Showing posts with label polar lipids. Show all posts
Showing posts with label polar lipids. Show all posts

Thursday, 26 February 2026

Four foods that can help improve your cholesterol and boost heart health

Four foods that can help improve your cholesterol and boost heart health

Diet can play a key role in preventing heart disease. Marian Weyo/ Shutterstock
Ioannis Zabetakis, University of Limerick

Cholesterol has long been seen as a key culprit in cardiovascular disease. While it’s true that cholesterol does play a role, not all cholesterol is bad for us.

There are two main types of cholesterol.

The first type is low-density lipoprotein or LDL cholesterol. This is often referred to as the “bad” cholesterol because it causes fat to collect in the arteries as plaques. This makes it harder for blood to pump throughout the body, leading to greater risk of a heart attack or stroke.

The second type is high-density lipoprotein (HDL) cholesterol — often referred to as “good” cholesterol.

HDL cholesterol has two key roles in the body. It removes excess bad cholesterol from the tissues and arteries and returns it to the liver so it can be removed from the body. HDL cholesterol also protects the artery walls so there’s less risk of a blockage forming.

Boosting HDL

The ratio of LDL to HDL in a person’s body is related to their cardiovascular disease risk. If you have a higher ratio of HDL to LDL, your cardiovascular disease risk will be lower. But if you have a lower ratio of HDL to LDL, you’ll have a higher risk of cardiovascular disease.

Fortunately, it’s possible to shift this ratio and increase HDL cholesterol levels. This can be achieved by exercising, quitting smoking and managing your weight, for example.

Certain foods can also improve HDL ratios.

The main way that diet helps boost HDL ratios is by reducing inflammation. Inflammation is a key problem in cardiovascular disease.

Inflammation makes it possible for blood platelets to stick together in our arteries at a much higher rate. This makes it difficult for the HDL cholesterol to do its job, which increases risk of blood clots forming and raises likelihood of heart disease.

A digital drawing depicting cholesterol plaques on the artery wall, blocking blood flow.
HDL helps prevent bad cholesterol from building up. NPW-STUDIO/ Shutterstock

By eating anti-inflammatory foods, it makes it easier for HDL cholesterol to do its job of sweeping away excess LDL cholesterol. Here are four examples you can include in your diet:

1. Fruits and vegetables

Research shows that people who have diets high in fruits and vegetables have higher HDL cholesterol levels and a better total cholesterol ratio. They also have lower blood pressure and healthier blood sugar levels, all of which can be supportive to heart health.

Fruits and vegetables exert their positive effects by trapping free radicals.

Free radicals are highly reactive, unstable molecules that can cause damage to cells and trigger inflammation in the body. By preventing inflammation, this makes it possible for HDL cholesterol to continue doing its job of removing bad cholesterol and protecting the arteries.

2. Oily fish and olive oil

Oily fish (such as salmon, sardines and tuna) and olive oil are rich in a type of fat called “polar lipids”.

These lipids are able to reach the bloodstream more quickly compared to other types of fat, allowing them to reduce inflammation and prevent the aggregation of platelets more effectively.

Cell and animal studies have shown that a diet rich in the polar lipids from oily fish is effective in preventing blood clots from forming. This effect can help cholesterol ratios stay balanced, meaning cardiovascular disease risk is lower.

3. Fermented dairy

Fermented dairy products, such as yoghurt, kefir and cheese, can all have a positive effect on HDL levels.

During fermentation, the lipids are broken down into smaller compounds that have a greater anti-inflammatory effect than milk. They can also be metabolised faster by the body.

Fermented dairy products are also rich in polar lipids, which means that they can considerably reduce cardiovascular risk.

Research found that for every 20g of fermented dairy products people consumed each day, there was a modest reduction in cardiovascular disease risk.

4. Red wine

Finally, red wine is completely misunderstood. According to the latest research, moderate consumption of red wine (the equivalent of one to two small glasses per day) is linked with better HDL ratios.

Wine reduces inflammation when consumed in small quantities because it contains polar lipids. However, if wine intake is high, the negative, pro-inflammatory effect of alcohol outstrips the positive effect of the lipids.

This is why it’s important only to drink small amounts and in moderation – otherwise, alcohol can have many negative effects on the body. Indeed, the World Health Organization has said there is no safe level of alcohol consumption as the negatives, such as increased cancer risk even from light drinking, outweigh any positives.

Non-alcoholic wines also contain polar lipids. Research suggests that polar lipid extracts from non-alcoholic beverages have comparable benefits on preventing the formation of blood clots as their alcoholic counterparts.

Inflammation is a key factor in heart disease. By eating foods that reduce inflammation in the body, it’s possible to look after your heart health and lower cardiovascular disease by improving the ratio of HDL to LDL in the body.The Conversation

Ioannis Zabetakis, Associate Professor, Food Chemistry, University of Limerick

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

Tuesday, 18 February 2025

The year of hope: ‘Exciting’ advances achieved in search to reverse Alzheimer’s disease


 

Factors linked to dementia. Graphic: UK Alzheimer’s Society 

 

from the Irish Times / the article is behind a paywall so you can read it here.

Merits of simple lifestyle changes to curb risk of dementia have never been so compelling

 

 

There may be no cure yet for Alzheimer’s disease, a leading cause of death in most developed countries including Ireland, but 2024 has brought a succession of breakthroughs.

They range across drugs reducing rogue proteins in the brain linked to the disease, blood tests enabling rapid and more accurate diagnosis, and growing evidence that specific lifestyle changes can reduce risk of Alzheimer’s by up to 50 per cent.

Geriatrician Prof Seán Kennelly, clinical lead in the Memory Assessment Clinic at Tallaght University Hospital, agrees these are “very exciting” advances.

He tries to avoid hype. “I’m always conscious that there are people who are living, and supporting the care of somebody, with dementia now – they’re at a stage whereby these treatments are probably not going to be effective.”

Tantalisingly, the breakthroughs bring us closer to reversing Alzheimer’s while evidence continues to emerge that something as simple as integrating a healthy lifestyle can reverse symptoms of the disease.

The biggest news for Kennelly is confirmation of the first medicine in 20 years for treating Alzheimer’s. “We finished the year with the recommendation from the European Medicines Agency (EMA) for Lecanemab ... this is the first medicine that we know removes this culprit protein – amyloid – which is responsible for causing Alzheimer’s disease.”

It is different from early treatments known as cognitive enhancers. “They didn’t alter trajectory of the illness. They really just helped with symptoms for a short period of time in a small number of people.”

We are moving into “a new era of chemotherapy” where it’s becoming like the treatment paradigm for cancer, he says. “It’s around timely and specific diagnosis, and we have new tests to help us diagnose Alzheimer’s disease ... and then delivery of medicines at earlier stages of the condition, because these proteins build up in the brain about 15 to 20 years before people have clinical symptoms.”

The EU is about to rule on licensing Lecanemab. Public reimbursement then arises in the national context, with a HSE process expected to be completed within a year. Analysis indicates 10 per cent of people who come through the memory clinic every year will benefit.

“These are like the first chemotherapies we would have had for cancer. They’re more dangerous than we’d like, and they’re less effective than we’d like.” Lecanemab is a drip administered every two weeks. Donanemab, which the EMA will adjudicate on shortly, is a monthly infusion. Soon injections under the skin mean people may not need to have infusions at all.

[ Nearly half of dementia cases could be prevented or delayed by addressing ‘14 modifiable risk factors’Opens in new window ]

The era of targeting these proteins at an early stage to minimise risk of Alzheimer’s progressing has started. The prospect of it becoming a managed condition, such as HIV or diabetes, is very real. “Five years ago that was pretty much unthinkable,” Kennelly says.

“As these new medicines become available for people with little or no symptoms, more people at that milder stage will start presenting,” he explains – which will push that 10 per cent upwards.

Since 2016, the clinic has been doing more than 200 CSF lumbar tests a year, numbing the lower back, extracting cerebrospinal fluid and measuring amyloid and tau – the culprit proteins – the main route to definitive diagnosis.

He expects a blood test will be available within two years. New blood tests are as good as the CSF test and more advanced imaging tests.

A blood test called pTau217 looks as accurate as the CSF test or amyloid PET scans. The FDA in the US has already approved some of these tests, while applications are with the EMA. They are much easier to do, while a PET scan costing €2,500 are not as successful and require radiation.

As with cancer treatment, you need to have “accurate biology” to start chemotherapy. “That’s why these two streams of better diagnosis happening alongside better treatment potentials is what has a lot of excitement for what is in the developed world probably the main cause of illness as we grow older now.”

Better management of dementia will bring wide-scale benefits, Kennelly predicts. “Dementia is the common thread of frailty as we get older. It’s the main predictor somebody will have difficulty managing in their own home. It’s the main reason why people end up going into nursing homes ... why people have falls when they grow older, why they have incontinence.”

The life expectancy of somebody born in 2021 is about 105 years of age by current evidence “but we have this health span gap between the length of time people are healthy versus the length of time they’re living” – and the main cause nowadays is dementia.

“What we know is an 80-year-old today is 40 per cent less likely to develop or have dementia than an 80-year-old 40 years ago. But we have so many more 80-year-olds now.”

While innovation is moving quickly, many are still in the early stages of real-world application, says Dr Laura O’Philbin, research and policy manager at the Alzheimer Society of Ireland.

“Amid this excitement, we must also remember the 64,000 people already living with dementia in Ireland, who need services and supports to live as well as possible for as long as possible,” she adds.

[ The demon dementia has made me uncertain about the net benefit of being around my motherOpens in new window ]

“Nobody is stopping the fight to try and find better treatments for people with advanced symptoms,” Kennelly states, but most of the good news this year and most of these new treatments are going to be focused on that group of people who don’t have significant symptoms.”

He often says “this is the best news people didn’t know they needed, because many of the people who will probably benefit from them don’t know that these proteins are building up in their brain – and have no symptoms right now”.

The merits of simple lifestyle changes to curb risk of dementia, and its most common form, Alzheimer’s disease, have never been so compelling but the range of advice can seem overwhelming.

“About 40 to 50 per cent of all of our risk for developing dementia is modifiable. So people do have power to alter that risk,” says Kennelly.

Fortunately, the Lancet Commission on Dementia provides clarity. It gathers 27 of the world’s leading dementia specialists to distil evidence and update advice. Its latest report published in July confirmed almost half of dementia cases worldwide can be prevented or delayed.

Its finding that far more cases could be avoided or delayed than previously thought was seismic. The modifiable risk factors, starting in childhood and continuing throughout life, could prevent or delay 45 per cent of dementia cases, even as people live longer, it concluded.

Healthy lifestyles involving regular exercise, not smoking, cognitive activity in midlife – including outside formal education – and avoiding excess alcohol can lower risk but may also push back dementia onset.

“There is much more that millions of people could and should do to reduce the risk of dementia. Many people around the world believe dementia is inevitable but it’s not,” said lead author Prof Gill Livingston.

There is stronger evidence that longer exposure to risk has a greater effect, yet it shows it’s never too early or late to take action.

Their report adds two risk factors associated with 9 per cent of dementia cases. About 7 per cent of cases are linked to high low-density lipoprotein (LDL) – or “bad” cholesterol – in midlife from about the age of 40, while 2 per cent of cases are attributable to untreated vision loss in later life.

The new risk factors are in addition to 12 identified in 2020. They are lower levels of education; hearing impairment, high blood pressure, smoking, obesity, depression, physical inactivity, diabetes, excessive alcohol consumption, traumatic brain injury, air pollution and social isolation.

Age and genetics, however, remain the biggest risk factors for dementia, while women are more likely to get the disease.

Kennelly helps run Ireland’s first brain health clinic for people with mild memory symptoms which helps with behavioural changes by providing a support infrastructure. “So how do you get to exercise? What is the best diet? How do you get to a best diet? How do you improve your social network? We check their vision and hearing. [It] emphasises the whole potential to prevent dementia.”

In explaining to patients, he compares the approach to SSIAs – the savings scheme in which the State topped up deposits by individuals – “in that later investment offers and brings a better value outcome. We know that doing this later in life, actually you get an even amplified effect because your risk is so much higher”.

“So people doing all the good stuff at 40 is a good thing ... if you stop doing it at 50, you’re still accruing risk at that stage whereas if we can really get people at the age of 60 into doing more exercise, better diets, better social connectivity, getting their eyesight and their hearing checked.”

Hearing loss is a big risk factor, Kennelly underlines. “And people won’t be aware of it because your brain will always tell you your hearing is fine. You can’t hear what you haven’t heard. So you have to get these things formally checked by a third party.”

And there is “really strong evidence” for a 40 per cent reduction in risk of developing dementia with the shingles vaccine, he adds – the same for the flu vaccine. By turning down the immune system or inflammatory response within the body, vaccination seems to be very effective at reducing risk, though the effect is not fully understood.

The shingles vaccine costs about €500, but given the health dividend, Kennelly says the cost should be fully reimbursed in Ireland – as it is in the UK.

It is never too early or too late to start thinking about our brain health and taking early steps to reduce our risk of dementia, says Dr Laura O’Philbin of the Alzheimer Society of Ireland. While there is no one specific method or treatment proven to prevent dementia, there are lifestyle changes we can make and strategies we can adopt to lower our risk.

However, she adds, brain health is not just about individual choice as it is intrinsically linked to social inequalities. “Factors such as poverty, ethnicity, and geographic location significantly impact access to education, healthcare, and air quality, all of which influence dementia risk.”

 

= = = = 

In UL, with my research team, we have started working on this topic. One of our latest publication is this one:

Polar lipids modify Alzheimer’s Disease pathology by reducing astrocyte pro-inflammatory signaling through platelet-activating factor receptor (PTAFR) modulation.

 

Background

Pro-inflammatory processes triggered by the accumulation of extracellular amyloid beta (Aβ) peptides are a well-described pathology in Alzheimer's disease (AD). Activated astrocytes surrounding Aβ plaques contribute to inflammation by secreting proinflammatory factors. While astrocytes may phagocytize Aβ and contribute to Aβ clearance, reactive astrocytes may also increase Aβ production. Therefore, identifying factors that can attenuate astrocyte activation and neuroinflammation and how these factors influence pro-inflammatory pathways is important for developing therapeutic and preventive strategies in AD. Here, we identify the platelet-activating factor receptor (PTAFR) pathway as a key mediator of astrocyte activation. Intriguingly, several polar lipids (PLs) have exhibited anti-inflammatory protective properties outside the central nervous system through their inhibitory effect on the PTAFR pathway. Thus, we additionally investigated whether different PLs also exert inhibitory effects on the PAF pathway in astrocytes and whether their presence influences astrocytic pro-inflammatory signaling and known AD pathologies in vitro.

Methods

PLs from salmon and yogurt were extracted using novel food-grade techniques and their fatty acid profile was determined using LC/MS. The effect of PLs on parameters such as astrocyte activation and generation of oxygen species (ROS) was assessed. Additionally, effects of the secretome of astrocytes treated with these polar lipids on aged neurons was measured.

Results

We show that PLs obtained from salmon and yogurt lower astrocyte activation, the generation of reactive oxygen species (ROS), and extracellular Aβ accumulation. Cell health of neurons exposed to the secretome of astrocytes treated with salmon-derived PLs and Aβ was less affected than those treated with astrocytes exposed to Aβ only.

Conclusion

Our results highlight a novel underlying mechanism, why consuming PL-rich foods such as fish and dairy may reduce the risk of developing dementia and associated disorders.

 

 

 

 

 

 

 

Saturday, 2 November 2024

New book: Preventing Inflammation and Cardiovascular Diseases: How Food Polar Lipids Can Reduce Inflammation


 

If you have a family member or a friend who suffers from Cardiovascular Diseases (CVD) and is taking statins, this book may be a valuable Christmas gift. I write about the need to personalise our diet and our exercise pattern.

We can fight CVD but don't expect miracles overnight. At the same time, nutrition bodies around the world need to change their dietary guidelines. Food must be our medicine and our greengrocer can become our pharmacist!

 

- - -

Book description

 

18 million deaths annually worldwide are due to cardiovascular diseases (CVD); this renders CVD the most severe pandemic that we must face. This book aims to fill a gap in the literature on how flawed our approach is to prevent and treat CVD.

Our current practice, which focuses on attacking only the cholesterol using statins, is both short-sighted and ineffective. A different approach is suggested in this book, regarding personalised lifestyle and diet choices. Such an approach focuses on the chronic inflammation which causes the formation of thrombus in our arteries, which is the first step to the onset of CVD.

All scientific jargon has been left out and the relevant scientific literature is presented in an easy to follow and understandable way. This book is useful to everyone who wishes to understand how we can prevent CVD without medication but instead through a healthy diet and lifestyle choices.

 

Author's bio

Ioannis Zabetakis is a food chemist with considerable academic experience and a passion for developing novel functional feeds, foods and nutraceuticals to help prevent or tackle cardiovascular diseases. His academic career spans over twenty-five years, working with the University of Leeds (UK), University of Athens (Greece) and University of Limerick (Ireland). His research focuses on how food lipids can inhibit the aggregation of platelets.

Ioannis has been either the co-author or editor of ten scientific books so far (seven in Greek and three in English) and has published over 110 scientific papers (Scopus index h=36). He also holds two patents. This book is his first monograph written in a lay-reader-friendly language.

Ioannis believes that the statin approach against cardiovascular diseases does not work. He is, therefore, an advocate of a healthy and personalised lifestyle and diet choices that can reduce cardiovascular risk. His philosophy is presented in this book.

 

 

Wednesday, 25 October 2023

the "cardiovascular end" of PUFAs and all marine oils containing n-3 PUFAs (aka omega-3s)


 Hypothesized molecular effects of n-3 PUFAs on the cell membrane. Reproduced with permission [1].

 

= = = = = = = = = = =

 In an Final Year Project (FYP) of the Academic Year 2022-23, I had the luck and honour to work with 3 amazing final year students, now UL graduates in Food Science and Health: 

Cliodhna, Anna and Ellen 

on a project focusing on the cardioprotective properties of omega-3 PUFAs and polar lipids (PL).

In our work, we have been focusing on PL for a number of years as PL are more labile in human organism and they can reach the bloodstream within 3-4 hours (data in house).

This paper is the fruit of this FYP:

Cardiovascular Diseases and Marine Oils: A Focus on Omega-3 Polyunsaturated Fatty Acids and Polar Lipids

We present all the relevant literature to prove that omega-3 PUFAs don't lower the cardiovascular risk; therefore bying omega-3 pills at your chemist is a waste of money!

= = =

 I am grateful to Cliodhna, Anna and Ellen and my colleagues and friends Constantina (Angie) and Ronan!

Well done everyone!

Best of Luck in whatever you are doing and planning to do!

Keep up the good work!

Carpe Diem!

Ioannis


Sunday, 11 April 2021

new paper from our group: Inflammation and Chronic Diseases: The Polar Lipid Link


 

Inflammation and Chronic Diseases: The Polar Lipid Link

Lordan R, Zabetakis I, Tsoupras A

Proceedings 2021, 70(1), 70; https://doi.org/10.3390/foods_2020-07598

Abstract

Cardiovascular diseases (CVD) are the leading cause of death globally. The focus of scientists and practitioners for decades has been on cholesterol levels and pharmacological ways to control them. Over the past few years, a new school of thought has emerged: inflammation is the underlying cause of chronic non-communicable diseases (NCDs) such as CVD. Therefore, the key to reducing the incidence of chronic diseases is to control the activities of various inflammatory mediators, such as platelet-activating factor (PAF), via diet, exercise, and healthy lifestyle choices. One proposal has been that the polar lipids (PL) present in foods can play a key role via their antithrombotic and anti-inflammatory bioactivities. In this paper, we present our latest views on PAF and how it is related to CVD, and we discuss the role of diet and PL against PAF-induced inflammation.
 
the full paper is here. 

Tuesday, 21 July 2020

Polar Lipids vs Neutral Lipids

This question comes up all the time and it's an interesting one:
why are neutral lipids (NL) less active than polar lipids (PL) when it comes down to CVDs and Inflammation?

In order to answer this, let's see the structures of PL vs NL.

Transesterification reaction of a triglyceride of PUFA and ethanol.This process makes it easier to purify, refine, and concentrate the PUFAs. However, the derivatives obtained are less bioavailable because they have to be changed again to the triglyceride form in vivo. From https://www.azom.com/article.aspx?ArticleID=12419 




The most common structures of phospholipids are depicted: phospholipids with a glycerol backbone (GPLs); sphingomyelin as a representative of a sphingosine-backbone phospholipid (SPLs); and alkyl-phospholipids (Alkyl-GPLs) that have a fatty chain linked with an ether-bond at the sn-1 position of the glycerol backbone. From                                                           https://www.mdpi.com/1420-3049/22/11/1964

The polar lipids have a phospho-head (polar head) on C-3 of the glycerol backbone whereas the NL are just esters (acid +EtOH --> ester + H20).

PL being polar are water soluble and more mobile in the water environment of our body.
NL are not.

So, imagine now, when you swallow a supplement that has ethyl esters of EPA and DHA. It needs to go through the stomach, where it hydrolyzes and the free EPA and DHA are then in a very hostile environment (low pH, many oxidative agents around etc); will they ever reach the blood stream? Yes, at very tiny amounts.
So, even when they reach the blood stream... can they stop PAF (Platelet Activating Factor)?

What the hell is PAF now?
Here is PAF.

The structure of the classic platelet-activating factor molecule                                                                https://link.springer.com/referenceworkentry/10.1007%2F978-3-319-54528-8_95-1


 PAF, 1-O-alkyl-2-sn-acetyl-glycero-3-phosphocholine, is a potent phospholipid mediator, which is characterized by an alkyl ether linkage at the sn-1 position, an acetyl group at the sn-2 position, and a phosphocholine group at the sn-3 position. These are important structurally distinguishing features that are critical to the biological activity of PAF, which is mediated by stereospecific binding to its specific receptor (PAF-R). PAF plays a role in several chronic diseases, in particular CVD.

So, PL with omega-3 fatty acids in positions 1 and 2 are more agile and more bioefficient because they mimic betten than neutral omega-3s the structure of PAF.
Competing for PAF receptor site, PL "inactivate" PAF and hence inhibit PAF-induced platelet aggregation, as shown here.

Therefore, when scientists talk about levels of omega-3 in red blood cells (RBC), these are not neutral omega-3s since NL are not water soluble.

Everything comes down to two fundamental Chemistry concepts:
1. Polarity
and
2. Solubility.

or as Chemists say, we say...

"Like dissolves like" is an expression used by chemists to remember how some solvents work. It refers to "polar" and "nonpolar" solvents and solutes. Basic example: Water is polar. Oil is non polar. Water will not dissolve oil.

Fish contains polar lipids. 
Fish supplements (most of them!) contain NL.

Therefore...
Inflammation and cardiovascular disease: are marine phospholipids the answer?

Fig. 2 A schematic demonstrating the differences between the structures, digestion, and absorption of (A) triacylglycerols and (B) polar lipids such
as phospholipids. (C) Highlights the putative bioavailability and bioactivity differences between n-3 PUFA bound to either TAG or PL.                                                                                                                                                                               This figure has
been adapted from Lordan et al.4 and Burri et al.86 with permission from MDPI, copyright 2017 and 2012 respectively. https://pubmed.ncbi.nlm.nih.gov/32270798/
 

 

Monday, 18 May 2020

covid-19, NCDs, and food: the missing link?

Last March 30th, I sent an email with a couple of lines to my colleagues, Catherine, Alexandros and Ronan. 

It was a short email: the title of this blogpost with an attached file. The file contained a draft paper, two pages long, titled "Covid-19, Food and Chronic Diseases: the inflammation link".

We have been working on inflammation for a number of years (my first paper on PAF, atherosclerosis and food was published in 2000; it was on ....fried cod; fish and chips was the inspiration - I was lecturing in Leeds then :).

Fast forward to 2018, we (Ronan, Alex) wrote a paper on inflammation and CVDs with a rather radical title. Today, 2 years and few days later, that paper has few downloads and citations. We knew that we were after sth valid...

What about covid-19 though?

On 23rd March, the World Health Organisation (WHO) issued guidelines on the link between COVID-19 and non-communicable diseases (NCDs).




 

The link between non-communicable diseases (NCDs) and COVID-19



It was then when I whispered to myself : hey Yannis, hang on. What's going on here? 
All the discussions  I had with Alex and Ronan at Scholars in UL, with Nikola Tesla watching us, came to mind. So many cappuccinos for me, teas for Ronan and mochas for Alex discussing cardiovascular diseases, platelet aggregation, statins and their non-impact on cardiovascular risk, the vested interests on statins and omega3, cancer, mental disorders, neutral lipids, polar lipids, med diet, food pyramids, obesity etc etc...
And Nikola watching us all the time...
Sometimes, as we were leaving Scholars, I was smiling to Nikola...





That March 30th email was transformed to a review paper that was accepted yesterday and should appear very soon in Nutrients.    
 
"COVID-19: The Inflammation Link and the Role of Nutrition in Potential Mitigation"

 
Received: 22 April 2020; Accepted: 17 May 2020; Published: date

The purpose of this blogpost is double:

a. to thank Catherine, Alexandros and Ronan for all their collective efforts to produce a strong paper in only 23 days under #lockdown and 

b. to remind my spititual children (ie my students) that in Science, there is no parthenogenesis. 

If you work hard on something, good ideas will come.