Showing posts with label protein. Show all posts
Showing posts with label protein. Show all posts

Friday, 14 August 2020

Whey Protein Could Be the Cause of Your Acne

 If you have eliminated sugars and dairy in your diet but are still consuming whey protein post workout, this could be the cause of your acne, especially if it is located on the trunk. It is commonly overlooked as many people don't recognize that whey is isolated from milk.


I made this mistake myself recently. As a teenager I had really bad acne so I still get some outbreaks here and there, but nothing major. These past few months I have been having whey post-workout again after having been off it for a long time, and noticed a lot of acne starting on my back and shoulders. I'm going back to EEAs post workout now to see if it is the whey causing the acne.


Looking at some studies, whey is a fairly common cause of these outbreaks so if you have been seeing an increase in the amount of acne on your trunk and can't relate it to your nutrition, whey could be the source of the problem that you may have missed.


If you are worried about a post-workout shake of some sort, then you could take something like the following mix:

  • 15g BCAAs

  • 15g EAAs

  • 10g Glutamine

  • 5g Creatine

  • 5g Glycine

Depending on your goals, you can tailor it to your needs.

Tuesday, 28 July 2020

Optimizing Adult Protein Intake During Catabolic Health Conditions

Optimizing Adult Protein Intake During Catabolic Health Conditions

I read this study this morning and found it very informative. Thanks to Dr. Gabrielle Lyon for sharing.

Things that stood out for me:

"The RDA for protein has been previously reviewed and found to be inadequate for older persons (2). A presumed reason for the inadequacy of the protein RDA for older persons is a phenomenon known as the “anabolic resistance” of skeletal muscle. Anabolic resistance is the phenomenon within skeletal muscles of older persons when there is an attenuated response of muscle protein synthesis (MPS) to resistance exercise (3) and ingestion of protein (4, 5). Protein synthesis is a critical component of the natural turnover of proteins required for continuous repair and remodeling of skeletal muscle to maintain strength and functional mobility.
The age-related reduction in the sensitivity of MPS to exercise or protein can be overcome with greater volumes of resistance exercise (6) or greater doses of protein (4); however, greater exercise volumes may be impractical for many older persons. There is also no doubt that a reduction in either habitual physical activity or muscle disuse also bring about a state of anabolic resistance (7, 8). Thus, inactivity or disuse as part of aging per se may be a predominant reason for older persons requiring more protein."

"In skeletal muscle, the essential amino acid leucine provides a unique translation signal. Indeed, the leucine content of a meal is an important determinant of the potential of a meal to support the complex process of protein synthesis. Specifically, leucine stimulates the mTORC1 (mechanistic target of rapamycin) signal cascade resulting in assembly of the eIF4F (initiation factor 4F) initiation complex and activation of the ribosomal protein S6. The eIF4F complex accelerates the assembly of ribosomes on available mRNAs and the S6 protein allows ribosomes to target mRNAs that enhance the overall capacity for protein synthesis. These signals are downregulated during short-term catabolic conditions such as an overnight fast, acute bed rest, or exhaustive exercise. When these signals are downregulated, the composition of the next meal is critical to optimize the anabolic recovery. This stimulation and regulation of muscle protein anabolism becomes increasingly important with advancing age as muscle becomes less sensitive to routine anabolic signals from hormones (i.e., insulin and IGF-1: insulin-like growth factor-1), protein ingestion, and physical activity (4, 17)."

"Thus, it may be, based on an increased dietary need for leucine to overcome the anabolic resistance of aging (3437), that the leucine content of proteins becomes an increasingly important component of protein quality in older persons."

"In terms of defining what constitutes “healthy” or “unhealthy,” we posit that any individual experiencing anabolic resistance (via any mechanism) or increased catabolic burden, warrants a dietary intervention that includes an appropriately greater absolute and relative amount of high-quality dietary protein (98)."

"Dietary protein and amino acid metabolism may be leveraged to optimize glycemic regulations.
TABLE 1 Metabolic regulation with diets high in glucose versus amino acids
High-carbohydrate, low-protein diet (>50% of energy from carbohydrates; 0.8 g/kg protein) 
  • Produces rapid postmeal increases in blood glucose
  • Postmeal hyperglycemia must be eliminated within 2 h
  • Rapid increase in insulin; biphasic response from the pancreas
  • Increased recycling of glucose via lactic acid to gluconeogenesis (Cori cycle)
  • Inhibition of fatty acid oxidation in skeletal muscle
Moderate carbohydrate, higher protein (25 to 40% of energy from carbohydrates; 1.6 g/kg protein) 
  • Free amino acids have slow postmeal metabolism; >5 h
  • Amino acids slowly produce glucose via gluconeogenesis
  • Amino acids stimulate Phase I insulin only
  • Amino acids recycle glucose via alanine and not lactic acid
  • Stimulation of fatty acid oxidation in skeletal muscle
  • Stimulation of muscle protein synthesis
"In young, physically active, normal weight adults with normal insulin sensitivity, glucose homeostasis can be achieved across a wide range of dietary carbohydrate and protein intakes. However, in aging adults, as muscle mass, physical activity, and insulin sensitivity decrease, and glucose tolerance declines, the potential use of diets with higher protein and reduced carbohydrates needs to be more fully studied.
Three aspects of metabolic regulation serve to highlight critical differences arising from shifting the balance between dietary carbohydrates and proteins. The first is postmeal utilization of the metabolic substrates (i.e., glucose versus amino acids), the second is the insulinogenic response of the pancreas, and the third is the regulatory response in skeletal muscle."

"Emerging evidence reveals the optimal protein intake is more than simply a percentage of daily energy but a meal-to-meal decision about protein quantity and quality. Factors including increasing age and declining physical activity reduce the efficiency of protein turnover especially in skeletal muscle resulting in reduced mass, strength, and metabolic regulation. The reduced efficiency, characterized as anabolic resistance, can be overcome, at least in part, by increasing protein quantity and quality at individual meals."

Monday, 19 August 2019

Combine Fast and Slow Proteins for Greater Results

Combine Fast and Slow Proteins for Greater Results

We all know about fast and slow carbohydrates and the use of the glycemic index or glycemic load to determine which carbs are burnt more fast or slow in the body. What many trainees don't know is that there are also fast and slow proteins. Body builders have spoken about it for a long time but the average guy at the gym doesn't rally know what it means. 

If we take a look at whey protein and also casein protein, we see a fast protein (whey) and a slow protein (casein). The whey protein is digested much more quickly and spikes amino acid levels in the body quickly, but for only a short amount of time. The casein is digested more slowly and has a more steady level of amino acid release. This is why I would often read to have this before bed in the old bodybuilding magazines I had as a kid. 

Whey protein increased protein synthesis by 68% in one study, whereas casein only increased it by 31%. Where casein was better though was by inhibiting protein breakdown. Casein reduced protein breakdown by 34%. 

By looking at these results, you get the idea that you should combine both whey and casein post workout for greatest results. They whey will increase protein synthesis and the casein can help prevent protein breakdown. 

The only problem I see with this with our clients is that many people don't tolerate casein very well and I am finding more and more people are struggling with whey. If you tolerate these two proteins well, then try and combine them for greater gains in muscle mass. 

For a deeper look into this you can read this article here.

Thursday, 9 March 2017

PROBLEM #5 NOT ENOUGH FOOD

PROBLEM #5 NOT ENOUGH FOOD

March 9, 2017

What I find when looking at my clients' food diaries is that their total calories are too low and they are rarely hitting their macronutrient targets. When the weight still doesn’t come off they restrict their eating even more so the calories keep getting lower and lower.
Restricting calories and food/drink intake does work for weight loss, but it is not sustainable and will never work long term.
When do you stop cutting the calories? How low is too low? What happens when you’ve cut so low that you have nothing else to cut out? You do more training? What happens when you run out of hours in the day?
I know what happens – you down regulate your thyroid and pack on some more weight and as an added bonus you set yourself up for a bunch of bad health issues for the future.
I see it time and time again, girls that come in losing their hair, falling asleep throughout the day, low sex drive, depression, skin conditions, low training drive, ect.

How can we fix this?

Focus on eating good quality foods all throughout the day (more on this later).
Start by tracking the food and drink you consume throughout the day for 3-4 days – you can use an app like MyFitness Pal to keep it quick and easy.
Once you have gotten an average you will know if you are eating too little or too much and can address it accordingly:
  • Focus on increasing the amount of good fats in the diet – avocadoes, coconut oil, nuts, organic butter, nut butter, etc.  These are calorie dense and full of nutrients.
  • Eat a serve of animal protein 3-5 times per day with green, leafy veggies.
  • Avoid large amounts of processed foods and poor forms of calorie dense foods.
  • Eat the majority of your carbohydrates around training.
  • Stagger food throughout the day rather than a few good meals at the beginning of the day and then binging on food in the arvo/at night.
  • Get adequate sleep – this is way more important than most people think.
If you still aren’t sure of what to do or what ‘diet’ to follow then just ask someone that knows what they are talking about (sometimes Google can just be confusing!!), and that doesn’t mean asking the fitness chick in the gym or the dietician that tells you you’re doing a good job because you only ate 9 cupcakes today instead of 10.

Do your research and know who you are taking advice from! 

#teamthp