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Synthesise - YouTube

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Molecules suggested for use against HIV:

(Exactly how does it interfere? During the reverse transcription phase, it catalyses changes in the DNA copy of the viral genome, causing mistakes all along the genomic code.)

Molecules from human cells which get incorporated into a particle of HIV virus:

We all live with millions of naturally-occurring, benign bacteria - in our guts, in our colons, etc. There are bacteria found in the key areas where HIV transmission can occur, such as the anal passage and the vagina. Perhaps we can recruit some of these bacteria to destroy or to "mop up" HIV particles?

Molecules suggested for use against HIV:

Molecules from human cells which get incorporated into a particle of HIV virus:

Also attached to the shell (the capsid) are the enzymes which the virus needs to take with it - its protease, reverse transcriptase, and integrase. When a HIV virus particle matures and buds off from the host cell it may also take some "stray" cellular proteins with it - very few sorts of "stray" have been found, including HLA-DR and Beta2-microglobulin.

Two identical strands of RNA are found in the particle: HIV doesn't necessarily need to have two copies of the RNA, but the RNA molecules are naturally attracted to each other and form dimers (loosely-bound pairs of molecules).

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Sistem za ubrizgavanje služi za regulaciju temperature sve: veka trajanja kotla, efikasnosti,održavanje zadate snage kotla i same raspoloživosti sistema. U okviru ovogsistema postoji više vrsta otkaza: otkazi u senzorima, aktuatorima kao i gre

So how come HIV changes so much, yet it's still the same virus? How come it doesn't evolve into completely different viruses with every person, even every cell, it infects? How come it doesn't mutate so much that its genetic code becomes useless gobbledygook, failing to make any new virus at all?

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  • /25/2014Connect to your web server with dynamic ip arduino remotely

    Making of Simian Mobile Disco's video - Synthesise - …

  • Amprenavir is a protease inhibitor.

    10.02.2009 · Behind the scenes SMD exclusive on the making of Synthesise

  • Amprenavir is a protease inhibitor.

    Speech synthesis - Wikipedia

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This rapid natural selection causes a big difficulty for vaccination. If you develop a new therapy for HIV infection - for example a chemical which destroys a lot of the virus particles - then some copies of the virus might mutate and become resistant to the chemical. Resistant mutants are going to be the ones to reproduce themselves more - and these will take over. If you then develop a second chemical to attack these specific mutants, of course there might be another mutation which results in doubly resistant HIV!

RHCP Definition (from source)

Can we develop vaccines which attack the conserved portions of HIV, the parts which need to be held constant in order to maintain virulence? Unfortunately it's not that easy. In the free virus particle many of the important bits are tucked away, so that vaccine molecules can't get at them. The envelope protein gp120 does stick out, of course, and so researchers are working on trying to develop a safe vaccine which targets gp120.

Spinning Dipole (from above) RHCP pattern radiated above.

This rapid natural selection causes a big difficulty for vaccination. If you develop a new therapy for HIV infection - for example a chemical which destroys a lot of the virus particles - then some copies of the virus might mutate and become resistant to the chemical. Resistant mutants are going to be the ones to reproduce themselves more - and these will take over. If you then develop a second chemical to attack these specific mutants, of course there might be another mutation which results in doubly resistant HIV!

Входящая в систему пожарная сигнализации... (5,81 Мб)

Can we develop vaccines which attack the conserved portions of HIV, the parts which need to be held constant in order to maintain virulence? Unfortunately it's not that easy. In the free virus particle many of the important bits are tucked away, so that vaccine molecules can't get at them. The envelope protein gp120 does stick out, of course, and so researchers are working on trying to develop a safe vaccine which targets gp120.

Resonance of a MARUWA hexafilar antenna.

Departmentof Industrial and Enterprise Systems Engineering and the Coordinated ScienceLaboratory, University of Illinois at Urbana-Champaign, Illinois, USA

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