The utilization of liposome in medical sector started in the mid-1960s, and is currently regarded as one of the medical innovation in the 20th century. Though still young in clinical medicine, liposomal encapsulation technology simply referred to as LET has gained popularity as a possible replacement of most medical administration methods currently in place.
Unlike other methods like in the use of needles for injections, swallowing of tablets, capsules or even syrup where the drug or the substance has to directly pass through the body tissues that are not the direct target, leading to possible reactions, loss of concentration or even interfering with the normal body functions, this method of drug administration employs an ingenious solution to drug administration. In fact, clinical trials have proven that it is better way of treating racehorses without the need of needles or syringes.
In this technology, phospholipid membrane (liposome) is used to encase a prescribed amount of pharmaceutical compounds with the aim of preventing their degradation as they pass through the gastrointestinal tract. This option offers an excellent transfer mechanism that is not available with other drug administration methods. The method is now used in other fields other than in clinical therapies. These include supplement manufacturers, topical moisturizers and the beauty product manufacturers among others.
Phospholipid liposome comes in to withstand the impact of anybody radicals, particularly the enzymes, the body moisture, the alkaline fluids, and the salts within the digestive tract. The compounds being introduced in the body are well protected all the way to the time they are delivered to the targeted organs or the tissue. At this point, a chain reaction takes place, allowing the cells to open up their walls, allowing the compound into the intracellular medium to commence the process of treatment.
The technology is so effective since it stems from the ability of liposomes to penetrate the cell walls and most other infective microorganisms. This gives it a winning advantage against most of pathogenic infections. In recent research findings, it was established that only 5 grams of Vitamin C that is enclosed in liposome is as effective as up to 50 grams of the same that is administered directly without the liposome casing.
The LET is a clinical therapy that is associated with numerous strengths as compared to most commonly used drug administration methods. The nutrients and active ingredients are transported directly to the point of the target, leaving little or no interference with the normal body functioning such as blood pressure, the balanced body pH, and other normal metabolic functions. This makes a lot of sense for the patient is able to recover with fewer side effects associated with the drug. It also comes with economic sense as it cuts down on the cost of clinical therapy.
The introduction of phospholipids into the body comes with its own merits. It eliminates serum lipids, diminishes platelet collection, cholesterol, triglyceride, and expands promotes good cholesterol. Notwithstanding this, it helps support immunity, enhances nature of memory, secures the liver and enhances one's capacity to persist exercise.
Even with all these potential advantages, the studies are not conclusive of the safety of this technology. It is also advisable to design the most effective drug administration that is a cocktail of this and other conventional methods that have been used for centuries to attain the best results.
Unlike other methods like in the use of needles for injections, swallowing of tablets, capsules or even syrup where the drug or the substance has to directly pass through the body tissues that are not the direct target, leading to possible reactions, loss of concentration or even interfering with the normal body functions, this method of drug administration employs an ingenious solution to drug administration. In fact, clinical trials have proven that it is better way of treating racehorses without the need of needles or syringes.
In this technology, phospholipid membrane (liposome) is used to encase a prescribed amount of pharmaceutical compounds with the aim of preventing their degradation as they pass through the gastrointestinal tract. This option offers an excellent transfer mechanism that is not available with other drug administration methods. The method is now used in other fields other than in clinical therapies. These include supplement manufacturers, topical moisturizers and the beauty product manufacturers among others.
Phospholipid liposome comes in to withstand the impact of anybody radicals, particularly the enzymes, the body moisture, the alkaline fluids, and the salts within the digestive tract. The compounds being introduced in the body are well protected all the way to the time they are delivered to the targeted organs or the tissue. At this point, a chain reaction takes place, allowing the cells to open up their walls, allowing the compound into the intracellular medium to commence the process of treatment.
The technology is so effective since it stems from the ability of liposomes to penetrate the cell walls and most other infective microorganisms. This gives it a winning advantage against most of pathogenic infections. In recent research findings, it was established that only 5 grams of Vitamin C that is enclosed in liposome is as effective as up to 50 grams of the same that is administered directly without the liposome casing.
The LET is a clinical therapy that is associated with numerous strengths as compared to most commonly used drug administration methods. The nutrients and active ingredients are transported directly to the point of the target, leaving little or no interference with the normal body functioning such as blood pressure, the balanced body pH, and other normal metabolic functions. This makes a lot of sense for the patient is able to recover with fewer side effects associated with the drug. It also comes with economic sense as it cuts down on the cost of clinical therapy.
The introduction of phospholipids into the body comes with its own merits. It eliminates serum lipids, diminishes platelet collection, cholesterol, triglyceride, and expands promotes good cholesterol. Notwithstanding this, it helps support immunity, enhances nature of memory, secures the liver and enhances one's capacity to persist exercise.
Even with all these potential advantages, the studies are not conclusive of the safety of this technology. It is also advisable to design the most effective drug administration that is a cocktail of this and other conventional methods that have been used for centuries to attain the best results.
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