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stem cells

Diabetes disease treatment using stem cells

Diabetes disease treatment

Diabetes disease treatment using stem cells a great idea for all age groups

Diabetes disease treatment using stem cells: The usefulness of stem cells

Various research has been established that most of the people struggling with diabetes illness have used drugs before. That is to say, substance abuse increases the risk of contracting this disease in many ways. Because of this, we all have a duty to ensure that diabetes and all other drugs addiction related complications are addressed effectively. That is why in this article, doctor Dalal Akoury MD, President and founder of AWAREMED Health and Wellness Resource Center is going to help us understand how diabetes disease treatment can be achieved using stem cells.

If you are struggling with this, you may want to visit us at the facility, and doctor Akoury will offer to you new advanced, patented fetal stem cell transplant-based method for diabetes mellitus which has actually been proved effective in the treatment of both types 1 and 2 diabetes as well as the prevention of diabetes-related complications, which usually affect the eyes, arteries, kidneys and so on. When considering this kind of treatment, it is important to note that alongside the traditional treatment of type 1 diabetes, stem cells are also very important:

  • Restoring the patient’s own β-cells and improving their functional capacity
  • Preventing the destruction of β-cells that are functional at the time of the treatment
  • Preventing diabetes-related complications affecting eyes, kidneys, peripheral nerves, and so on
  • Improving insulin-dependent tissue condition.
  • Ending the auto-aggression of cell-mediated immunity factors against β-cells

Diabetes disease treatment using stem cells: In type 2 treatment, fetal stem cells can help:

  • Restore peripheral tissue sensitivity to insulin;
  • Reduce the dose of hypoglycemic medications.
  • Reduce atherogenic hyperinsulinemia;
  • Improve the condition of arterial walls, which is vital for the prevention of atherosclerosis and complications arising from it;
  • Decrease the production of glucose and pathologic lipids by liver cells;

Diabetes disease treatment using stem cells: Treatment for children

Fetal stem cell therapy is one of the most effective treatments for type 1 diabetes mellitus in children and the only one that can slow down or temporarily terminate autoimmune aggression against pancreatic beta cells.  If treatment is started within 6-8 weeks after onset, it is possible to prolong “honeymoon” period, sometimes for a long period of time. Nonetheless, it is worth noting that in children, fetal stem cell therapy is likely to results in:

  • Prevention of serious diabetes-related complication
  • Prevention of blood sugar fluctuations (no hyper- and hypoglycemia that might cause complications at later stages)
  • Preservation of beta cell production by the pancreas (if treatment is started early after onset)
  • Immune boosting
  • Easier and better diabetes management
  • Better overall health and general development

Finally, doctor Akoury is advising that for better delivery of good result using stem cell therapy, it is worth noting that this therapy is most effective at the early stages of diabetes. That is to say, if you or anyone you know is struggling with this condition, you need not wait until it is too late. The time for treatment is now, taking note that the main criterion for positive effects with diabetes is the long-term management of the disease and the inhibition or prevention of complications.

Diabetes disease treatment using stem cells: The usefulness of stem cells




stem cell therapy

Stem cell therapy can restore function after stroke damage

Recently scientists discovered that a patient could recover, and his or her function can be restored after suffering stroke for a longer period. For this to happen, stem cells in his or her brain have to be stimulated.

Some scientists from UC-Irvine discovered that Transforming Growth Factor-Alpha often abbreviated as TGFa can activated adult stem cells that are in the affected area of the brain to differentiate, move through the brain and last bit not least, repair the damage caused by the stroke.

To prove this can happen, scientists tested a rat that was affected. The Transforming Growth Factor-alpha protein was then injected directly into its brain four weeks after the stroke damage. The recovery was 99%.

Darius Gleason who is a graduate student who was also working on the project mentioned that it is becoming clear that brain isn’t different from any other organ. We just assume that it is somehow superior given to what it can do. The brain is, without a doubt, the organ that decides what the body should do and what it shouldn’t.

Unlike many other organs, a damaged brain is more devastating, in fact, it means the end of your functioning as a human being. However, the latest findings have shown that the brain can indeed repair itself just like any other organ in the body if the stem cells are introduced into it.

A new study recently published that nasal administration of the Transforming Growth Factor-alpha can result in a recovery by 70%. The nasal passage is one of the non-invasive routs that is quite useful for this kind of therapy.


stem cell therapy

In the previous years, researchers from Germany proved that administering adult stem cells through the nose was one of the most effective methods. The new finding is proof that using a stimulating factor can also work best to stimulate differentiation of adult stem cells that are already there.

However, there are several trials still going on in Houston that involves infecting the stem cells into the bone marrow of the patients and their circulatory system. The cells have been seen to move to the area of the brain that is affected and immediately they reach there; they activate the repair process. There are still findings not yet confirmed; the existing results are more promising especially for future stroke patients.

The bottom line

A lot is going on in the stem cell world. The discovery of stem cells has opened the eyes of scientist to another level of medicine. Unlike the past, there is a hope that diseases such as cancer that were not curable in the past can now be cured. And now that it can work on the brain to restore functioning after stroke, it is becoming clear that it holds answers to many other fatal complications.


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embryonic stem cell

Reasons other countries need stem cell therapy

The claim that embryos are formed in a culture dish from which stem cells are harvested is a big lie no one should fall for. The truth is, stem cells are obtained from the fetuses that are aborted or eggs that are already fertilized but are leftovers obtained from in vitro fertilization. These are issues that were to be thrown away simply because they were not going to become human beings.

Embryonic stem cells however how much politics is trying to put it down, has made future medicine quite hopeful. The moment a patient is diagnosed with cancer whether pancreatic or liver, he or she is unlikely to make it past one year if the traditional methods are used.

If treated using embryonic stem cells and in a good fertility such as Beijing Great Wall International Cancer Centre, he or she has an 80% and above chance of survival. This is one of the things that makes the debates around it quite questionable?

God gave use everything, and now he is giving the world a chance to beat some of the fatal diseases such as cancer that previously had no cure. Why not take it? How the morals are applicable in eliminating what could save millions of lives?


embryonic stem cells

The good news is, there are some countries that have taken keen measures to ensure that the patients going through the procedure are safe. Here are some of the reasons it should also be practiced in other countries.

  1. No side effect has been reported since embryonic stem cells stepped into the medicine world. The Beijing Great Wall International Cancer Centre has been using this technology for the year 2003 and had saved up to 10, 000 lives.
  2. The cells are only manufactured under surgical conditions that are sterile and obtained from eggs that are aged between 15 to 56 days.
  3. The processing and testing of each stem cells take up to two months when they are genetically tested for side effects, defects, and any other complications. If found unsuitable for use, they are discarded.
  4. These cells are frozen at a -196 degrees and kept in liquid nitrogen to prevent them from mutating and restored to the normal temperature of the human body before they are transplanted.
  5. Patients are taken through a thorough clinical, diagnostic treatment and medical counseling right after the procedure. One of the good things about embryonic stem cells is that they are hardly rejected by the body.

If you are looking for more information, you can get in touch with the Beijing Great Wall Cancer Centre whose services are now offered in the English language. The portal is named Stem Cell China.


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stem cells

Stem cell for regrowing cartilage

Approximately 20 to 40 million Americans suffer Osteoarthritis which is also one of the most popular forms of arthritis. This complication involves an early-stage deterioration of articular cartilage. Cartilage is simply a connective tissue without nerves or blood vessels.

One of the symptoms is the pain that results from inflammation caused by the production of destructive enzymes and can also be influenced by biomechanics.

In the previous year’s treatment of osteoarthritis used to be symptomatic that involved injections of glucocorticoids in the joints, oral ingestion of inflammatory drugs or injection of visco-supplements that acted as intra-articular lubricants. Unfortunately, these methods were not as safe as they were claimed to be. They were linked to several potential side effects and the worst; they weren’t as effective as they were assumed to be.

In the year 1990’s scientists developed an interest of creating osteoarthritis drugs. Unfortunately, their efforts weren’t successful.

Stem cells for regrowing cartilage have become a center of interest. However, there are a few issues that need to be addressed. Many people still question which kind of stem cells are to be used and those that shouldn’t. There are also a few questions about how stem cells would work for regrowing cartilage, potential risks, how their productivity can be enhanced and more.


stem cells

Recently, there was a breakthrough in the area of human pluripotent stem cells. It was originally established in the year 2007 by Shinya Yamanaka; Yamanaka was able to obtain adult stem cells. He then reprogramed them to work as cord blood stem cells. The results were stem cells that could differentiate to form any cells in the human body. However, the procedure has been accompanied by several issues.

Currently, a scientist can obtain mesenchymal stem cells that are found in the bone marrow. These stem cells work just like any other stem cell if placed in a correct environment together with growth activators.

Mesenchymal stem cells can perform a variety of functions, but can be limited to several organs. The good news is, it works for cartilage. However, it isn’t easy judging whether the procedure is as effective as it is assumed simply because their findings aren’t clear. It has also been realized that using MSCs in areas that have no cartilage may result in some complications.

It is, however, evident that the effectiveness of this procedure is short term and safe considering several factors such as improvements of cartilage. There are also no reported risks of cancer which has been one of the issues revolving around the use of pluripotential stem cells.


Currently, we can say that MSCs is the best approach that is obtained from the bone marrow plus many growth factors derived from plasma that is rich in platelet. For a successful harvesting to take place, use of ultrasound guidance by a professional is highly advised.


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embryonic stem cells

Reasons you need to start storing and growing your embryonic stem cells

There are some reasons scientists are pushing for embryonic stem cells use which leads to the question, what is so special about these stem cells? What makes them better than others?

Embryonic stem cells are quite similar to adult stem cells. What makes them different is that fact that they are still young and can differentiate to form all kinds of body cells. This characteristic enables them to be used to treat a variety of illnesses that include, spinal cord injury, heart failure, diabetes or Alzheimer’s disease.

Scientist thinks that this is possible simply because they can change to any cell in the human body. In certain cases, physicians grow cells in the laboratory that will be used to replace the cells that are either damaged due to an injury or just old to perform their roles.

However, there is still a lot of research being done to find out if this therapy can be used to cure illnesses. Due to this, there is are clinical trials taking place in the US and other countries. In addition to their ability to treat several complications it has also been proven that human embryonic stem cells can be used to recover from surgery, heal burns wound and more.

If you are an in vitro fertilization patient, there are high chances you may have more than one embryo you are planning to use in pregnancy. If you find out that they are of an inferior quality, you might no longer want to use them.


embryonic stem cells

When this happens, you might want to grow your discard frozen embryos to form human embryonic stem cells. Just like physicians do when banking cord blood samples, these embryonic stem cells can be kept for future use. Science has proven that, provided the human embryonic stem cells are kept in a -320 degrees Fahrenheit liquid nitrogen, they’ll be able to last a lifetime.

Why do you need to store your embryonic stem cells?

Your cord blood stem cells created will be genetically identical to you are anyone related to you by 50%. The fact that they are created or obtained from a young embryo, it is often assumed that their immune identity isn’t fully functional.

This might be preserved to a point where the cord blood cells can be grown to form specific cells in the body. As a result, the body of a person who is related to you won’t be able to reject simply because they won’t be able to identify it as an outside object.

The bottom line

Having your cord blood stem cells stored may come in handy in future. One of your family members might need an organ replacement, tissue repair and much more, but finding a donor that matches him or her might not be easy, and this is where your human embryonic stem cells might find their use.


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