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04 August 2023 | Story The Conversation | Photo supplied
Claudia Ntsapi
Dr Claudia Ntsapi, Basic Medical Sciences Lecturer at the University of the Free State.

Opinion article by , Basic Medical Sciences Lecturer


As the world population has grown older, Alzheimer’s disease has become increasingly common. Alzheimer’s disease is the most prevalent form of dementia. Dementia is a term used to describe a range of symptoms linked to the decline in brain function with age. Symptoms include memory loss, communication difficulties, problem-solving struggles, and personality or behavioural changes.

Alzheimer’s disease is an increasingly urgent global issue. The World Health Organization predicts that the number of people with the condition will triple by 2050.

Despite this growing problem, Alzheimer’s disease remains a relatively understudied condition. This is particularly the case in sub-Saharan countries such as South Africa. One major challenge is that Alzheimer’s is a complex condition with no known cure. However, researchers have identified several key risk factors associated with the disease. These include age, genetics, lifestyle factors and underlying medical conditions.

In recent years, one of the most promising areas of research on age-related diseases, such as Alzheimer’s disease, has been the accumulation of harmful proteins in the brain. Specifically amyloid-ß. Amyloid-ß has remained a prominent area of research in Alzheimer’s disease as its build-up is a classic feature in the development of the condition. Understanding its involvement in the disease process is crucial for advancing our knowledge and developing effective strategies to diagnose, prevent and treat the disease.

The accumulation of amyloid-ß can lead to the formation of plaques. These plaques can interfere with communication between brain cells. This ultimately contributes to cognitive decline and other symptoms associated with Alzheimer’s disease.

Amyloid-ß is a large membrane protein that is essential in neural growth and repair. But its corrupted form in later life can destroy nerve cells. This triggers the loss of thought and memory that is associated with Alzheimer’s.

We therefore sought to find out if dietary interventions, particularly intermittent fasting, would counteract the accumulation of amyloid-ß in the brain and potentially safeguard against age-related brain cell death.

In a paper published in 2021, my colleague and I showed that in experiments conducted in mice we found that intermittent fasting counteracted amyloid-ß accumulation in the brain. These findings were further confirmed in a paper published in May of 2022.

Our findings are an important contribution to the search for the potential role of dietary interventions and are consistent with previous studies supporting the idea that intermittent fasting may help counteract amyloid-ß accumulation in the brain and protect against age-related brain cell death. To my knowledge, the most recent study using a variation of intermittent fasting, was published in September 2022. The clinical branch of this study remains ongoing.

Research into the causes of Alzheimer’s has gathered pace in recent years with new ground being broken on a regular basis as scientists search for treatments.

Our study’s findings suggest that intermittent fasting may be an effective way to increase the efficiency of autophagy – the process that breaks down and recycles damaged or unnecessary cellular components, such as organelles and toxic proteins. This process can therefore reduce the risk of amyloid-ß build-up and associated brain cell death.

These findings are particularly significant because they shed light on the relationship between autophagy and the death of brain cells with age, and the potential therapeutic benefits of interventions that target this process.

How it works

Intermittent fasting is a dietary approach that involves regulating food intake by alternating periods of fasting and eating. This dietary regimen comprises periods of restricted food consumption, followed by periods of normal eating.

There are different types of intermittent fasting. One is time-restricted eating, where food is consumed within a specific time window each day. Alternate-day fasting is where food is restricted every other day.

Intermittent fasting has been shown to have various health benefits. Some of the benefits relate to the promotion of brain health.

Our study’s findings suggest that intermittent fasting may be an effective way to increase the efficiency of autophagy, an essential process for removing toxic or misfolded proteins that can build up in cells.

Sometimes autophagy doesn’t work properly to remove harmful proteins or other cellular components from cells. This has been strongly implicated in the development and progression of various age-related diseases, and is a target of research for potential therapies.

What we did

In our study we investigated the effects of intermittent fasting on brain cells in mice, and brain cells isolated from mice with increased amyloid-ß toxicity. Mice cells are frequently used as a model for human cells in scientific research. This is because of the significant genetic similarity between mice and humans. This use of animal models allows researchers to gain valuable insights and test hypotheses. It is generally considered ethically preferable before potentially conducting human studies.

We found that 24 to 48 hours of intermittent fasting by mice provided protection against cell death in specific regions of their brain. We noted increased autophagy levels in cells of fasted mice. Even in the presence of a high amyloid-ß protein load in brain cells, intermittent fasting maintained autophagy activity. And the process remained effective over a 21-day treatment intervention period.

By increasing the efficiency of autophagy, it is possible to maintain the removal of harmful proteins in cells, even as we age.

The findings of this study suggest that interventions such as intermittent fasting could potentially protect against the development of age-related diseases. This has important implications for public health.

Intermittent fasting is a relatively simple dietary intervention: it’s easy to do. It has the potential to be widely adopted as a preventive measure against the onset of age-related diseases. These findings also provide a basis for future research into the mechanisms by which intermittent fasting protects against brain cell death, exploring the potential for additional therapeutic interventions that target autophagy, and examining the effects of different fasting regimens on brain health.The Conversation

This article is republished from The Conversation under a Creative Commons license. Read the original article.

News Archive

UFS mourns the death of a great academic
2007-02-27

 

It is with great sadness that the management of the University of the Free State (UFS) heard of the death of Prof. Dawfré Roode.

Prof. Roode (70) was the first Registrar: Academics at the UFS. He retired in July 1997 and was living in Jeffrey’s Bay with his second wife, Daphne, for the past three years.

Prof Roode’s ties with the UFS stretch over more than fifty years. He registered at the UOFS in 1955 as first-year student and was elected as chairperson of the student representative council in 1958. He also represented the university on the cricket field and as Free State nineteen-year old in the Currie Cup. His academic career at the UOFS started in 1963 when he was appointed as lecturer in Sociology and Social Work. After completing his D Phil in 1964, he was promoted to senior lecturer in 1966. He became the first head of the Department of Sociology in 1972 and in 1989 he was appointed as Registrar: Academics and in 1989 Vice-Rector: Staff and Administration.

“Prof Roode brought professionalism to the administration that did not exist. He not only served the academe as registrar, but also established it as an important function within the UOFS. His ‘institutional memory’ about earlier decisions and events at the UOFS is also legendary,” said Prof Frederick Fourie, Rector and Vice-Chancellor at the UFS.

Prof Roode’s father, the late Prof Dawie Roode, was the first head of the Department of Music at the UFS. Prof Dawfré Roode had a love for music and was closely involved with the establishment of the Odeion String Quartet.

In October 2004 the university honoured him with a Centenary Medal for his outstanding leadership and contribution, as Registrar and Vice-Rector, to the development of the UFS by establishing and developing a strong and professional administrative structure at the UFS.

“Prof Roode left deep footprints at the UFS. I am glad that we could honour him for this in 2004 with a Centenary Medal before he passed away. He also attended the launch of the university’s history book earlier in February,” said Prof Fourie.

“Our sympathies go to Ms Trudie Roode (his first wife) and their three children Ms Frelet Roux and Gerda Daffue, and their son, Mr Dawie Roode. Prof Roode has left a gap in the hearts of the people who knew and worked with him at the UFS,” said Prof Fourie.

A memorial service will be held in Jeffrey’s Bay on Wednesday 28 February 2007 at 10:30. A memorial service will also be held in Bloemfontein on Wednesday 7 March 2007. More details will be made available at a later stage.
 

Media release
Issued by: Lacea Loader
Media Representative
Tel: 051 401 2584
Cell: 083 645 2454
E-mail: loaderl.stg@mail.uovs.ac.za
27 February 2007

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