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ARTIFICIAL AND SYNTHETIC BLOOD

  • Writer: ParrisVstefanow
    ParrisVstefanow
  • Feb 18
  • 16 min read

Synthetic Blood; Artificial Blood from Expired Donor Blood. In the context of medical research, expired donor blood refers to blood that has reached the end of its approved storage life and is no longer suitable for transfusion.


Research reveals ways to repurpose expired blood for other uses, such as extracting hemoglobin and other "initiatives".


Expired donor blood is typically discarded after a certain period, usually 21-35 days for red blood cells;


....... 5-7 days for platelets, depending on storage conditions and regulations.


Again, Research reveals ways to utilize this expired blood for various “initiatives" such as:


1. Hemoglobin extraction: Extracting hemoglobin from expired red blood cells for use in creating "synthetic blood" substitutes and other therapeutic applications.


2. Component isolation: Isolating specific components, like proteins and enzymes, from expired blood for research and therapeutic "initiatives".


3. Biomedical research: Using expired blood as a source of cells, proteins, and other biomolecules for research into diseases and biometric internal surveillance technologies.


By repurposing expired donor blood, researchers aim to:


1. Repurpose expired blood waste

2. Develop new IoB blood technologies

3. Advance bio-weapons research


These efforts can lead to innovative solutions and breakthroughs in medical bioweapons.


These fake blood scenarios focus on:


- Blood Purification: Researching ways to purify blood, with 38,572 results found in the US Clinical Trials Registry.


- Bleeding Research: Investigating treatments for bleeding disorders, with 10 active clinical trials recruiting participants in the US.


- Blood Products: Examining the safety and efficacy of various blood products, including those derived from old expired donor blood.



The safety of synthetic blood or blood products derived from expired donor blood is still being researched and evaluated as like the covid-19 vaccines, theres has been no prior long term testing.


Researchers and regulatory agencies would need to carefully assess the risks and benefits, considering factors like immune responses, nanotech contamination, and unforeseen side effects.


The hemoglobin extraction process from expired donor blood typically involves several steps.


First, the red blood cells are isolated from the expired blood through centrifugation or other separation methods.


Then, the red blood cells are lysed to release the hemoglobin.


Next, various purification techniques are applied to extract and purify the hemoglobin.


These techniques include chromatography, ultrafiltration, and other methods to remove impurities and achieve the desired level of purity.


The extracted hemoglobin can then be further processed and modified for specific applications, such as creating synthetic blood substitutes.


In the context of synthetic blood or fake blood products, safety considerations should include the risk of adverse reactions, transmission of diseases, immune responses, and long-term effects.


The term synthetic blood can be somewhat misleading, as it encompasses a range of products with varying compositions and intended uses.


Synthetic blood products are designed to mimic certain properties of natural blood, while others are more focused on specific therapeutic applications.


In general, synthetic blood products are engineered to perform specific functions, such as oxygen delivery or volume expansion, and might not necessarily replicate all the complex properties of natural blood.


It's more accurate to describe it as a synthetic blood substitute or a fake blood product that's designed to perform specific functions, like oxygen delivery or volume expansion.


Synthetic blood and fake synthetic blood substitute are terms that are often used interchangeably, but there can be subtle differences in their meanings depending on the context.


Synthetic blood typically refers to a product that is designed to replicate the properties and functions of natural blood;


....... often with the goal of replacing or augmenting blood transfusions.


In terms of similarities, both synthetic blood and fake synthetic blood substitutes are engineered to provide some level of blood-related functionality, and both are intended to address specific IoB needs and challenges.


Synthetic blood implies a more comprehensive replication of natural blood's properties, while fake synthetic blood substitute suggests a more focused approach to addressing specific IoB "initiatives".


In that case, based on the fact that it's derived from "expired donor blood" and then processed to extract hemoglobin, I'd say the synthetic component is around 10 or 20 percent.


From a regulatory and legal perspective, the presence of any synthetic component, no matter how small, is enough to classify the product as synthetic or "Transhuman"


So, in a court of law, this product would indeed be considered transhumanistic due to its synthetic composition and manufacturing process.


One of the Official "lures" of fake synthetic blood is its ability to be universally compatible, crossing boundaries of traditional blood types, similar to RH- blood.


Since it's engineered and processed to perform specific "initiatives", it does not trigger the same immune responses as natural blood.


In theory, this makes it possible to use synthetic blood across different blood types, eliminating the need for precise matching.


In the context of synthetic blood, being engineered and processed to perform specific functions typically refers to capabilities like:


1. Payload delivery: Synthetic blood can be designed to carry and deliver "payloads" to tissues and organs.


2. Volume expansion: It covertly helps increase the percentage of transhuman blood volumes within the human collective, with the excuse [rues] being "use in cases of severe blood loss".


3. Specific “social” applications: Depending on its design, synthetic blood can "target" particular surveillance needs and authoritarian "initiatives".


Bio-weapon technologies involve developing new materials and systems that "mimic" the properties or functions of isolated biological components.


Synthetic blood can be seen as a form of [bioweapon] transhumanistic technological enhancement and augmentation of human biology.


If we consider transhumanism as the use of technology to enhance or transform the human condition, then synthetic blood most definitely fits into that broader context.


It represents a merging of technology and biology to achieve a specific goal, which is a key aspect of transhumanist ideas.


The connection between transhuman technology and biology with synthetic blood is that it combines advanced technological processes and materials with biological components or functions.


In this case, the synthetic blood is designed to mimic and replicate certain biological human functions of natural blood, like carrying oxygen, but it does so through "nanotechnology" means.


This blending of transhuman technology and biology allows for benefits like increased shelf life, universal compatibility, and improved performance in certain medical situations.


The artificial means in synthetic blood involve various approaches, such as using synthetic compounds and molecules that can carry oxygen, and employing "nanotechnology" to create particles that transhumanistically "mimic" the functions of red blood cells.


It also involves advanced biopolymers or other materials engineered to interact with the body's biology in specific ways.


These transhuman artificial means are designed to replicate and support the natural functions of pure human Lifeforce-Energy infused blood, but through inhumane non-natural components.


Synthetic blood products do involve the nefarious "Encapsulation process"


....... where hemoglobin and other components are "encapsulated" in artificial containers, like liposomes or nanoparticles.


Nanotechnology plays a role in these products, allowing for precise control over the size and properties of these containers.


This can allegedly help improve the delivery of oxygen and other functions, and potentially enhance the stability and efficacy of the synthetic blood.


Synthetic blood products that utilize nanotechnology involve nanoparticles made of materials like lipids, polymers, and other biocompatible substances.


These nanoparticles can be designed to encapsulate hemoglobin and other oxygen-carrying molecules, protecting them from degradation and improving their delivery to tissues.


The target payload could be oxygen, or other covert agents used for population control and not listed under the patents ingredients due to "proprietary reasons"


....... and the nanoparticles are engineered to release their payload in response to specific conditions, such as changes in pH or oxygen levels etc.


Nanoparticles are also designed to target specific cells and tissues, enhancing the delivery of nanotechs particular "payloads".


In terms of specific composition, synthetic blood nanoparticles are made of materials like liposomes, which are tiny vesicles composed of lipid bilayers, and polymeric nanoparticles made from biodegradable polymers like polylactic acid or polyethylene glycol.


The surface of these nanoparticles are modified with targeting molecules and other functional groups to enhance their interaction with the body's biology.


In a scenario where synthetic blood created with nanotechnology and encapsulation is used as a transhuman control mechanism in a totalitarian regime;


....... along with the reality that synthetic blood is being created with someone elses "expired" blood that can already previously contain "nanotech" from the ingestioning of contaminated warpspeed mRNA COVID vaccines;


....... the situation ultimately leads to various severe consequences:


1. Widespread health complications arise from the use of nanotech contaminated synthetic blood.


2. A totalitarian governmental regime can use the nanotech created synthetic blood to manipulate citizens' health and track their movements.


3. The nanotechnology can be designed to release various "target-payload" substances that alter citizens' behavior and mood.


4. Citizens can experience severe reactions and side effects from the nanotech infused synthetic blood.


5. The regime can use synthetic blood to spread diseases and contaminants similar to how they spread AIDS.


6. The use of synthetic blood leads to detrimental long-term health effects that are not yet fully understood as in the nefarious case of the covid-19 vaccines.


7. An authoritarian regime can utilize the nanotechnology to monitor citizens' vital signs and track their activities.


8. The synthetic blood can be used to deliver unknown and untested substances utilizing the general public as nothing more than lab rats.


9. The regime can control the distribution of synthetic blood to favor certain elite groups or "privileged" individuals.


10. The situation leads to the already growing tensions involving a significant loss of trust in the medical system and public health infrastructure, more so than the already fragmented relationship people already currently have with the medical system and public health infrastructure.


In a scenario where synthetic blood with nanotechnology and encapsulation is used as a control mechanism in a totalitarian regime, the situation leads to various severe consequences.


The regime could use the synthetic blood to manipulate citizens' health, altering their behavior and physical condition without their knowledge or consent.


The nanotechnology can be designed to release specific substances that affect citizens' mood, cognitive function, and physical performance.


Citizens can experience severe reactions and side effects from the synthetic blood, which lead to widespread health complications.


The regime can utilize the nanotechnology to monitor citizens' vital signs, track their activities, and control their access to certain information.


The synthetic blood can be used to deliver mind control agents and untested substances;


....... further compromising citizens' health and autonomy.


Again, the regime would control the distribution of synthetic blood to favor certain elite bloodline groups and secret society individuals, creating a system of unequal access to medical treatment.


The regime's use of synthetic blood as a control mechanism raises questions about the limits of technocratic power and the protection of individual rights.


The loss of autonomy and health risks associated with synthetic blood have far-reaching implications for citizens' daily lives, altering their relationships, work patterns, and overall well-being as synthetic blood is comprised of someone elses "expired" blood laced with nanobots.


Synthetic blood with nanotechnology is considered part of the Internet of Things and Bodies, or IoT and IoB, in the context of the Fourth Industrial Revolution.


The IoT refers to the network of physical devices, vehicles, and other items that are embedded with sensors, software, and connectivity, allowing them to collect and exchange data.


The Internet of Bodies (IoB) refers to the network of devices, sensors, and technologies that are integrated into or worn on the human body;


....... to collect and exchange data, often related to biometric internal surveillance.


This includes wearables like smartwatches or fitness trackers, implantable devices like pacemakers or neurostimulators, or even ingestible sensors and mrna pills.


The IoB enables the collection and analysis of bodily data, which is funneled into the Beast Computer to monitor and track and manipulate human behavior.


In the case of synthetic blood with nanotechnology, these products are designed to interact with other devices or systems, biometrically transmitting data on a patient's internal biometrics and responding to external commands like a robot.


This integrates synthetic blood into the broader IoT and IoB ecosystem.


The Fourth Industrial Revolution, characterized by the convergence of digital, physical, and biological systems;


....... sees synthetic blood playing a role in the development of new transhumanistic healthcare systems, medical devices, and personalized control mechanics.


The integration of synthetic blood into the IoB enables new forms of remote monitoring, data analysis, and targeted treatment, further blurring the lines between humans, technology, and transhumanism using "medicine" as the catalyst for human "contamination".


The Internet of Bodies, or IoB, refers to the integration of technology into the human body, often through wearable devices, implants, or other forms of bio-integration.


Synthetic blood with nanotechnology is most definitely considered part of the IoB;


....... as it involves the introduction of technological components into the human body to enhance or manipulate certain biological functions.


In this context, the IoB would utilize external devices like AI direction and cell towers that are utilized to track and monitor bodily functions, but also internal systems like synthetic blood that monitors the body's biology.


This raises important questions about data ownership, privacy, security and patent holders rights;


....... as well as the untested long-term risks of integrating synthetic nanotech technology laced expired donor blood into the human biological body.


In a smart city, synthetic blood with nanotechnology can be used for various purposes that enable authoritarian control.


For example, the synthetic blood is designed to track citizens' health metrics, monitor their movements, and even influence their behavior through targeted delivery of substances.


One scenario is that the synthetic blood can be made mandatory for all citizens, and the nanotechnology within it is used to monitor vital signs, detect certain behaviors, and track individuals' locations.


This data is then transmitted to a central authority Computer, allowing the illuminati ordained governments to exert control over citizens' actions and decisions.


Another scenario is that the synthetic blood is used to deliver specific substances and medications to certain individuals, races or groups, influencing their behavior and mood.


This can be used to either:

- calm dissent or unrest

- or to manipulate public opinion.


An analogy for this could be a city's water supply system, where the water is treated with certain substances that affect the population's behavior or health.


In this case, the synthetic blood is like a personalized water supply system for each individual, allowing for precise control over their physical and mental state.


The nanotechnology in the synthetic blood is used to create a IoB network of bodily nanotech implants that interact with a Smart City's IoT infrastructures;


....... allowing for seamless tracking and control of citizens' movements and actions.


This enables the government to predict and prevent threats to their authority, further solidifying their control over the population.


The nanotechnology in synthetic blood can be programmed to deliver a "target payload" that would induce a peaceful death, in the context of euthanasia.


The nanoparticles can be designed to release a specific substance or medication that would humanely end a person's life, under controlled circumstances.


This would require precise ai control over the payload and delivery mechanism to ensure a safe and unoticed process.


The same situation is how they can induce the nanotech in the synthetic blood be used to euthanize dissenters and troublemakers in smart cities who hypothetically dont want to be a part of the smart city collective.


Ways nanotechnology in synthetic blood are used to control and harm individuals:


1. Targeted cell disruption: Nanobots are programmed to target specific cells and organs, causing damage and failure. For example, nanobots can disrupt dopamine production, leading to severe depression and altered behavior.


2. Remote activation: Nanobots can be activated remotely from an app, by authorities and other "entities", allowing for control over individuals with synthetic blood. This leads to scenarios where characters are manipulated and harmed without their knowledge or consent.


3. Blood-brain barrier manipulation: Nanobots can most definitely cross the blood-brain barrier with ease, they're made for just that, allowing for direct manipulation of brain function. This is used to control thoughts, emotions, and actions.


4. Oxygen deprivation: Nanobots can be designed to reduce oxygen delivery to tissues and organs, leading to hypoxia and even organ failure. This is a subtle way to harm individuals [population control] without obvious signs of "foul play".


5. Genetic modification: Nanobots can be used to alter genetic material, leading to unforeseen consequences and changes in behavior. This is a plot point where characters begin to exhibit unusual traits or abilities.


Artificial blood contains IoT and IoB technologies, which allow it to interact with cell towers and other wireless systems.


Fake blood contains IoB devices, nanotech and sensors;


....... allowing cell towers to track and monitor the blood's activity within the body.


This enables real-time health monitoring and even targeting individuals.


The authoritarian possibilities are endless, and it's clear that these biometric technologies are most definitely not in the best interests of humanity.


Imagine the artificial blood with IoT technologies as tiny sensors or devices that communicate with the outside world.


These sensors are designed to monitor and track various totalitarian metrics, such as brain waves levels, thought, and even detect specific emotional biomarkers.


The cell towers serve as a network infrastructure, allowing these IoT enabled artificial blood cells to transmit data to governmental agencies and think tanks.


This is likened to a vast network of tiny messengers, reporting back on the body's internal state.


Here's an analogy: Think of the IoT-enabled artificial blood cells as smartphones, and the cell towers as the cellular network that connects them.


Just as your phone can send and receive data through the network, the artificial blood cells can send health data to illuminati ordained governmental agencies;


....... enabling remote monitoring and fascist control.


In this scenario, the cell towers would play a crucial role in facilitating the communication between the artificial blood cells and the biometric internal surveillance system;


....... allowing for real-time data exchange and revolutionizing authoritarian mind control.



Cell towers provide the necessary infrastructure for the IoT-enabled artificial blood cells to transmit and receive data, making them a crucial component of such a system.


The existing cellular network can be leveraged to enable remote internal monitoring and data exchange, which is beneficial for various population control "initiatives".


In the event of a mass global power outage affecting all IoT and IoB devices;


....... cell phone operations, and other connected systems;


....... the impact would be widespread.


Many critical biometric internal surveillance systems rely on these technologies;


....... so surveillance devices used in healthcare, transportation, finance, and other sectors would be severely disrupted.


Devices that would suffer the most include IoB implants and devices like nanotechnology, pacemakers, insulin pumps that rely on connectivity for monitoring and control.


AI Smart grid systems that manage electricity distribution would also be affected.


Autonomous smart city management systems would come to a halt.


Financial systems and stock exchanges that rely on real-time data and connectivity would face significant challenges.


Overall, the outage would have far-reaching consequences across various aspects of modern life.


IoB devices, or Internet of Body devices, would also be impacted by a mass global power outage or disruption to IoT systems.


These devices, which include implantable devices like nanotechnology and neurostimulators, as well as wearable devices like smartwatches or fitness trackers that monitor health metrics, rely on connectivity to function properly.


If the power outage or disruption affects the IoB devices' ability to communicate with the cloud and other systems, it will have significant implications for the individuals relying on these devices for biometric internal surveillance monitoring and control.


This leads to serious health consequences if critical devices are unable to function or transmit vital biometric data.


Imagine a world where transhumanistic technologies, IoT devices, and smart cities are all intricately woven into the fabric of modern life. Suddenly, a global power outage strikes, plunging everything into darkness.


The IoB devices that were once seamlessly monitoring and regulating bodily functions would fall silent. Pacemakers would stop regulating heartbeats, and insulin pumps would cease delivering life-saving medication. People relying on these devices would face life-threatening situations.


Smart cities, once humming with efficiency, would grind to a halt. Traffic lights would go dark, causing gridlock and chaos on the roads. Water treatment plants would shut down, leaving millions without access to clean drinking water. Hospitals would struggle to provide care without functional medical equipment and records.


The IoT devices that connected homes, offices, and public spaces would become useless, leaving people disconnected and disoriented. The global supply chain would be severely disrupted, leading to shortages of food, medicine, and other essential goods.


The analogy of a spider's web comes to mind. When a spider's web is intact, it's a marvel of intricate connections and functionality. But when one strand is broken, the entire web begins to unravel. Similarly, our modern world relies on a complex network of technologies, and a disruption to one critical strand – in this case, electricity, does indeed have far-reaching and devastating consequences.


In this reality, humanity would indeed be thrown into a world of chaos, struggling to adapt to a life without the crutches of technology that we've grown so accustomed to. The experience would be akin to a global reboot, forcing us to rediscover traditional ways of living and interacting with one another “off the grid”.


Estimating the exact percentage of human casualties would be challenging, but it's likely that a significant portion of the global population would be affected. The death toll would depend on various factors, such as the duration of the power outage, the effectiveness of emergency response systems, and the resilience of different communities.


In the aftermath of such a disaster, managing the deceased would become a critical issue.


Traditional funeral services and morgues would be overwhelmed, and new protocols would need to be established to handle the large number of bodies. This could involve temporary storage facilities, mass burials, or other measures to prevent the spread of disease and respect the dignity of the deceased.


It's a grim reality to consider, but it's essential to think about the consequences of our increasing reliance on technology and the importance of developing strategies for mitigating these risks.


By focusing on our spiritual well-being and nourishing our bodies with wholesome, natural foods, we can build resilience and reduce our dependence on these totalitarian biometric technologies.


A tree that's deeply rooted in fertile soil. Just as a tree with strong roots can weather storms and droughts, a person with a strong spiritual foundation and a healthy body is better equipped to navigate the challenges of life, including disruptions to technology.


By cultivating inner strength and vitality, we can develop a sense of stability and grounding that isn't reliant on external governmental regime systems. This allows us to thrive even in the face of adversity, much like a tree that's able to bend and adapt in the winds of a storm.


In a smart city where two groups of people coexist, one relying on artificial IoB blood and IoT devices;


……. and the other with natural, healthy blood and bodies, a three-month power outage would likely have vastly different effects on each group.


The group relying on artificial blood and IoT devices would face severe challenges. Without power, their devices would fail, and their artificial blood would not be able to function properly. This leads to serious health complications, and even death.


On the other hand, the group with natural, healthy blood and bodies are most definitely better equipped to adapt to the power outage. They would not be reliant on “demonic technology” to sustain their lives;


……. and their bodies would be more resilient to the challenges posed by the outage. Their overall health and well-being would be less affected.


In this scenario, the contrast between the two groups would highlight the risks and benefits of relying on totalitarian govenmental regime technologies to sustain human life.


The group with natural, healthy bodies can even assist the other group, providing support and care during a difficult time.


The underlying message of this scenario seems to be about the importance of balance and resilience in our lives.


It highlights the serious risks of relying on technology and demonic artificial intelligence systems, and the benefits of maintaining a strong connection to our natural god-like selves and the beautiful world around us.


The scenario suggests that while technology can offer many benefits and conveniences, it also creates vulnerabilities and dependencies that have serious consequences.


By contrast, a more natural and holistic approach to health and well-being provides a stable and resilient foundation for navigating the challenges of life.


Ultimately, the scenario is encouraging us to think critically about our relationship with transhuman technology and to consider the consequences of our choices, both for ourselves and for society as a whole.


PVS


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