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“The significance is that the #genetic instructions underlying the construction of different animal body plans, for example, a sea anemone and a human, are incredibly similar." Gibson Lab discusses new #research published in Current Biology. Read here:

16,991 次观看 • 3 年前 •via X (Twitter)

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Evolution says you can turn anything into anything if you tweak it long enough. But that house of cards collapses immediately when you realize what it takes to make even a single cell. They say new cell types arise one mutation at a time. Is that plausible? Here is the issue: Different cell types are created through a massive coordinated stack of genetic information, and it's not all just about DNA sequences. First you need a whole suite of new genetic systems related to the cell: new genes for the cell’s internal systems, instructions for its specific functional role in the body, the regulators that coordinate everything, markers to tell them where to go and when, and the controls that keep the wrong programs off. But the DNA structure itself must also be manipulated. You see, every cell in your body contains the DNA instructions to make any other cell. So how does a bone cell become a bone cell instead of a skin cell? Because of how the DNA is folded. DNA is folded in certain ways for different cell types, so that only the "bone cell instructions" are able to be read by the "cell construction program." The DNA fold decides which programs are open for each cell type. This is critical. If DNA is not folded properly so that specific cell-type information can be read, catastrophe ensues. Then you need placement blueprints, so the cells form in the right place, in the right number, and lock together to form a functional tissue. These developmental instructions are passed from parent to offspring - but research shows that tweaking these master developmental programs ends badly for the child. One mutation at a time cannot invent that entire programming stack and keep it coordinated. Research has confirmed this. To convert one cell type into another in the lab, researchers have to force many changes to happen at the same time in coordination. And even when directed by the researcher, cell conversion almost always fails. Change the sequence without the fold and you cannot get a new cell type. Fold the DNA without the new systems and you can only rearrange old programs. Make the cell without the map and it shows up in the wrong place. Break one layer in the stack and the others do not patiently wait - they fail. So creating a new cell type is not simply "tweak a gene one at a time." It requires a coordinated stack of entirely new programmed instructions: > New suite of internal systems, programmed into the DNA > New functional DNA fold so only the right systems are activated > New mapping blueprints so everything goes where it's needed Step-by-step mutation does not coordinate those layers. It produces broken cells before it produces new ones. Coordination of this level of complexity has only ever been known to come from one place: Intelligence.

Divinely Designed

21,255 次观看 • 2 天前

🚨🚨🚨 Dutch Cancer Researcher and Erasmus Medical Centre Assc Prof Maarten Fornerod discusses DNA contamination in COVID Vaccines. ---------------------------- ...for last 35 years or so I've been working uh in the areas of molecular biology, gene expression, biology, cancer biology and recently in the last years, maybe last 10 years in the context of big data and computational biology... ...when we use genetic vaccines what we do essentially is we're making a complex intervention in a very complex system. It's impossible to predict what happens if you combine these two complex systems, and you get unpredictable effects. .. And the only way to go about this is to do genotoxic research, when you want to introduce a genetic medicine into a human being and that genetotic research has to be independent, it has to be double blind, has to be long lasting. AND ALL THESE HAVE NOT BEEN DONE WITH THE GENETIC CORONA VACCINES! if there's a vaccine, there's a little bit of DNA in there upon injection that is very, very rapidly degraded by the human body. However if it's protected and in a lipid nanoarticle it can very efficiently be transduced in the cell... I've been doing this this many, many times. This is called lipofection and it's a very efficient way to introduce DNA into a cell. ...Many people think that this is not possible. But I've been working in nuclear transport for many years, I think more than 10 years. So I've been exposed to a lot of molecular cell biology of nuclear cytoplasmic transport. And it's clear that the DNA can enter the nucleus. Now to make things worse, the mRNA vaccine doesn't stay in the arm but it's detected in , in all different organs including the reproductive system. And so partly this is based on animal models, of course we know from Michael Morz that he has detected uh the spike protein in brain, in the heart and it's for sure it's detected in the blood and even in breast milk. ..So there's NO DOUBT that this mRNA vaccine spreads widely in the human body. ..Now from a genetic point of view, there are possible consequences uh of this and the consequences could be a 1. long term disruption of cellular processes that could lead to disease. 2. there's a risk of insertional mutageenesis in somatic cells that can lead to cancer. 3. the insertion mutogenesis takes place in a germ cell which would be a hereditary burden uh on the human population. 4. And you could also think that these um DNAs, could transfect the microbiome and it could possibly lead to bacterial resistance. So these are all possible..the consequences of these genetic vaccines in my view, the shortcomings in this rollout of these vaccines were there was no genotoxic research performed at all. There was no safety studies, on carcinogenic potential of these vaccines. My personal opinion is that it's now not a question of whether, it will integrate in recipient's DNA, but how often it occurs... It's just a numbers game. If you do this in many cells, many persons it will no doubt integrate in cells in human recipients. So the question does it affect the human genome? I would say it probably, I think it most certainly does. And you see Kevin McKernan here and he represented ah a preliminary data where he detected a possible Pfizer DNA in colon cancer biopsy one year after vaccination.

aussie17

126,273 次观看 • 1 年前