Hematopoietic system restoration as protection against hypoxia in coronavirus
According to WHO, the number of people infected with coronavirus infection in the world has exceeded 2.3 million people.

80% of those infected, especially children, suffer a mild illness like a common cold; 15% become seriously ill and need hospitalization; 5% have the most severe forms with the development of respiratory failure and a high mortality rate from pneumonia.

During the pandemic, it was noted that the greatest risk of developing a severe form of coronavirus infection is observed in people of the older age group - after 60 years. The older the person, the more dangerous the disease goes for him.
Is there a new mechanism for the pathogenic effect of coronavirus on the body?
Recently there was information that pneumonia is not the main cause of death in coronavirus. It was found that the virus affects red blood cells and, in particular, iron-containing protein - hemoglobin.

Hemoglobin is a complex protein the main function of which is the transfer of oxygen from the lungs to all cells of the body, and carbon dioxide, on the contrary, from cells to the lungs. Due to the red blood cells that contain hemoglobin we breathe.

In the course of studies, aggressive proteins were found in coronavirus that bind to the nucleus glands of the molecule and penetrate it. Hemoglobin loses the ability to transport oxygen and remove carbon dioxide from cells and tissues of the body. Total hypoxia develops, leading to organ failure.

Chinese scientists have suggested that the pathogenic effect of coronavirus is significantly weakened or does not appear at all in children, since their hemoglobin is different in biochemical parameters from an adult.

Fetal hemoglobin that present in children in the first months after birth is still produced in utero. It contains 2α and 2γ chains, and adult hemoglobin consists of 2α and 2β chains. Dangerous coronavirus proteins attack the beta chains of an adult and do not harm fetal hemoglobin. It is assumed that, therefore, practically no severe forms of coronavirus are found in children. Coronavirus simply does not have a mechanism for damaging fetal hemoglobin and children have the disease in a mild form (Source).

In adults, fetal hemoglobin is also present, but in very small quantities (about 1%). During intoxication, illness, with oxygen starvation, the amount of fetal hemoglobin in adults can increase. The hematopoietic system located in the bone marrow is responsible for this.
Oxygen deficiency (hypoxia), mortality of the elderly people and the mechanism of fetal hemoglobin production.
With weakening of oxygenation (oxygenation) of the blood, the body reacts in several standard ways: it increases the cardiac output (increasing the speed of blood flow), increases pulmonary ventilation, increases the number of red blood cells and hemoglobin, and activates red blood cell growth and hematocrit growth. In addition, there is a genetic mechanism that enhances the synthesis of fetal hemoglobin in both children and adults (Source). The astimated difference is only that in children there is more fetal hemoglobin, and in adults less, and due to age, the working capacity of the hematopoietic system of older people does not allow to develop the required number of red blood cells with fetal hemoglobin quickly to fully counter hypoxia. As a result, with a coronavirus infection, an elderly person's hematopoietic system is overloaded, blood viscosity increases, the heart and lungs wear out, resulting in many serious consequences and, often, death due to suffocation, heart failure, lung or other possible cause coronavirus.
Features of hematopoiesis in young and old ages
All hematopoietic cells, including red blood cells, are formed from stem cells of the red bone marrow, which are key for normal blood formation, maintaining health and immunity. This is a scientific fact.

With the age, there is a tendency to a decrease in the synthesis of blood cells due to dystrophic changes in the structure of the bone marrow: the proportion of the fatty part of the bone marrow increases, the number of hematopoietic progenitor cells decreases. If a newborn has 1 stem cell per 10 thousand ordinary cells, then after 50 years 1 stem cell serves 500 thousand ordinary cells. The load is 50 times greater. Bone marrow performance decreases, the load on it increases and the body cannot withstand the disease in full force.

In an elderly person, bone marrow performance and, as a result, the ability to produce new red blood cells with hemoglobin and fetal hemoglobin are reduced, primarily due to a reduction in the number of stem cells.


SYNTHESIT helps the hematopoiesis of mammals
An innovative product SYNTHESIT can come to the aid of a depleted bone marrow, which is able to help the mammalian organism increase the number of cellular elements of all hematopoietic sprouts in the bone marrow several times. In the course of experimental studies on the basis of the Russian Federal Research Institute of Medical Primatology in Sochi, growth of stem cells - hematopoietic precursors in laboratory mice treated with SYNTHESIT was revealed.

Within a month, the number of sprouts of the hematopoietic system was increased by 2.45 times, which is a phenomenal result. This effect is not available by any other non-surgical or non-drug methods.

Receiving of SYNTHESIT can help the body to activate and restore the functionality of the hematopoiesis system, rapid regeneration of tissues, blood vessels and lung walls, which are affected by the action of coronavirus on the body. Vascular and lung damage data was discovered by pathologist Alexander Ediger.

While taking SYNTHESIT, a person discovered a large number of favorable changes: dyspnea goes away, breathing becomes free, health improves, wounds or ulcers heal quickly, blood liquefies, and immunity increases.

SYNTHESIT - an innovative remedy, a mineral based on iron citrate obtained by cold fusion. This is a fresh, that means a "living" element, which has a powerful biogenic effect and helps the body restore the hematopoiesis system for maximum health and immunity.

The more complete the hematopoietic system is, the more successfully the body responds to hypoxia or another danger, the more successfully it produces new lymphocytes and erythrocytes, including erythrocytes that carry fetal hemoglobin, which is not affected by coronavirus.
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