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9 Amino Acid Primers and What they Do

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Amino acids play vital roles in the numerous functions of the body. They are the building block of protein. The body needs twenty amino acids. These build the various proteins which repair, grow, and maintain body tissues. The body itself can manufacture some of these amino acids called non-essential amino acids. But others, called essential amino acids, must be obtained through the diet. The classification of the amino acid, whether essential or non-essential, does not reflect its relative importance. All twenty of the amino acids are very important for health. This classification system is simply a classification of whether the body is capable of producing a particular amino acid. Also, all amino acids keep us vibrant, alive, and healthy. Therefore, any deficiency in a single amino acid will cause health problems. Furthermore, to fulfill its functions, replace a single deficiency.

Here are 9 essential amino acids with a brief description of each:

Isoleucine:
This essential amino acid is one of the three major Branched-Chain Amino Acids (BCAA) involved with muscle strength, muscle stamina, and endurance. Muscle tissues use Isoleucine as an energy source. Isoleucine has a chemical composition similar to that of leucine. The arrangement of its’ atoms is different Leucine which has other properties. It is a hydro-phobic amino acid that has two chiral centers. This means there are four stereoisomers and two diastereomers. You can find it in eggs, pork, mutton, chicken, and beans.

Leucine:
Nutritionally one of the essential amino acids, leucine is isometric with isoleucine. You can most commonly find it in whole grains and milk. It also has a significant role in optimal growth especially in infancy and childhood. Leucine also has a role in maintaining nitrogen balance in adults. Also, the formation of hemoglobin requires Leucine. Leucine is a potent stimulator of insulin, helps in bone healing, and promotes skin healing. It modulates the release of Enkephalins (natural pain-reducers). Also, Leucine plays a major part in the maintenance of muscle tissue by equalizing synthesis and breakdown.

Lysine:
Growth and the maintenance of nitrogen balance in the body needs this one essential amino acid. Throughout the body, it integrates into many proteins. And appears to help the body absorb and conserve calcium. Commonly found in legumes, cereal grains and fish, lysine has a 4-aminobutyl side-chain classified together with arginine and histidine. The human nutritional requirement is 1-1.5 grams a day. A deficiency can lead to lack of niacin or vitamin B that may cause a disease called pellagra. It can actually function as a nutritional supplement to help fight against herpes.

Methionine:
Lipotropic in nature, methionine is considered as one of the essential amino acids. Together with cysteine, they are the only sulfur-containing proteinogenic amino acids. It has a part in carnitine and taurine synthesis (by the processes called “trans-sulfidation” pathway), lecithin production and phosphatidylcholine synthesis. Atherosclerosis can develop if there is improper conversion of such. This amino acid supplies sulphur and other compounds the body needs for normal metabolism and growth. This is also one of the essential amino acids that belongs to a group of compounds called lipotropics or chemicals that help the liver process fat. Meats, vegetables, nuts and legumes are the best sources.

Phenylalanine:
This is one of the eight essential amino acids that serve as building blocks for the variety of proteins which the body manufactures. Phenylalanine can be converted to L-tyrosine and subsequently to L-dopa, epinephrine, and norepinephrine. Existing in two forms, phenylalanine are enantiomers (mirror-image molecules of one another). With a benzyl side-chain, its name derives from its chemical structure. It is composed of a phenyl group alternated for one of the hydrogens of alanine. Also, its phenyl group considers it as an aromatic compound. Its great sources are milk, avocados, legumes, nuts, and seafoods.

Threonine:
One of the essential amino acids that contains two chiral centers, threonine has four possible stereo-isomers and two diastereomers. Threonine can be used in a single enantiomer, and its’ side-chain can also undergo O-linked glycosylation. It can become phosphorylated through the action of the enzyme threonine kinase. Lentils, fish, meats, and cheese are its best sources. The formation of collagen requires this amino acid. Also, it helps to prevent fatty deposits in the liver. It aids in the production of antibodies. In the central nervous system, it can convert to Glycine. It also acts as a detoxifier and is necessary in the gastrointestinal tract for normal functioning.

Tryptophan:
amino acids A-Primer-of-Essential-Amino-Acids-Tryptophan-Muscle-Media Because it may not be easily synthesized, tryptophan functions as building blocks in protein biosynthesis. A precursor for serotonin, melatonin and niacin, its functional group is indole. This amino acid is a natural relaxant. Certainly, it helps ease insomnia by inducing normal sleep. It reduces anxiety and depression, helps in the cure of migraine headaches, reduces the risk of artery and heart spasms. It helps immune system function and works with Lysine to reduce cholesterol levels. Also, it aids in the production of antibodies and can be converted into Glycine. It has been implicated to bring about schizophrenia in persons who are unable to metabolize it correctly. You can obtain Tryptophan from turkey, chicken, sesame, peanuts, and chocolates.

Histidine:
You can find Histidine in high concentrations in hemoglobin. Quite useful in treating anemia due to its relationship to hemoglobin. Another use is rheumatoid arthritis treatment. It has also been linked to allergic responses and has been used to treat allergies. It also assists in maintaining proper blood pH.

Valine:
This amino acid is one of the three major Branched-Chain Amino Acids. Insulin significantly decreases BCAA levels. Intake of high dietary sugar or glucose causes the release of insulin which, in turn, causes a drop in BCAA levels. This amino acid competes with Tyrosine and Tryptophan in crossing the blood-brain barrier. Also, the muscle directly uses and actively absorbs this amino acid as an energy source.

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Review calls for more studies on cinnamon and cognitive function

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“This systematic review revealed that cinnamon and its components (eugenol, cinnamic acid, cinnamaldehyde, etc.) could affect memory and learning by decreasing amyloid plaque in the hippocampus and phosphorylation of tau-protein,” wrote researchers from Birjand University of Medical Sciences in Iran.

They attribute these brain-boosting benefits to cinnamon’s antioxidant, anti-inflammatory and anticholinesterase activity as well as neurotrophic effect, neural maintenance and insulin signaling improvement.

Cinnamon and its compounds

Cinnamon, from the inner bark of evergreen trees belonging to the genus Cinnamomum​, has been used in herbal medicine for centuries from China to Egypt as remedy for respiratory, digestive and menstruation issues. Today, as supplement, it is also suggested as support for healthy glycemic response and blood pressure.

“Cinnamon is proven to have antioxidant properties and reduce inflammation through different pathways, such as the NF-kB pathway and reducing reactive oxygen species (ROS),” the researchers noted. They attribute the antiproliferative, anti-inflammatory and antioxidant effects to compounds including eugenol, cinnamic acid, cinnamaldehyde, syringic acid, tannins and catechins.

Cinnamon also contains a small amount of choline, an essential nutrient for the brain that produces the acetylcholine neurotransmitters, which in turn play a critical role in regulating memory, mood, muscle control and other functions.

Indications of potential brain benefits

The research team conducted a systematic review of 40 eligible studies selected from a total of 1,605 collected from the Web of Science, Google scholar, PubMed and Scopus databases between 2011 and 2021. They include five in vitro​ studies, 33 in vivo​ studies in rats, mice and the common fruit fly, and two clinical trials in adolescents and pre-diabetic older adults. 

“One clinical study on adolescents showed a positive effect on memory using cinnamon chewing gum for 40 days, while the other reported no significant changes in memory using cinnamon administered orally (single dose/2 g),” the study reported.

Among the in vitro and in vivo studies, 16 used the cinnamon extract/cinnamon powder, while others administered a variety of cinnamon bioactives. The researchers concluded that the main outcome of most studies proved that cinnamon significantly improves cognitive function i.e. memory and learning.

“In vivo studies showed that using cinnamon or its components, such as eugenol, cinnamaldehyde and cinnamic acid, could positively alter cognitive function,” they wrote. “In vitro studies also showed that adding cinnamon or cinnamaldehyde to a cell medium can reduce tau aggregation, amyloid β and increase cell viability.”

Tangled tau proteins are associated with a range of neurodegenerative diseases, while the pathology of Alzheimer’s disease appears to be driven the production and extracellular plaque deposits of amyloid β peptide.

Call for further study

Acknowledging limitations across the collection of varied studies, the researchers call for larger studies and more clinical trials to evaluate the effects in humans. 

“It is also beneficial that in vivo studies in this field propose the probable mechanism of cinnamon affecting the brain to specify the related pathways more precisely,” they added.

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Omega-3 supplements may be ‘most efficient’ way to support neonatal development, researchers say

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It was also reported that after supplementing with DHA, levels of maternal DHA increased in erythrocyte phospholipids, serum, and breast milk.

“Our results confirmed usage of ‘omega’ dietary supplements as an efficient way of increasing the availability of EPA and DHA for infants,” ​stated Warsaw, Poland-based researchers in Nutrients​.

Essential Fats

There are established recommendations for the intake of essential fatty acids (EFA) and long-chain polyunsaturated fatty acids (LC PUFAs) for pregnant women, due to the recognised importance to the mother and child’s health. It has been found that these types of fats can increase gestational period and birth weight, as well as support the development of the child, in terms of the central nervous system and cognitive function.

“LC PUFA, especially DHA, plays a pivotal role in the development of the central nervous system, visual acuity, and cognitive functions. It depends on the involvement in maintaining membrane fluidity, impulse propagation, synaptic transmission, and functioning as a cytosolic signal-transducing factors for various gene expression during the critical period of brain development, which seems to be last trimester and first few months after birth,​” the researchers explain.

Due to the importance of these types of fatty acids, the present study sought to first analyse the frequency of consumption of fat sources as well as ‘omega’ supplements in pregnant patients. Secondly, the researchers measured the n-3 and n-6 serum FA contents at the time of labour of the pregnant women and their children using the GC-FID technique, to investigate subsequent nutritional status. The efficacy as well as the usefulness of the ‘omega’ supplements were then established.

Study details

Patients from the Anna Mazowiecka Clinical Hospital, consisting of 161 pregnant women, were administered dietary questionnaires to obtain data indicating dietary fat consumption as well as omega-3 supplement usage. The fatty acid profile was then assessed by obtaining maternal and umbilical cord blood samples at delivery.

The results found that 40% of the women were taking ‘omega’ dietary supplements. It was observed that taking such supplements was found to significantly increase serum levels of DHA in the pregnant women, compared to those who were not supplementing.

Additionally, it was observed that the LC-PUFA could penetrate the umbilical cord, with the blood containing significantly increased levels of EPA and DHA. As a result, the researchers concluded that utilising these supplements could be the most efficient route to achieving optical LC-PUFA status for the developing child.

The future for recommendations

The present study provides evidence that omega-3 supplements appear to boost both maternal and infant LC-PUFA levels at a time of critical need for normal development of the child.

With the researcher’s highlighting the low intake of fish observed among the studied population, Kaitlin Roke, director of scientific communication at the Global Organisation for EPA and DHA Omega-3, tells NutraIngredients “This is common across many populations.

“If this is the case, a supplement containing DHA and/or EPA would be necessary, particularly for pregnant or breastfeeding women. Some pre- and post-natal supplements may contain omega-3s in combination with other nutrients, but the levels are rarely adequate. Typically, getting a higher concentration means looking for a separate omega-3 supplement in addition to a prenatal vitamin “.

The findings provide interesting insight into shaping the future of recommendations for pregnant women, with Roke adding “Since DHA plays such a critical role in infant brain and eye development, most recommendations are ~200mg of DHA per day, but this is too low, particularly for the benefit of reducing the risk of preterm birth.

“Science is constantly evolving, and this recommendation could be modified as more research is conducted. The important message is that pregnant and breastfeeding women need to get adequate amounts of DHA through food and/or supplements.”, ​she concludes, highlighting the relevance of such research.

Source: Nutrients
https://doi.org/10.3390/nu15010231
“Increased LC PUFA Levels in the Serum of Pregnant Women and Their Children as a Result of Dietary Supplementation with ‘Omega’ Fatty Acids”
Authors: M. Broś-Konopielko, et al.

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France to allow ‘probiotic’ on food supplements labels

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The use of the term across Europe has been contentious since European authorities view it is an implied healthy claim since the official FAO/WHO definition denotes a health claim: “Live microorganisms which when administered in adequate amounts confer a health benefit on the host”.

Despite such a stance, more European countries are moving to allow the use of the term, notably Spain, Denmark, Italy, Greece, Poland, the Czech Republic, the Netherlands, and Bulgaria.

In France, the term “probiotic” may be used on food supplement labels together with the wording “contributes to the balance of the intestinal flora”​ so long as products meet certain conditions, such as a minimum number of living cells per daily dose, a position that is similar to the situation in Italy.

The announcement was welcomed by a number of stakeholders in the probiotics space, with Rosanna Pecere, executive director of IPA Europe, stating: IPA together with IPA Europe working diligently in the European environment for probiotics, are happy to see the softening position for the use of the term, and also happy with the added use of the claim.”

George Paraskevakos, IPA Global’s executive director, added: “This initiative links to all the probiotic on-going work globally and segues nicely into the continuation of the harmonization proposal of probiotic regulations at Codex Alimentarius which is set to resume later this year.

“The European market has shown the biggest jump in growth from an online sales perspective in 2022, outstripping other region growth rates by close to 5% as reported by Ewa Hudson’s Lumina Intelligence. This further emphasises the thirst for probiotic products from consumers in Europe, and further underscores the importance of the work which IPA EU and IPA are conducting not only in Europe but also globally to promote quality, safety, and probiotics that provide benefits.

“We are hoping to see more countries in Europe to follow suit in the coming year,”​ said Paraskevakos.

Calls for harmonization

Adding his voice to the news, Dr Luis Gosálbez, Managing Director, Sandwalk Bioventures, said: “This is yet another important regulatory event for probiotics in Europe, which undoubtedly calls for an EU-wide regulation regarding the type of products in which the term may be used (ie. foods vs. food supplements vs. both), minimum CFUs per day and claims associated, as decisions made by individual Member States are not harmonized in these regards.”

Speaking at the 2022 Probiota conference in Copenhagen, Tanne Severin Holm of the Danish Veterinary and Food Administration, also called for more harmonization across the European bloc on the use of the term: “We still do not allow use for food, but we do allow it for food supplements,”​ she told attendees. “We are working to try and find a harmonised approach. Member states have different approaches, and the playing field has become disharmonised, but we feel an urgent need to find a unified approach.”

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