I went to buy Xanthan gum at a store in my little town and it was like $17! I wasn’t paying that much, so I made it without but I will be ordering some online. I followed your directions exactly (minus Xanthan) and used Swerve for the sweetener. I couldn’t wait for it to cool so I had a piece right after it came out of the oven, it was delicious! I find it a tad sweet for bread, but that’s ok I’ll just cut back on the sweetener if I want to eat it for a sandwich..all sweeteners are a little different. It had a beautiful crust on it and was a tiny bit crumbly, almost reminds me more of muffin texture, I’m thinking maybe the Xanthan will give it more of a chewy bread texture?
It’s a habit to enjoy a brie cheese for desert instead of a piece of chocolate cake but each are favored deserts in France. I’m personally more satisfied after a 350 calorie sized wedge of brie than the same number of calories of cake.. which will give me sugar crash and .. really I’d like two slices of cake(I’ve got a sweet tooth that once I get going it wants to keep being fed)
Therefore the combustion enthalpy (∆H) of each fuel is an important factor in the energy it can provide to the cell. When expressed as the energy per 2 carbons in the molecule, ketones (BHB) have a higher combustion enthalpy (∆H) than pyruvate, lactate and glucose (see table). This means that the amount of energy that could possibly be transferred to ATP is higher than for those other substrates:
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Angie, I’m happy to hear you and your hubby enjoyed the taste, but sorry to hear the bread was flat! The egg whites don’t need to be whipped for this recipe, but I’ll try to help you troubleshoot…first I would check to make sure that your baking powder is fresh. Also, did you use the full cup of egg whites? Did you make any ingredient substitutions or adjustments? Did you use a 9 by 5-inch loaf pan? Did you cook it at 350F and is your oven properly calibrated? Did you bake it for the amount of time the recipe calls for? I hope this helps!
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I just made this bread and although mine looks more dense than yours, it is good. I was going to make it again using a little less water to see if I can get more rise, but then I read your comment about you not eating this bread because your keto bread is more weight loss friendly. So I shouldn’t eat this since I’m trying to lose weight? I’ve been keto-adapted for over a year, but I’ve only lost 62 pounds:( Thank you for your recipes and all of the research you do! Don’t think I could stick with this way of eating without being able to cook delicious food!
Has anyone tried this using a substitute for the eggs/egg whites? My husband seems to be sensitive to eggs (not sure which part, to be honest) and we’ve been making most recipes using agar agar as a substitute (for either whites or whole eggs) but this only works if the egg is a binder. I’m guessing that they are a leavening agent in the bread (please correct me if I’m wrong!) and I don’t know if agar would work in this recipe. I do have VersaWhip 600 – anyone ever tried that in a bread recipe?
I tried this recipe today and I’m blown away. I haven’t started Keto yet but I am soon. I’ve been trying recipes out, and I truly didn’t expect this to come out right the first time because I’ve never whipped egg whites or folded them into anything. I’m a terrible baker. It was so easy! Even my toddler and husband loves this! I didn’t use the sweetener and love the way it tastes!
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LOVE this bread. As a pregnant type 1 diabetic, I was looking for something to toast. I’ve tried multiple different recipes from other sites, and the bread is always so crumbly that you can never spread anything on it. This one is AMAZING! I may have to experiment with more water so that it comes out less dense, but soooo happy to prevent blood sugar spikes with future sandwiches. I can even foresee being able to have traditional burgers again (not just wrapped in lettuce). My husband bakes his own “normal” bread, and now I get bread too and its even easier to make than his 🙂
In addition to the seaweed and glycogen carbohydrates mentioned above, the Inuit can access many plant sources. The stomach contents of caribou contain a large quantity of partially digested lichens and plants, which the Inuit once considered a delicacy. They also harvested reindeer moss and other lichens directly. The extended daylight of the arctic summer led to a profusion of plant life, and they harvested plant parts including berries, roots and stems, as well as mushrooms. They preserved some gathered plant life to eat during winter, often by dipping it in seal fat.
Glucose is stored in your liver and released as needed for energy. However, after carb intake has been extremely low for one to two days, these glucose stores become depleted. Your liver can make some glucose from amino acids in the protein you eat via a process known as gluconeogenesis, but not nearly enough to meet the needs of your brain, which requires a constant fuel supply.
The use of lifestyle interventions to treat and prevent chronic disease is attractive because of their potential to lower medical costs and produce more robust and holistic improvements in health. Ketogenic diets have been studied sporadically for more than 100 years, but over the last 15 years, a growing number of researchers have contributed to what is now a critical mass of discoveries that link the process of keto-adaptation to a broad range of health benefits [10–33]. Early clinical research focused on the use of “extreme” versions of ketogenic diets to treat seizures, but recent research indicates that benefits related to the management of epilepsy, weight loss, metabolic syndrome, and type 2 diabetes can be achieved with an approach that is less restrictive in carbohydrate and protein, and therefore more satisfying, sustainable, and feasible for the general population. A “well-formulated” ketogenic diet is generally characterized by a total carbohydrate intake of less than 50 g/d and a moderate protein intake of approximately 1.5 g/d per kg of reference weight . This typically increases circulating β-hydroxybutyrate (BHB) and acetoacetate (ACA) from concentrations that are typically less than 0.3 mM into the range of nutritional ketosis, which for BHB, we define as 0.5–3 mM . This range is below the typical 5–10 mM range for BHB that occurs during prolonged fasting, and well below concentrations characteristic of ketoacidosis [34, 35]. From the perspective of meeting energy demands, the reduced carbohydrate and moderate protein intakes necessarily make ketogenic diets high in fat. Despite this contradiction with mainstream dietary guidelines, ketogenic diets may be beneficial for many health conditions, particularly the previously mentioned conditions related to mitochondrial impairment, which includes obesity [10, 11], diabetes [12–14], cardiovascular disease [15–17], cancer [15, 18–26], neurodegenerative diseases [19, 20, 27–30], and even aging [31–33, 36, 37].
Other mechanisms that have been suggested include: changes in ATP production making neurons more resilient in the face of metabolic demands, altered brain pH affecting neuronal activity, direct inhibitory effects of ketone bodies or fatty acids on ion channels, alterations in amino acid metabolism, and changes in synthesis of the inhibitory neurotransmitter GABA. (10)
By dramatically shifting energy metabolism towards ketogenesis and fatty acid oxidation, ketogenic diets are likely to have a profound effect on mitochondrial function. However, despite the rapidly growing amount of research on ketogenic diets and their effects on various disease states, only a small amount of this research has focused on mitochondrial function or oxidative stress. The well-established increase in fat oxidation induced by a ketogenic diet [7, 8] clearly indicates prominent connection with mitochondrial function and, in turn, oxidative stress and mitohormesis [5, 6, 9]. Therefore, the purpose of this review is to describe the current, but limited, understanding of how ketogenic diets may affect mitochondrial function and resistance to oxidative stress, particularly within the context of extending human healthspan.
Though the hunger-reduction phenomenon reported during ketogenic diets is well-known, the underlying molecular and cellular mechanisms remain uncertain. Ketosis has been demonstrated to exert an anorexigenic effect via cholecystokinin (CCK) release while reducing orexigenic signals e.g., via ghrelin. However, ketone bodies (KB) seem to be able to increase food intake through AMP-activated protein kinase (AMPK) phosphorylation, gamma-aminobutyric acid (GABA) and the release and production of adiponectin. The aim of this review is to provide a summary of our current knowledge of the effects of ketogenic diet (KD) on food control in an effort to unify the apparently contradictory data into a coherent picture.
Insulin is a hormone that allows glucose to move into tissue cells, where is it is used for energy production. Insulin then prompts the liver to either store the remaining excess blood glucose as glycogen (for short-term energy storage) and/or to use it to produce fatty acids (which then become triglycerides). In people with insulin resistance, additional insulin must be released by the pancreas to overcome the tissue cells' resistance and allow glucose to enter the cells. This resistance and response to resistance can lead to increased insulin and glucose concentrations in the blood. Over time, increased glucose levels can harm blood vessels and organs such as the kidneys. Increased insulin levels can increase sodium retention by the kidneys, resulting in increases in blood pressure (which can lead to hypertension).
Glucose-sensitive neurons have been identified in a number of CNS regions including the metabolic control centers of the hypothalamus. Medeiros et. al. have used patch-clamp electrophysiology to examine whether neurons in a specific specialized region known as the subfornical organ (SFO), an area where the blood-brain barrier is not present, are also glucose sensitive or not. These experiments demonstrated that SFO neurons are glucose-responsive and that SFO is an important sensor and integrative center of circulating signals of energy status (Medeiros et al., 2012).
So when i made this bread it didnt really stay the way i wanted it to be because when i took it out it looked like regular bread but after like 5-10 minutes it sunk down and mine turned blueish-purpleish….is that good?? I dont think i will be making this again….and i measured out all the ingredients too so i dont know what i did wrong…. PLEASE HELP!!!!!!!!!!!!!
In the United States, children are becoming obese at triple the rate compared with the 1960s, making the study and treatment of this problem paramount. The epidemic of metabolic syndrome in children and adolescents is an international phenomenon, leading the International Diabetes Foundation to publish an updated consensus statement to guide diagnosis and further study of the condition. [51, 52]
Nice and firm. Baked it on the recommended temp, added 6 or 7 minutes. Pressed the middle and it was great. I let it cool. What was nice about it was obviously it’s low carb bread…hurray for that, but it cut well. Got 18 slices easily about 1/2 inch thick without breakage. Most importantly, it wasn’t greasy, or almond tasting overload, just delicious.
Populations living further north had much less edible vegetation available for gathering. Thankfully for us, animals that lived in these areas ate the vegetation inedible to us, effectively transforming it into fatty meat we could hunt and enjoy. These people most certainly relied on high levels of fat and protein, thus likely spending most of their time in ketosis.
I was a Corpsman (not a corpse-man as some recent somewhat fanatical president would say), and I can tell you many stories of Marines and Sailors who maintained restrictive diets (aka picky eaters). Most obvious was lack of sustaining energy (hypoglycemia) at mile 15 (with 80lbs of gear including a 6.5lb rifle and 200 rnds of ammo, etc.) and depletion of essential vitamins, electrolyte imbalance. They were always the first to collapse and have to hear me scold “see I told you so.” An IV of D5W usually does the trick (D is for dextrose, OMG!)
A high proportion of energy from ketone oxidation is transferred to the electron transport chain at the start (as NADH+), in comparison to the energy from fat, where a high proportion is transferred ‘downstream’ (as FADH). This means that, even though there is a high amount of ‘potential energy’ in a fat molecule, less of this can be transferred to ATP.
I made two portions in flat soups bowls. Added a hard boiled egg & grilled onions from the pork rendering and sage dressing spices. It was awesome. The only thing I could have done to make it better would have been a quarter cup or less of water in the skillet for the flavor and poured it on top of the dressing. Don’t be afraid to experiment with this awesome bread recipe.
Hey Maya!! This is the 2nd recipe I’ve tried off your website and again I love it!! Turned out really well. I can have sandwiches again or a quick piece Of toast when I’m in a hurry to get out the door. I was skeptical about the xanthan gum since I tried a recipe using psyllium husk powder. I did not like it. I can’t taste the xanthan gum so I have no problem using it going forward. Thanks again for the recipe!!!
Make this keto bread pizza base crispy and thin, or roll it into a thicker, fluffier crust — no matter how you prepare it, this recipe cuts out all dairy, grains, and gluten for a total of 6 net carbs. Coconut flour and psyllium creates a firm texture, while apple cider vinegar lends a tangy flavor. To stay more Bulletproof, avoid eating garlic and psyllium husk too often.
All of the factors associated with metabolic syndrome are interrelated. Obesity and lack of exercise tend to lead to insulin resistance. Insulin resistance has a negative effect on lipid production, increasing VLDL (very low-density lipoprotein), LDL (low-density lipoprotein – the "bad" cholesterol), and triglyceride levels in the blood and decreasing HDL (high-density lipoprotein – the "good" cholesterol). This can lead to fatty plaque deposits in the arteries which, over time, can lead to cardiovascular disease and strokes. Insulin resistance also leads to increased insulin and glucose levels in the blood. Excess insulin increases sodium retention by the kidneys, which increases blood pressure and can lead to hypertension. Chronically elevated glucose levels in turn damage blood vessels and organs, such as the kidneys.
Since then, it’s safe to say I dove down the rabbit hole. The more I learned, the more I grew tired of reading so much misinformation on the topic. While there are more thoughtful people and articles on the subject of ketosis these days (e.g., here’s a thoughtful video on ketosis and ketogenic diets from one of my most important ketosis mentors, Steve Phinney, a co-founder of Virta Health1Disclosure: I’m an investor in, and advisor to, Virta Health.), there are still pieces like the one Vox published this month, that doesn’t exactly do the topic justice.
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Maria – Love this recipe – took me 4 times before I got it how I wanted it and I add sesame seeds. Then I slice really really thin – about 1/2 cm then dry all the slices in the oven ready for toasting. However, right now I can only find baking powder with vanilla. Can I sub baking soda which together with the vinegar should work but how much? Can you help please?
I am so impressed by your bread recipes. Have spent the last two days just baking away and they taste absolutely great! What a joy to finally find something this tasty and healthy. I noticed in your previous post that we could expect to read about “What I eat” from you next. We’re staying tuned and waiting with great curiosity. Will pass on to our libraries about your books, for sure.
Test ketones in the late morning or afternoon. Blood and urine ketones are usually lowest right after waking up. Try testing later on, preferably a few hours after eating. Even if you’re only in ketosis for a portion of the day, you’re still getting some benefits, as discussed in this talk by Dr. Steve Phinney: Achieving and maintaining nutritional ketosis.
Acetyl-CoA can be metabolized through the TCA in any cell, but it can also undergo a different process in liver cells: ketogenesis, which produces ketone bodies. Ketone bodies are also produced in mitochondria, and usually occur in response to low blood glucose levels. When glucose levels are low, oxaloacetate is diverted away from the TCA cycle and is instead used to produce glucose de novo (gluconeogenesis). But when oxaloacetate is unavailable to condense with acetyl-CoA, acetyl-CoA cannot enter the cycle, and so the body has evolved an alternative way to harvest energy from it.
293. Geng T., Li P., Okutsu M., et al. PGC-1α plays a functional role in exercise-induced mitochondrial biogenesis and angiogenesis but not fiber-type transformation in mouse skeletal muscle. American Journal of Physiology-Cell Physiology. 2010;298(3):C572–C579. doi: 10.1152/ajpcell.00481.2009. [PMC free article] [PubMed] [CrossRef] [Google Scholar]
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Merck & Co., Inc., Kenilworth, NJ, USA is a global healthcare leader working to help the world be well. From developing new therapies that treat and prevent disease to helping people in need, we are committed to improving health and well-being around the world. The Merck Manual was first published in 1899 as a service to the community. The legacy of this great resource continues as the Merck Manual in the US and Canada and the MSD Manual outside of North America. Learn more about our commitment to Global Medical Knowledge.
I finally made this recipe. (I have made many of your others and use them often.) It did fall slighty but I was still able to slice it after it cooled. It was also purple, which is just fine with me. I toasted in the oven this morning and it was nice and crisp. I can’t tell you have happy I was to dip it in my fried egg this morning. Thanks, Maria, for all you do!
High-density lipoprotein (HDL – the "good" cholesterol) ordinarily transports excess cholesterol from the tissues back to the liver. In the liver, the cholesterol is either recycled for future use or excreted into bile. HDL's reverse transport is the only way that cells can get rid of excess cholesterol. It helps protect the arteries and, if there is enough HDL present, it can even reverse the build up of fatty plaques in the arteries. When there are excessive amounts of VLDL and triglyceride present, however, HDL concentrations in the blood decrease.
Yolks are great. Make a healthified custard, or a custard ice cream (Maria has recipies for both). I’m a diabetic and I got that way eating “real” food, not manufatured food. I baked. All from scratch, all homemade. But that meant traditional sugar and wheat flour. I had developed a number of reduced carb recipies on my own, but Maria’s recipies go all the way with better success than I would have guessed possible. (I still yearn for a good, two-day rise wheat and yeast bread — But I know allow myself this only once a quarter. It is not good for you.) I’m excited to try this. So far my favorite has been her psyllium powder/egg/boiling water version pizza crust. A homemade pizza made with this tastes as good as any pizza.
I have made your sub bread a few times with not good results. Tasted ok but it was gummy in the middle. Tonight I made the bread and it looked beautiful in the oven but when I took it out it deflated and was completely hollow in the middle. lol. This time I weighed everything to the T. I used Honeyville almond flour, liquid egg whites, and psyllium powder. Think I will skip trying the bread and try the sub bread again one more time. Probably made the sub bread 4x and all times came out gummy….grrrr. Hate to give up because the taste was good. Any suggestions??
Monica, i use NOW psyllium as well but GRIND i t just in case, my lower half is still under cooked at 75 min on 325, but the top half is beautiful. This is my 3rd attempt. I don’t think it is the psyllium powder and the first time i used silicone pan this last time metal. I’m frustrated as I’m throwing away close to 5lbs almond flour for 4th attempt. My pan is standard size loaf pan maybe i should divide mixture into 2 smaller ones. Oh also, the first time I baked it at 375 for 60 min. The 2nd reduced water and psyllium. The 3rd was the first few lines above, still no luck, someone HELP
Ketone salts did not improve performance 35 ,36. There are two recent published studies of ketone salts on athletes.. Performance was compared between ketone salts vs. carbohydrate in a 4 minute cycling time trial and a 150 kJ ( ~10 mins) cycling time trial. In the 4 minute trial there was no change in performance, and in the 150 kJ test, performance was decreased by 7%. Reasons for the difference in findings could be: Lower levels of blood BHB levels (which peaked at 0.6 mM and 0.8 mM in these studies) meaning far less BHB was present than in the ketone ester study. The ketone salt was given without carbohydrate and so there was no additive effect of ketones + carbohydrate as seen in the ketone ester study. The tests used were short and highly reliant on anaerobic (glycolytic) metabolism, therefore ketones did not offer an advantage.
The SS providing information to the brain mainly send information to the nucleus of the solitary tract (NTS). These signals are generated in the GIT and abdominal viscera, as well as in the oral cavity and provide information about mechanical and chemical properties of food. The information is transmitted via vagal and spinal nerve to the NTS. The ASs arrive to the median eminence through ARC or through the blood-brain barrier (BBB). All these afferents are integrated in a complex and not fully understood network.
What is the link between ketones and diabetes? Ketone is a chemical produced by the body when fats are broken down for energy. Ketone testing is important for people with diabetes, because high levels can lead to diabetic ketoacidosis (DKA), when acid levels become too high in the blood and the person loses consciousness. Find out when and why to do ketone testing. Read now
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.