Saturday, November 20, 2010

Glucose Tolerance in Non-industrial Cultures

Background

Glucose is the predominant blood sugar and one of the body's two main fuel sources (the other is fatty acids). Glucose, in one form or another, is also the main form of digestible dietary carbohydrate in nearly all human diets. Starch is made of long chains of glucose molecules, which are rapidly liberated and absorbed during digestion. Sucrose, or table sugar, is made of one glucose and one fructose molecule, which are separated before absorption.

Blood glucose is essential for life, but it can also be damaging if there is too much of it. Therefore, the body tries to keep it within a relatively tight range. Normal fasting glucose is roughly between 70 and 90 mg/dL*, but in the same individual it's usually within about 5 mg/dL on any given day. Sustained glucose above 160 mg/dL or so causes damage to multiple organ systems. Some people would put that number closer to 140 mg/dL.

The amount of glucose contained in a potato far exceeds the amount contained in the blood, so if all that glucose were to enter the blood at once, it would lead to a highly damaging blood glucose level. Fortunately, the body has a hormone designed to keep this from happening: insulin. Insulin tells cells to internalize glucose from the blood, and suppresses glucose release by the liver. It's released by the pancreas in response to eating carbohydrate, and protein to a lesser extent. The amount of insulin released is proportional to the amount of carbohydrate ingested, so that glucose entering the blood is cleared before it can accumulate.

Insulin doesn't clear all the glucose as it enters the bloodstream, however. Some of it does accumulate, leading to a spike in blood glucose. This usually doesn't exceed 130 mg/dL in a truly healthy person, and even if it approaches that level it's only briefly. However, diabetics have reduced insulin signaling, and eating a typical meal can cause their glucose to exceed 300 mg/dL due to reduced insulin action and/or insulin secretion. In affluent nations, this is typically due to type II diabetes, which begins as insulin resistance, a condition in which insulin is actually higher than normal but cells fail to respond to it.  The next step is the failure of insulin-secreting beta cells, which is what generally precipitates actual diabetes.

The precursor to diabetes is called glucose intolerance, or pre-diabetes. In someone with glucose intolerance, blood glucose after a typical meal will exceed that of a healthy person, but will not reach the diabetic range (a common definition of diabetes is 200 mg/dL or higher, 2 hours after ingesting 75g of glucose). Glucose tolerance refers to a person's ability to control blood glucose when challenged with dietary glucose, and can be used in some contexts as a useful predictor of diabetes risk and general metabolic health. Doctors use the oral glucose tolerance test (OGTT), which involves drinking 60-100g glucose and measuring blood glucose after one or two hours, to determine glucose tolerance.

Why do we care about glucose tolerance in non-industrial cultures?

One of the problems with modern medical research is that so many people in our culture are metabolically sick that it can be difficult to know if what we consider "normal" is really normal or healthy in the broader sense. Non-industrial cultures allow us to examine what the human metabolism is like in the absence of metabolic disease. I admit this rests on certain assumptions, particularly that these people aren't sick themselves. I don't think all non-industrial cultures are necessarily healthy, but I'm going to stick with those that research has shown have an exceptionally low prevalence of diabetes (by Western standards) and other "diseases of civilization" for the purposes of this post.

Here's the question I really want to answer in this post: do healthy non-industrial cultures with a very high carbohydrate intake have an excellent glucose tolerance, such that their blood glucose doesn't rise to a high level, or are they simply resistant to the damaging effects of high blood glucose?

The data

I'm going to start with an extreme example. In the 1960s, when it was fashionable to study non-industrial cultures, researchers investigated the diet and health of a culture in Tukisenta, in the highlands of Papua New Guinea. The eat practically nothing but sweet potatoes, and their typical daily fare is 94.6 percent carbohydrate. Whether or not you believe that exact number, their diet was clearly extraordinarily high in carbohydrate. They administered 100g OGTTs and measured blood glucose at one hour, which is a very stringent OGTT. They compared the results to those obtained in the 1965 Tecumseh study (US) obtained by the same method. Here's what they found (1):
Compared to Americans, in Tukisenta they had an extraordinary glucose tolerance at all ages. At one hour, their blood glucose was scarcely above normal fasting values, and glucose tolerance only decreased modestly with age. In contrast, in Americans over 50 years old, the average one-hour value was around 180 mg/dL!

Now let's take a look at the African Bantu in the Lobaye region of the Central African Republic. The Bantu are a large ethnic group who primarily subsist on a diverse array of starchy foods including grains, beans, plantains and root crops. One hour after a 100g OGTT, their blood glucose was 113 mg/dL, compared to 139 mg/dL in American controls (2). Those numbers are comparable to what investigators found in Tukisenta, and indicate an excellent glucose tolerance in the Bantu.

In South America, different investigators studied a group of native Americans in central Brazil that subsist primarily on cassava (a starchy root crop) and freshwater fish. Average blood glucose one hour after a 100g OGTT was 94 mg/dl, and only 2 out of 106 people tested had a reading over 160 mg/dL (both were older women) (Western Diseases: Their Emergence and Prevention, p. 149). Again, that indicates a phenomenal glucose tolerance by Western standards.

I have to conclude that high-carbohydrate non-industrial cultures probably don't experience damaging high blood glucose levels, because their glucose tolerance is up to the task of shuttling a huge amount of glucose out of the bloodstream before that happens.

Not so fast...

Now let's turn our attention to another study that may throw a wrench in the gears. A while back, I found a paper containing OGTT data for the !Kung San (also called the Bushmen), a hunter-gatherer group living in the Kalahari desert of Africa. I reported in an earlier post that they had a good glucose tolerance. When I revisited the paper recently, I realized I had misread it and in fact, their glucose tolerance was actually pretty poor.

Investigators administered a 50g OGTT, half what the other studies used. At one hour, the San had blood glucose readings of 169 mg/dL, compared to 142 mg/dL in Caucasian controls (3)! I suspect a 100g OGTT would have put them close to the diabetic range.

Wait a minute, these guys are hunter-gatherers living the ancestral lifestyle; aren't they supposed to be super healthy?? First of all, like many hunter-gatherer groups the San are very small people: the men in this study were only 46 kg (101 lbs).  The smaller you are, the more a given amount of carbohydrate will raise your blood glucose.  Also, while I was mulling this over, I recalled a discussion where non-diabetic people were discussing their 'diabetic' OGTT values while on a low-carbohydrate diet. Apparently, carbohydrate refeeding for a few days generally reverses this and allows a normal OGTT in most people. It turns out this effect has been known for the better part of a century.

So what were the San eating? The study was conducted in October of 1970. The San diet changes seasonally, however their main staple food is the mongongo nut, which is mostly fat and which is available year-round (according to The !Kung San: Men, Women and Work in a Foraging Society). Their carbohydrate intake is generally low by Western standards, and at times of the year it is very low. This varies by the availability of other foods, but they generally don't seem to relish the fibrous starchy root crops that are available in the area, as they mostly eat them when other food is scarce. Jean-Louis Tu has posted a nice analysis of the San diet on BeyondVeg (4). Here's a photo of a San man collecting mongongo nuts from The !Kung San: Men, Women and Work in a Foraging Society:

What did the authors of the OGTT study have to say about their diet? Acknowledging that prior carbohydrate intake may have played a role in the OGTT results of the San, they made the following remark:
a retrospective dietary history (M. J. Konner, personal communication, 1971) indicated that the [San], in fact, consumed fairly large amounts of carbohydrate-rich vegetable food during the week before testing.
However, the dietary history was not provided, nor has it been published, so we have no way to assess the statement's accuracy or what was meant by "fairly large amounts of carbohydrate-rich vegetable food." Given the fact that the San diet typically ranges from moderately low to very low in carbohydrate, I suspect they were not getting much carbohydrate as a percentage of calories. Looking at the nutritional value of the starchy root foods they typically eat in appendix D of The !Kung San: Men, Women and Work in a Foraging Society, they are fibrous and most contain a low concentration of starch compared to a potato for example. The investigators may have been misled by the volume of these foods eaten, not realizing that they are not as rich in carbohydrate as the starchy root crops they are more familiar with.

You can draw your own conclusions, but I think the high OGTT result of the San probably reflect a low habitual carbohydrate intake, and not pre-diabetes. I have a very hard time believing that this culture wasn't able to handle the moderate amount of carbohydrate in their diet effectively, as observers have never described diabetic complications among them.

Putting it all together

This brings me to my hypothesis. I think a healthy human body is extraordinarily flexible in its ability to adapt to a very broad range of carbohydrate intakes, and adjusts glucose tolerance accordingly to maintain carbohydrate handling in a healthy range. In the context of a healthy diet and lifestyle (from birth), I suspect that nearly anyone can adjust to a very high carbohydrate intake without getting dangerous blood glucose spikes. A low carbohydrate intake leads to impaired glucose handling and better fat handling, as one would expect. This can show up as impaired glucose tolerance or even 'diabetes' on an OGTT, but that does not necessarily reflect a pathological state in my opinion.

Every person is different based on lifestyle, diet, personal history and genetics. Not everyone in affluent nations has a good glucose tolerance, and some people will never be able to handle starch effectively under any circumstances. The best way to know how your body reacts to carbohydrate is to test your own post-meal blood glucose using a glucose meter. They are inexpensive and work well. For the most informative result, eat a relatively consistent amount of carbohydrate for a week to allow your body to adapt, then take a glucose measurement 1 and 2 hours after a meal. If you don't eat much carbohydrate, eating a potato might make you think you're diabetic, whereas after a week of adaptation you may find that a large potato does not spike your blood glucose beyond the healthy range.

Exercise is a powerful tool for combating glucose intolerance, as it increases the muscles' demand for glucose, causing them to transport it out of the blood greedily after a meal. Any exercise that depletes muscle glycogen should be effective.


* Assuming a typical carbohydrate intake. Chris Kresser recently argued, based on several studies, that true normal fasting glucose for a person eating a typical amount of carbohydrate is below 83 mg/dL. Low-carbohydrate eating may raise this number, but that doesn't necessarily indicate a pathological change. High-carbohydrate cultures such as the Kitavans, Aymara and New Guineans tend to have fasting values in the low 60s to low 70s. I suspect that a very high carbohydrate intake generally lowers fasting glucose in healthy people. That seems to be the case so far for Chris Voigt, on his diet of 20 potatoes a day. Stay tuned for an interview with Mr. Voigt in early December.

Friday, November 19, 2010

Trivial Things Causes Stress

It did not need big things to make us feel depressed, anxious, and worry excessively. Enough with trivial things like this, is capable of triggering production of the hormone cortisol in the body, so they can make us intermittently complained that then leads to stress.

Computers.
The workload is not rare that many are forced to bring jobs to make our home. As a result, the time that we can use to break and chatting with family is missing, instead we spent back in front of the laptop. Recent research shows, while in front of the computer, arms and shoulders become tense and we direct the roar of breath even quicker.

Reading too much informations can make us stress, and affect the physical condition of the body. So whenever possible we try to deal with the computer when we were working alone in the office.


Bedroom.
Supposedly, this space is the most fitting place for us to rest. Therefore, we should be able to create a bedroom as comfortable as possible. Do not get used to put used clothing on the bed, letting books and other belongings were scattered on the table beside the bed. The condition of a messy house will be one factor that makes it difficult to be happy, until eventually led to depression. Compared to let him continue to pile up and make us more lazy to fix it, then make it a habit to make our bedroom is always tidy and clean condition.

Small companions.

Actually have a pet will make our lives more colorful and happy. But no, when our little friend has started 'acting' to interfere with our sleep patterns, making the house a mess, and barking every night. Immediately brought to the vet. Because it could be a sign there is a problem denggan our pet's body, which made him restless. Or, we can hire a dog trainer who can teach our pets to behave better.

Tuesday, November 16, 2010

Impressions from the Wise Traditions Conference

I spent last weekend at the Weston A. Price Foundation Wise Traditions conference in King of Prussia, PA. Here are some highlights:

Spending time with several people in the diet-health community who I’ve been wanting to meet in person, including Chris Masterjohn, Melissa McEwen and John Durant. John and Melissa are the public face of the New York city paleo movement. The four of us spent most of the weekend together tossing around ideas and making merry. I’ve been corresponding with Chris quite a bit lately and we’ve been thinking through some important diet-health questions together. He is brimming with good ideas. I also got to meet Sally Fallon Morell, the founder and president of the WAPF.

Attending talks. The highlight was Chris Masterjohn’s talk “Heart Disease and Molecular Degeneration: the New Paradigm”, in which he described his compelling theory on oxidative damage and cardiovascular disease, among other things. You can read some of his earlier ideas on the subject here. Another talk I really enjoyed was by Anore Jones, who lived with an isolated Inuit group in Alaska for 23 years and ate a mostly traditional hunter-gatherer diet. The food and preparation techniques they used were really interesting, including various techniques for extracting fats and preserving meats, berries and greens by fermentation. Jones has published books on the subject that I suspect would be very interesting, including Nauriat Niginaqtuat, Plants that We Eat, and Iqaluich Niginaqtuat, Fish that We Eat. The latter is freely available on the web here.

I attended a speech by Joel Salatin, the prolific Virginia farmer, writer and agricultural innovator, which was fun. I enjoyed Sally Fallon Morell’s talk on US school lunches and the politics surrounding them. I also attended a talk on food politics by Judith McGeary, a farmer, attorney and and activist, in which she described the reasons to oppose or modify senate bill 510. The gist is that it will be disproportionately hard on small farmers who are already disfavored by current regulations, making high quality food more difficult to obtain, more expensive or even illegal. It’s designed to improve food safety by targeting sources of food-borne pathogens, but how much are we going to have to cripple national food quality and farmer livelihood to achieve this, and will it even be effective? I don’t remember which speaker said this quote, and I’m paraphrasing, but it stuck with me: “I just want to be able to eat the same food my grandmother ate.” In 2010, that’s already difficult to achieve. Will it be impossible in 2030?

Giving my own talk. I thought it went well, although attendance was not as high as I had hoped. The talk was titled “Kakana Dina: Diet and Health in the Pacific Islands”, and in it I examined the relationship between diet and health in Pacific island cultures with different diets and at various stages of modernization. I’ve covered some of this material on my blog, in my posts on Kitava, Tokelau and sweet potato eating cultures in New Guinea, but other material was new and I went into greater detail on food habits and preparation methods. I also dug up a number of historical photos dating back as far as the 1870s.

The food. All the meat was pasture-raised, organic and locally sourced if possible. There was raw pasture-raised cheese, milk and butter. There was wild-caught fish. There were many fermented foods, including sauerkraut, kombucha and sourdough bread. I was really impressed that they were able to put this together for an entire conference.

The vendors. There was an assortment of wholesome and traditional foods, particularly fermented foods, quality dairy and pastured meats. There was an entire farmer’s market on-site on Saturday, with a number of Mennonite vendors selling traditional foods. I bought a bottle of beet kvass, a traditional Russian drink used for flavor and medicine, which was much better than the beet kvass I’ve made myself in the past. Beets are a remarkable food, in part due to their high nitrate content—beet juice has been shown to reduce high blood pressure substantially, possibly by increasing the important signaling molecule nitric oxide. I got to meet Sandeep Agarwal and his family, owners of the company Pure Indian Foods, which domestically produces top-quality pasture-fed ghee (Indian-style clarified butter). They now make tasty spiced ghee in addition to the plain flavor. Sandeep and family donated ghee for the big dinner on Saturday, which was used to cook delicious wild-caught salmon steaks donated by Vital Choice.

There were some elements of the conference that were not to my taste. But overall I’m glad I was able to go, meet some interesting people, give my talk and learn a thing or two.

Fat Burning Foods

Fat burning foods are foods that burn more calories (fat) than the calorie content of the food itself, there by fighting stored fat so its called fat fighters.

There are certain foods which actually burn more fat than the fat content of the food itself. Most of These fat burning foods are foods that are high in protein and fiber . If you eat these fat burning foods and do some exercise, it will boost your metabolism and burn more calories (fat) at a faster rate for several hours even after exercise.

-How do fat burning foods work?

Before we proceed any further, let us find out how exactly fat burning foods work? To understand this, you need to understand why the body stores excess fat instead of flushing it out in the first place? The answer is that you never gave the body enough time to flush the fat out! The body requires time to detox. Yes, the fat stored in a form of toxin that needs to be flushed out but the body never gets enough time to detox. The body can detox only when the stomach is free from the process of digestion for quite a long time.

Does this mean that you should stop eating? Absolutely not. This means that you should eat foods that can be digested quickly so the body has time to start detoxifying. And that is exactly what fat burning foods do they are extremely easy to digest and at the same time they offer energy to the body.


fat burning foods work through some mechanisms:

1-Foods that are high in protein take longer to digest and can significantly boost your metabolism resulting in higher caloric burn.

2-Foods that are high in fiber like Whole grain cereal help you feel full sooner and for longer. Fiber also helps to move fat through our digestive system faster so that less of it is absorbed into the body.

3-Foods that are high in complex carbohydrates like milk can boost your metabolism by helping your insulin levels stay low after a meal. And low insulin levels are desirable - high insulin levels are the signal to your body to hang onto fat.

4-Foods that are high in chemical complex EGCG like green tea causes the brain and nervous system to run faster that helps you burn more calories.

5-Foods that contains Omega-3 fatty acids like salamon and tuna can alter the levels of a hormone in your body called leptin, Lower leptin levels are associated with a higher caloric burn.

-List of best fat burning foods:

There are a lot of fat burnings foods but I'm showing here the best ones.
1-milk
contain calcium and complex carb which boost metabolism by lowering insulin level

2-Spinach
fat flushing foods, this vegetable have capacity to combat anemia as well as an anti-cancer agent.

3-Oats
are a rich source of fiber,They’re also a very good source of selenium which boosts your energy and immune system by producing antibodies.

4-Jalapenos
contain a chemical called capsaicin, which not only gives peppers their pungent flavor but speeds up the heart rate and boosts the metabolism.

5-Habaneros
extremely hot Chile peppers, are found both fresh and dried in spicy foods.

6-Green tea
has a chemical called EGCG that causes the brain and nervous system to run faster and helps you burn more calories

7-Lean beef
is a great fat burning food as it’s loaded with protein and also contains iron which is vital for the creation of hemoglobin in your red blood cells.

8-Coffee
contains caffeine, which helps speed up your heart rate and thus helps you burn more calories,

9-Edamame
are soy beans which have been lightly boiled and salted ,edamame are an excellent source of protein, Vitamin C, iron, and calcium! They also contain 0g of saturated fats so eat them guilt free.

10-Salmon & tuna
contains Omega-3 fatty acids which lead to faster metabolism

11- Turkey & Chicken & Pork
helps boost your metabolism because it’s rich in protein, which requires more calories for your body to digest than either fat or carbs

12-Sardines
are rich in fish oil, Fish oil supplements are a great way to shed pounds. A recent study found that fish oil is great for helping your body burn fat more efficiently. You may lose up to 2 kg over 3 months.

13-Broccoli
Contain calcium, vitamin A, vitamin C, folic acid, and fiber. The calcium, vitamin C and fiber all contribute to burning fat and increasing your metabolism and also contain antioxiadants which decrease the risk of heart disease and certain cancers.

14-Fruits rich in vitamin C- Citrus Fruits:
like limes, lemons, oranges, guava, grapefruit, papaya, sweet lime, tangerines and tomatoes are rich in Vitamin C and fiber and have fat burning properties so they may be called as fat burning foods or fat burners or fat fighters.
Vitamin C helps the body process fat faster and also stimulates the carnitine amino acid which speeds up the body's fat-burning capacity.
Vitamin C dilutes the fat and makes it less effective and helps in releasing the fat from the body.

15-Apples:
Pectin in apple restricts the cells to absorb the fat; and also encourages water absorption from the food which helps in releasing the fat deposits from the body.

17-Honey:
Honey mobilises the extra fat deposits in the body.

18-curry leaves
Curry leaves flush out fat and toxins, reducing fat deposits in the body.

19-Dates
Dates are rich sources of carbohydrates and dietary fiber

20-some other foods may be included in the list of fat burning foods like:
apples,apricots,artichokes,asparagus,beets,blackberries,blueberries,Brussels sprouts,cabbage,cantaloupe,carrots,cauliflower,celery,cherries,chives,cod,corn,crabs,cranberries,cucumbers,eggplant,flounder,garlic,grapes,green beans,kale,leeks,lettuce,lobster,mangoes,mushrooms,nectarines,okra,onions,parsley,peaches,pears,peas,peppers,pineapple,prunes,pumpkin,radishes,raspberries,red cabbage,sauerkraut,scallions,squash,strawberries,string beans,turnips,watermelon.

Finally to get the best results with this fat burning foods list try to combine it with some exercise.

Sunday, November 14, 2010

Tempeh, Good for Healthy Diet

Tempeh is rich in fiber and isoflavones (one of the antioxidant compounds). Tempeh is also rich in calcium, vitamin B12 and iron. Nutrient content in 100 grams tempeh are:

Water                                          54.9     g
 Energy                                       199       kcal
 Protein                                      19.0      g
 Total Fat                                     7.7      g            
 Saturated Fatty Acid                  1.11     g
 Unsaturated Fatty Acid:
    - mono unsaturated               1.7       g
    - poly unsaturated                 4.3       g      

Carbohydrates                             17       g
 Fiber                                         4.8       g         
 Ash                                            1.4      g
 Isoflavones                                  53    mg
 Calcium                                    93       mg

   Iron                                           2.3    mg
Magnesium                                70       mg
Phosporus                                206      mg
Potassium                                 367      mg
Sodium                                         6      mg
Vitamin B1                               0.131    mg
Vitamin B2                               0.111    mg
Vitamin B3                                 4.63    mg
Vitamin B5                               0.355    mg
Vitamin B6                               0.299    mg
Folic Acid                                    52      ug
Vitamin B12                                  1       ug
Vitamin A                                      69     ug
                                                                                                                                              
Source : USDA Nutrient Database for Standard Reference

Research on soy protein, including protein in tempeh showed an important role in the prevention of coronary heart disease. Soy protein can lower total cholesterol by 30% and lowers LDL (bad cholesterol) up to 35-40%. This decrease was very significant, because of high LDL cholesterol mainly affects the formation of deposits / plaques in blood vessel walls resulting in a blockage that triggered heart attacks and strokes. Other studies have shown that soy protein increase HDL in the blood, which is good cholesterol that transports LDL (bad cholesterol) and plaque that is in the blood vessels to the liver so that the prevalence of blockage of blood vessels can be suppressed.

In addition, tempeh is rich in fiber. In digestion, fiber will bind to fat and cholesterol that can not be absorbed by the body. Dietary fiber binds bile and eliminated from the body, it stimulates the liver to produce more bile. The main ingredient of bile is cholesterol, thus, will decrease cholesterol levels in the body. 

Consumption of tempeh also have a positive effect on diabetes type 2 (non Insuline Dependent Diabetes Mellitus). Protein tempeh is very good for diabetics who have problems with the consumption of animal protein. Protein and fiber in tempeh maintain blood pressure and blood sugar levels remained in normal condition. In general, people with diabetes have greater risk of clogged arteries and heart attacks. Soy protein will keep your blood cholesterol at a normal level, so the risk of heart attack can be cut. In addition, soy protein also lowers triglycerides levels down to normal levels. High triglycerides levels in people with diabetes showed greater risk of heart attack.

Dietary fiber in tempeh will bind a cancer-causing toxins that enter the body and remove toxins from the body so it does not damage the cells of the colon (large intestines). Thus, the risk of colon cancer will decline. Facts show that the population of people who regularly consume tempeh, the rate of colon cancer and breast cancer is very low.

One use of soy protein is the most popular for the treatment of menopausal symptoms. Soy contains isoflavones, compounds similar to estrogen in women so commonly referred to as phytoestrogens. These phytoestrogens will bind to estrogen receptors and stimulates the reduction of negative symptoms caused by a natural decline in estrogen due to aging. Researches show that women who regularly consume soy products reduce the risk of bone loss (osteoporosis), blood vessel blockage and heart attack risk which is the result of menopause.

Genistein, one type of natural isoflavones in tempeh role in lowering the risk of prostate cancer. Researches show there are "anti-prostate cancer Genistein effects. Genistein inhibits prostate cancer cell growth. At high concentrations of genistein, will induce the formation of apoptosis, the cell in the body that destroys itself as a protection against the growth of cancer cells.
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