Blue Label Background

Blue Label Collection

All products in the Blue Label line are formulated using advanced LongLifeLipoTech® pro-liposomal technology. This cutting-edge platform is designed to enhance the bioavailability of plant extracts known for their outstanding health potential but typically limited by poor absorption. Key ingredients like Betulinic Acid, AKBA, Apigenin, Chrysin, and Baicalein are featured, ensuring these compounds are delivered more effectively, maximizing their potential to positively impact overall health and well-being.

Advanced Nutrient Delivery with LongLifeLipoTech®

MCS Formulas has developed LongLifeLipoTech®, an innovative pro-liposomal technology that enhances the bioavailability and effectiveness of natural ingredients. Trusted by leading integrative doctors and naturopaths, this breakthrough technology is designed to help you get the most from your supplements.

How It Works

LongLifeLipoTech® harnesses the power of liposomes—tiny, spherical vesicles made from phospholipids that mimic natural cell membranes—to protect and transport active ingredients. This advanced delivery system ensures that a higher percentage of each nutrient is absorbed, allowing it to reach your bloodstream and target areas more effectively.

A Modern Approach

Unlike traditional liquid liposomal supplements that can suffer from taste and consistency issues, LongLifeLipoTech® is formulated as a dry powder encapsulated in an easy-to-use capsule. This modern format offers convenience and reliable potency with every dose.

Enhanced with Chitosan

What sets LongLifeLipoTech® apart is its unique formulation that combines chitosan with phospholipids. This combination creates stable, neutrally charged liposomes that circulate longer in your body, improving overall absorption—even at lower doses.

A Trusted Choice for Optimal Wellness

Developed with scientific rigor and a commitment to quality, LongLifeLipoTech® is a favorite among health experts who recommend it for its superior nutrient delivery. This innovative technology ensures that you receive enhanced support for your wellness goals with every supplement.

Apigin Max

Apigin Max

Apigenin is a flavonoid that naturally occurs in many plants and fruits. The highest mounts are found in parsley, chamomile, celery, vine-spinach, artichokes, and oregano, and the richest sources are in the dried forms. It is also abundant in chamomile tea. Drinks prepared from chamomile contains 0.8% to 1.2% apigenin. For centuries chamomile tea has been used as a folk medicine remedy, both ingested or directly applied on the skin. More recently, it has been indeed found by scientists that Apigenin is a powerful molecule with potential to modulate multiple intra cellular mechanisms.

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Baicalein Pure

Baicalein Pure

Baicalein is a potent flavonoid extracted from the roots of the Chinese skullcap (Scutellaria baicalensis), a herb long revered in traditional Chinese medicine. Renowned for its strong antioxidant and anti-inflammatory properties, baicalein may help support a balanced inflammatory response and protect cells from oxidative stress. Preliminary research also suggests that this natural compound can contribute to cardiovascular health, cognitive function, and healthy aging. Incorporating baicalein into your wellness routine may offer a holistic way to maintain overall vitality

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Berberine Liposomal

Berberine Liposomal

Berberine is a dietary supplement, the principal bioactive ingredient various plants such as Berberis vulgaris (barberry) and Berberis Aristata and in common traditional Chinese medicinal herbs (also named ‘Huang Lian’ in Chinese) traditionally used to address various health challenges. It comes from the roots, stems, and bark of various plants. According to inscriptions found on clay tablets in the library of the Assyrian Emperor Ashurbanipal, one of the earliest use of Berberine containing fruits goes back to 650 BCE. These tablets refer to the purifying effects of Berberine-containing fruits. In Ayurvedic medicine, Berberine was used for example for ‘open the mind’. The plant use in Chinese medicine dates back over 3000 years, and it’s use in the European countries has a similarly long history. Today, Berberine is widely used in Asian countries (mainly in China) due to its good clinical and safety profile. In US, FDA considers Berberine safe for human use. In line with the traditional use, and the recent findings, currently Berberine is considered: Good for liver* [EFSA ID 3989] Good for blood glucose* [EFSA ID 4363] Good for cholesterol* [EFSA ID 3272] Therefore, there are indeed good reasons why Berberine is such a prominent herb. To further maximize the absorption of Berberine we recommend its combination with another of our products, Milk Thistle Pure.

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Betulinic Acid

Betulinic Acid

Betulinic acid is part of the group of compounds triterpenoids, naturally occurring in birch trees, but present in many other botanical sources. It is the same compound found in Chaga mushroom, considered one of those compounds responsible for Chaga’s outstanding health support. However, Chaga contains only very small amounts of Betulinic Acid, in the range of 2-3% (1). Furthermore, only Chaga mushroom grown on Birch tree, contains Betulinic Acid. Betulinic Acid, has been extensively investigated in the academic field during the past decades. This is due to its promising functionality observed in laboratory investigations, next to its traditional use to support the human body. Preliminary research suggests it may also contribute to healthy skin and provide supportive benefits in maintaining balanced metabolic processes

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Boswellia Mega Akba

Boswellia Mega Akba

Boswellia extract comes from an oleo-gum resin known as frankincense, produced by a tree called Boswellia serrata that grows in dry mountainous regions of India, Northern Africa and the Middle East. Frankincense has a rich history, and was traded in the Arabian area for more than 6,000 years. Due to its special properties, the Egyptians used frankincense to purify the body during the mummification procedure. Those familiar with the Bible, will recognize frankincense as one of the gifts offered to Jesus by the three magi. Boswellia serrata is also one of the oldest and most valued herbs in Ayurveda (Indian traditional medicine), and used for centuries in Asian and African folk medicine. Recent scientific investigations indicate that one of the most relevant group of compounds in Boswellia Serrata resin are the pentacyclic triterpenic acids called Boswellic Acids. According to the scientific literature, one of the most outstanding Boswellic Acids is AKBA (Acetyl-11-keto-beta-boswellic acid), that has been identified as the main compound responsible for the connection of Boswellia with its major health support.

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Chrysin

Chrysin

Boswellia extract comes from an oleo-gum resin known as frankincense, produced by a tree called Boswellia serrata that grows in dry mountainous regions of India, Northern Africa and the Middle East. Frankincense has a rich history, and was traded in the Arabian area for more than 6,000 years. Due to its special properties, the Egyptians used frankincense to purify the body during the mummification procedure. Those familiar with the Bible, will recognize frankincense as one of the gifts offered to Jesus by the three magi. Boswellia serrata is also one of the oldest and most valued herbs in Ayurveda (Indian traditional medicine), and used for centuries in Asian and African folk medicine. Recent scientific investigations indicate that one of the most relevant group of compounds in Boswellia Serrata resin are the pentacyclic triterpenic acids called Boswellic Acids. According to the scientific literature, one of the most outstanding Boswellic Acids is AKBA (Acetyl-11-keto-beta-boswellic acid), that has been identified as the main compound responsible for the connection of Boswellia with its major health support.

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Curcumin C

Curcumin C

Curcumin is an active component of Turmeric (Curcuma longa), widely used for medical treatments of various diseases for more than 2500 years in Asian countries. During this long journey Turmeric has become a cornerstone in Ayurveda and traditional Chinese medicine. Research from academic space has indicated that Curcumin is important for multiple aspects related to the human health. This is why multiple clinical studies have been started to evaluate the effectiveness of Curcumin in various human diseases, and some have already started to deliver promising results. In line with the recent findings, it is now believed that Curcumin may add value on the following lines: Helps maintain the health of the liver [EFSA ID 3908]; Helps to control inflammatory responses within the body [EFSA ID 2030]; Helps to promote appetite in cases of loss of appetite [EFSA ID 2744] Prevents the accumulation of fats [EFSA ID 2751] Helps to keep the skin healthy [EFSA ID 4008] Helps to maintain the efficacy of the immune system [EFSA ID 4009] Helps to maintain resistance to allergies [EFSA ID 4009] Supports production and quality of blood [EFSA ID 4010] Supports heart function [EFSA ID 4010] Supports blood circulation [EFSA ID 4010] Helps maintain the health of the lungs and upper respiratory tract [EFSA ID 4011] Supports the function of the nervous system [EFSA ID 4014] *The statements in this section have not been evaluated by the FDA or EFSA, but they are under review at EFSA.

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Fisetin

Fisetin

Curcumin is an active component of Turmeric (Curcuma longa), widely used for medical treatments of various diseases for more than 2500 years in Asian countries. During this long journey Turmeric has become a cornerstone in Ayurveda and traditional Chinese medicine. Research from academic space has indicated that Curcumin is important for multiple aspects related to the human health. This is why multiple clinical studies have been started to evaluate the effectiveness of Curcumin in various human diseases, and some have already started to deliver promising results. In line with the recent findings, it is now believed that Curcumin may add value on the following lines: Helps maintain the health of the liver [EFSA ID 3908]; Helps to control inflammatory responses within the body [EFSA ID 2030]; Helps to promote appetite in cases of loss of appetite [EFSA ID 2744] Prevents the accumulation of fats [EFSA ID 2751] Helps to keep the skin healthy [EFSA ID 4008] Helps to maintain the efficacy of the immune system [EFSA ID 4009] Helps to maintain resistance to allergies [EFSA ID 4009] Supports production and quality of blood [EFSA ID 4010] Supports heart function [EFSA ID 4010] Supports blood circulation [EFSA ID 4010] Helps maintain the health of the lungs and upper respiratory tract [EFSA ID 4011] Supports the function of the nervous system [EFSA ID 4014] *The statements in this section have not been evaluated by the FDA or EFSA, but they are under review at EFSA.

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Glutathione Reduced

Glutathione Reduced

Glutathione, often known as the “master antioxidant,” is an endogenous compound present in the cells of living organisms. It plays a key role in maintaining overall health. It has a significant impact on protein synthesis, enzyme function, transport, and cell maturation, T cell lymphocytes and Natural killer cells. Glutathione is composed of three amino acids: cysteine, glycine, and glutamic acid. While the body naturally produces glutathione, it can also be obtained from certain foods and supplements. Fruits and vegetables such as asparagus, spinach, and avocado are good dietary sources of glutathione, particularly when consumed raw. It’s important to note that heating these foods can lead to a partial loss of their beneficial substances. As an addition to the daily intake from food, glutathione supplementation offers a simple and effective solution to help with the body’s requirements for this essential substance.

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Honokiol Pure

Honokiol Pure

Honokiol is a less known food supplement but with wonderful potential. It is a natural extract from Magnolia bark, used for centuries in traditional medicine in China, Korea, and Japan, due to its perfect combination of bioavailability and ability to support the body through a wide range of mechanisms, often reflected in the scientific research performed on Honokiol, during the past decades. MCS Formulas, believes that one of the most relevant and little known aspect behind Honokiol is related to it’s potential to promote the stability of important DHA (from Omega-3) metabolites

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Luteolin Max

Luteolin Max

Luteolin is a flavonoid found in various plants such as vegetables, medicinal herbs, and fruits. It plays an important role in defending plants, against UV radiation by partially absorbing UVA and UVB radiation. This natural function has sparked scientific interest in its properties. Research has explored luteolin’s characteristics in various biological contexts, including skin, immune function, and cellular processes. Its molecular interactions with specific biological targets have been a focus of study, including e.g. MDR1 expression, MMP-9, IGF-1 and Epithelial to mesenchymal transition.

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NMN Restore

NMN Restore

In the realm of cutting-edge biotechnology and anti-aging research, Nicotinamide Mononucleotide, a form of vitamin B3 (nicotinic acid) often abbreviated as NMN, has emerged as a promising and captivating molecule. NMN is garnering significant attention for its potential to unlock the secrets of longevity and vitality. This small but powerful compound plays a pivotal role in the intricate world of cellular metabolism, offering a glimpse into the mechanisms that govern aging and age-related diseases. NMN is a precursor to nicotinamide adenine dinucleotide (NAD+), a coenzyme crucial for a wide range of cellular processes. It is literally an amide of nicotinic acid and therefore an alternative form of vitamin B3. As a precursor of NAD+, it means that after taking NMN, our cells will convert it into NAD+. NMN is found in small amounts in various foods, such as avocados, broccoli, cabbage, edamame, and cucumbers. As we age, our NAD+ levels decline, which is believed to contribute to various age-related ailments, including reduced energy production, DNA damage, and impaired cellular repair mechanisms. NMN supplementation, through its role in boosting NAD+ levels, has thus captured the imagination of scientists, researchers, and health enthusiasts alike (1, 2, 3). In oncology, it has been suggested that high dose NMN promotes ferroptosis through NAM-mediated SIRT1-AMPK-ACC signaling (4). Other studies have suggested positive effects of NMN on cancer cells (5). However, the effect of NAD+ supplementation in oncology is strongly debated, and therefore, it is recommended that oncology patients discuss with their healthcare professional prior to using an NMN supplement. NMN has been available as a food supplement for a relatively long time, in various countries around the world. However, more recently there is a debate if NMN can be sold as a food supplement. For example, in Europe, NMN with purity between 95% and 99% is listed on the novel food list. This is somewhat misleading for many, assuming and claiming it is illegal to sell NMN in Europe. This is however not the case. Our communication with EU relevant organizations, have clarified that the novel food listing of NMN refers to NMN products containing equal or l>95% NMN, while that does not apply on concentrations <95%. MCS Formulas, has formulated its NMN Restore product such that it complies with the EU regulations (i.e. the content of phospholipids and chitosan lead to a content of NMN <95% per capsule), while we did our best to offer an effective dose of NMN in a capsule (i.g. 250 mg) and the maximum support via our LongLifeLipoTech™ technology platform.

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Piperlongumine Liposomal

Piperlongumine Liposomal

Piperlongumine, or piplartine, is a natural alkaloid substance extracted from the fruit of rots of the long pepper plant (Piper longum Linn.). The plant grows in the wild tropical rain forests of India, Indonesia, Malaysia, Nepal, Philippines, and Sri Lanka, and it has been considered one of the main components in the Ayurvedic medicine with important potential. During the recent years, Piperlongumine has gain important scientific attention including in the healthy-aging space such as that related to senolytics. As such, Piperlongumine has been studied in relation to e.g. the intracellular ROS generation, NF-κB, STAT3, and TXNRD1. Oxidative Balance Piperlongumine has been extensively studied for its role in influencing reactive oxygen species (ROS) within cells. ROS are molecules that include free radicals, such as hydrogen peroxide and superoxide, which are produced during normal cellular metabolism. Managing them effectively is crucial for supporting overall cellular health. High levels of ROS can lead to oxidative stress, which can damage cellular components like DNA, proteins, and lipids. Piperlongumine may support the body’s natural antioxidant defenses to maintain a balance. ROS increase in certain cells: Research shows that Piperlongumine can promote an increase in ROS levels in some cells. Elevated ROS levels can affect cellular processes, depending on the balance between ROS production and the cell’s ability to manage oxidative stress through its antioxidant systems. Interaction with antioxidant pathways: Piperlongumine is known to interact with the cellular antioxidant defense system, particularly the glutathione (GSH) and glutathione-S-transferase (GST) pathways. These pathways play a role in neutralizing ROS in cells, and Piperlongumine’s effects on these pathways have been observed in laboratory studies. Apoptosis and Cell Renewal Apoptosis is the process of programmed cell death, a crucial function in maintaining healthy tissues and eliminating damaged cells. Studies indicate that Piperlongumine can influence the pathways involved in apoptosis. As such, Piperlongumine may support the body’s natural cell renewal processes by encouraging the maintenance of healthy apoptosis pathways, so that cells function optimally. Mitochondrial involvement: Piperlongumine has been shown to influence mitochondrial pathways related to apoptosis. Mitochondria, the energy-producing organelles in cells, play a role in regulating the release of certain proteins, such as cytochrome c, which are involved in the apoptotic process. Caspase activation: The activation of enzymes known as caspases has been observed in cells exposed to Piperlongumine. These enzymes help break down cellular components in a controlled manner during apoptosis. Bcl-2 family proteins: Research indicates that Piperlongumine can affect the balance between proteins in the Bcl-2 family, which regulate apoptosis. These proteins include both pro-apoptotic and anti-apoptotic members, and their regulation is a key factor in determining whether a cell undergoes programmed cell death. Modulation of the NF-κB Pathway The NF-κB (nuclear factor kappa-light-chain-enhancer of activated B cells) pathway is involved in regulating various cellular processes, including gene expression related to inflammation and cell survival. Piperlongumine has been found to potentially work on this pathway. Inhibition of NF-κB activation: Studies suggest that Piperlongumine can prevent the activation of NF-κB by inhibiting the nuclear translocation of the NF-κB complex, which affects the expression of certain genes. This modulation of the NF-κB pathway has been observed in laboratory settings. IκBα stabilization: Piperlongumine has also been shown to interact with IκBα, a protein that inhibits NF-κB. By preventing the degradation of IκBα, Piperlongumine maintains its ability to regulate the NF-κB pathway. Effects on Heat Shock Proteins (HSPs) Heat shock proteins (HSPs) are molecular chaperones that assist in protein folding and protect cells under stress. This contributes to the body’s ability to handle cellular stress and maintain healthy cellular functions. Piperlongumine has been studied for its effects on HSP70 and HSP90, which are involved in cellular stress responses. HSP70 and HSP90 downregulation: Piperlongumine has been observed to reduce the expression of HSP70 and HSP90. These proteins play a role in helping cells cope with stress, and their downregulation can affect cellular processes under conditions of stress. Impact on protein homeostasis: By influencing the expression of HSPs, Piperlongumine can disrupt the balance of protein homeostasis (proteostasis) within cells, which can lead to a buildup of misfolded proteins and the activation of stress responses. Effects on Angiogenesis Angiogenesis, the formation of new blood vessels, is a process that supports tissue growth by supplying oxygen and nutrients. Piperlongumine has been studied for its effects on molecular pathways involved in angiogenesis. Inhibition of VEGF signaling: Piperlongumine has been shown to reduce the activity of vascular endothelial growth factor (VEGF), a key factor in promoting angiogenesis. This inhibition has been observed in experimental models, where Piperlongumine reduced the expression of VEGF and related signaling molecules. Downregulation of pro-angiogenic factors: In addition to VEGF, Piperlongumine affects other pro-angiogenic factors, such as fibroblast growth factor (FGF) and platelet-derived growth factor (PDGF), which also play roles in the formation of new blood vessels Piperlongumine is a compound of interest in scientific research due to its ability to interact with several intracellular pathways. Its effects on oxidative stress, apoptosis, and molecular signaling are being explored in laboratory settings. Piperlongumine’s influence on ROS levels, apoptosis-related proteins, and key cellular pathways such as NF-κB and HSPs make it a promising molecule for further investigation. Piperlongumine has also received relevant scientific attention in the search for senolytic compounds. Senolytics are a class of compounds that selectively target and eliminate senescent cells—cells that have stopped dividing but remain in the body, often contributing to aging and various age-related conditions. These “zombie” cells can release inflammatory signals that affect nearby healthy cells, potentially accelerating aging and tissue dysfunction. These research findings highlight the importance of Piperlongumine in understanding how natural compounds can affect cellular mechanisms, with ongoing studies aimed at uncovering additional details about its role in molecular biology.

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Shikonin Liposomal

Shikonin Liposomal

Shikonin is a natural naphthoquinone compound derived from the roots of Zi Cao (Lithospermum erythrorhizon), a plant traditionally used in Chinese and Japanese remedies. Historically, Shikonin was valued for its vibrant red pigment and was commonly applied in herbal preparations for various skin-related purposes. It has been used for centuries in traditional remedies, particularly in East Asia. Indeed, Shikonin’s use extends back over a thousand years in traditional Chinese remedies, where it was regarded for its perceived cooling and detoxifying properties. It was also used in ancient Japanese remedies for external applications. In recent decades, Shikonin has drawn attention from the scientific community due to its biological properties and its interactions within cellular processes. Researchers have explored various intracellular mechanisms of Shikonin, particularly its role in cellular signaling pathways. Scientific Exploration of Shikonin Modern research has identified several key intracellular pathways through which Shikonin interacts with cellular processes, making it the focus of numerous biochemical studies. A major area of academic research related to this extract, has explored Shikonin’s association with Pyruvate Kinase M2 (PKM2), a key enzyme involved in glycolytic pathways (Ref.). PKM2 plays a key role in glycolysis, the process by which cells convert glucose into energy. This research is ongoing, particularly in understanding how compounds like Shikonin interact with metabolic enzymes. Scientific research on Shikonin primarily focuses on its intracellular mechanism centered on Pyruvate Kinase M2 (PKM2) as well as NF-κB, PI3K/Akt/MAPKs, Akt/mTOR, TGF-β, GSK3β, TLR4/Akt. From Traditional Roots to Modern Science Shikonin’s journey from its ancient use in herbal remedies to its modern exploration in laboratories reflects a fascinating path of discovery. Once primarily applied in traditional external preparations, it has since become the focus of extensive scientific study. Researchers continue to investigate its chemical properties and its interactions with biological systems, gaining insights into potential contemporary uses. In addition to academic research, Shikonin has also been explored in clinical settings over recent years for various significant health-related areas, though these cannot be detailed here to avoid making health claims.

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Trans Resveratrol

Trans Resveratrol

Resveratrol is a naturally occurring substance produced by plants in response to stress such as injury, ultraviolet exposure, and fungal attack. Resveratrol is produced by more than 70 species of plants in response to such stressful situations, as a mechanism of resistance to parasites (to inhibit the development of an infection in the plant) and other adverse conditions. Currently, Resveratrol is in most cases extracted from Japanese knotweed Polygonum. Yet the process is dependent on the variable harvest, and typically has low extraction yield and results in a low-purity product. Production of Resveratrol by fermentation represents an alternative process circumventing these disadvantages. Resveratrol is found in nature as cis-resveratrol and trans-resveratrol. Of the 2 isomers, research has been focused on the trans-resveratrol isomer because it is thought to be more stable and more biologically active. Wines, particularly red wines, are a source of some levels of resveratrol and has been suggested by some to be partially responsible for the French paradox. While the connection between the two is not yet clear from a scientific point of view, Resveratrol has been present in traditional medicinal preparations, such as darakchasava or manakka, for more than 2000 years. Due to its outstanding properties and potential to affect the health in humans, Reveratrol has been intensively investigated by the academic research groups during the past decades. Nevertheless, in contrast to its potential, the application of Reveratrol in humans presents important challenges. More specifically, while oral administration of Resveratrol in humans indicated that a good amount of resveratrol is absorbed, possibly by trans-epithelial diffusion, the oral bioavailability is low (<1%) due to rapid and extensive metabolism in the intestine and liver.

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Vitamin C

Vitamin C

Vitamin C is an essential vitamin for our body, essential for processes such as collagen biosynthesis, catecholamine metabolism, and iron absorption from foods (1). As a result, Vitamin C is involved in many biological processes in our body and it has been shown that it: EFSA authorized health claims: Vitamin C contributes to maintain the normal function of the immune system during and after intense physical exercise. Vitamin C contributes to normal collagen formation for the normal function of blood vessels Vitamin C contributes to normal collagen formation for the normal function of bones Vitamin C contributes to normal collagen formation for the normal function of cartilage Vitamin C contributes to normal collagen formation for the normal function of gums Vitamin C contributes to normal collagen formation for the normal function of skin Vitamin C contributes to normal collagen formation for the normal function of teeth Vitamin C contributes to normal energy-yielding metabolism Vitamin C contributes to normal functioning of the nervous system Vitamin C contributes to normal psychological function Vitamin C contributes to the normal function of the immune system Vitamin C contributes to the protection of cells from oxidative stress Vitamin C contributes to the reduction of tiredness and fatigue Vitamin C contributes to the regeneration of the reduced form of vitamin E Vitamin C increases iron absorption While Vitamin C is an essential one, humans cannot synthetize it. Fortunately, it can be obtained through dietary intake of fruits and vegetables. However, for those who want to supplement that and make sure enough Vitamin C is taken daily, we recommend using our Vitamin C Liposomal quality product. Vitamin C Pro Liposomal It is well known that, when taken orally, Vitamin C is only little absorbed into the human body. In order to address this challenge, we have designed a pro liposomal formula to maximize its bio-availability. A major approach known to maximize bio-availability of natural compounds is the phospholipid-based formulation. Such formulations are known as liposomal formulations and commercially, they come as liquid emulsions or solid formulations promoting the formation of liposomal structures (bubble-like structures surrounded by a fat-based layer) that can encapsulate the active ingredients such as Vitamin C. This phospholipid layer is similar to the cell walls in our body. As a result, liposomes are well received by the body and absorbed in higher quantities by the body, to reach the blood stream. While liposomal formulations are a great way to deliver increased amount of supplements and drugs to the blood stream, when turning these into products, it leads to various disadvantages for the users. Liposomal products are liquid, heavy and difficult to carry. They have difficult taste. Making their taste better may come with various undesired additives. And typically they have short shelf life, even shorter after the bottle is open. Furthermore, liquid liposomal products need to stay stored at low temperature. In contrast to the liquid liposomal supplements, liposomal promoting formulations as dry powder in capsules have no taste, they are easy to carry, and they can be stored at room temperature with a long shelf life. The quality is therefore even better since the product is more stable. Furthermore, phospholipids can be negatively or positively charged leading to a lower absorption and time to circulate in the blood stream, compared to neutrally charged liposomes. In order to address this and further maximize the absorption, our Pro Liposomal formula includes LongLifeLipoTech™ LongLifeLipoTech™ is a pro liposomal technology that includes a proprietary blend of Phospholipids and Chitosan designed with the intention to promote the formation of neutrally charged liposomes. Indeed, it is known that Chitosan naturally binds to charged phospholipids to form neutrally charged liposomes. This is how, LongLifeLipoTech™ pro liposomal blend, supports the formation of liposomes that can have a better biocompatibility (improved absorption and a longer circulating time in the blood stream) compared to formulas based on phospholipids alone.

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