape into the mitochondrial intermembrane space  and cytosol , where copper/zinc superoxide dismutase (SOD1) can dismutate it into H2O2 . The large majority of mitochondrial H2O2 is removed by peroxiredoxin (Prx) 3, followed by much smaller contributions from Prx5 and glutathione peroxidases (GPx) 1 and 4 . GPx also removes other peroxides, including lipid hydroperoxides . Catalase is another antioxidant enzyme capable of removing H2O2 but is primarily located in peroxisomes and is therefore unlikely to directly remove mitochondrial H2O2 [41, 66]. However, H2O2 can be transported out of mitochondria , and it is possible that the majority of mitochondrial H2O2 is removed in the cytosol. Since Prxs and GPxs rely on NADPH for recycling of their cofactors (thioredoxins and glutathione, resp.) , and since NADH is required for recycling of NADPH , activity of these enzymes would decrease availability of NADH for oxidative phosphorylation. Therefore, transport of H2O2 out of mitochondria for removal in the cytosol may be a more likely defense mechanism , implying a more important role of catalase and other antioxidant enzymes outside of mitochondria. Despite the lower reactivity of H2O2, it is still reactive and can oxidize metal ions, particularly iron, to form the hydroxyl radical (•OH), which readily damages DNA, lipids, and proteins . •OH is scavenged by metallothioneins I and II [69, 70] and glutatathione , indicating that these antioxidant proteins may be important defenses against byproducts of unaddressed mtROS. Other important antioxidant enzymes include glutamate-cysteine ligase (GCL), which is the rate-limiting step in glutathione synthesis, and glutathione reductase (GSR) and thioredoxin reductase (TRXR), which recycle glutathione and thioredoxin, respectively, to their reduced forms .
A friend who gave me your recipe said to drink a glass of water with it.How many slices of the amazing bread can one eat without the psyllium causing a problem for a normal person per day?The replies are so long,but from what I did read no one complained about any problems caused by eating the bread or having to drink something. So can I eat this bread like other breads without drinking something?
I just made it using all the the optional ingredients but I didn’t have a food processor so I whipped/mixed everything by hand. One thing I noticed is that the top of the bread cracked unevenly. Could I have over fluffed the egg whites? Maybe creating an artificial cut in the middle could solve that next time? It rose very well and nearly doubled in size, though the size is still a bit small for my liking. I will most likely use 1.5x the amount next time. It smells great and I’m about to chow down on this!
Type 2 diabetes is by far the most common form (around 90% of all cases) and the one which is increasing the most. It primarily affects overweight people in middle age or later. It’s not uncommon for the affected person to also have a high blood pressure and an abnormal lipid profile. Gestational diabetes is a temporary special case of type 2 diabetes.
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Jennifer, The yeast has no carbs. The coconut sugar does have carbs, but the yeast feeds on it and through the process of fermentation uses the sugar for energy and releases carbon dioxide gas as a result. The yeast is for flavor, aroma, and in our opinion does help with a little bit of rise. Additionally, we don’t like to consider any foods “bad”, “off-limits”, or not keto. Instead, we opt to mainly eat nourishing real foods that fit into our daily macro intake. We hope this helps! Best of luck on your keto journey.
Another process also happens during ketosis that helps keep your body energized, and it’s called gluconeogenesis. This occurs when glycerol (created during beta-oxidation) get’s converted into glucose that your body can use for energy. Protein in your diet can also be converted to glucose in small amounts. So as you can see, essentially your body is able to create its own source of necessary glucose without getting it from carbohydrate foods. The human body is very efficient, and it knows just how to convert other macronutrients (protein and fat) into useable molecules that can be dispersed throughout the body as needed.
In addition, metabolic syndrome has been implicated in the pathophysiology of several other diseases, including obstructive sleep apnea. Breast cancer has also been linked to metabolic syndrome, possibly through dysregulation of the plasminogen activator inhibitor-1 (PAI-1) cycle.  Additional studies have linked metabolic syndrome with cancers of the colon, gallbladder, kidney, and, possibly, prostate gland.  Evidence is emerging of an association with psoriasis. [66, 67]
The clinical relevance of nutritional ketosis to mitochondrial function is further indicated by promotion of ketogenic diets for treatment of mitochondrial disorders [19, 20, 26, 30, 247, 403]. The most prominent example is the study of mitochondrial adaptations as a mechanism for the well-known antiseizure effect of ketogenic diets [19, 29, 33, 162, 247, 403–405]. As previously discussed, the dramatic shift in energy metabolism and subsequent increase in circulating ketones induced by a ketogenic diet can enhance mitochondrial function and endogenous antioxidant defense. The primary mechanism behind these adaptations appears to be the increased demand for fat oxidation resulting from carbohydrate restriction. However, ketones themselves have important metabolic and signaling effects that enhance mitochondrial function and endogenous antioxidant defense, implying that a well-formulated ketogenic diet should have greater benefit than a nonketogenic low-carbohydrate diet. Regardless of the mechanism(s), the potential outcomes imply protection against chronic disease through improved mitochondrial function and, in turn, decreased potential for oxidative stress and subsequent pathology. However, further research is needed to better understand how nutritional ketosis influences mitochondrial function across different tissues and how these influences relate to human disease. Future research should also focus on further differentiation of the effects of carbohydrate restriction from the direct effects of ketones.
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Just made this and had the same rubbery/purple loaf issues, so I’ll probably switch to a different psyllium if I make it again. So my question is this… I ate a few slices (3) of the bread (regardless of the flaws) and found it gave me some stomach discomfort… Could I have a sensitivity to the psyllium, or do you think getting a better quality psyllium would change my reaction?
Paleo baking is gluten free and grain free. Generally, paleo bread recipes have quite a few more ingredient options than low carb baking. Ingredients like tapioca flour and arrowroot flour are common in paleo baked goods, and help improve the texture greatly. The only thing is, these ingredients are relatively high in carbs and are typically avoided (or at least reduced) in low carb baking. This is why paleo baking can sometimes be a bit easier than low carb and/or keto baking.