GreyMatters

Educational articles, BetterBrain resources, latest in brain health, and news about us. Written for you, with expertise (and love).

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December 30, 2024
7 mins

Grey Matters: The Science Behind Brain Inflammation & Sweet Alternatives

What it is: High-sensitivity C-reactive protein (hs-CRP) is a marker of low-level, systemic inflammation in the body. Why it matters: Elevated...

Featured Biomarker

hs-CRP: A Marker of Inflammation

What it is: High-sensitivity C-reactive protein (hs-CRP) is a marker of low-level, systemic inflammation in the body.

Why it matters: Elevated hs-CRP has been linked to cognitive decline and an increased risk of Alzheimer's disease. Chronic inflammation can disrupt brain health by promoting neurodegenerative processes, leading to neuron damage and reduced cognitive function.

How to improve it: Anti-inflammatory interventions like a balanced diet, regular exercise, and possibly supplementation with omega-3 fatty acids can help lower hs-CRP levels.

CONTENT CORNER

Unlocking the Power of Omega-3 Fatty Acids

Bottom line: It's critical to get 1-2 grams of DHA per day if your goal is to minimize dementia risk and optimize cognitive function.

Omega-3 fatty acids, especially DHA, are essential nutrients that play a crucial role in brain health and cognitive longevity. Found predominantly in fish oil, these fatty acids help reduce inflammation, support neuronal health, and protect against cognitive decline. Studies have shown that individuals with higher levels of omega-3s are less likely to experience age-related cognitive deterioration.

Most people don't consume enough DHA — experts recommend consuming 1-2 grams daily, whereas most fish oil supplements will get you less than 500mg.

In our latest GreyMatters blog post, we dive into how omega-3s counteract inflammation markers like hs-CRP, which is linked to increased Alzheimer's risk, as discussed above. We also explore their role in supporting synaptic plasticity—the brain's ability to form new connections, which is essential for learning and memory.

If you're looking to optimize brain health or have elevated inflammatory markers, omega-3 intake might be a powerful addition to your wellness strategy. 

BETTERBRAIN HACK

satisfying your sweet tooth

Craving something sweet? While excessive sugar intake has been linked to inflammation and cognitive decline, there's a promising alternative: allulose. This naturally-occurring sweetener has 95% fewer calories than sugar and may actually help lower blood glucose levels, making it perfect for baking and cooking while protecting brain health.

BetterBrain Tip: Try replacing sugar with allulose in your baking and cooking (use a 1:1 ratio). While it's slightly less sweet than regular sugar, it provides the same mouthfeel without blood sugar spikes. Note that allulose will brown more quickly when baking.

The Science: Research shows allulose differs from regular sugar by just one molecule, but this tiny change means it's largely excreted instead of being metabolized. In a detailed analysis, Dr. Peter Attia explains how studies suggest allulose may help reduce abdominal fat, decrease insulin resistance, and protect against type 2 diabetes - all factors that contribute to better brain health. 

December 23, 2024
4 mins

Grey Matters: HRV Training & Brain Health Breakthroughs

What it is: HRV measures the variation in time between heartbeats and is a marker of your body's resilience and stress response. Why it matters:...

 Technique Spotlight

HRV Training for Cognitive Resilience

What it is: HRV measures the variation in time between heartbeats and is a marker of your body's resilience and stress response.

Why it matters: Higher HRV is associated with better emotional regulation, cognitive function, and overall brain health. It indicates a well-balanced nervous system and can help prevent cognitive decline by reducing chronic stress on the brain.

How to improve it: Start with short 5-minute HRV breathing exercises, such as the one demonstrated in this video with Andrew Huberman. You can also use a HRV tracking wearable device to help guide your practice towards increasing your HRV.

BetterBrain Tip: Use HRV as a feedback tool to learn what activities or interventions work best for you in managing stress and supporting cognitive resilience.

BRAIN HEALTH NEWS

Semaglutide and Alzheimers

Summary: A recent study published by the Alzeheimer's Association highlights that semaglutide, a popular treatment for type 2 diabetes, may significantly reduce the risk of Alzheimer's disease (AD).

Research Highlights: In a large analysis of over 1 million U.S. patients with type 2 diabetes, semaglutide was associated with a 40% to 70% lower risk of a first-time AD diagnosis compared to other diabetes medications, including insulin. The study's findings suggest that, beyond blood sugar control, semaglutide might offer neuroprotective benefits by reducing amyloid-related risks in the brain.

Why This Is Important: Diabetes and Alzheimer's share common pathways, such as inflammation and insulin resistance. Semaglutide's effects on these pathways may make it a promising candidate in dementia prevention for diabetes patients. While this new data suggests dementia prevention benefits for diabetics, the impact on dementia risk for non-diabetics has yet to be well understood.

For a deeper dive, check out the full study here.

BETTERBRAIN Testimonial

Martha's Journey to Targeted Health Optimization

"My health routine used to feel like guesswork. I was taking handfuls of supplements without really knowing if they were helping," shares Martha, who joined BetterBrain earlier this year.

After reviewing her blood work, we discovered something interesting - her very low fasting glucose wasn't a concern, but actually indicated excellent insulin sensitivity. To better understand her blood sugar patterns, Martha started using a continuous glucose monitor (CGM).

"The CGM data helped me see how my body responds to different foods and meal timing. It was fascinating to see the real-time impact of my choices," Martha explains.

We also streamlined her supplement routine, focusing on three key nutrients her bloodwork showed she needed: Omega-3s for brain health, methylated B vitamins, and vitamin D. "Instead of taking everything under the sun, I now have a simple, targeted approach that I can actually stick to."

Three months later, Martha's homocysteine improved, and her vitamin D levels normalized. "I feel more confident knowing my health decisions are based on data, not just general advice. Plus, my new routine is actually simpler than before!"

Want to share your story?

We'd love to hear how BetterBrain has made a difference for you! Just reply to this email or click the link below. Your words mean the world to us, and who knows? You might just inspire someone else's journey.

December 16, 2024
5 mins

Introducing Grey Matters: 3 Insights for Better Brain Health

What it is: Homocysteine is an amino acid linked to increased risk of Alzheimer's and other forms of dementia. Why it matters: High homocysteine...

 Featured Biomarker

Homocysteine: A Key Marker for Cognitive Health

What it is: Homocysteine is an amino acid linked to increased risk of Alzheimer's and other forms of dementia.

Why it matters: High homocysteine can lead to oxidative stress and inflammation, contributing to damage in blood vessels and brain cells. Studies, like the VITACOG study, have shown that elevated homocysteine is an independent risk factor for cognitive decline. By lowering homocysteine, participants decreased their rate of brain shrinkage by 50%!

How to improve: Consider methylated B vitamins, especially B6, B9, and B12, which help reduce homocysteine levels and support brain health. Regular monitoring and targeted supplementation can make a significant difference in reducing this risk factor for dementia.

Peter Attia once referred to this as having a lottery ticket in your back pocket and not knowing it. This is one of the few areas in brain health where a quick win is possible!

BETTERBRAIN HACK

The Power of a Cold Bedroom

Did you know that maintaining a cool bedroom temperature at night can provide significant benefits for your brain health?

Hack: By setting your AC system to cool your bedroom to 65-68°F in the evening, you can optimize your sleep quality and support better cognitive function.

How it works:Your body's temperature naturally lowers during sleep, but keeping the bedroom too warm can increase your core body temperature. This higher core temperature can actually reduce the amount of time you spend in restorative REM sleep, which is crucial for memory consolidation and overall brain health.

The best part? This simple lifestyle adjustment is a low-cost, low-effort intervention with potentially significant impacts on your cognitive resilience and daily mental performance.

Read more about this brain health hack here, or give it a try and see how a cool bedroom can give your brain the optimal conditions to thrive.

CONTENT CORNER

Simple Steps to Protect Your Brain | NPR Health

Bottom Line: Simple daily habits can cut your risk of memory loss and depression by up to 33%. A new scoring system helps track which habits matter most.

About the article: NPR highlights a practical tool developed at Mass General Hospital - the brain care score - that helps people track 12 daily habits that protect brain health. The score looks at things we can all control, such as: sleep, exercise, diet, social connections, and stress management.

Real Results: Ruth Bernstein, a mom of two, uses the score daily: "It's super helpful. I check: Did I get my steps in? How's my sleep? Am I managing stress?" At a recent party, she enjoyed one glass of wine but skipped a second, knowing that limiting alcohol improves her score.

  

Quick Ways to Help Your Brain:

  • Limit alcohol to less than 4 drinks per week
  • Add leafy greens and healthy fats to meals
  • Take a daily walk
  • Stay connected with friends and family
  • Get enough sleep
  • Manage blood pressure

The Good News: Even small changes add up. Each 5-point increase in your score lowers your risk of late-life depression by 33% and dementia by 27%. Even if you have family history of these conditions, healthy habits can still help protect your brain.

  

BetterBrain Takeaway: Small, daily habits add up to major brain health benefits. Through our biomarker testing and lifestyle assessment, we help identify the areas where simple changes can have the biggest impact on your brain health. These personalized insights make it easier to focus your efforts where they matter most.

September 4, 2024
4 mins

Unlocking the Power of Omega-3 Fatty Acids

Do you know what's in your fish oil? Learn how DHA and EPA reduce Alzheimer's risk by supporting brain health and mitigating inflammation.

As the quest for effective Alzheimer’s prevention continues, recent studies1,2 underscore the profound impact of dietary choices on our brain health. One nutrient class consistently at the forefront of neuroprotective research is Omega-3 fatty acids, particularly Docosahexaenoic Acid (DHA) and Eicosapentaenoic acid (EPA). In this post, we explore how integrating DHA and EPA into your diet can play a crucial role in reducing the risk of Alzheimer's disease.

Fatty acids explained1

DHA and EPA are a major omega-3 fatty acid predominantly found in fish oils. They are called essential fatty acids, meaning that the human body cannot produce them on its own, so they must come from dietary sources. Make sure not to confuse omega-3s (like DHA and EPA) with omega-6s. These are a different class of fatty acids typically found in vegetable oils and nuts. They are much more common in most diets, and can promote inflammation when consumed in excess. 

DHA and EPA are particularly important because the molecules are building blocks for neurons. This means that maintaining healthy levels of DHA and EPA supports neuronal membrane integrity, promotes healthy synaptic activity, and mitigates inflammation within the brain. Long-term, these fatty acids have been shown to help preserve cognitive abilities and delay the onset of dementia1.

Clinical insights on Alzheimer’s prevention

A growing body of research points to a direct correlation between DHA and EPA intake and a reduction in the risk for Alzheimer's. Animal studies provide compelling evidence, showing that diets rich in DHA can significantly reduce the formation of amyloid plaques, which are closely linked to Alzheimer’s pathology1.

Furthermore, in human epidemiological research (research that investigates the distributions and determinants of health-related events in populations), increased consumption of DHA through dietary sources like fish has been associated with lower incidence rates of Alzheimer’s, suggesting its significant protective effect. One study3 found that people with the highest levels of DHA had a 49% lower risk of developing Alzheimer's disease compared to those with the lowest levels. This means that those in the top 20% were about half as likely to get Alzheimer's as those in the bottom 20%. Additionally, increasing DHA levels from the lowest group to the highest group was predicted to give an extra 4.7 years of life free from Alzheimer's disease. 

Other studies have concluded similar results, showing a 47%5 reduction in risk, though there is debate about when this effect may occur. The consensus is that DHA supplementation is most effective when started early, before symptoms get classified as dementia6

Increasing your omega-3 intake

There are two main ways to make sure you’re getting enough DHA and EPA - either making conscious dietary choices4 or taking supplements. From the diet side, fatty fish are an excellent source of omega-3s. Typical guidance recommends eating fish like salmon, mackerel, herring, or halibut at least 3 times per week. It’s worth noting that chia seeds and flax seeds are also excellent sources of omega-3s. Predatory fish like tuna are also good sources of EPA and DHA, but be careful not to consume them too often since they also contain high levels of mercury.

Fish oil supplements can be another great way to increase your intake of omega-3s - if you carry the APOE4 gene, supplementation is particularly important since you may have more trouble absorbing dietary omega-3s. However, it’s important to recognize that not all supplements were created equal. Specifically, not all brands will have the same purity of fatty acids, and not all will contain sufficient levels of DHA and EPA. Here are some things to look out for to make sure you are getting high quality fish oil:

  • High amounts of DHA and EPA per serving (at least 500mg combined per serving)
  • Minimal additives in the ingredients other than the oil and capsule contents
  • Packaged in dark containers to protect the oil from light

A Step Towards Cognitive Longevity

Embracing a diet that includes adequate amounts of DHA and EPA can significantly contribute to brain health and potentially decrease the risk of Alzheimer’s. Start by evaluating your current dietary habits and consider how you might improve your omega-3 intake, ensuring your brain remains vibrant and healthy well into later life.

Where to get started

  • Measure your blood omega-3 index to learn your current EPA and DHA levels. This is one of the 50+ biomarkers tested during your BetterBrain Essentials blood draw.
  • Eat at least 3 servings of fatty fish (e.g., salmon, mackerel) per week, but make sure not to overdo your intake of predatory fish like tuna.
  • Consider using fish oil supplements to increase your EPA and DHA intake. We recommend Carlson’s fish oil, which is available at a discount with a BetterBrain membership.

August 1, 2024
4 mins

The Role of Homocysteine in Dementia Risk

Homocysteine is an inflammatory marker that poses a severe threat to brain health. Luckily, there's an easy fix anyone can implement.

Homocysteine is a naturally occurring amino acid in our body and can spike acutely, such as after staying up all night. In healthy people, homocysteine naturally clears over time. However, at chronic high concentrations, it is associated with various health issues, including heart disease and, notably, cognitive decline. In fact, having blood homocysteine levels over 14 μmol/L is associated with a nearly doubled risk of dementia1. Luckily, there are simple ways to lower your homocysteine levels - most notably B vitamin supplementation. 

Brain Atrophy, Aging and Cognitive Decline

As we age, our brains naturally undergo some amount of atrophy, or decrease in size, which involves a loss of neurons and their connections. This process is accelerated in Alzheimer’s dementia2. With a lower brain volume and fewer neural connections, it’s easy to see how atrophy can lead to lasting cognitive impairment. One factor that has a strong influence on the rate of brain atrophy is blood concentration of homocysteine. Several studies3,4 link elevated homocysteine levels are linked with a heightened risk of dementia. 

The role of B vitamins

You won’t often hear us say this, but you have an ace up your sleeve in fighting homocysteine: B vitamins. One study2 investigated the effects of using B6, B9, and B12 vitamins over the course of two years, using the same level of rigor that is commonly used for drug clinical trials. 

On average, people who used B vitamins lowered their overall homocysteine levels by 32% and experienced a 30% slower rate of brain atrophy. In fact, those who started with very high levels of blood homocysteine (> 14 μmol/L) managed to slow their atrophy rate by 53%. In other words, this study suggests that the simple act of taking a daily B vitamin supplement can cut your dementia risk in half.

The type of B vitamin matters

There are two factors to consider when selecting a B vitamin supplement. The first is what vitamins you are getting. The study mentioned above specifically tested the use of vitamins B6, B9 (also known as folate), and B12. It’s important to get a mix of both. The second is whether or not you select the methylated form of the vitamins. Methylation is a biological process that makes the vitamins more available for your body to use. In other words, the same dose of methyl-B vitamins will be more strongly absorbed than normal B vitamins. This is especially important for people with mutations in the MTHFR gene, since they otherwise have trouble absorbing B vitamins. We generally recommend taking methylated B vitamins since they are perfectly safe, but if you are sensitive to overmethylation, you may want to consider regular B vitamins to avoid side effects like headaches, anxiety, or irritability. 

Broader Implications for Dementia Prevention

Homocysteine is a critically important risk factor for dementia. Not only does it accelerate brain atrophy, it also aggravates other conditions through inflammation and oxidative stress. Thankfully, B vitamins are an extremely effective tool to lower homocysteine levels. While there are many other ways of managing your homocysteine levels, most notably through diet, exercise, and stress management, B vitamins are a low-effort high-impact way to keep your brain atrophy at bay. 

Get started on managing your homocysteine

  • Measure your blood homocysteine levels to learn where you stand. Homocysteine is one of the 50+ biomarkers tested during your BetterBrain Essentials blood draw.
  • Consider using B vitamin supplements to lower your homocysteine, ideally below 9 μmol/L. We recommend Pure Encapsulations MethylAssist, but make sure you use an unmethylated alternative if you are sensitive to overmethylation.
  • Learn more about homocysteine on the Peter Attia Drive episode on dementia. This episode covers many topics, so if you’re just interested in homocystine, skip ahead to 1:09:00.

June 13, 2024
5 mins

Rapamycin: Revolutionizing Alzheimer's Prevention?

Rapamycin's winding path to mainstream use is showing promise as a longevity drug, and may soon change the way we approach brain health.

In the 1960s, researchers on Easter Island were investigating local indigenous peoples’ claims that the soil has healing properties. After testing various soil samples, the researchers isolated a small molecule they believed was responsible for the effects. They named it rapamycin5, after the traditional name for the island, Rapa Nui. Since its discovery, rapamycin has been used in various settings, from an antifungal agent to more recently a beacon of hope in anti-aging medicine. Additionally, it is showing promise in extending lifespan and preventing neurodegenerative diseases such as Alzheimer’s.

From anti-rejection med to longevity enhancer

The transition from an antifungal to a potential longevity drug has been intriguing. Rapamycin, approved in 1999 for its immunosuppressant qualities, is still commonly used in kidney transplants to prevent organ rejection. However, a 2014 study1 on older adults revealed a paradox: at much smaller doses, rapamycin boosted the immune response to flu vaccinations, despite their age-related weakened immune function. This unexpected enhancement suggests that rapamycin might have broader applications for disease prevention in older adults, potentially making it a valuable tool in combating age-related declines in the human immune system.

How rapa works

To understand how rapamycin works, it’s important to understand the molecule that it targets: a cellular receptor named mTOR. mTOR is present in nearly all cells in the human body and is responsible for mediating pathways that regulate cell growth, metabolism, and survival.  Inhibiting mTOR completely is catastrophic - it prevents cells from making energy, eventually leading to their death. However, partial inhibition means that mTOR has a harder time forming a cluster with other proteins, which makes the cell act as if it's not getting enough food. This starts a process where the cell breaks down unneeded or damaged parts, like proteins that aren't folded correctly, which can otherwise impair the cell’s ability to function. This leads to improved cellular survival and resilience and is particularly relevant to brain health since one of the main features of Alzheimer’s is the accumulation of misfolded amyloid beta protein plaques in neurons. 

The partial inhibition of mTOR therefore shows potential for slowing down the progression of Alzheimer’s disease and improving the survival rate of neurons. Animal studies2,3 suggest that rapamycin may help mitigate or improve many of the pathologies associated with Alzheimer's disease and potentially restore cognitive function.  

Growing evidence yet limited human trials

While animal studies have robustly demonstrated lifespan and healthspan extensions—with remarkable outcomes like a 20-30% increase in the lifespan of mice4—human data remains scarce. The gap in human trials can be largely attributed to the fact that rapamycin use for longevity is considered “off-label”. This means that the Federal Drug Administration (FDA) has not yet approved rapamycin for this use, which diminishes incentives for comprehensive research funding. However, the evidence from animal studies  across a variety of species strongly suggests a significant potential for rapamycin in anti-aging treatments. 

Rapamycin’s mainstream use

As mentioned earlier, the FDA has only approved rapamycin for use as an immunosuppressant. It’s important to recognize that rapamycin use for longevity is still considered experimental and will not be reimbursed by insurance. Because the FDA hasn’t established guidelines around its use, there is no single accepted protocol for rapamycin dosage. Given the drug’s complex effects, the risk of experiencing side effects is real. Nonetheless,many individuals already use rapamycin “off-label” under the supervision of a physician for its longevity benefits. This is a perfectly legitimate use of the molecule, even though there is a lot we have yet to learn.

A promising option for the future

Rapamycin offers a compelling glimpse into the future of longevity and neuroprotection. Although its journey from a soil sample to a potential anti-aging miracle has been gradual, the promise it holds could change the landscape of preventive health. As research continues, both the medical community and potential users must weigh the benefits against the uncertainties of translating animal model successes to human health outcomes.

Learn more

Listen to the Peter Attia Drive episode on rapamycin to learn more about the molecule, its history, how it works, and the most recent evidence on its effects.

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