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The Fundamentals On Mitochondrial Vitamins

By Tracie Knight


Health global recent research demonstrated a vast 60% of adult and children who suffers from deficiency diseases. The focus on mitochondrial vitamins touches so much on vitamin D. The patients were diagnosed with problems on muscle and bone fatigue and rickets. This essential blood nutrient is derived from sun energy and other food such as fish. The mitochondrial has vitamin C and D.

The bodily movement of the human being is assisted by the functioning of the mitochondria. This has been implied to be some sort of battery cells in human body. This cell organelle utilizes glucose and oxygen that are mechanically broken down to provide energy for muscle movement. Hence, deficiencies in vitamin D will lead to none functioning of cell organelle thus arise of diseases such as rickets.

The Adenosine Triphosphate usually abbreviated as ATP is the form of energy that is adamant on the movement of human muscles. The cells in the muscles use the hormone phosphocreatine to produce the ATP. The mitochondria aids the regeneration of this phosphocreatine once the muscles contract. The low levels of Vitamin D affect the functions of this cell organelle.

Role of Vitamin D in health issues are emerging. This is with provision of tests carried out on patients where, oral dosage on patients was administered. It was deduced that when taken for a period of 10-12weeks, it help to increase nutrients in the human body. This improvement induced a decreased recovery time of phosphocreatine and functioning of batteries cell.

Vitamin C helps to improve immune system and prevents inflammation and formation of scurvy. Its deficiency causes problems such as gum disease and hair loss. On relation of this important nutrient with cell organelle, it was recently identified in GLUT10, a glucose transporter that transported oxidized vitamin C. This glucose helps in protection of cell organelle against oxidative stress.

Its discovery and survival in cell organelle has been used to comprehend on hereditary causes of di arterial disorder tortousity syndrome of the connective tissues. Cell imbalances of reactive chemical molecules cause oxidative stress, this imbalance contain the ability of unit organelle to detoxicate and repair worn out tissues and the reactive oxygen species.

Mitochondrion in most cases is thought to be the major source of reactive oxygen species. It also helps in recycle of dehydroascorbic acid. Researchers have not yet understood the molecular mechanism underlying the uptake of dehydroascorbic acid by the mitochondrion. Abnormalities in the GLUT10 in some cases may lead to arterial tortousity syndrome. Findings on the research has also helped in provision of results useful in understanding of relationship between type 2 diabetes, GLUT10 and reinforcement of ROS and DHA.

In order to boost functioning of your body tissues and cells, you need to take food rich in these vitamins. Dehydroascorbic acid is found in vegetables such as spinach and cabbages, fruits such as strawberry and oranges. Always check on your diet, for this is an advice that you should put in place. On where you do not have well conversant knowledge on amount to be taken daily, go for medical advice from your personal doctor.




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