Regenerative Medicine: Broader Frontiers for Research

· 2 min read
Regenerative Medicine: Broader Frontiers for Research

Regenerative medicine provides the potential to be regenerative rather than merely palliative or symptomatic treatment. This permits therapeutic outcomes which were previously impossible to become achieved. In addition, weight loss clinics in Tijuana provides the prospect of fewer serious side effects than existing products and therapies because it uses existing processes in human biochemistry.
Our capacity to restore damaged tissues and organs today relies upon three large categories of interventional approaches:



medical devices/artificial organs, in which tissue function is substituted for entirely synthetic constructs and machines;
tissue engineering and biomaterials, by which temporary scaffolds are used to bridge large tissue-gap defects;
cellular therapies, including the transplantation of stem cells and genetically manipulated cells for the repair of damaged or diseased tissue.
This approach is extremely important nowadays, when estimated life goes along with quality of life. The quantity of patients requiring a lifesaving transplant constantly over-exceeds the amount of organs available for donations and Regenerative Medicine has the potential ability to solve this shortage problem.

Also, the matching between organ's cells and also the patient fixes another major problem that complicates much more transplant procedures: organ rejection.

I quickly touched rejection earlier in the following paragraphs.

Rejection is warded off because cord blood could be safely infused back without having to be rejected through the individual's immune system.

The use of cord blood stem cells has been studies already in healing conditions as brain injuries or Type 1 Diabetes and other treatments are under investigation and research, as strokes and hearing difficulties.

Particularly interesting happens of the Nervous system. Studies conducted in animal models, demonstrated that cord blood stems cells can migrate to the area where brain injury is located, significantly lowering the area. Also, the injection of human cord blood stem cells into animals impacted by serious strokes, stimulated new vessels and neurons creation within the brain.

Also, being a father since couple of months, I have been recently involved in to a new prevention system, that I should rather call a kind of "store your lifejacket inside a safe place" prevention, hoping that you'll never need it in the future!

I'm discussing the cryogenic store of cord stem cells into dedicated storage Banks. A wide range of therapeutic uses could be covered so far, including autologous use, heterologous or allogenic use, HLA and family use.

Since studies making great strides about this, I believe it's reasonable to visualize more and more sophisticated therapies will be added in the coming future, along with improvements to existing ones.

If you like, it's just like paying auto insurance hoping nothing bad will ever happen and feeling blessed or fewer unfortunate when something bad actually happens.