Thursday, November 7, 2019

A Generation Asleep? Narcolepsy in Teens and Young Adults


A Generation Asleep? Narcolepsy in Teens and Young Adults

By the Children’s Health Defense Team

Narcolepsy, a severe sleep disorder that typically emerges in adolescence, appears to be on the rise in the U.S. A new analysis of U.S. health care claims reports prevalence roughly 50% higher (1.6 per 2,000) than the upper limit cited in most prior studies (1 per 2,000), with the highest incidence in late adolescence and the early 20s. Pharmaceutical company ads that encourage readers to wonder why they are “tired all the time” and to take a “Narcolepsy Symptom Screener” test are an indication of the growing problem—and the growing market.
An uptick in narcolepsy in young people is concerning, given the lifelong social, academic, workplace and daily life challenges that the condition’s unwelcome symptoms impose. These include excessive daytime sleepiness, abnormal rapid eye movement (REM) sleep, hallucinations and—in many narcoleptics—sudden muscle weakness or paralysis triggered by strong emotions (a state called cataplexy). In adults, those with narcolepsy are more likely to suffer from anxiety and depression than individuals without the disorder.
As with many of the chronic conditions that plague today’s youth, narcolepsy researchers suspect that environmental exposures in genetically susceptible individuals are a key trigger. This perspective is compatible with recent studies proposing that narcolepsy is an autoimmune disease. Like type 1 diabetes, narcolepsy is the result of selective cell loss (beta cells in the case of diabetes and hypothalamus neurons in the case of narcolepsy)—and in both instances, autoimmune processes are key drivers of the cell loss. And among the environmental exposures capable of setting autoimmunity in motion, recent medical history provides one clearly established culprit: an H1N1 influenza vaccine widely used in Europe in 2009–2010 during the so-called swine flu “pandemic.”
In countries that experienced the spike in narcolepsy, Pandemrix coverage was widespread (roughly 60% of the population).

A surge in sleepiness

In 2010, an unusually high number of young people began presenting with narcolepsy after receiving an H1N1 influenza vaccine manufactured by GlaxoSmithKline (GSK). The vaccine—named Pandemrix—received fast-tracked approval from the European Medicines Agency (EMA) under special rules for declared pandemics but was never licensed in the United States. In countries that experienced the spike in narcolepsy, Pandemrix coverage was widespread (roughly 60% of the population).
Around 2013, researchers began publishing highly consistent studies describing elevated narcolepsy risks in Pandemrix-vaccinated youth. These studies—from EnglandFinlandFranceIrelandNorwaySweden and elsewhere—often showed as much as a 14-fold increased risk in children and adolescents as well as lesser but significant risks in adults (such as a 2- to 7-fold increased risk in Finnish adults). In all, an estimated 1300 European youth and adults developed narcolepsy as a result of Pandemrix.
In 2011, the EMA quietly recommended limiting Pandemrix use in persons under 20 years of age due to ‘very rare cases of narcolepsy in young people,’ but publicly, both GSK and the European Centre for Disease Prevention and Control maintained that there was ‘no clear link’ with vaccination.

Safety signal prevarication

Early on, a Swedish neurologist asserted that “The strong temporal relationship made it natural to suspect a link” between Pandemrix vaccination and narcolepsy, and many other in-the-trenches clinicians agreed. For vaccine officials and manufacturers, however, conceding the possibility of a Pandemrix safety signal did not seem to come easily. In 2011, the EMA quietly recommended limiting Pandemrix use in persons under 20 years of age due to “very rare cases of narcolepsy in young people,” but publicly, both GSK and the European Centre for Disease Prevention and Control maintained that there was “no clear link with vaccination.” In 2015, when Pandemrix’s marketing authorization was up for renewal, GSK let it lapse due to “lack of demand for the vaccine.”
Observing the Pandemrix fiasco, an individual submitting a letter to The BMJ commented, “If vaccine regulators were serious about safety, the entire vaccine fleet would have been grounded following the Pandemrix narcolepsy disaster, to check for the same mechanism of failure in other vaccines. But nothing of that sort happened.” Instead, as late as 2018, the prevarication continued. In July of that year, long after European countries had published their compelling research, a CDC-funded investigator told STAT News about a large study that had failed to find evidence of a vaccine-narcolepsy link. Perplexingly, the same researcher (also a consultant for GSK and other vaccine manufacturers) had just participated in a March 2018 meeting that grudgingly reached the opposite conclusion. Following the Brussels-based meeting—attended by top-tier representatives from CDC, FDA, the World Health Organization, European public health agencies, GSK and others—the group published its “consensus that an increased risk of narcolepsy was consistently observed after Pandemrix.”
In September 2018, The BMJ Associate Editor Peter Doshi wrote a scathing critique of regulatory agency and GSK behavior with regard to Pandemrix. Doshi noted that, very early on, GSK possessed evidence of “warning signs” showing “a striking difference in the number and frequency of adverse events” associated with Pandemrix in comparison with two other H1N1 vaccines manufactured by GSK. Yet, despite GSK’s assertions that it had passed along all relevant safety data to regulatory agencies, the sequestered safety signal information did not come to light for eight years—and then, only in response to concerted independent research and lawsuits.
In the United Kingdom, health providers never informed Pandemrix recipients that the not-fully-tested vaccine had been fast-tracked or that the government had given GSK indemnity from any liability.
The attorney of an Irish victim of Pandemrix-induced narcolepsy (who is suing both GSK and Ireland’s regulatory agency) has scolded GSK for keeping the important safety signal information to itself, writing in an affidavit that the disparity between Pandemrix and GSK’s two other vaccines was “of such striking difference that any person contemplating taking the Pandemrix vaccine would be likely, if in receipt of this information, not to choose to have the Pandemrix vaccination.” Likewise, an Irish member of Parliament has called out the Irish vaccine-purchasing agency for “choosing GlaxoSmithKline’s Pandemrix for its swine flu programme when it knew it had a higher risk of side effects than other vaccines.”
In the United Kingdom, health providers never informed Pandemrix recipients that the not-fully-tested vaccine had been fast-tracked or that the government had given GSK indemnity from any liability. To add insult to injury, when approximately 100 families filed compensation claims for Pandemrix-induced narcolepsy under the UK’s Vaccine Damage Payment Act, the government’s Department of Work & Pensions (DWP) strenuously disputed its obligation to pay compensation. Deploying the hair-splitting argument that it need “only recognise the impact of the disability at the precise time the claim was assessed, and not take into account any impact it would have in future,” the DWP succeeded in dragging the process out for years “with unsuccessful appeal after unsuccessful appeal.” In 2017, however, the UK Court of Appeal disagreed and paved the way for payouts to proceed, stating that the DWP must “take into account the impact that disability has on a person’s entire life.”
Reports of narcolepsy to the CDC- and FDA-maintained Vaccine Adverse Event Reporting System (VAERS) raise a number of questions not answered by the CDC’s circumscribed study.

What about the U.S.?

Could other influenza vaccines—or vaccines against other infections—also be contributing to narcolepsy? In light of the evidence linking vaccines to other autoimmune outcomes, the question is a reasonable one. Researchers who have delved into the Pandemrix-narcolepsy association agree, noting that “Further studies on vaccinations (other than Pandemrix) and their relationship with narcolepsy will be conducive to expanding our knowledge on the crucial link between H1N1 infection or vaccination and narcolepsy.”
The CDC appeared to take a step in this direction in 2014 when it looked at the H1N1 and seasonal vaccines used in the United States in 2009–2010 and 2010–2011 and assessed narcolepsy risks for those two years. The agency concluded that the two vaccines “were not associated with an increased risk of narcolepsy.” However, the CDC does not appear to have assessed potential narcolepsy risks for any influenza vaccines since that time nor for other types of vaccines before or since. A CDC webpage on narcolepsy cites a single U.S. study—its own 2014 study—and just five European studies, even though a National Library of Medicine search using the terms “narcolepsy” and “vaccination” brings up 169 hits.
Reports of narcolepsy to the CDC- and FDA-maintained Vaccine Adverse Event Reporting System (VAERS) raise a number of questions not answered by the CDC’s circumscribed study. Among the 84 reports—all but one from 2010 or later—it is possible to note the following:
  • Eleven reported cases of narcolepsy (13%) were from 2010 or 2011—the years in which the CDC denied any increased risk of narcolepsy.
  • The 2010 and 2011 reports were associated with both H1N1 (n=4) and seasonal influenza (n=7) vaccines.
  • In all, 47 narcolepsy reports (56%) followed vaccination with influenza vaccines that included monovalent, trivalent and quadrivalent; seasonal, H1N1 and H5N1; and influenza vaccines administered both via injection and intranasally.
  • The remaining 37 narcolepsy reports followed vaccination with 14 other types of vaccines—notably Gardasil and Gardasil 9—which is to say, a good many of the vaccines on the child, adult or military vaccine schedules. (Anthrax, DTaP, DtaP/IPV, Hepatitis B, Gardasil, Gardasil 9, other HPV, MMR [ProQuad], meningococcal, rabies, Tdap, tetanus, typhoid, and varicella [Varivax])
Over the past two decades especially, there have been thousands of reports of potential narcolepsy symptoms following vaccination with influenza and other vaccines.
If one broadens the VAERS  search to include terms such as “hypersomnia” (excessive daytime sleepiness) that describe narcolepsy symptoms more specifically, the CDC’s complacency about vaccination’s potential contribution to narcolepsy is even more surprising. Over the past two decades especially, there have been thousands of reports of potential narcolepsy symptoms following vaccination with influenza and other vaccines. Symptoms include:
  • “Sleep disorders” (3400 reports)
  • “Hypersomnia” (1807 reports)
  • “Poor quality sleep” (905 reports)
  • “Abnormal sleep-related events” (89 reports)
  • “Sudden onset of sleep” (36 reports)
  • “Sleep paralysis” (11 reports)
  • “Rapid eye movement sleep abnormal” (10 reports)

Building on the Pandemrix vaccine’s clues

In addition to the vaccine antigen—an inactivated “split influenza virus” described as “A/California/7/2009 (H1N1)v-like strain (X-179A)”—the Pandemrix vaccine contained a novel “adjuvant system” called AS03 made up of alpha-tocopherol (vitamin E), squalene and polysorbate 80 in an oil-in-water emulsion. Other Pandemrix ingredients included the mercury-based preservative thimerosal; more polysorbate 80; and octoxynol 10 (an emulsifier often used in hair dyes).
Discussing the Pandemrix experience, some researchers have pointed fingers at the vaccine’s viral antigen alone, suggesting that it could have triggered “a more exuberant inflammatory response” and “skew[ed] the immune response in such a manner that is harmful, rather than helpful.” Other researchers—who have confirmed Pandemrix’s ability to provoke autoimmune narcolepsy via molecular mimicry—suggest that the cross-reactivity seen in narcolepsy sufferers might result from a synergistic interplay between Pandemrix’s problematic viral component helped along by ingredients such as its adjuvant.
In fact, more scientists are calling attention to the need for focused research on the “immunological mechanisms of action” of vaccine adjuvants, particularly since the very function of adjuvants is to elicit an immune response that otherwise would be unlikely to occur. GSK likes to brag about AS03’s ability to kickstart a strong immune response but, as Children’s Health Defense recently noted, when a vaccine pairs a powerful adjuvant with foreign viral peptides that are similar to human peptides, a “reasonable outcome may be the development of crossreactivity and autoimmunity.” Considering all of these facts together, it seems likely that the Pandemrix-narcolepsy story is a cautionary tale with far broader relevance than has, until now, been admitted.

Thursday, October 10, 2019

Highly toxic ingredients are deliberately formulated into mandatory vaccines so that you are forced to submit to being poisoned

 Mandatory vaccinations are a highly controversial subject. For years, medical propaganda has been conditioning us to believe that vaccines provide what is known as “herd immunity.” This propaganda teaches that if a significant proportion of the population is vaccinated against a disease then the whole community will be protected, including those who do not receive the vaccine.
Based on this faulty premise, many states have passed laws making vaccinations mandatory – supposedly for the greater good of all. Many vaccine advocates go so far as to accuse those who refuse to be vaccinated of compromising the health of the entire community.
However, decades after the first vaccines were created, history has proven that these toxic jabs do not confer a lifetime of immunity, which is why booster shots are now recommended for many vaccines. And the simple fact is that in addition to being ineffective, vaccines also carry serious risks and contain dangerous and ethically questionable ingredients. Yet, more and more states are passing laws making it mandatory for children to be vaccinated, even denying school entry to those who refuse to comply.
It is therefore more important than ever to know exactly what vaccines are made of and why we need to be extremely cautious about allowing healthcare workers to administer them to our children.

The science behind vaccines

There is a common misconception that being vaccinated simply entails being injected with a small amount of a disease so that the immune system can produce antibodies against it, thereby conferring lifelong immunity to the recipient.

In reality, however, vaccines are manufactured using a host of ingredients that have serious side effects. In addition, many are made with fetal cells taken from aborted babies, which would shock and horrify many of the people who willingly allow their young children to be vaccinated.
As reported by Families 4 Vaccine Choice (and confirmed by the CDC), vaccines also contain serum derived from the blood of bovine fetuses, protein from human blood plasma, kidney epithelial cells extracted from African green monkeys, yeast DNA, yeast protein, Madin Darby canine kidney cells derived from an adult cocker spaniel, chicken fibroblasts, DNA taken from porcine circoviruses and other disgusting ingredients.
Then, of course, there are the other controversial vaccine ingredients like mercury (thimerosal), formaldehyde and monosodium glutamate, which have all been linked to a host of adverse health effects.
Families 4 Vaccine Choice explains how all of these vile ingredients are used to create vaccines:
Now we learn that with RNA … “DNA molecules from two different species are inserted into a host organism to produce new genetic combinations.” So that means they are splitting human DNA with the DNA of animals and aborted fetuses and then injecting it back into our bodies with the hopes that it will cause us to create the antigen needed to immunize us against a virus.

Not all doctors support mandatory vaccinations

While the government and the mainstream media promote the idea that all healthcare professionals support vaccinations, nothing could be further from the truth. Natural health practitioners like naturopathic physicians and homeopaths have long warned against the negative effects of vaccines, and even many mainstream doctors are opposed to vaccinations, especially when they are forced on people.
After all, it is a basic human right – as asserted by the American Medical Association’s Code of Medical Ethics – to choose whether or not to accept a risky medical procedure:
The patient should make his or her own determination about treatment… Informed consent is a basic policy in both ethics and law that physicians must honor, unless the patient is unconscious or otherwise incapable of consenting and harm from failure to treat is imminent.
Sources for this article include:
CDC.gov[PDF]

Saturday, October 5, 2019

How to Improve Your Vision Naturally… and Fast!

How to Improve Your Vision Naturally… and Fast!

Are you noticing a decline in your vision? Perhaps it’s getting harder to read road signs or restaurant menus. Maybe it gets even harder at night under low lighting. What’s going on? For most people, a slow decline in their vision is a normal sign of aging. Luckily, there are lots of things you can do to improve your eyesight now. Hold off on getting expensive surgery or settling for glasses. You may not need to resort to that; instead, you can follow these tips to improve your vision naturally and fast.

Understand What Your Vision Impairment Is

Improve Your Vision Naturally and Fast ImageNot all natural vision remedies will work on every condition. Some are better suited to different conditions, situations and lifestyles. To start, here are the most common vision impairments you could be suffering from:
There are also many different eye diseases you could be experiencing. They range from glaucoma to cataracts to macular degeneration. The first step to improving your vision naturally is getting a diagnosis from your eye doctor. Book an exam and get a comprehensive test of your eyes and your vision. Once the doctor can confirm what your condition is, you can start on the path to improving it.
It’s also important to understand your odds of success. If you’re an 80-year-old with declining vision, your doctor may recommend treatment outside of the holistic options. This is because it’s unlikely you’ll be able to turn your 80-year-old eyes back into 20-year-old ones. Natural vision remedies aren’t for everything, but they do work for many. Your eye doctor can guide you on what expectations to set for each form of treatment. However, remember that invasive surgeries and eye accessories are not the only options out there.

Improve Your Vision Naturally Through Your Diet

The first step to improve your vision is to work on your diet. How many of the essential eye health nutrients do you get every day? If you don’t know, it’s time to start logging your food. Using a notebook or your phone, record your diet for one week. Then, review it to see how many of the following nutrients you consumed:
Perhaps you notice from your food log that you ate a ton of greasy and sugary foods. These foods are low in nutrients and can actually damage your eyes over time. The first thing you need to do is clean up your diet and start drinking more water. This will ensure your eyes have the nutrients they need to function well and stay strong. Luckily, the nutrients your eyes depend on are often the same nutrients your other organs need. Choosing to eat a healthier diet overall will benefit your entire body as well as improve your eyesight.

Assess Your Lifestyle and Break Bad Habits

Are you partaking in activities that damage your health? Your choices and vices can negatively affect your vision. Two activities, smoking and drinking alcohol, are especially bad for your eyes. Smoking cigarettes can lead to glaucoma, cataracts, AMD, dry eyes and diabetic retinopathy. Not to mention the effects of secondhand smoke on the infant eyes around you. You are more likely to develop a devastating eye disease if you smoke cigarettes.
The second activity, drinking alcohol, is just as damaging. It weakens the muscles in and around your eyes which can cause visual impairment. Drinking can damage the optic nerve which your brain relies on to transmit images. And, it can cause migraines, light sensitivity, blurry vision, redness and decreased color vision. If you want to improve your vision naturally, quit smoking and drinking alcohol. Or, at the very least, cut back drastically.
Another lifestyle habit you may not realize is affecting your vision is being on the computer. Digital screens, from laptops to smartphones, can cause serious eye conditions. The most notable is Computer Vision Syndrome (CVS). Too much screen time can cause eye strain, dryness, redness and irritation. CVS is common among office workers and students. Excessive screen time can also lead to a decline in your distance vision. Ideally, to improve your eyesight, you need to cut back on computer time. However, it’s understandable for many careers and for students that that isn’t possible.
To remedy the effects of being on the computer a lot, take breaks often. Practice using the 10-10-10 Rule; you can even set a timer on your phone to remind you. Go outside every day to take advantage of looking at objects at varying distances away. Practice palming your eyes to relax them and give them a well-needed break. Giving your eyes the chance to recuperate will help to naturally improve your eyesight.

Get Your Whole Body (And Eyes) Active

Younger generations are more sedentary than any generations before. It’s more common for kids to sit inside playing video games instead of playing outdoors. This is detrimental to their overall health and their eyes. Our eyes depend on good blood flow and oxygen. Getting your heart rate up at least once a day improves the blood flow to every organ. Try fitting in 30 minutes every day to speed walk, jog or work out. Make your kids put down the devices and spend some time outdoors.
Then, use exercises that target your eyes specifically. These are stretches and exercises that help your eyes’ muscles build strength and flexibility. Not only do they often feel good, but they can improve your vision naturally. There are tons of different eye exercises you can try. Here are a few awesome ones:
Like any other muscle in your body, your eyes’ muscles need to get active. Practice moving your body and your eyes every day. You can improve your eyesight naturally by taking care of your body and doing a few eye exercises.

Take Extra Steps!

Our Ocu-Plus Formula is designed to help you improve your vision with eye vitamins. Doing a few simple daily eye exercises along with taking the right vitamins and minerals is the best form of prevention when it comes to common vision problems like nearsightedness, farsightedness, astigmatism and presbyopia. Be dedicated to improving and preserving your eye sight now to save yourself from vision loss down the road!