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Tag Archive for: alzheimer’s disease

Posts

Young woman losing parts of head as symbol of decreased mind function.

Addressing the Fear of Cognitive Decline & How to Be Proactive

November 10, 2020/in Inflammation, Mental Health, Wellness/by Lisa Lilienfield, MD

Alzheimer’s disease, the most common form of dementia, is the sixth leading cause of death in the U.S. For most people, the subject of Alzheimer’s brings fear and trepidation. Why? Because the thought of deteriorating brain function and memory loss is frightening. Unfortunately, current medical treatments are inadequate, dealing only with its end result.

Alzheimer’s is characterized by the destruction of synapses in the neurons, the nerve cells in the brain, by amyloid plaques. In addition, “tangles” form in the cells leading to loss of brain function. This leads to progressive loss of memory and behavioral problems like aggression, hallucinations, and delusions, as well as deterioration of activities of daily living. This is heartbreaking for patients and their families. And, despite years of ongoing research, there are still many unanswered questions about what causes Alzheimer’s disease.

Let’s explore some of the known risks associated with dementia and learn how to lower those risks.

Type 3 Diabetes

You may not have heard the term “type 3 diabetes” as another name for Alzheimer’s Dementia. Type 2 diabetes and prediabetes, also called insulin resistance, are both strongly linked to the development of Alzheimer’s dementia. This could actually be good news because it means this is a preventable risk factor.

Why has the term Type 3 diabetes been coined?  Let’s start by discussing sugar, which in large quantities is a poison. The body is not designed to handle more than 15-20 grams per day, yet a soda has at least 40 grams and the average American consumes 82 grams per day.

Excess sugar causes an outpouring of insulin from the pancreas and over time causes the cells in the body – including the brain – to become resistant to insulin. This leads to chronically elevated blood sugar which causes Advanced Glycation End products or AGEs to be produced. These AGEs then attack the eyes, kidneys, peripheral nerves, and the brain!

Environmental factors

Heavy metals, such as lead in pollution and mercury in dental amalgams, and large fish, like tuna, swordfish, and shark increase the risk of dementia. In the 1800s the term “mad as a hatter” came about because hat makers were using a form of mercury to make fur hats and it destroyed brain cells.

Living or working in a water-damaged building leads to the growth of toxic mold, which poisons the nervous system.

Studies also show that living near major highways is a risk factor for Alzheimer’s.

Other causes of dementia include:

  • Recurrent traumatic brain injury (concussions)
  • Infections like Lyme disease and syphilis
  • Excess alcohol and drugs
  • Prolonged general anesthesia
  • Sleep apnea
  • There are several genes that predispose to Alzheimer’s such as the ApoE4. However, just because we have a gene does not mean it will be expressed. Every time we eat, exercise, sleep, meditate, communicate, create something, play, learn, and love, we are turning genes on and off.

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The good news is the brain can actually grow and change in a positive way, even as we get older.

Be proactive in reducing your risk of dementia with these strategies:

Lifestyle strategies can promote neurogenesis (new brain cells) and neuroplasticity (changes in the brain and its pathways). These strategies involve a substance called BDNF or brain-derived neurotrophic factor, which promotes brain cell growth and connectivity as demonstrated on MRI scans. In fact, the hippocampus, which is involved in emotional memory, gets larger the more BDNF is available. A large part of the lifestyle strategy involves modifying the diet to lower unhealthful carbs and increase healthful fats thus lowering the risk of diabetes.

  1. Reduce (non-vegetable) carbohydrate consumption.
    Sugars/artificial sweeteners and grains can cause inflammation of the lining of the digestive tract, or “leaky gut”. An inflamed gut causes an inflamed brain and reduces the size of the hippocampus. Functional testing looking at stool, urine, and breath can determine if your gut is leaky. Replace nutrients lost from a leaky gut or poor diets like B12, folate, B6, magnesium, and iron.
  2. Increase healthy fat consumption.
    Increase your omega-3 fat intake and reduce the consumption of damaging omega-6 fats (like processed vegetable oils) in order to balance your omega-3 to omega-6 ratio. Omega-3 from fish sources shows a lower risk of cognitive impairment.
  3. Add prebiotics & probiotics to your diet.
    Prebiotic fiber nurtures gut bacteria and the hippocampus. Probiotic supplementation, which enhances the healthy bacteria in the gut, decreases the inflammatory marker, C-reactive protein, increases the antioxidant  glutathione, and improves mental status as measured by the Mini Mental Status Exam
  4. Improve your sleep habits.
    Work on getting at least 7-8 hours of solid sleep. If sleep is poor, rule out sleep apnea. A 2020 study published in the journal Sleep confirms that people who have obstructive sleep apnea – or intermittent interruptions in breathing – in their middle ages are more likely to develop Alzheimer’s Disease. If you’re not sure if you have sleep apnea, but you find yourself exhausted during the day, take this short quiz as the first step towards diagnosis.
  5. Exercise!
    Physical activity produces biochemical changes, increasing BDNF, that strengthen and renew not only your body but also your brain – particularly the hippocampus, the area associated with memory and learning. This is especially important for carriers of the ApoE4 gene. A good exercise regimen includes aerobic and resistance training at least 3-4 times per week for 30-45 minutes.
  6. Try Niagen+ IV Therapy to boost NAD+ levels.
    Sirtuins, which are NAD+-dependent enzymes, have shown to benefit brain health by acting on amyloid plaques, repairing DNA, lowering inflammation, and promoting neuronal function, which in turn can prevent or delay the onset of mild cognitive decline. Click here to learn how Niagen+ IVs help boost NAD+ levels.
  7. Go Keto.
    The ketogenic diet. is linked to an increase in BNDF, which causes the hippocampus to get bigger (better memory). This involves cutting down on carbohydrates which reduces insulin resistance (diabetes) and increasing good fats like avocado, olive oil, MCT (medium-chain triglycerides found in coconut oil), and intermittent fasting 12-14 hours between dinner and breakfast so that the body breaks down fats and produces ketones. Note: The Ketogenic diet is not for everyone, ask your physician before starting any specialized diet.
  8. Eliminate toxins.
    Consider getting tested for heavy metal and toxic mold exposure and work with your doctor to eliminate them.
  9. Check your hormone levels.
    Balance hormones, such as thyroid, cortisol, sex hormones, and Vitamin D (which is actually a hormone).
  10. Find out whether you are insulin resistant.
    Get a HgA1C test and a fasting insulin test. Eliminating the risk of Type 2 diabetes (insulin resistance) can lower the risk of Alzheimer’s dementia (Type-3 Diabetes).
  11. Remember to take time to slow down, be mindful (meditation and yoga) spend time with loved ones, and take time to laugh and have fun. This is medicine for our minds.

Lisa Lilienfield, MD

BUILDING A BETTER BRAIN
Read more about our comprehensive services for patients who want to maintain brain health or who have been diagnosed with mild cognitive decline. 

MORE INFO
glutathione

Glutathione: Master Antioxidant, Detoxifier, and Immune Booster

June 18, 2019/in Mental Health, Nutrition, Treatments/by Kaplan Center

In recent years, there has been increasing interest in glutathione (GSH) and the role it plays in the progression and treatment of a wide variety of illnesses and conditions.

Glutathione is the most abundant, and arguably the most important, antioxidant in the body. Several biological processes rely on it to perform optimally, but levels diminish as we age, opening the door to premature cell death, aging, and age-associated diseases and conditions.

Glutathione is critical for the detoxification process.

Low glutathione compromises liver function, which works to flush the body of damaging free radicals. Free radicals, like reactive oxygen species (ROS) and reactive nitrogen species (RNS), are naturally occurring, toxic compounds that are formed when the body converts food to energy. They roam freely, targeting and altering different types of molecules in the body through an exchange of electrons. In ideal circumstances, free radicals are kept in check by antioxidants that prevent them from causing damage.

However, when the scales tip in their favor free radicals can cause significant damage to our cells and our DNA. The result is oxidative stress (OS) which is linked to numerous disease processes including cognitive decline (Alzheimer’s disease) and other age-related conditions like cancer, cardiovascular disease, and diabetes.

Studies confirm the link between low GSH and cognitive impairment:

  • Oxidative stress predicts cognitive decline with aging in healthy adults: an observational study
  • Glutathione relates to neuropsychological functioning in mild cognitive impairment

Closely tied to this is glutathione’s role in mitochondrial survival.

Mitochondria are responsible for creating cellular energy and they are directly linked to the pathways of cellular death. Without adequate levels of glutathione cellular health and longevity are compromised.

Over time, toxins, poor diet, medications, infections, and stress all contribute to depleting levels of glutathione.

Without enough of it in our cells we become “unbalanced” in terms of inflammation and anti-inflammation. When the body’s normal cycle of destruction and repair tips more towards destruction and moves away from repair we see disruptions in the proper functioning of the immune system, we see an increase in inflammation, and we see an increase in neuropsychiatric and neurodegenerative diseases, such as Alzheimer’s disease, Parkinson’s disease, depression, ME/CFS, and fibromyalgia.

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Optimize Glutathione Levels With IV Therapy

Vitamin and mineral IVs are a wonderful way to deliver and replenish vital nutrients to the body. By bypassing the digestive system, you get maximum absorption into the bloodstream and maximum bioavailability. Glutathione has shown it can cross the blood-brain barrier (BBB) and can, therefore, be an important tool in preventing and treating neurodegenerative conditions.

Some of the benefits of glutathione IV supplementation include:

  • Encourages cellular health
  • Lowers inflammation
  • Boosts immune system function
  • Helps maintain the body’s detoxification process
  • Improves cognitive function (clarity, focus, executive function)
  • Improves muscle repair and muscle development
  • Improves muscle endurance and energy

Bottom line: Increasing glutathione is one more way to slow down the aging process, encourage recovery, prevent disease, and maintain optimal health.

We are here for you, and we want to help.

Our goal is to return you to optimal health as soon as possible. To schedule an appointment please call: 703-532-4892 x2

References:

Ballatori N, Krance SM, Notenboom S, Shi S, Tieu K, Hammond CL. Glutathione dysregulation and the etiology and progression of human diseases. Biol Chem. 2009;390(3):191–214. doi:10.1515/BC.2009.033

Mol Neurobiol. 2014 Dec;50(3):1059-84. doi: 10.1007/s12035-014-8705-x.

Forman HJ1, Zhang H, Rinna A. Glutathione: overview of its protective roles, measurement, and biosynthesis. Mol Aspects Med. 2009 Feb-Apr;30(1-2):1-12. doi: 10.1016/j.mam.2008.08.006.

Ribas V, García-Ruiz C, Fernández-Checa JC. Glutathione and mitochondria. Front Pharmacol. 2014;5:151. Published 2014 Jul 1. doi:10.3389/fphar.2014.00151

Mytilineou C1, Kramer BC, Yabut JA. Glutathione depletion and oxidative stress. Parkinsonism Relat Disord. 2002 Sep;8(6):385-7.

Aoyama K1, Nakaki T. Impaired glutathione synthesis in neurodegeneration. Int J Mol Sci. 2013 Oct 18;14(10):21021-44. doi: 10.3390/ijms141021021.

Hirrlinger J1, Gutterer JM, Kussmaul L, Hamprecht B, Dringen R. Microglial cells in culture express a prominent glutathione system for the defense against reactive oxygen species. Dev Neurosci. 2000 Sep-Dec;22(5-6):384-92.

Kannan R, Kuhlenkamp JF, Jeandidier E, Trinh H, Ookhtens M, Kaplowitz N. Evidence for carrier-mediated transport of glutathione across the blood-brain barrier in the rat. J Clin Invest. 1990;85(6):2009–2013. doi:10.1172/JCI114666

Hormone Levels and Risk of Alzheimer’s

July 30, 2018/in Hormone Health, News, Women's Health/by Lisa Lilienfield, MD

Last month at the Alzheimer’s Association International Conference in Chicago, studies were presented in relation to lower hormone levels contributing to the possible risk of dementia.

One study, “Women’s Reproductive History and Dementia Risk”, which looked at 15,000 women in California, showed that women were less likely to develop dementia later in life if they started menstruating earlier and went through menopause later. Menopause at age 45 or younger increased risk by 28%. Also, the risk of Alzheimer’s for women who had 3 or more children was 12% lower than those women who had one child.

Another study out of the U.K., Women’s Pregnancy History May Influence Alzheimer’s Risk through Alterations in Immune Function, of 133 elderly women, supported these findings. They looked at the number of months of pregnancy in their lives and found the higher the number, the lower the rate of Alzheimer’s.

One presenter remarked that the intense fluctuations of hormones related to menopause may be associated with an increased risk of Alzheimer’s.

While it’s not clear if estrogen replacement protects against dementia after menopause, there is supportive evidence that if given to women in their early 50’s, estrogen and progesterone prevent the hormonal fluctuations, hot flashes, and sleep disturbance that could be associated with dementia. The benefits of giving hormones after 65 are murky, in that there may be an increased risk of dementia, heart disease, and breast cancer. In this age group, it is recommended to look at each case individually, depending on other medical conditions, and to use the lowest possible dose with a safer delivery system, like transdermal estrogen and natural micronized progesterone. Some conditions that could benefit from hormone replacement later in life include multiple sclerosis, chronic pain syndromes, osteoporosis, or the continuation of severe hot flashes.

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