Sigh…..Made it with high hopes and boy did it smell good! I used all your brands and weighed it all, but I wound up with a loaf that did sink, which I don’t care if it sinks, but it was still gelatinous and wet on the inside. I hate wasting so much almond flour, but I will try again. What would you recommend I change? Decrease the water? It puffed up so beautifully and my husband told me it’s a good crust, lol. I cubed up the whole loaf and I’m trying to make it in to croutons now but I’m unsure those wet little cubes will ever dry out. This is my first flop. I have LOVED all your other recipes so far! Thank you!
I want you to start drinking. A lot. Of water. (Sorry for the letdown.) In fact, I want you to drink only water. Never, ever, ever drink a calorie. Stick with water, and drink a lot of it. It’s good for you, and like an early salad, water can help keep hunger at bay. I’d also like you to avoid diet sodas, at least on a regular basis. Though they don’t have any calories, diet sodas cause folks who drink a lot of them to have a harder time losing weight. No one is sure why.
I would like to point out that the metric conversion of 3/4 cup to 90g coconut flour as stated in your recipe is incorrect. Should be 84g per package labeling (Bob’s Red Mill). Unfortunately I made my first batch with 90g of coconut flour, and it was definitely not “pourable”. More like scoopable. I will try again with correct amount but thought I would point so you can update the recipe. Thank you!
Thanks for this article. I just started a Keto diet so found it appropriate to my current lifestyle. Though I don’t believe your bottom line is strong enough since you simply stating that the diet is “hard to follow” and food is “notoriously unhealthy” without evidence going deeper into why those “notoriously unhealthy” foods are worse than keeping carbohydrate-heavy food that are addictive and give the body a quick sugar high for energy. I believe “hard to follow” is your opinion only, since acceptable Keto foods are found at all restaurants easily and also all grocery stores. All the foods you mention: “rich in very colorful fruits and vegetables, lean meats, fish, whole grains, nuts, seeds, olive oil, and lots of water” are all Keto-friendly. Many people have been on a Keto-diet for years. A healthy lifestyle is a healthy mindset change and making right choices – it’s not going to be easy.
Some of the benefits of ketosis occur due to the restriction of dietary carbohydrate. Others occur due to the presence of ketones in the blood. Two of the most commonly sought after effects are weight-loss and improved insulin sensitivity. These are conferred by the low carbohydrate content of the diet allowing increased fat burning and the gradual restoration of insulin sensitivity. In this article we discuss the basics of ketone production and metabolism, and some of the many ways that KETONES themselves (endogenous AND exogenous) can benefit health and performance. 

Carbohydrates ultimately break down into glucose. Many people believe that carbs are bad for people with diabetes. This is not true. Carbs are fuel for the body, so they have to be eaten. You just need to be smart about which ones you eat and how much you eat of them. Picking foods that are high in carbs but have no other nutrition is not smart. Examples of these foods are:
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Longer-term ketosis may result from fasting or staying on a low-carbohydrate diet (ketogenic diet), and deliberately induced ketosis serves as a medical intervention for various conditions, such as intractable epilepsy, and the various types of diabetes.[6] In glycolysis, higher levels of insulin promote storage of body fat and block release of fat from adipose tissues, while in ketosis, fat reserves are readily released and consumed.[5][7] For this reason, ketosis is sometimes referred to as the body's "fat burning" mode.[8]
If you’re just starting the keto diet, breakfast might seem like the most challenging meal of the day. Lunches and dinners can easily be made keto by preparing recipes you already enjoy. Meals like salads, steak, salmon, and stuffed peppers are inherently low carb. But what about your favorite breakfast foods? Waffles, oatmeal, and pancakes are all off-limits.

More recently, other hypothalamic appetite control regions have been identified, including those in the arcuate nucleus (ARC), the periventricular nucleus (PVN) and the dorsomedial hypothalamic nucleus (DMH) (Valassi et al., 2008). These are sites of convergence and integration of many central and peripheral signals, not just macronutrients, that are involved in food intake and energy expenditure mechanisms, e.g., a group of neurons in the ARC stimulating food intake via neuropeptide Y (NPY) and agouti gene-related protein (AGRP). These neurons interact with those producing the anorexigenic pro-opiomelanocortin (POMC) and the cocaine/amphetamine-regulated transcript (CART) (Williams et al., 2001). Thus, a more comprehensive, unified model should include macronutrients as well as many single amino acids and other signaling molecules.
Metabolic syndrome is a multiplex risk factor that arises from insulin resistance accompanying abnormal adipose deposition and function. [4] It is a risk factor for coronary heart disease, as well as diabetes, fatty liver, and several cancers. The clinical manifestations of this syndrome may include hypertension, hyperglycemia, hypertriglyceridemia, reduced high-density lipoprotein cholesterol (HDL-C), and abdominal obesity. (See Prognosis, Workup, Treatment, and Medication.)

Nutrient-sensitive neurons reacting to glucose but also to fatty acids (FAs) concentrations are present at many sites throughout the brain and may play a key role in the neural control of energy and glucose homoeostasis. Central administration of oleate, for example, inhibits food intake and glucose production in rats. This suggests that daily variations in plasma FA concentrations could be detected by the CNS as a signal that contributes to the regulation of energy balance (Moulle et al., 2014).

Metabolic syndrome is a burgeoning global problem. Approximately one fourth of the adult European population is estimated to have metabolic syndrome, with a similar prevalence in Latin America. [25] It is also considered an emerging epidemic in developing East Asian countries, including China, Japan, and Korea. The prevalence of metabolic syndrome in East Asia may range from 8-13% in men and from 2-18% in women, depending on the population and definitions used. [29, 30, 31]

The yeast in this low carb and keto bread ensures a wonderful texture and taste. Now, how much your bread will rise (and fall!) post-bake depends quite a bit on your altitude. But note that you still won’t get that gummy and wet texture here of most low carb breads. Plus, as mentioned, we’re baking at over 7,000 feet (Mexico City here!!), so if we can make this keto sandwich bread work so can you.
NRF-1 and NRF-2 are transcription factors that increase expression of TFAM [342], which is required for full initiation of mtDNA transcription [343–345] and hence mitochondrial biogenesis. PGC-1α induces expression of NRF-1 and NRF-2 and facilitates TFAM expression by coactivating NRF-1 [288]. Oxidative stress increases this signaling [346, 347] in conjunction with increased mitochondrial biogenesis [346]. AMPK also contributes to mitochondrial biogenesis, but by inducing mitochondrial fission through phosphorylation of mitochondrial fission factor (MFF) [348], which is in addition to and independent of AMPK's role in activating PGC-1α.
Carbohydrates ultimately break down into glucose. Many people believe that carbs are bad for people with diabetes. This is not true. Carbs are fuel for the body, so they have to be eaten. You just need to be smart about which ones you eat and how much you eat of them. Picking foods that are high in carbs but have no other nutrition is not smart. Examples of these foods are:
A reduced availability of dietary carbohydrates leads to an increased liver production of KBs. The liver cannot utilize KBs because it lacks the mitochondrial enzyme succinyl-CoA: 3-ketoacid (oxoacid) CoA transferase (SCOT) necessary for activation of acetoacetate to acetoacetyl CoA. KBs are utilized by tissues, in particularly by brain. KBs enter the citric acid cycle after being converted to acetyl CoA by hydroxybutyrate dehydrogenase (HBD), succinyl-CoA: 3–CoA transferase (SCOT), and methylacetoacetyl CoA thiolase (MAT). Modified from Owen (2005), Paoli et al. (2014).
We can say that no species, including humans, could have survived for millions of years without the ability to withstand brief periods of hunger or starvation (Amen-Ra, 2006). These periods of fasting are themselves ketogenic (McCue, 2010) during which the concentrations of insulin and glucose decrease while that of glucagon increases in the attempt to maintain normal blood glucose levels. When the body passes from a condition of food abundance to one of deprivation (or else via VLCKD simulated deprivation), there is, with a slight delay, an increase in the concentration of free FAs as well as KB in the blood. Thus, from this point of view KD could be compared to caloric restriction for fasting. These manipulations of nutrients, both in quantity and quality, seem to not only act on blood glucose/KB level but also to promote changes in metabolic pathways and cellular signaling. How this kind of metabolic condition (ketosis) can affect satiety and hunger mechanisms is still a matter of debate.

Nutrition: What is it and why is it important? Nutrition is the supply of materials that organisms and cells require to live. Humans need seven major types of nutrients to function. A nutritionist studies nutrients, how the body uses them, and the relationship between a person’s diet and their health. Here, learn more about nutrients and what a nutritionist does. Read now
I just made this bread and it is beautiful! I cannot believe how well it rose-finally a nice rounded full loaf of bread! BUT…the bottom sticks and in order to get it out, I really have to abuse it, which causes some deflation and a not-as-pretty-as-it-should-be loaf. Ended up with a hole on the bottom that got stuck in the pan. I am using a coated aluminum pan with generous amount of coconut oil. Any tips? I put this loaf back in the oven on a cookie sheet to firm up the crust areas that are damaged. Thanks!
^ Lockyer, Christina (1991). "Body composition of the sperm whale, Physeter cation, with special reference to the possible functions of fat depots" (PDF). Journal of the Marine Research Institute. 12 (2). ISSN 0484-9019. Retrieved 2014-04-25. The significant levels of carbohydrate, probably mostly in the form of glycogen, in both blubber and muscle, may represent an instant form of energy for diving via anaerobic glycolysis.
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This savory frittata recipe by Ketogasm is loaded with nutrients to power your day.It’s hearty and filling, without taking you past your carb limit. Each serving has 333 calories, 26 grams of fat, 20 grams of protein, and only 1 net gram of carbs. This bloggers uses spinach, mushroom and uncured sausage, but feel free to play around with your veggies or swap sausage for chicken or steak.

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For a diagnosis of metabolic syndrome, a child must have at least three of the four risk factors. The most common risk factors in teens are hypertension and abnormal cholesterol. Even when just one risk factor is present, a doctor will likely check for the others. This is especially true if a child is overweight, has a family member with type 2 diabetes, or has acanthosis nigricans.


Luckily, DKA has some pretty glaring signs, so someone experiencing it can get help ASAP—symptoms include rapid and heavy breathing, having to pee a lot, and thirst that can’t be quenched, says Klett. As things progress, they’ll also “get confused, become delirious, and eventually have cardiovascular collapse because the blood pH gets so low,” and their organs will stop functioning properly. So again, treatment is necessary.
As ketones are the only other metabolic substrate that can fuel the brain, there is a compelling mechanism whereby ketosis could improve brain energy metabolism and therefore improve symptoms of AD. Despite a declining ability of the brain to use glucose, cerebral ketone metabolism is preserved in AD (Castellano2015). This means that ketosis could be used to prevent an energy deficit in the brain. Another possibility is that ketone metabolism decreases mitochondrial damage caused by oxidative stress in the brain52. Individuals with AD tend to have increased mitochondrial oxidative stress, which can worsen brain energy production and increase plaque and tangle formation53.  
I tried this recipe and it is not at all easy to incorporate 1/2 the egg whites in the food processor. When attempting to pulse just 2-3 times, only part of the egg whites incorporated, leaving 1/2 the whipped egg whites still sitting at the top of the mixture. I then had to use a spatula to force it down and pulsed 3 more times and ended up with a heavy batter because the egg whites completely fell. Then trying to fold the mixture into the rest of the egg whites was like trying to fold in cookie dough. The result was a loaf of baked eggs whites that had clumps of batter in the middle.

Back in the really old days (like in the Paleolithic), life had some challenges. Like saber-tooth tigers. What happened when your ancient ancestors encountered a saber-tooth cat? I imagine they threw their hands up in the air, screamed, and ran like hell. To assist in the running like hell, their bodies would dump sugar into their blood for extra energy. To this day, our bodies still do that. The problem is that the modern saber-tooth tiger is the overdue electric bill, the dropped cell phone call, the dinnertime telemarketer, and the annoying neighbor. You can’t run away from any of these tigers. The extra sugar just sits in your body. But you can learn to defeat this ancient biological fight-or-flight response by learning how to relax. You’ll need to make time for you. It might be a warm bubble bath in the evening, a good book at lunch, aromatherapy candles, or even kickboxing. Take that, saber-tooth tiger. Bam!


I tried this with the Psyllium husk powder I had (Konsyl) and it was too gummy. It looks like the Jay Robb is out of stock everywhere. If you had success with this bread using a different brand, would you share with me what brand worked? I could taste in the crust that this will be wonderful once I get the right psyllium. Thanks, everyone! I’m excited to nail this.

On the contrary, in the brain, as mentioned above, the increase of AMPK activity leads to higher food intakes. But the effect of AMPK in the brain is more complicated; mice lacking AMPKa2 in pro-opiomelanocortin neurons develop obesity, while the deficiency of AMPKa2 in agouti-related protein neurons results in an age-dependent phenotype. Thus, the conclusion is that even while AMPK is a regulator of hypothalamic functions, it does not act as a signal for energy deficit or excess (Claret et al., 2007). However, the picture is more complex than this (Figure ​(Figure3);3); BHB induces AgRP expression while increasing ATP and inhibiting AMPK phosphorylation (Cheng et al., 2008). Moreover, Laeger and colleagues have recently demonstrated that under physiological conditions BHB decreases AMPK phosphorylation and AgRP mRNA expression in GT1-7 hypothalamic cells (Laeger et al., 2012).


Metabolic syndrome is defined as the presence of a cluster of risk factors that are associated with a significantly higher risk for cardiovascular disease in the general population. The definitions for metabolic syndrome from different expert groups are somewhat different but generally include measures of adiposity, dyslipidemia, hypertension, and abnormal fasting blood glucose levels. Insulin resistance is the dominant but not the only condition underlying the pathogenesis of metabolic syndrome. The different components of the metabolic syndrome are independent risk factors for the development and progression of chronic kidney disease (CKD); hence, patients with metabolic syndrome are significantly more likely to have CKD. Conversely, metabolic syndrome is highly prevalent in patients with ESRD, including among those undergoing maintenance dialysis.
In relation to overall caloric intake, carbohydrates comprise around 55% of the typical American diet, ranging from 200 to 350 g/day. The vast potential of refined carbohydrates to cause harmful effects were relatively neglected until recently. A greater intake of sugar-laden food is associated with a 44% increased prevalence of metabolic syndrome and obesity and a 26% increase in the risk of developing diabetes mellitus. In a 2012 study of all cardiometabolic deaths (heart disease, stroke, and type 2 diabetes) in the United States, an estimated 45.4% were associated with suboptimal intakes of 10 dietary factors. The largest estimated mortality was associated with high sodium intake (9.5%), followed by low intake of nuts and seeds (8.5%), high intake of processed meats (8.2%), low intake of omega-3 fats (7.8%), low intake of vegetables 7.6%), low intake of fruits (7.5%), and high intake of artificially sweetened beverages (7.4%). The lowest estimated mortality was associated with low polyunsaturated fats (2.3%) and unprocessed red meats (0.4%). In addition to this direct harm, excess consumption of low-quality carbohydrates may displace and leave no room in the diet for healthier foods like nuts, unprocessed grains,  fruits, and vegetables.

Hi Leo, almond flour bread will always taste of almond flour – there’s no way around it. Since there is no way you can make bread with almond flour using only one egg – it would simply not hold together – it sounds like you’ll have to look for a substitute that is more to your taste. Thank you for taking the time to comment on this recipe, and I hope you find other recipes on my site that are more to your liking 🙂


Nutritional ketosis is a natural metabolic state in which your body adapts to burning fat rather than carbohydrates as its primary fuel. It is clinically proven to directly reduce blood sugar (as measured by HbA1c), improve insulin sensitivity (as measured by HOMA-IR) and reduce inflammation (as measured by white blood cell count and CRP). Nutritional ketosis can be induced by following a ketogenic diet. Learn more in our FAQ below!
.. it can be heavy on red meat and other fatty, processed, and salty foods that are notoriously unhealthy. What is unhealthy about red meat. We should know that acrilamides, pyrroles in burnt meat (and veges) from BBQ and over-heated cooking inflames the colon. According to Clark H R, PhD ND an inflamed part allows easy entry for the cancer nucleus and cancer complex, to start and fuel a malignancy at that location.
To think of it another way, if you start with stored energy – glucose or fat, for example, which if burned in calorimeter will give off varying amounts of heat – and you’re willing to convert their carbon, hydrogen, and oxygen molecules into another form with less energy – water and carbon dioxide which, if burned, produce very little heat – it’s a fair trade!  The ETC is simply the vehicle that allows our body to make the switch.
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AMP competes with ATP for binding to the γ regulatory subunit of AMPK [177, 178] and by doing so, greatly increases AMPK activity, but only in the presence of an upstream kinase such as liver kinase B1 (LKB1) [179]. This binding of AMP to the γ subunit appears to promote AMPK activity through at least two mechanisms: facilitated phosphorylation of the α subunit [180–183] and inhibition of dephosphorylation by protein phosphatases 2Cα and 2Ac [179, 181, 183, 184]. ADP also binds to the γ subunit of AMPK to inhibit dephosphorylation [183, 185, 186] and possibly facilitate phosphorylation [185]. This is important to the energy sensing sensitivity of AMPK based on the much higher physiological concentration of ADP compared to AMP [186]. Data on changes in AMP and ADP levels in response to a ketogenic diet are lacking. However, the decreased availability of carbohydrate and increased mitochondrial uncoupling (previously described) during nutritional ketosis suggest a decline in ATP production, at least until compensatory adaptations occur. A decline in ATP implies a relative increase in AMP and ADP, which would facilitate AMPK phosphorylation and activation. In addition, ketogenic diets are commonly reported to have a satiating effect [187], which may further increase the AMP and ADP to ATP ratios through spontaneous caloric restriction.

Dear butter.girl, I would love to try this as I too find almond meal pretty expensive to replenish my stock constantly not to mention I ‘d love to just try a new kind of healthy flour. I have tons of raw sunflower seeds in my pantry and was going to make my next loaf of amazing bread. Did you just replace the 3 cups of almond flour with 3 cups of sunflower seed flour? All the rest of the ingredients remained the same?
Overweight individuals with metabolic syndrome, insulin resistance, and type 2 diabetes are likely to see improvements in the clinical markers of disease risk with a well-formulated very-low-carbohydrate diet. Glucose control improves due to less glucose introduction and improved insulin sensitivity. In addition to reducing weight, especially truncal obesity and insulin resistance, low-carb diets also may help improve blood pressure, blood glucose regulation, triglycerides, and HDL cholesterol levels. However, LDL cholesterol may increase on this diet.
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 [63]. 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 [64] and cytosol [65], where copper/zinc superoxide dismutase (SOD1) can dismutate it into H2O2 [41]. 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 [66]. GPx also removes other peroxides, including lipid hydroperoxides [41]. 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 [67], 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.) [41], and since NADH is required for recycling of NADPH [68], 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 [67], 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 [41]. •OH is scavenged by metallothioneins I and II [69, 70] and glutatathione [71], 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 [41].
Hunger and satiety are two important mechanisms involved in body weight regulation. Even though humans can regulate food intake by will, there are systems within the central nervous system (CNS) that regulate food intake and energy expenditure. This complex network, whose control center is spread over different brain areas, receives information from adipose tissue, the gastrointestinal tract (GIT), and from blood and peripheral sensory receptors. The actions of the brain's hunger/satiety centers are influenced by nutrients, hormones and other signaling molecules. Ketone bodies are the major source of energy in the periods of fasting and/or carbohydrate shortage and might play a role in food intake control.

The hypothalamus is the brain's main center responsible for hunger/satiety (H/S) control. In the theory that Mayer proposed more than 60 years ago, he assigned a central role to glucose levels in the H/S control: the so-called “glucostatic theory” (Mayer, 1955). Mayer suggested that depletion of carbohydrate availability leads to hunger, and the hypothalamic centers with receptors sensitive to glucose levels might be involved in the short-term regulation of energy intake (Mayer, 1955). The “feeding center” in the lateral hypothalamic area (LHA), according to the glucostatic theory, reacts to the between-meal fall of blood glucose and stimulates food intake. The LHA contains glucose-inhibited neurons that are stimulated by hypoglycemia, a process crucial to mediating the hyperphagia normally induced by hypoglycemia. The subsequent post-prandial hyperglycemia activates the “satiety center” in the ventromedial hypothalamus (VMH), which contains glucose-excited neurons and inhibits both “feeding center” and food intake.
Recurrent migraines are highly prevalent and sometimes debilitating. They manifest as throbbing, one-sided headaches and can also involve visual disturbances (aura). Many of the processes involved in migraine are shared with those implicated in epilepsy, especially an abnormally high glutamate (excitatory) activity. In fact, medical professionals sometimes prescribe anti seizure medications that block glutamate activity to migraine patients. The ketogenic diet has been associated with improved migraine control both anecdotally and in a small number of case studies 74 ,75 ,76 ,77. Researchers are currently undertaking further investigations to confirm if the ketogenic diet or exogenous ketones are viable and effective treatment options for migraine patients.  
This poses a real evolutionary dilemma.  We need an enormous amount of energy just to not die, but the single most important organ in our body (also quite energy hungry in its own right) can’t access the most abundant source of energy in our body (i.e., fat) and is, instead, almost solely dependent on the one macronutrient we can’t store beyond a trivial amount (i.e., glucose). Obviously our species wouldn’t be here today if this were the end of the story. But, to understand how we survived requires one more trip down biochemistry memory lane.  In the figure below (also included and described in the video) I gloss over a pretty important detail.
The 2 major issues that will lead to a flat loaf is not whipping the egg whites and gently folding them in OR using almond meal instead of a finely ground almond flour. If you've tried everything and they don't seem to be working for you, the next best option will be to make a larger recipe. Try making 1.5x this recipe (it's easy to do using the servings slide bar) and you'll have a much larger loaf.
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