Showing posts with label Alzheimer's. Show all posts
Showing posts with label Alzheimer's. Show all posts

Monday, July 29, 2019

Case study reveals how cognitive decline can be reversed

By Dr. Joseph Mercola

STORY AT-A-GLANCE

  • A recent case report of 100 patients diagnosed with cognitive decline using the ReCODE protocol show both subjective and objective improvements in all participants
  • The ReCODE protocol, which involves identifying the drivers of cognitive decline (such as pathogens, toxins and metabolic changes), then targeting those in a personalized program that includes dietary and lifestyle changes, allows your brain to create and maintain synapses again, thereby treating the root of the problem
  • A hallmark of neurodegenerative diseases such as Alzheimer’s is that proteins are aggregated and are typically misfolded
  • By inducing ketosis, improving insulin sensitivity and supporting the mitochondria, you can often regain the ability to refold or proteolyze misfolded proteins
  • Electromagnetic field exposures, such as that from cellphones and Wi-Fi, may play an important role in Alzheimer’s, as it triggers high amounts of oxidative stress and damage to proteins and DNA

Alzheimer’s disease, which is the most common form of dementia, eventually leads to the inability to carry out even the most basic of bodily functions, such as swallowing or walking. It is ultimately fatal, as conventional treatment options are few and universally ineffective.
Like autism among children, Alzheimer’s among seniors has reached epidemic proportions, with no slowdown in sight. On the contrary, evidence suggests the trend is worsening.
At present, Alzheimer’s affects an estimated 5.8 million Americans,1 and projections suggest the disease will affect 1 in 4 Americans within the next two decades. By 2050, Alzheimer’s diagnoses are projected to triple.2,3
And, while the U.S. Centers for Disease Control and Prevention lists the disease as the sixth leading cause of death in the U.S.,4,5 statistics published in the journal Neurology in 2014 revealed Alzheimer’s is vastly underreported on death certificates. In reality, the disease likely killed 503,400 American seniors in 2010,6 making it the third leading cause of death, right behind heart disease and cancer.7
The good news is that contrary to conventional claims, there are ways to prevent and even treat this tragic disease — not by drugs, but by diet and other lifestyle changes.
Dr. Dale Bredesen, professor of molecular and medical pharmacology at the University of California, Los Angeles School of Medicine, and author of “The End of Alzheimer’s: The First Program to Prevent and Reverse Cognitive Decline,” has identified a number of molecular mechanisms at work in Alzheimer’s, and created a novel program called ReCODE to treat and reverse it.8

100-patient case report sheds light on treatment options

Bredesen’s most recent publication is a case report9,10 of 100 patients using the ReCODE protocol. He has previously published three case reports, each involving just 10 patients. This fourth case report contains 100 patients treated at 15 different clinics across the U.S., all of which have documented pre- and post-cognitive testing.
Not only did all show improvement in symptoms, some of them also showed improvement in their quantitative electroencephalographs (EEGs). Others who underwent magnetic resonance imaging (MRI) with volumetrics also showed objective improvement.
“By all the criteria, these people showed improvement, subjective and objective,” Bredesen says. This is no small thing, as there is no conventional treatment that can reverse Alzheimer’s. There have been many drug trials to date, but all have failed to reverse the disease. As noted by Bredesen:
“There are a couple of medications, Aricept, Namenda … but these have a very, very modest impact. The most important thing is their improvement is not sustained. They don’t change the outcome of the disease. You get a little bump in improvement, then you go right back to declining.
The most important part of the [ReCODE] protocol … is that the improvement is sustained. You’re actually going after the root cause of what is causing the cognitive decline. That’s a big difference.”
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Alzheimer’s is a protective response to inflammation

If one were to summarize Bredesen’s approach in one sentence, it would be “to improve the ratio between synaptoblastic and synaptoclastic activity, which is the brain’s ability to create new synapses versus destroying them.” In other words, the treatment allows your brain to create and maintain synapses again. Bredesen explains:
“The molecular biology of this disease shows that what we call Alzheimer’s disease is actually a protective response. It’s essentially a scorched-earth retreat.
You’re pulling back and saying, ‘We’re not going to let this insult kill us, so we’re going to scorch the earth so it (whether it’s bacteria or something else) cannot take advantage … of what’s there.’ You’re literally downsizing [your synapses]. As long as those insults are going on, you will be downsized.”
Beta-amyloid is a protein that is highly correlated with Alzheimer’s. However, all attempts at removing it have failed to improve the condition. Clearly, beta-amyloid in and of itself is not the primary cause, so simply getting rid of it is not the answer.
In Bredesen’s paper, he discusses the role of beta-amyloid as an antimicrobial peptide (AMP). Importantly, AMPs are critically important for host immunity. They target organisms such as bacteria, mycobacteria, viruses, fungi and protozoa. He explains:
“Here is the trick. It turns out amyloid beta is really part of the innate immune system. Its antimicrobial effect was first discovered and published by professor Robert Moir and professor Rudy Tanzi at Harvard.
This thing actually has, again, a protective response. Not only is it an AMP, but it also binds some toxins. For example, mercury, other divalent metals like iron and things like that. [Amyloid beta] has multiple effects. It is part of your response to insult.
When you take that into account, you realize it’s fine to remove amyloid, but please don’t do it before you remove all the insults. We’ve seen numerous people now who have had the amyloid reduced and gotten worse because the ongoing insults are still there.”
Most recently, the drug company Biogen halted its Phase II clinical trial for aducanumab, a drug designed to remove beta-amyloid, and this is the typical story for these kinds of drugs. And then a major trial of yet another approach to amyloid removal, the BACE inhibitor CNP520, was halted because the drug was associated with increased cognitive decline and brain atrophy.11

The protein refolding process is impaired in Alzheimer’s

About one-third of the proteins your body makes on any given day are misfolded. Thankfully, your body has a mechanism by which those misfolded proteins are refolded. Heat-shock proteins play a central role in this process, and if the misfolding is too severe, the heat-shock proteins help remove them altogether.
In fact, heat-shock proteins are a corollary of autophagy, the process by which your body cleans out damaged organelles. This relates to Alzheimer’s, because the refolding process is one of several factors that need to work in order for your brain to function. As noted by Bredesen:
“In all of these different neurodegenerative diseases, whether you’re talking about Alzheimer’s, Huntington’s, Lou Gehrig’s disease, Parkinson’s disease or Lewy body, they all feature proteins that are aggregated and that are typically misfolded. They are not degraded appropriately.
You lose not only the ability to fold but the ability to degrade these proteins. That is a critical piece. In fact, just recently, an article came out on a common neurodegenerative condition, newly described, which is called LATE, which is limbic-predominant, age-related TDP-43 encephalopathy.
In other words, this is a little bit like Alzheimer’s … [LATE] features TDP-43, which is a protein that is involved in numerous things, including protein folding … We lose that [protein-folding] ability as we start to downsize [synapses], as you don’t have an appropriate energy, you don’t have the appropriate trophic support.
You don’t have the appropriate hormonal and nutritional support … When we target ketosis, when we target insulin sensitivity, when we target mitochondrial support, that typically allows you to generate the appropriate ability to refold misfolded proteins …
You can induce the heat-shock response … by doing this combination of sauna and then [going] into the cold and then back to the sauna and then back to the cold …
You are recurrently activating this critical response [by doing that]. There’s no question it is going to be important, especially in ALS, but likely in all of the neurodegenerative conditions.”

The link between protein folding and cell death

As noted by Bredesen, there are three kinds of autophagy: macro-autophagy, micro-autophagy and chaperone-mediated autophagy. Each offers a slightly different way to repair, remove or recycle damaged organelles within the cell.
Specific proteins, for example, can be targeted for chaperone-mediated autophagy. Bredesen recounts findings of research he did to ascertain the linkage between protein folding and programmed cell death (apoptosis, where the entire cell is killed off and removed):
“If you fail to reform these [misfolded proteins], you literally activate an entire system that initially stops producing more protein. It’s basically saying, ‘We’re not keeping up with this. We’re going to shut this down.’ It attempts to refold. Then it attempts to destroy the proteins if it can’t refold them.
Then ultimately, if it cannot … keep up … it literally activates programmed cell death through specific caspases … This is something where you want to intervene upstream; understand why this is happening. And then if you’re unable to keep up with this, now, at least increase your heat-shock proteins so that you can refold. In this case, you prevent the induction of programmed cell death.”
Unfortunately, a vast majority of people do not have well-functioning autophagy, for the simple reason that they’re insulin-resistant. If you’re insulin-resistant, you cannot increase your adenosine 5’ monophosphate-activated protein kinase (AMPK) level, which prevents the inhibition of mammalian target of rapamycin (mTOR), and mTOR inhibition is one of the primary drivers of autophagy.

The case for cyclical fasting

While autophagy is clearly of critical importance, you don’t want to be in continuous autophagy. You also need to cycle through the rebuilding phase. One of the ways in which you can control this is through cyclical fasting. Bredesen typically recommends an intermittent fasting approach.
“You want to use appropriate fasting and an appropriate diet to activate this autophagy,”Bredesen says. “We recommend … 12 to 14 hours [of fasting] if you are apolipoprotein E4-negative (ApoE4-negative) … If you are ApoE4-positive, you’d want to go longer — 14 to 16 hours. There’s nothing wrong with doing a longer fast …
The reason we suggest longer for the ApoE4-positives [is because] if you are ApoE4-positive, you are better at absorbing fat. It tends to take longer to enter autophagy …
Typically, we recommend it about once a week. But again, a longer fast once a month is a good idea. It depends a lot on your body mass index (BMI). What we found is people who have higher BMIs respond better to this fasting early on. They’re able to generate the ketones.
If you lose both the carbohydrates and the ketones, you end up [feeling] completely out of energy … We are very careful when people are down below 20 on their BMI, especially the ones 18 or below. We want to be very careful to make sure to cycle them [in and out of ketosis] once or twice a week …
These are the ones where, often, exogenous ketones can be very helpful early on … Measure your ketones. It’s simple to do. We want to get you into, ultimately, the 1.5 to 4.0 millimolar [range for] betahydroxybutyrate. That is the goal.”

Test your ketones

So, to recap, while dementia patients with excess weight tend to respond favorably to cyclical fasting, at least initially, underweight patients may experience cognitive decline, as they’re simply too underweight to produce ketones in response to the fasting. For those who are underweight, Bredesen recommends using a ketone supplement such as medium-chain triglycerides (MCT) oil.
If that doesn’t bring you into the desired ketone level (1.5 to 4.0 mmol), or if it’s adversely affecting your low-density lipoprotein (LDL) particle number, he might recommend exogenous ketones — either ketone esters or salts. “We’d like to look at your LDL particle number and use that to titrate, to make sure that your LDL particle number is not too high,” he says.
To test your ketones, I recommend KetoCoachX.12 It’s one of the least expensive testing devices on the market right now. Another good one is KetoMojo. KetoCoach, however, is less expensive, the strips are individually packed and the device is about half as thick as KetoMojo’s, making it easier to travel with.

Energy demands are not met in neurodegenerative diseases

Nutritional ketosis, in which your body produces endogenous ketones (water-soluble fats), is important for all neurodegenerative diseases, but it’s not a complete cure-all. Bredesen explains:
“What we’ve come to realize from the research over the years is that neurodegenerative diseases, whether Alzheimer’s … macular degeneration … Lewy body, Parkinson’s or ALS, they all have one thing in common. They are related to specific subdomains of the nervous system.
Each of these has a unique requirement for nutrients, hormones, trophic factors, et cetera … In each case, there is a mismatch between the supply and the demand. For most of your life, you’re keeping up with that demand. With all of these diseases, you have a repeated or a chronic mismatch between the support and the requirement.
In Parkinson’s disease, it’s quite clear. You can create Parkinson’s disease simply by inhibiting mitochondrial Complex I. That specific subdomain of motor modulation, which is what Parkinson’s is all about, is the thing that is the most sensitive to reductions in mitochondrial Complex I support.
Therefore, when people have this, you need to bring the supply back in line with the demand. A critical way to do that is to supply the appropriate ketosis — the appropriate energy.
Now, if the person is continuing to be exposed to whatever chemicals are inhibiting Complex I — and it’s typically … mold-related biotoxins or organic toxins such as paraquat or glyphosate — as long as these are ongoing, you’re going to get very temporary relief.
The goal here is both to get rid of what is inhibiting Complex I and to flood the system, to help the system by giving appropriate support for the energetics … With Alzheimer’s, we’re really talking about a mismatch in trophic support. You’ve got this ongoing need as you’re making neuroplasticity.”

Why late-night eating is ill advised

Although I am not ApoE4-positive, I prefer fasting for 16 hours a day, essentially narrowing my eating window to just four to six hours. I also make sure to eat my last meal three to six hours before bedtime. One of the reasons for this advice is because avoiding late-night eating will increase your nicotinamide adenine dinucleotide (NAD+) levels, which are important for a variety of bodily functions.
Importantly, it will also reduce nicotinamide adenine dinucleotide phosphate (NADPH), which is essentially the true cellular battery of your cell and has the reductive potential to recharge your antioxidants. The largest consumer of NADPH is the creation of fatty acids.
If you’re eating close to bedtime, then you’re not going to be able to use the NADPH to burn those calories as energy. Instead, they must be stored some way. To store them, you have to create fat, so you’re basically radically lowering your NADPH levels when you eat late at night because they are being consumed to store your extra calories by creating fat.
Bredesen’s protocol includes this strategy as well. He calls his approach “KetoFlex 12/3,” because it generates mild ketosis and is flexible diet-wise. It can be done whether you’re a vegetarian or not. The 12/3 stands for a 12-hour minimum fast each day, and eating the last meal three hours before bedtime.
Certain supplements, including berberine, resveratrol, curcuminquercetin and fisetin also boost autophagy, and can be used in addition to the nutritional timing. Bredesen explains:
“Sirtuin-1 (SIRT1) was identified as a critical molecule, both for longevity and has been studied extensively for its effects on longevity, but also for its effects on Alzheimer’s disease …
ApoE4 actually enters the nucleus and downregulates the production of this critical molecule, so you can see one of its many effects on Alzheimer’s disease. Well, when SIRT1 is made, it is actually made in an autoinhibitory fashion. It’s just like having a gun in a holster. It’s not active … NAD activates the SIRT1.
So does resveratrol. This is why people take resveratrol [or] nicotinamide riboside. These are both activating this program, which is moving you from … more of a pro-inflammatory approach to a longevity approach — a change in your metabolic pattern. That includes activating things like autophagy and also having an anti-Alzheimer’s and a pro-longevity effect ...
[Q]uercetin also has an interesting impact on senescent cells … I think that that’s going to turn out to be an important way to impact a number of age-related conditions, including neurodegeneration.”
The drawback, and the reason you cannot rely on supplements alone, is that the bioabsorption of these polyphenols, like quercetin for example, is quite low. Oftentimes, you cannot absorb enough to get the full benefits.

Limit electromagnetic field exposures

There’s also convincing evidence showing electromagnetic field exposures (EMFs) such as that from cellphones and Wi-Fi play an important role. Bredesen agrees, and recommends his patients limit such exposures. In summary, EMFs activate your voltage-gated calcium channels, allowing the release of excess nitric oxide and superoxide in the cell, resulting in the creation of peroxynitrite.
Peroxynitrite causes similar damage to your DNA as ionizing radiation. It also damages your stem cells, mitochondria, proteins and cell membranes. Poly-ADP ribose polymerase helps repair DNA damage by extracting an adenosine diphosphate (ADP) molecule from NAD. Approximately 100 to 150 NAD are required to repair a single DNA break.
While this process works quite well, problems arise when continuous DNA damage requiring continuous PARP activation occurs, as this ends up decimating your NAD+ level. Bredesen adds:
“This is a critical area. The big problem we’ve had with this so far is that we can measure your NF-κB activation; we can measure your status of hormones, nutrients, magnesium, on and on and on. Typically, with our approach, we measure 150 different variables.
There is no simple way to measure the effect of EMF on a given person’s nervous system. I look forward to the day when we can do a test and say, ‘Aha. This person has 27.2 on their effects on their voltage-gated calcium channels because of EMFs.’ Because then we’ll really be able to alter that.
For now, the best we can say is — just as we go after biotoxins and chemotoxins — [EMF] is a physical toxin. The best we can say is, ‘Minimize that to the extent you can.’ You can certainly measure the exposure. We just don’t have a good way yet to measure its effect on your brain.”

More information

There’s no decline in sight for Alzheimer’s, at least in the foreseeable future, so it would behoove most people to just assume you’re headed for it and take action now, regardless of your age, to prevent it. When it comes to Alzheimer’s, prevention is surely far easier than trying to treat it once it has set in. As noted by Bredesen:
“This is all about prevention and early reversal. Those are the people where we see virtually 100% response. This is why I think there needs to be a global effort to decrease the burden of dementia. We’re just now starting a clinical trial. We’ve been trying to get institutional review board (IRB) approval for years …
It has finally been approved, so we’re starting a trial with Dr. Ann Hathaway, Dr. Deborah Gordon and Dr. Kat Toups, who are all seeing patients. We’re very excited to see what the trial will show with this approach. Because certainly, anecdotally, we’re hearing it all the time.
As you mentioned, we just published a paper a few months ago on 100 patients who showed documented improvement … I’m convinced we could, today, if everyone got an appropriate prevention, make this a very rare disease.”
Bredesen’s case report13 is open access, so you can download and read the full study. To learn more about Bredesen’s ReCODE protocol, see our previous interview, featured in “ReCODE: The reversal of cognitive decline.” In it, he reviews the various subtypes of Alzheimer’s, based on metabolic profiling, the influence of genetics, recommended screening tests and much more.
His book, “The End of Alzheimer’s: The First Program to Prevent and Reverse Cognitive Decline,” also provides the details, and would be a valuable reference in anyone’s health library.
You can also learn more about Bredesen and his work by following him on FacebookTwitter or visit his website, drbredesen.com. Last but not least, keep an eye out for his latest book, “The First Survivors of Alzheimer’s.” This book, scheduled to come out toward the end of 2019, will feature first-person accounts from patients diagnosed with Alzheimer’s who beat the odds and improved.

Source

Thursday, June 13, 2019

Increase in Dementia, Neurological Disease Deaths in US Increase 5-fold! from 1989 to 2015 - Wireless Radiation Implicated

From A. Tsaing:

Back in 2015, a study published by Pritchard et al   http://surgicalneurologyint.com/surgicalint_articles/neurological-deaths-of-american-adults-55-74-and-the-over-75s-by-sex-compared-with-20-western-countries-1989-2010-cause-for-concern/   showed that deaths due to neurological diseases like Alzheimer's and dementia were skyrocketing in 21 Western countries, with the increases in the United States being particularly acute.   It found that people were developing dementia a decade earlier compared to 20 years ago (2010 vs. 1990), with it being regularly diagnosed in people in their late 40s, and death rates from early onset dementia soaring. 

The study found that deaths caused by neurological disease had risen significantly in adults aged 55 to 74 and more than doubled in the over-75 population overall.  The problem was particularly
acute in the United States, where neurological deaths in men aged over 75 have nearly tripled and in women increased more than fivefold.   
 Finland and USA have the highest neurological deaths.  USA used to be ranked #17 for neurological deaths in the age 55-74 group and #11 for the age >75 group from 1989-1991, but 20 years later in 2010 USA was ranked #2. Compared to 20 years ago, neurological deaths have increased significantly in the age>75 group, in ALL countries, ranging from 22% (Greece) to highest at 412% (USA).  In the age 55-74 group, US had the second highest increase of neurological deaths at 64%, meaning neurological diseases are starting earlier.  The Washington Post had reported on this study https://www.washingtonpost.com/world/people-are-developing-dementia-earlier-and-dying-of-it-more-a-study-shows/2015/08/06/599b16b8-3c0a-11e5-8e98-115a3cf7d7ae_story.html?wprss=rss_world   

Now in 2019, Pritchard et al have published a follow-up study with data from 1990 through 2015 https://reader.elsevier.com/reader/sd/pii/S0306987719300040?token=A28224FE789266E33F047E92839326CAF82C1E74AD4FCD22960554B1D55F53A4245C81510D0E9A8FA95F79F66EEF5889  where they attribute increases in autismdyslexiaAttention Deficit Hyperactivity Disorder and neurological diseases, such as Amyotrophic Lateral SclerosisMultiple Sclerosis, Parkinson’s Disease, Early Onset DementiaMultiple System Atrophy and Progressive Supranuclear Palsy to 

"increased background EMF that has become the tipping point-impacting upon any genetic predisposition, increasing multiple-interactive pollutants, such as rises in petro-chemicals, hormone disrupting chemicals, industrial, agricultural and domestic chemicals. The unprecedented neurological death rates, all within just twenty-five years, demand a re-examination of long-term EMF safety related to the increasing background EMF on human health.  The pace of increased neurological deaths far exceeds any Gompertzian explanation - that because people are living longer they are more likely to develop more age-related problems such as neurological disease. "

1) Increases in Neurological Disease Deaths in US much higher than 21 country average


Dr. Karl Maret, MD, BS Electrical Engineer, MS Biomedical Engineer, supplied the 2 plots below. 
Dr. Maret's charts show that there is a real problem in the US with higher %Neuro disease death increases despite comparable decreases in Cancer and Circulation deaths in US and other countries. 

a) Age>75 group

 in the USA, the increase in Neuro. Deaths in Males>75 years old was 268% compared to 114% for all other western countries combined.
 in the USA, the increase in Neuro. Deaths in females>75 years old was 563% compared to 185% for all other western countries combined.  




b) Age 55-74 group

I.e., in the USA, the increase in Neuro. Deaths in Males 55-74 years old was 82% compared to 2% for all other western countries combined.
 in the USA, the increase in Neuro. Deaths in females 55-74  old was 48% compared to 1% for all other western countries combined.  



2)  Increases in Neurological Disease Deaths in US Ranked #2 out of 21 countries.

The 2 plots below were provided by Angela Tsiang, BS Chemical Engineer.

a) Data by Country, age > 75. 

US Data in red below on the chart.  US has increased in 412% from 1989 to 2010, the second highest increase.
Highest Increases: USA 412%, Denmark 322%, Portugal 336%, Finland 219%, Sweden 212%, Norway 206%
Overall Average Increase: 151%!



3) Data by Country, age 55-74

US Data in red below on the chart.  US has increased in 64% from 1989 to 2010, the second highest increase.

Highest Increases:  Greece 75%, USA 64%, Portugal 60%, Finland 48%, Denmark 44%
Decreases: UK -13%, Belgium -11%, Austria -9%, Netherlands -7%, France -2%, Ireland -4%
Overall Average Increase: 15%



-----------------------------

 Dr. Gerd Oberhard, Public Health Dept. of Salzburg, Austria, specifically warned about the effects of RF radiation including neurodegenerative diseases years ago, here https://www.youtube.com/watch?v=tChkIBpj06k

---------------------------- 
Below are 10+ studies showing effect of Wi-Fi and cell phones on anxiety, depression,  neurodegenerationmemory and/or learning.


1) Anxiety and OCD is an effect of diminished blood flow to brain https://www.ncbi.nlm.nih.gov/pubmed/?term=PMID%3A+8564319 
  
Cell phone radiation can cause diminished blood flow in the brain, as shown in Aalto et al. "Mobile phone affects cerebral blood flow in humans". J Cereb Blood Flow Metab

Belpomme's study (p. 260) says that diminished blood flow to the brain (hypoperfusion) is a biomarker for EHS  http://ehs-mcs.org/fichiers/1454070991_Reliable_biomarkers.pdf

2)  Mortazavi et al, 2011.  The Pattern of Mobile Phone Use and Prevalence of Self-Reported Symptoms in Elementary and Junior High School Students in Shiraz, Iran.  Iran J Med Sci June 2011; Vol 36 No 2

In a study of 469 healthy elementary and junior high school studentsstatistically significant higher prevalence of self-reported symptoms such as headache (P=0.009, table 1), myalgia (P=0.0002, table 2 ), palpitation (P=0.0001, table 2), fatigue (P=9×10-8, table 2), attention problems (P=0.0002, table 3) and nervousness (P=9×10-8, table 3) was found in students who had used mobile phones compared to those never used these phones. Furthermore, a statistically significant association was found between the time mobile phones were used in talk mode and the number of headaches per month (P=0.035), number of vertigo per month (P=0.036), number of sleeping problem per month (P=0.002), or even the site of headache (P=0)


3)  Pall, M.  “Microwave frequency electromagnetic fields (EMFs) produce widespread neuropsychiatric effects including depression” Journal of Chemical Neuroanatomy 75 (2016) 43–51

“Soviet and Western literature shows that much of the impact of non-thermal microwave exposures in experimental animals occurs in the brain and peripheral nervous system... These may be generated through roles of VGCC activation, producing excessive neurotransmitter/neuroendocrine release as well as oxidative/nitrosative stress and other responses…  Excessive VGCC activity has been shown to have roles in producing neuropsychiatric changes in humans. Two U.S. government reports from the 1970s to 1980s provide evidence for many neuropsychiatric effects of non-thermal microwave EMFs, based on occupational exposure studies. 18 more recent epidemiological studies, provide substantial evidence that microwave EMFs … can each produce similar patterns of neuropsychiatric effects…Among the more commonly reported changes are sleep disturbance/insomnia, headache, depression… fatigue/tiredness…concentration/attention dysfunction, memory changes, dizziness, irritability, loss of appetite... restlessness/anxiety, nausea, skin burning/tingling/dermographism and EEG changes. In summary, then, the mechanism of action of microwave EMFs, the role of the VGCCs in the brain, the impact of non-thermal EMFs on the brain, extensive epidemiological studies performed over the past 50 years, and five criteria testing for causality, all collectively show that various non-thermal microwave EMF exposures produce diverse neuropsychiatric effects.”


Another similar review paper by Pall in 2018, focusing only on health effects and neuropsychiatric effects from Wi-Fi, "Wi-Fi is an Important Threat to Human Health" Environmental Research Volume 164, July 2018, Pages 405-416  https://www.sciencedirect.com/science/article/pii/S0013935118300355

4) Buchner and Eger, 2011.  A study done on a German town (Rimbach) of 60 people before (Jan/Feb 2004) and after (thru July 2005) a cell tower installation showed statistically significant effects on neurotransmitters at peak cell phone signal exposure levels of 60-100 uW/m2. Noradrenaline and adrenaline INCREASED, while dopamine and PEA DECREASED.  Noradrenaline and adrenaline going up signify increased stress levels (or increased anxiety), and dopamine going down decreases ability to concentrate, and decreased PEA is implicated in ADD as low PEA appears in a large proportion of ADD (Ritalin, a chemical similar to PEA, is used in ADD treatment).  

Study also says that children and chronically ill are more vulnerable to effects of wireless radiation, and that exposure to other wireless signals such as Wi-Fi amplifies the effects of the cell phone radiation on noradrenaline, adrenaline in children and the chronically ill (people with allergies)


5) Dasdag et al. Effects Of 2.4 Ghz Radiofrequency Radiation Emitted From Wi-Fi Equipment On microRna Expression In Brain Tissue.” International Journal of Radiation Biology, vol. 16, 2015, pp. 1-26.

Study showed that "long-term exposure of 2.4 GHz Wi-Fi may lead to adverse effects such as neurodegenerative diseases originated from the alteration of some miRNA expression. Results were statistically significant.  Long Term exposure [24 hours a day for 1 year] to 2.4 GHz Wi-Fi radiation can alter expression of some of the miRNAs such as miR-106b-5p (adj p * _ 0.010) and miR-107 (adj p * _ 0.005). We observed that mir 107 expression is 3.3 times and miR-106b-5p expression is 3.65 times lower in the exposure group than in the control group. "


6) Saikhedkar N, et al. Effects of mobile phone radiation (900 MHz radiofrequency) on structure and functions of rat brain. Neurological Research, vol. 2, no. 6, 2014, pp. 2499-504.

Rats (age 30 days, 120 ¡ 5 g) were exposed to 900 MHz radio waves (cell phone) at an average SAR of 0.99 W/kg by means of a mobile hand set for 4 hours per day for 15 days. [Cell phones sold in the US are not to exceed a SAR of 1.6W/kg]  "A significant change in behavior, i.e., more anxiety and poor learning was shown by test animals as compared to controls and sham group. A significant change in level of antioxidant enzymes and nonenzymatic antioxidants, and increase in lipid peroxidation were observed in test rats. Histological examination showed neurodegenerative cells in hippocampal sub regions and cerebral cortex.  Discussion: Thus our findings indicate extensive neurodegeneration on exposure to radio waves. Increased production of reactive oxygen species due to exhaustion of enzymatic and non-enzymatic antioxidants and increased lipid peroxidation are indicating extensive neurodegeneration in selective areas of CA1, CA3, DG, and cerebral cortex. This extensive neuronal damage results in alterations in behavior related to memory and learning."

"A neuronal damage of the kind described here may not have immediate demonstrable consequences, but in the long run it may result in reduced brain reserve capacity that might be unveiled by other late neuronal diseases. We cannot exclude the possibility that after some decades of daily (often) use, a whole generation of users may suffer from the negative effects, perhaps as early as in middle age."



        Rats were exposed to 2.45 GHz Wi-Fi for 4 h/day for 45 days at 7.88W/m2 (=788uW/cm2) [FCC limit is 1000uW/cm2 for 30 minutes, so exposure within US limits]   
 “The exposed rats elicited memory decline and anxiety behavior. Exposure decreased activities of super oxide dismutase, catalase and reduced glutathione levels whereas increased levels of brain lipid peroxidation was encountered in the radiation exposed rats, showing compromised anti-oxidant defense. reduction in number of dendritic branching and intersections which corresponds to alteration in dendritic structure of neurons, affecting neuronal signaling. The study clearly indicates that exposure of rats to microwave radiation of 2.45 GHz leads to detrimental changes in brain leading to lowering of learning and memory and expression of anxiety behavior in rats along with fall in brain antioxidant enzyme systems.”

8)  Zhang, Jet al, 2017.  Effects of 1.8 GHz Radiofrequency Fields on the Emotional Behavior and Spatial Memory of Adolescent Mice.  International Journal of Environmental Research and Public Health.  2017, 14, 1344; doi:10.3390/ijerph14111344

4 week exposure to 1.8GHz at 2.2 W/kg in mice increased anxiety-like behavior in rats. GABA levels decreased significantly after RF exposure.   



Study found that RF-EMF exposure led to myelin sheath damage and hyperactivity-like behaviour in mice exposed to 835 MHz RF-EMF at a specific absorption rate (SAR) of 4.0 W/kg for 5 hours/day during 12 weeks.  Demyelination was induced in cortical neurons following prolonged RF-EMF exposure and suggests a potential cause of neurological or neurobehavioural disorders. 


10) Redmayne M, Johansson O. Could myelin damage from radiofrequency electromagnetic field exposure help explain the functional impairment electrohypersensitivity? A review of the evidence.Journal of Toxicology and Environmental Health, vol. 17, no. 5, 2014, pp. 247-58.

Review of the evidence for an association between myelin integrity and exposure to low-intensity radiofrequency electromagnetic fields (RF-EMFs) 
“Overall, evidence from in vivo and in vitro and epidemiological studies suggests an association between RF-EMF exposure and either myelin deterioration or a direct impact on neuronal conduction, which may account for many electrohypersensitivity symptoms. The most vulnerable are likely to be those in utero through to at least mid-teen years, as well as ill and elderly individuals.”


11)  Sage, C. and Burgio, E. (2017), Electromagnetic Fields, Pulsed Radiofrequency Radiation, and Epigenetics: How Wireless Technologies May Affect Childhood Development. Child Dev. doi:10.1111/cdev.12824

“New epigenetic studies are profiled in this review to account for some neurodevelopmental and neurobehavioral changes due to exposure to wireless technologies. Symptoms of retarded memory, learning, cognition, attention, and behavioral problems have been reported in numerous studies and are similarly manifested in autism and attention deficit hyperactivity disorders, as a result of EMF and RFR exposures where both epigenetic drivers and genetic (DNA) damage are likely contributors. Technology benefits can be realized by adopting wired devices for education to avoid health risk and promote academic achievement.”


12) Ezz et al, The effect of pulsed electromagnetic radiation from mobile phone on the levels of monoamine neurotransmitters in four different areas of rat brain.  European Review for Medical and Pharmacological Sciences.  2013; 17: 1782-1788

Adult rats were exposed daily to EMR (frequency 1800 MHz, specific absorption rate 0.843 W/kg, power density 0.02 mW/cm2, modulated at 217 Hz) and sacrificed after 1, 2 and 4 months of daily EMR exposure as well as after stopping EMR for 1 month (after 4 months of daily EMR exposure). RESULTS: The exposure to EMR resulted in significant changes in DA, NE and 5-HT [serotonin] in the four selected areas of adult rat brain.
CONCLUSIONS: The exposure of adult rats to EMR may cause disturbances in monoamine neurotransmitters and this may underlie many of the adverse effects reported after EMR including memory, learning, and stress.


13) A 2016 study found altered brain structure in college students who were addicted to mobile phone use.  Decreased brain grey matter volume and abnormal white matter integrity were found via functional magnetic resonance images (fMRI).   https://www.frontiersin.org/articles/10.3389/fpsyg.2016.00597/full