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Phase III – Stealth Is.

“In the quietude, you may find solace in knowing.” “In knowing, you will find the solace of quietude.”

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Tag: University of California

Among the damning evidence offered by Black Sun Gazette in it’s article “Obama’s Money“, the list of top 20 financeers of the Obama campaign sticks out like a sore thumb. It’s wrought with the names of America’s elitist corporations, universities and organizations orchestrating the financial stranglehold on the world’s population. Deplorable bribery essentially. Hopefully some will find the list an alarming wake up call.

University of California $1,591,395
Goldman Sachs $994,795
Harvard University $854,747
Microsoft Corp $833,617
Google Inc $803,436
Citigroup Inc $701,290
JPMorgan Chase & Co $695,132
Time Warner $590,084
Sidley Austin LLP $588,598
Stanford University $586,557
National Amusements Inc $551,683
UBS AG $543,219
Wilmerhale Llp $542,618
Skadden, Arps et al $530,839
IBM Corp $528,822
Columbia University $528,302
Morgan Stanley $514,881
General Electric $499,130
US Government $494,820
Latham & Watkins $493,835

Vatjobs
Viruses that mimic supportive nerve tissue may someday help regenerate injured spinal cords. While other tissue-engineering materials must be synthesized and shaped in the lab, genetically engineered viruses have the advantage of being self-replicating and self-assembling. They can be designed to express cell-friendly proteins on their surfaces and, with a little coaxing, be made into complex tissuelike structures. Preliminary studies show that scaffolds made using a type of virus called a bacteriophage (or phage) that infects bacteria but cannot invade animal cells can support the growth and organization of nerve cells.

Researchers working on tissue engineering hope to eventually be able to use a patient’s own cells to grow replacement tissue for damaged hearts, livers, and nerves. But mimicking the structure and function of the body’s tissue has proved difficult. Matrices of supportive, fibrous proteins sustain the cells of the heart, lungs, and other tissues in the body. These scaffolds provide both structural support and chemical signals that enable an organ or nerve tissue to function properly.

Some biological engineers are using scaffolds made of polymers to try to mimic the supportive matrix of real tissue. Seung-Wuk Lee, a bioengineer at the University of California, Berkeley, has turned to viruses instead. “Viruses are smart materials,” he says. “Once you construct the genome, you can make billions of phages, and they’re self-replicating materials.” The phage that Lee is working with, called M13, is long and thin like the protein fibers that make up the cellular matrices inside the body.