perjantai 13. maaliskuuta 2020

Why Turmeric is THE Best Natural Anti-Inflammatory Agent

  • What's The Real Difference Between Turmeric And Curcumin?
  • What is Turmeric?
  • How Turmeric Treats Inflammation?
  • Why Turmeric better than Many anti-inflammatory drugs?
  • Examples How turmeric Combats Inflammation in Various Disorders
  • Cardiovascular diseases
  • Diabetes
  • Arthritis
  • Autoimmune diseases
  • Cancer
  • Gastrointestinal problems
  • Asthma
  • Inflammatory eye diseases
  • Kidney transplantation
  • Turmeric Dosage



Why Turmeric is THE Best Natural Anti-Inflammatory Agent






Inflammation is the defensive response of the body against cell damage or microbial infection to remove the cause of injury and repair the injured tissues.
Inflammation is characterized by redness, heat, pain and swelling.
Redness and heat are due to increased blood flow in the expanded blood capillaries of the affected area.
Swelling is caused by increased permeability of blood vessels that causes the outflow of plasma proteins and the fluid into damaged tissue allowing them to swell up. Some of these proteins increase the pain sensitivity.
Neutrophils (white blood cells) migrate from bloodstream to site of injury where they release the toxins and antimicrobial proteins to kill the pathogen.
Neutrophils stimulate pro-inflammatory cytokines to maintain inflammatory response and stimulate systemic inflammation in form of fever.
Some common disorders associated with inflammation are arthritis, allergies, gastrointestinal problems, muscle problems, asthma, autoimmune diseases, cancer, atherosclerosis, inflammatory eye disorders etc.

It is the common symptom associated with diseases such as arthritis, psoriasis, asthma, and bronchitis allergies, gastrointestinal problems, muscle problems, asthma, autoimmune diseases, cancer, atherosclerosis, inflammatory eye disorders etc..
It causes symptoms such as redness, stiff and aching joints, fever, headache, loss of appetite and fatigue.

What is Turmeric?

Turmeric is a yellow coloured powder obtained from the rhizomes of the plant, Curcuma longa belonging to the Zingiberaceae (ginger) family.
Ayurveda contains an age-long documented therapeutic use of turmeric as an anti-inflammatory agent.
Curcuminoids are the active compounds in turmeric which are responsible for its medicinal property.

There are mainly three curcuminoids:
curcumin (diferuloylmethane), demethoxycurcumin, and bisdemethoxycurcumin. Curcumin gives a yellow colour to turmeric.


Use of turmeric for inflammation treats all of these symptoms efficiently in par with the anti-inflammatory drugs.
The active ingredient curcumin present in turmeric plays role in the treatment of various ailments and associated symptoms.
Curcumin treats cold, cough, bronchitis, asthma, arthritis and even cancers. Here is an overview of the use of turmeric for inflammation, a common symptom associated with various ailments.


How Turmeric Treats Inflammation?

<The following section is slightly technical in natures as it elaborates how turmeric combats inflammation in the body>
Curcumin inhibits the action of different enzymes, transcription factors, cytokines and adhesion molecules involved in the inflammatory pathway.
These include phospholipase, lipoxygenase, cyclooxygenase 2, leukotrienes, tumour necrosis factor, thromboxane, prostaglandins, nitric oxide, interferon-inducible protein collagenase, monocyte chemoattractant protein-1, and interleukin-12.

Mode of protection provided by curcumin against different inflammatory molecules has been elaborated as follows:

Neutrophils

Neutrophils are a kind of white blood cells which are activated as the first line of immune defence against the presence of foreign substances in the body such as pathogens.
Abnormality in the natural programmed death of these neutrophils is often associated with disorders like sepsis and acute lung injury.
The effect of Curcumin on neutrophil apoptosis (programmed cell death of neutrophils) was studied.
It suppressed the migration of neutrophils from lung endothelial (outer lining of the blood vessel) cells to the outer lining of lungs.
This migration was earlier responsible for the delay in death of neutrophils. Consequently, curcumin increased neutrophil apoptosis.
Neutrophils possess myeloperoxidase activity.
Myeloperoxidase is an enzyme that is responsible for the microbe-killing action of neutrophils. Curcumin treatment reduced the release of myeloperoxidase enzyme which is indicative of the decline in neutrophil activation.

PPAR-γ

The beneficial effect of curcumin is facilitated by the upregulation of peroxisome proliferator-activated receptor-γ (PPAR-γ) activation.
PPAR-γ regulate the expression of genes in fat tissues, large intestine and macrophages (immune cells that engulf the foreign substances in the body).
After sepsis (severe whole-body inflammation), PPAR-γ protein levels drastically decreases to half in the liver.
Pretreatment of septic rats with curcumin reversed the reduced levels of PPAR-γ to normal.

Arachidonic acid metabolic pathway

Arachidonic acid is released in the outer lining of the cell by enzyme, phospholipase A2 (PLA2). This acid can be metabolized through either COX or LOX pathway.
Cyclooxygenase is the chief enzyme in the COX pathway that converts arachidonic acid to prostaglandins (important in the expansion of blood vessels resulting in redness and heat) and thromboxanes (constrict blood vessels to allow clot formation).
In LOX pathway, lipoxygenases (LOX) convert arachidonic acid into leukotrienes (mediator of inflammation).
Curcumin acts against PLA2, COX-2, and 5-LOX activities to prevent inflammation.

Cytokines and other inflammatory molecular signals are responsible for activating COX-2 at sites of inflammation.
Overexpression of COX-2 gene has been found in various cancerous cells such as in colon, breast, head and neck, lung, pancreas etc.
In this way, inflammation and tumor formation are interrelated. Curcumin exerts its cancer preventive effect through its anti-inflammatory activity only.
Curcumin acts against inflammation through its ability to prevent cyclooxygenase-2 (COX-2), lipoxygenase (LOX), and inducible nitric oxide synthase (iNOS). COX-2, LOX, and iNOS are enzymes that play an important role in inflammation.
Pathophysiology of various types of human cancer and some inflammatory disorders is linked to inappropriate upregulation of COX-2 and iNOS.
In a mouse model of inflammation, curcumin blocked the pathway of arachidonic acid metabolism and inflammation by suppression of cyclooxygenase and lipoxygenase pathways.

NF-κB

Nuclear factor-kappa B (NF-kB) is a protein that binds to DNA and enhances the expression of pro-inflammatory genes such as COX-2 gene and inducible nitric oxide synthase (iNOS).
NF-κB plays an important role in upregulation of cytokines in many inflammatory diseases.

Curcumin suppresses activation of NF-κB by blocking activation of I-kappa B kinase (IKB) enzyme present upstream in a signal cascade that sends signals to NF-κB for propagating inflammation signals further by switching on all the inflammatory genes.

Nitric oxide is synthesized in inflammatory cells by the action of enzyme, intracellular nitric oxide synthase (INOS). Nitric oxide can form reactive oxygen species that damage DNA and other proteins.
Through animal studies in the laboratory, curcumin has shown its potential to inhibit both NF-kB as well as subsequent activation of COX-2 and iNOS.
Curcumin enhanced the anti-cancerous effect of gemcitabine in cancer patients by preventing: the proliferation of cancer cells, supply of blood as a nutrient to tumor cells and NF-κB-regulated genes. Upregulation of PPAR-γ may be linked to activation of NF-κB pathway.

Why Turmeric better than Many anti-inflammatory drugs?



Video coming soon

 

What's The Real Difference Between
Turmeric And Curcumin?



Many non-steroidal anti-inflammatory drugs (NSAIDs) are present in the market for treatment of pain and inflammation. Some popular ones are aspirin, ibuprofen, naproxen, celecoxib, phenylbutazole, etc.

People often prefer natural remedies over chemical drugs due to side-effects associated with the long-term use of these chemical compounds.
Years of scientific study has proven that natural herbs like turmeric are safe and do not produce any toxicity in the body upon consumption.
In India, the pinch of turmeric is used on a regular basis in food which confirms that turmeric is safe if taken within edible limits.
NSAIDs are effective in their function but their prolonged use at higher concentrations can cause stomach problems such as ulcers and gastrointestinal bleeding and even increase the risk of developing stroke, cardiovascular disorders and kidney problems.
NSAIDs like Celecoxib act by inhibiting the inflammatory enzyme, COX-2 which is present in the stomach too. Stomach problems arise as these drugs block the COX pathway.
In case of steroidal drugs for inflammation, too many corticosteroids injection into joints can lead to joint damage.
Another reason of using turmeric for therapeutic purposes is its easy accessibility and cost-effectiveness as compared to the conventional NSAIDs being used.

A study was carried out to compare the efficiency of turmeric and indomethacin (NSAID) against joint inflammation in rheumatoid arthritis rat models.
It was found that anti-inflammatory activity of turmeric in decreasing inflammatory cytokine production exceeded that of NSAID by 10.2%.

Alzheimer’s disease (AD) is marked by high cytokines level leading to inflammation. NSAIDs are used in AD patients to suppress the inflammation but often lead to gastrointestinal, liver and kidney toxicity.
Hence, curcumin was studied as NSAID alternative in AD rat models where both low and high doses of curcumin were administered.
Both doses could significantly decrease interleukin-1β (proinflammatory cytokine) and the level of oxidized proteins in the brain of AD mice models. Curcumin was found to be effective and apparently less toxic relative to NSAIDs.

Examples How turmeric Combats Inflammation in Various Disorders

Curcumin, the most active ingredient of turmeric, has shown its therapeutic efficacy in a wide range of diseases where inflammation is directly or indirectly one of the major signs/causes.

The action of curcumin in some of these disorders has been elaborated below:

Cardiovascular diseases

Inflammation is observed in the majority of cardiovascular diseases such as atherosclerosis and ischemia.
Use of curcumin protects the heart from ischemia and reperfusion by preventing a drop in the rate of heartbeat and blood pressure.
It also prevents the elevation of certain enzymes such as lactate dehydrogenase that rise following ischemia.
Curcumin reduces the risk of inflammation and heart failure by suppressing the expression of inflammatory genes.

Read: Why Turmeric is Great for Heart Health


Diabetes

Curcumin plays role in alleviating diabetes and associated symptoms by regulating the expression of inflammatory transcription factors and cytokines responsible for the development of diabetes.
It also shows hypocholesterolemic effect, free radical scavenging property, and antioxidant property that aid in controlling diabetes.
Orally taken curcumin corrects the metabolic processes and promotes glycemic control in people suffering from obesity and prevents diabetes.
By preventing oxidative stress and inflammation it also plays role in preventing diabetic retinopathy. The anti-nociceptive activity of turmeric along with insulin reduces diabetic neuropathic pain.
It also fastens the wound healing process that normally gets impaired in diabetics.
Read more about turmeric benefits for diabetes here>

Arthritis

Arthritis means chronic pain and inflammation in joints.
Antiarthritic effect of turmeric inhibits inflammation and destruction of joints by preventing activation of NF-κB and other genes regulating inflammation including chemokines and cyclooxygenase 2.
It also inhibits migration of inflammatory cells from plasma to damaged joint tissues and joint levels of prostaglandins.
Efficacy of curcumin was compared with phenylbutazone (an anti-inflammatory drug) in rheumatoid arthritis patients.
Curcumin could significantly improve swelling in joints, morning stiffness and walking time.
Anti-inflammatory action of curcumin has been studied in both acute and chronic animal models.
Active compound, curcumin was found to be equally potent as phenylbutazone (an anti-inflammatory drug) against paw edema (swelling due to fluid accumulation).
In acute model, curcumin was half as active in the chronic model. No toxic effect of curcumin was observed.
Meriva®, a curcumin-based drug exhibited therapeutic potential for management of osteoarthritis due to its long-term efficacy and safety when assessed on various inflammatory markers like interleukins and cell adhesion molecules.

Read: Turmeric Benefits for Arthritis
What it means
Chronic joint inflammation and pain make life miserable for arthritis patients. Curcumin has the potential to treat it by acting directly on NF-κB which is responsible for regulating all the inflammatory genes.

 

Autoimmune diseases

Autoimmune diseases occur when the immune system of the host organism attacks its own body as it recognizes own tissues as foreign.
Severe inflammation is common in autoimmune diseases like multiple sclerosis, type 1 diabetes, rheumatoid arthritis, inflammatory bowel disease etc.
Overproduction of cytokines and chemokines leads to inflammation of body tissues.
Such condition becomes worse when chemokines attract other destructive components of the immune system such as macrophages, neutrophils etc. and magnify the inflammatory response.
Recent studies have shown that curcumin administration inhibits the autoimmune diseases by targeting all inflammatory cytokines and NF-κB signalling pathways leading to expression of inflammatory genes.

Read: Turmeric Benefits in Autoimmune Diseases 
What it means
Autoimmune disorders are deadly as a person’s immune system becomes self-degrading as a result of which severe inflammation is bound to happen.
In such disorders, curcumin targets all the pro-inflammatory cytokines and chemokines to prevent amplification of inflammatory reaction.

 

Cancer

Cancer is characterized by uncontrolled proliferation of cells due to an abnormality in their cell cycle. Some types of cancer arise from damaged tissues, inflammation and infection.
Inflammatory cells such as neutrophils help tumors to multiply and spread.
Tumors (a mass of abnormally growing cells) produce chemokines to attract neutrophils, nutrients and anchor systems towards themselves.
With the help of the support provided by cancer cells, tumors spread throughout the body and help propel the movement of neutrophils too.
Scientists have found a link between inflammation and cancer as anti-inflammatory medicines taken to treat inflammation showed prevention of certain kinds of cancer like colon and lung cancer.
Thus, curcumin’s anti-inflammatory property is anticipated to have chemopreventive activity too.
Anti-inflammatory action of curcumin involved in cancer treatment includes inactivation of NF-κB and COX-2 as COX-2 expression has been found in many types of cancers. Curcumin also causes inhibition of lipoxygenase pathway in arachidonic acid metabolism and scavenging of free radicals generated.
Curcumin also lowered expression of pro-inflammatory cytokines like interleukin-1ß, interleukin 6, and TNF-α causing growth suppression of cancer cell lines.
It also down-regulated inflammatory enzymes such as protein kinase C that is involved in the proliferation of tumors.
Nitric oxide (NO) plays an important role in inflammation and cancer.
Low dose curcumin inhibited NO synthesis by enzyme nitric oxide synthase(NOS). NOS activity was found to be lower in macrophages activated in presence of curcumin than that of macrophages activated in absence of curcumin.

Read: How Turmeric Benefits in Cancer
What it means
Cancer and inflammation are interrelated. Hence, curcumin’s anti-inflammatory property comes into action in cancer prevention by inactivating C0X-2 gene often expressed in tumors and suppressing all the inflammatory mediators.
It also prevents nitric oxide formation during development of cancer.

 

Gastrointestinal problems

Inflammatory bowel disease (IBD) is caused by inflammation in colon and small intestine. Various studies have shown curcumin to have a positive effect on patients with IBS due to its anti-inflammatory effect.
In many experimental models of IBD, curcumin administration has modulated elevated cytokine levels responsible for intestinal inflammation.
IBD carries a risk of cancer and causes a high rate of morbidity in adults and children.
Curcumin treatment of IBD children and adults effectively reduced activated p38 mitogen-activated protein kinase (p38-MAPK enzyme is activated by inflammatory cytokines) in the gut of children and adults, enhanced IL-10 (anti-inflammatory cytokine that inhibits synthesis of other human cytokines) and reduced IL-1β (cytokine involved in inflammation).
Ulcerative colitis (UC) and Crohn’s disease (CD) are two types of inflammatory bowel diseases. UC affects the colon and rectum parts of large intestine resulting in inflammation of the outer lining of the intestine.
CD can affect any part of the gastrointestinal tract and inflammation occur in the entire wall of the tract.
Pretreatment with curcumin in UC induced mice led to suppression of activated NF-κB in colon mucosal lining and reduced levels of all inflammation indicators i.e. nitric oxide, free radicals, neutrophil migration into intestinal tissues. Improvement in symptoms was also observed.
A preliminary study was conducted in 10 IBD patients (five with UC and five with CD).
Curcumin treatment was used in patients of both the groups. In UC group, curcumin led to improvement in inflammatory indicators: erythrocyte sedimentation rate (ESR) and C-reactive protein (CRP).
In CD group, Crohn’s Disease Activity Index (CDAI) scores decreased by almost half. It also led to the reduction in CRP and ESR in 4 out of 5 patients of CD.
ESR is usually increased in inflammation condition. CRP test is used to detect C-reactive protein in your blood that measures the general level of inflammation in the body.
Familial adenomatous polyposis (FAP) is a genetic disease marked by the formation of abnormal growth of tissues in colon.
In a clinical study, a decline in the number and size of polyps was found in the FAP patients receiving curcumin treatment.
Curcumin gave the similar level of output as received during treatment with NSAIDs (Non-steroidal anti-inflammatory drugs).
What it means
Inflammation in the intestine is the main cause of many inflammatory gastrointestinal disorders such as Ulcerative colitis, Crohn’s disease, Familial adenomatous polyposis etc.
Curcumin has the potential to reduce the high cytokine level in the gastrointestinal tract and behave as efficient as NSAIDs in the inflammation treatment.

 

Asthma

Asthma is an allergic reaction that causes difficulty in breathing. It involves inflammation of the air passage caused by the action of inflammatory molecules such as histamine, leukotrienes, and various other cytokines.
These molecules make lungs extra responsive to different forms of stimulus, stimulate the production of mucus which obstructs airway to make breathing harder and changes the lining of the blood vessels in the air passage.
Usually, anti-inflammatory drugs are taken to inhibit leukotrienes production.
The effectiveness of curcumin was studied in animal models of asthma. Curcumin significantly reduced the allergic reaction.
Curcumin displays anti-allergic properties by inhibiting release of histamines (inflammatory mediator) from mast cells (immune cells playing role in allergy).

Read: How Turmeric Can Help in Asthma
What it means
Histamines and leukotrienes play role in allergic reactions like asthma where the allergen stimulates mast cells to release histamines and leukotrienes as an immune response against hypersensitivity.
Turmeric exhibits its anti-allergic action by hindering the release of these inflammatory mediators during times of allergy.

 

Inflammatory eye diseases

Anterior uveitis is characterized by inflammation of the uveal tract (one of the layers of the eye) which if remains untreated can cause blurred vision and even blindness.
In a study, anterior uveitis patients received curcumin and showed 100 percent improvement in visual flair (ability to distinguish between shapes and details of objects) and aqueous flare (breakdown of eye and blood barrier).
Curcumin has also been used for idiopathic orbital inflammatory pseudotumors (IOIP). IOIP is marked by the formation of a hard, non-cancerous lump of cells in the eye and inflammation of the moist inner surface of eyelids.
Curcumin treatment led to complete recovery from the disease in 4 out of 8 patients, one did not show the symptoms of the disorder and remaining continued to have restricted eye movements.
What it means
Curcumin do not directly heal the eye problems but act against inflammation which is one of the causes behind such eye disorders.
Curcumin treatment in patients suffering from such problems has resulted in complete visual improvement.

 

Kidney transplantation

Transplant rejection is quite common as the host body treats the transplant as a foreign substance and generates an immune response against it.
In a study, reduced transplant rejection was observed in all the kidney recipients who had taken curcumin for a month.
Transplant rejection occurs when antibodies of the host binds to the antigens on the graft and activates immune system.
As inflammation takes place as an immune response of the body, it prevents blood supply to the graft and graft is damaged due to lack of oxygen in it.
Delayed transplant rejection was completely prevented in a study where kidney transplant patients received a combination of curcumin and quercetin.
Since the amount of quercetin compound was very little in the combination, delayed rejection was attributed to anti-inflammatory and anti-oxidant function of curcumin only.
Curcumin could successfully induce improved early function of the transplanted kidneys by inhibiting NF-κB and proinflammatory cytokines and removing all the reactive oxygen species responsible for tissue damage.

Read: Turmeric Benefits for Kidney
What it means
Transplant is often rejected by the host’s immune system when it treats the transplant as a foreign object and damages it.
Curcumin prevents the damage of transplant by suppressing NF-κB that controls expression of all inflammatory genes and eliminating free radicals produced in the body that creates oxygen-deficient environment for transplanted organ.

Turmeric Dosage

Turmeric is very safe when used as a spice.
To know more details on how much turmeric you can use in a day check this detailed article on dosage. If you are wondering how to include turmeric in your diet here is my list of two awesome ways:
Also, there so several other recipes under recipe section of the website.
If you are looking for turmeric / curcumin supplements, please check our detailed article on Types of Curcumin Supplements and Best Brands>

In the end.

Turmeric is one of the best natural anti-inflammatory agents. This is proven by research. It not only helps with inflammation but has no side effects as compared to drugs used to treat inflammation as pain in disorders such as arthritis.
If you have tried turmeric for inflammation, please do share your feedback through comments.

https://www.turmericforhealth.com/turmeric-cures/turmeric-for-inflammation-a-powerful-natural-remedy




About the Author

Shruti (BE Biotech. & PGD Clinical Research)
Turmeric for Health's writer team consists of passionate writers from the fields of biotechnology, pharmacy, nutrition, Ayurveda & microbiology.Our writers are highly qualified with many having Ph.D., M.Tech & MSc degrees while others having B.Tech, BSc, B.Pharm. Our differentiation lies in researching and presenting ONLY FACTUAL SCIENTIFIC information. We spend 10s of hours to write a single article. Info of our articles is sourced from reliable scientific sources which are also provided as a link alongside for readers to refer if they want. You can read more about our team in the " About us" section.

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sunnuntai 8. maaliskuuta 2020

PhD Biochemistry Prof. Claims 5G is the “Stupidest Idea in The History of the World”

  • We have created something that is harming us, and it is getting out of control.
  • Again, it’s unbelievable that these technologies are being rolled out without any safety testing done. How is this even allowed to happen?

 By 


Commenting on his report on the dangers of 5G cellular technology, Dr. Martin L. Pall, PhD and Professor Emeritus of Biochemistry and Basic Medical Sciences at Washington State University stated unequivocally that it could be a disaster:
“Putting in tens of millions of 5G antennae without a single biological test of safety has got to be about the stupidest idea anyone has had in the history of the world.”
This is not new information. For years, numerous studies have been published proving the health concerns regarding 5G technology and hundreds of scientists have petitioned the United Nations about them.
These initiatives started as a result of the work done by Dr. Marin Blank from Columbia University’s Department of Physiology and Cellular Biophysics.

A branching mechanosensory neuron (red) that innervate skin cells (blue) integrates tactile information at nodes of Ranvier, which localize to gaps and endpoints of myelin (green). (courtesy of Kara L. Marshall, an Integrated graduate student in the Lumpkin laboratory) see Ellen Lumpkin Ph.D.

According to him, with regards to wireless radiation in general:
“We have created something that is harming us, and it is getting out of control. Before Edison’s light bulb there was very little electromagnetic radiation in our environment. The levels today are very many times higher than natural background levels, and are growing rapidly because of all the new devices that emit this radiation. Putting it bluntly they are damaging the living cells in our bodies and killing many of us prematurely.”
Again, it’s unbelievable that these technologies are being rolled out without any safety testing done. How is this even allowed to happen? The thing is, if there was safety testing done, there would likely be no changes made anyways, and these corporations would be allowed to rollout and utilize these technologies.
The Establishment’s ruling system is anarcho-tyranny. This means absurd leniency and negligence towards criminals and terrorists (e.g. enabling jihadis). But insane micromanagement of the law-abiding citizens (e.g. the destruction of free speech). This system is designed to break-down and destroy our national society, which in turn is designed to enable globalisation. When the courts fail us like this our only alternative is direct action. The fact is that we can no longer rely on the authorities to protect us.
…During the “Health in Buildings Roundtable” sponsored by the NIH and co-organized by the US CDC and several other organizations, Dr. Martin Pall from Washington State University (WSU) concluded that the “5G rollout is absolutely insane.” In this short presentation, Dr. Pall confirmed that the current 2G/3G/4G radiation the population is exposed to has been scientifically linked to: lowered fertility, insomnia, fatigue, depression, anxiety, major changes in brain structure in animals, cellular DNA damage, oxidative stress, hormonal disruption, cancer, and much more. Dr. Pall briefly explained the mechanisms of how the electro-smog emitted by our cell phones, wifi routers, cell phone antennas, and other wireless technologies affect human cells.
Those promoting and getting rich off 5G technology will claim that there is no “solid” proof that it is dangerous, but that’s only because they have blocked any such massive study that would clearly show the obvious dangers. 

People love their smartphones and video streaming, and if only a few thousand people have to get sick or die every year, then what’s the big deal?  And as long as we can tell ourselves that “the science is out,” then we have a built-in excuse when things start going wrong.
But 5G technology is no different from vaccine ‘science’ or Roundup toxicity — the manufacturers simply declare, with no controlled studies ever conducted, that their product is “safe and effective,” and magically it becomes so. 

We will be told that the huge benefits of 5G will far out-weigh any unproven and minor risks. 

One of those minor risks will be childhood cancers, but we’ve even gotten used to that and just pretend that it’s “genetic”.  We are being given these excuses ahead of time, so be sure to use them.

___

More:


  1. https://graviolateam.blogspot.com/2018/11/hundreds-of-birds-dead-during-5g.html
  2. https://graviolateam.blogspot.com/2018/10/scientists-and-doctors-call-for.html
  3. https://graviolateam.blogspot.com/2019/02/rf-safe-public-awareness-sar-levels.html
  4. https://graviolateam.blogspot.com/2019/02/no-5g-for-israel-elimination-of-at.html
  5. https://graviolateam.blogspot.com/p/5g-is-already-linked-to-rising-health.html
  6. https://graviolateam.blogspot.com/p/ultra-sos-5g-roll-out-seriously.html
  7. https://graviolateam.blogspot.com/p/bay-area-city-blocks-5g-deployments.html
  8. https://graviolateam.blogspot.com/p/blog-page_8.html
  9. https://graviolateam.blogspot.com/p/5g-telecommunications-science.html
  10. https://graviolateam.blogspot.com/p/20-facts-about-5g-and-your-health.html
  11. https://graviolateam.blogspot.com/p/www.html
  12. https://graviolateam.blogspot.com/p/blog-page_64.html
  13. https://graviolateam.blogspot.com/p/emf-and-emr-conversion-formulas-by.html
  14. https://graviolateam.blogspot.com/p/best-emf-meters-to-measure-home.html
  15. https://graviolateam.blogspot.com/p/sa-har-vilseleder-stralsakerhetsmyndigh.html
  16. https://graviolateam.blogspot.com/p/journal-of-chemical-neuroanatomy-volume.html
  17. https://graviolateam.blogspot.com/p/ultra-sos-5g-roll-out-seriously.html
  18. https://graviolateam.blogspot.com/p/blog-page_58.html
  19. https://graviolateam.blogspot.com/2018/09/fcc-abandons-safety-pushes-untested-5g.html
  20. https://graviolateam.blogspot.com/2018/09/thirteen-good-reasons-to-switch-off.html
  21. https://graviolateam.blogspot.com/2019/06/5g-super-hotspots-you-better-know-where.html
  22. https://graviolateam.blogspot.com/2019/04/5g-networks-will-use-same-frequencies.html
  23. https://graviolateam.blogspot.com/2019/02/microwave-frequency-electromagnetic.html
  24. https://graviolateam.blogspot.com/2019/02/tampereelle-avattiin-maailman.html
  25. https://graviolateam.blogspot.com/2019/02/rf-safe-public-awareness-sar-levels.html
  26. https://graviolateam.blogspot.com/2019/02/how-to-measure-emf.html
  27. https://graviolateam.blogspot.com/2019/02/the-us-breast-cancer-epidemic-2019.html
  28. https://graviolateam.blogspot.com/2019/02/stop-5g-network-on-earth-and-in-space.html
  29. https://graviolateam.blogspot.com/2019/02/evidence-that-rfmicrowave-radiation.html
  30. https://graviolateam.blogspot.com/2019/02/evidence-that-rfmicrowave-radiation.html
  31. https://graviolateam.blogspot.com/p/www.html
  32. https://graviolateam.blogspot.com/p/4-best-apps-for-detecting-emfs.html
  33. https://graviolateam.blogspot.com/p/journal-of-chemical-neuroanatomy-volume.html

_
EOF


There Is a ‘tipping point’ before coronavirus kills

  • The progression from mild or moderate to severe can occur “very, very quickly.”
  • About 10-15% of mild-to-moderate patients progress to severe and of those, 15-20% progress to critical. 
  • Patients at highest risk include people age 60 and older and those with pre-existing conditions such as hypertension, diabetes and cardiovascular disease.
 
This illustration provided by the Centers for Disease Control and Prevention in
January 2020 shows the 2019 Novel Coronavirus (2019-nCoV). (CDC via AP)


The new coronavirus causes little more than a cough if it stays in the nose and throat, which it does for the majority of people unlucky enough to be infected.
Danger starts when it reaches the lungs.
By  | pperron@bayareanewsgroup.com | Bay Area News Group
PUBLISHED:  | UPDATED: 

One in seven patients develops difficulty breathing and other severe complications, while 6% become critical. These patients typically suffer failure of the respiratory and other vital systems, and sometimes develop septic shock, according to a report by last month’s joint World Health Organization-China mission.
The progression from mild or moderate to severe can occur “very, very quickly,” said Bruce Aylward, a WHO assistant director-general who co-led a mission in China that reviewed data from 56,000 cases. Understanding the course of the disease and identifying individuals at greatest risk are critical for optimizing care for a global contagion that’s killed more than 3,500 people since emerging in central China in December.
“The clinical picture suggests a pattern of disease that’s not dissimilar to what we might see in influenza,” said Jeffery K. Taubenberger, who studied the infection in Spanish flu victims, including one exhumed more than 20 years ago from permafrost in northwestern Alaska.

About 10-15% of mild-to-moderate patients progress to severe and of those, 15-20% progress to critical.

Patients at highest risk include people age 60 and older and those with pre-existing conditions such as hypertension, diabetes and cardiovascular disease.
Covid-19 most likely spreads via contact with virus-laden droplets expelled from an infected person’s cough, sneeze or breath.


Infection generally starts in the nose.

Once inside the body, the coronavirus invades the epithelial cells that line and protect the respiratory tract, said Taubenberger, who heads the viral pathogenesis and evolution section of the National Institute of Allergy and Infectious Diseases in Bethesda, Maryland.

If it’s contained in the upper airway, it usually results in a less severe disease.

But if the virus treks down the windpipe to the peripheral branches of the respiratory tree and lung tissue, it can trigger a more severe phase of the disease. That’s due to the pneumonia-causing damage inflicted directly by the virus plus secondary damage caused by the body’s immune response to the infection.
“Your body is immediately trying to repair the damage in the lung as soon as it’s happening,” Taubenberger said. Various white blood cells that consume pathogens and help heal damaged tissue act as first-responders. “Normally, if this goes well, you can clear up your infection in just a few days.”
In some more-severe coronavirus infections, the body’s effort to heal itself may be too robust, leading to the destruction of not just virus-infected cells, but healthy tissue, Taubenberger said. Damage to the epithelium lining the trachea and bronchi can result in the loss of protective mucus-producing cells as well as the tiny hairs, or cilia, that sweep dirt and respiratory secretions out of the lungs.
“You have no ability to keep stuff out of the lower respiratory tract,” Taubenberger said. As a result, the lungs are vulnerable to an invasive secondary bacterial infection. Potential culprits include the germs normally harbored in the nose and throat, and the antibiotic-resistant bacteria that thrive in hospitals, especially the moist environments of mechanical ventilators.
Secondary bacterial infections represent an especially pernicious threat because they can kill critical respiratory tract stem cells that enable tissue to rejuvenate. Without them, “you just can’t physically repair your lungs,” Taubenberger said. Damaged lungs can starve vital organs of oxygen, impairing the kidneys, liver, brain and heart.
“When you get a bad, overwhelming infection, everything starts to fall apart in a cascade,” said David Morens, senior scientific adviser to the director of the National Institute of Allergy and Infectious Diseases. “You pass the tipping point where everything is going downhill and, at some point, you can’t get it back.”



That tipping point probably also occurs earlier in older people, as it does in experiments with older mice, said Stanley Perlman, a professor of microbiology and immunology at the University of Iowa in Iowa City, who has studied coronaviruses for 38 years.
Still, even healthy younger adults have succumbed to the illness. Li Wenliang, the 34-year-old ophthalmologist who was one of the first to warn about the coronavirus in Wuhan, died last month after receiving antibodies, antivirals, antibiotics, oxygen and having his blood pumped through an artificial lung.
Some people may be more genetically susceptible, possibly because they have a greater abundance of the distinctly shaped protein receptors in their respiratory epithelial cells that the virus targets, Taubenberger said. It’s also possible certain individuals have some minor immunodeficiency or other host factors that relate to underlying illnesses.
https://www.twincities.com/2020/03/08/there-is-a-tipping-point-before-coronavirus-kills/
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