新的mRNA-COVID疫苗為你的身體注入了一個操作系統,Moderna承認這不是陰謀論
The New mRNA COVID Vaccines Inject an Operating System into Your Body – Not a Conspiracy Theory, Moderna Admits It
新的mRNA-COVID疫苗為你的身體注入了一個操作系統,Moderna承認這不是陰謀論!- Prepare For Change
January 13, 2021
2021年1月13日
by Edward Morgan
by Brian Shilhavy
作者:Edward Morgan
作者:Brian Shilhavy
Our first article of 2021 featured a video of an interview with Catherine Austin Fitts, titled: Catherine Austin Fitts Explains how the Globalist Billionaires and Technocrats are Planning on Taking Over the Planet, and How We can Stop It.
我們在2021年的第一篇文章中播放了一段採訪凱瑟琳·奧斯汀·菲茨的視頻,題目是:凱瑟琳·奧斯汀·菲茨解釋了全球億萬富翁和技術官僚是如何計劃接管地球的,以及我們如何阻止它。
In this interview, Catherine compared the new mRNA COVID vaccines to a computer operating system, stating that just like computer operating systems such as Windows, that there would be a “back door” where the technocrats will be able to control our bodies through regular “updates.”
在這次採訪中,凱瑟琳將新的mRNA-COVID疫苗與計算機操作系統進行了比較,她說,就像Windows等計算機操作系統一樣,技術官僚們將有一個“後門”,可以通過定期的“更新”來控制我們的身體
I thought it was a brilliant analogy of what the technocrats seek to accomplish with this new class of vaccines.
我認為這是一個很好的類比,技術官僚們試圖用這種新型疫苗來實現什麼。
Well, it turns out this was NOT an “analogy” at all! Moderna, the manufacturer of one of the COVID mRNA vaccines that has currently been issued emergency use authorization, has actually published on their website that this is true: the mRNA vaccine injects an “operating system” into your body that they call “The Software of Life.”
原來這根本不是“類比”!目前已經獲得緊急使用授權的covidmrna疫苗的製造商Moderna在他們的網站上公佈了這一點:mRNA疫苗將一個“操作系統”注入你的身體,他們稱之為“生命的軟件”
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趨向
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The Globalists have become so bold, and the human masses have become so compliant, that they are no longer doing these things in secret, but right out in the open for all to see.
全球主義者變得如此大膽,人類大眾變得如此順從,他們不再秘密地做這些事情,而是公開地讓所有人看到。
mRNA Platform: Enabling Drug Discovery & Development
modernatx.com
mRNA平台:促進藥物發現和開發modernatx.com網站
Enabling Drug Discovery & Development
促進藥物發現和開發
We built Moderna on the guiding premise that if using mRNA as a medicine works for one disease, it should work for many diseases. And, if this is possible – given the right approach and infrastructure – it could meaningfully improve how medicines are discovered, developed and manufactured.
我們建立現代醫學的指導前提是,如果用mRNA作為藥物治療一種疾病,它應該治療多種疾病。而且,如果這是可能的-給予正確的方法和基礎設施-它可以有意義地改善如何發現,開發和製造藥物。
Our Operating System
我們的操作系統
Recognizing the broad potential of mRNA science, we set out to create an mRNA technology platform that functions very much like an operating system on a computer. It is designed so that it can plug and play interchangeably with different programs. In our case, the “program” or “app” is our mRNA drug – the unique mRNA sequence that codes for a protein.
認識到mRNA科學的廣泛潛力,我們著手創建一個mRNA技術平台,其功能非常類似於計算機上的操作系統。它的設計使它可以與不同的程序交換即插即用。在我們的案例中,“程序”或“應用程序”是我們的mRNA藥物——編碼蛋白質的獨特mRNA序列。
We have a dedicated team of several hundred scientists and engineers solely focused on advancing Moderna’s platform technology. They are organized around key disciplines and work in an integrated fashion to advance knowledge surrounding mRNA science and solve for challenges that are unique to mRNA drug development. Some of these disciplines include mRNA biology, chemistry, formulation & delivery, bioinformatics and protein engineering.
我們有一個由幾百名科學家和工程師組成的專門團隊,專門致力於推進Moderna的平台技術。他們圍繞著關鍵學科組織起來,以一種綜合的方式推進mRNA科學的知識,並解決mRNA藥物開發特有的挑戰。其中一些學科包括mRNA生物學、化學、製劑與傳遞、生物信息學和蛋白質工程。
Our mRNA Medicines – The ‘Software of Life’
我們的信使核糖核酸藥物 - 生命的軟件
When we have a concept for a new mRNA medicine and begin research, fundamental components are already in place.
當我們有了一個新的mRNA藥物的概念並開始研究時,基本的組成部分已經就位。
Generally, the only thing that changes from one potential mRNA medicine to another is the coding region – the actual genetic code that instructs ribosomes to make protein. Utilizing these instruction sets gives our investigational mRNA medicines a software-like quality. We also have the ability to combine different mRNA sequences encoding for different proteins in a single mRNA investigational medicine.
一般來說,從一種潛在的mRNA藥物到另一種藥物的唯一變化是編碼區,即指示核醣體生成蛋白質的實際遺傳密碼。利用這些指令集使我們的研究藥物具有軟件般的質量。我們也有能力將編碼不同蛋白質的不同mRNA序列組合在一個單一的mRNA研究藥物中。
We are leveraging the flexibility afforded by our platform and the fundamental role mRNA plays in protein synthesis to pursue mRNA medicines for a broad spectrum of diseases.
我們正在利用我們的平台所提供的靈活性和mRNA在蛋白質合成中所起的基礎性作用來尋求治療廣泛疾病的mRNA藥物。
Overcoming Key Challenges
克服關鍵挑戰
Using mRNA to create medicines is a complex undertaking and requires overcoming novel scientific and technical challenges. We need to get the mRNA into the targeted tissue and cells while evading the immune system.
利用mRNA製造藥物是一項複雜的工作,需要克服新的科學和技術挑戰。我們需要讓mRNA進入靶組織和靶細胞,同時避開免疫系統。
If the immune system is triggered, the resultant response may limit protein production and, thus, limit the therapeutic benefit of mRNA medicines.
如果免疫系統被觸發,產生的反應可能會限制蛋白質的產生,從而限製藥物的治療效果。
We also need ribosomes to think the mRNA was produced naturally, so they can accurately read the instructions to produce the right protein. And we need to ensure the cells express enough of the protein to have the desired therapeutic effect.
我們還需要核醣體來認為mRNA是自然產生的,這樣他們就可以準確地閱讀指令來產生正確的蛋白質。我們需要確保細胞表達足夠的蛋白質來達到預期的治療效果。
Our multidisciplinary platform teams work together closely to address these scientific and technical challenges.
我們的多學科平台團隊緊密合作,共同應對這些科技挑戰。
This intensive cross-functional collaboration has enabled us to advance key aspects of our platform and make significant strides to deliver mRNA medicines for patients.
這種緊密的跨職能合作使我們能夠推進我們平台的關鍵方面,並在為患者提供mRNA藥物方面取得重大進展。
Sources:
資料來源:
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