We investigated how levels of -GlcNAcylation, a modification involving N-acetyl glucosamine, relate to heart disease. Using transgenic mouse models, we found that excessive -GlcNAcylation can lead to serious heart issues, including cardiomyopathy and arrhythmias. Interestingly, reducing -GlcNAcylation levels through enhanced OGA activity shows promise in protecting against heart damage, especially under stress conditions. These insights suggest targeting -GlcNAcylation could be a new strategy in heart disease treatment.
Read More
8
O-GlcNAc's dual role in heart health
O-GlcNAc Transferase Promotes Compensated Cardiac Function and Protein Kinase A O-GlcNAcylation During Early and Established Pathological Hypertrophy From Pressure Overload.
We investigated how O-GlcNAc transferase influences heart function amid pressure overload, focusing on both early and sustained effects of O-GlcNAcylation. Our findings indicated that while O-GlcNAcylation can enhance heart function during early stress, it may have detrimental effects long term, leading to significant left ventricular dysfunction.
By observing mice with reduced O-GlcNAc levels after surgery, we noted that disrupted calcium handling proteins could negatively impact cardiac performance. Overall, our study sheds light on the complex role of O-GlcNAcylation in heart health, indicating that managing its levels may be critical.
Read More
9
O-GlcNAcylation impacts diabetic heart
Fine-tuning the cardiac O-GlcNAcylation regulatory enzymes governs the functional and structural phenotype of the diabetic heart.
We examined how manipulating specific enzymes linked to O-GlcNAcylation, a sugar modification affecting heart proteins, impacts heart function in diabetes. Our research found that O-GlcNAc modification was higher in diabetic hearts, leading to left ventricular dysfunction. By delivering the right enzymes to mice, we saw that enhancing de-O-GlcNAcylation improved heart function, while adding more O-GlcNAc worsened it. This suggests targeted enzyme therapy could be a promising new way to help those with diabetes-related heart issues.
Read More
Most Useful Reviews
9
Restores sensitivity
12 people found this helpful
I purchase this for an adult with multiple sclerosis. Research suggests that this amino acid helps restore nerve connections in experimental models. Given the lack of alternatives aside from symptomatic treatment, we took the plunge. After one month, finger sensitivity improved, speech clarity increased, and overall, there were only positive outcomes. I have ordered another jar.
Read More
0
Avoid this product
This new form of NAG, made from chemically modified vegan sources, caused me severe heart palpitations and arrhythmia twice, each lasting 12 hours along with head pressure. I find it to be toxic and strongly recommend avoiding it.
Read More
6
Protects cell health
21 people found this helpful
N-acetylglucosamine, or NAG, is derived from glucosamine, a crucial component of peptidoglycan in bacterial cell walls. This compound is beneficial in treating multiple sclerosis and Crohn's disease, significantly alleviating the symptoms. Its mechanism involves filling voids in cells, thereby safeguarding them and allowing for regeneration. Ensure that you purchase products sourced from shellfish and fish, as synthetic NAG is ineffective.
We examined how manipulating specific enzymes linked to O-GlcNAcylation, a sugar modification affecting heart proteins, impacts heart function in diabetes. Our research found that O-GlcNAc modification was higher in diabetic hearts, leading to left ventricular dysfunction. By delivering the right enzymes to mice, we saw that enhancing de-O-GlcNAcylation improved heart function, while adding more O-GlcNAc worsened it. This suggests targeted enzyme therapy could be a promising new way to help those with diabetes-related heart issues.
Read More
8
Hypoxic acclimation benefits heart health
Hypoxic acclimation improves cardiac redox homeostasis and protects heart against ischemia-reperfusion injury through upregulation of O-GlcNAcylation.
We explored the effects of hypoxic acclimation (HA) on heart injury caused by ischemia-reperfusion (I/R). Our study involved male adult mice subjected to low oxygen conditions, revealing that HA significantly reduced oxidative stress and heart damage from I/R events.
Notably, this protective effect is linked to increased O-GlcNAc modification, which helps enhance important metabolic pathways in the heart. However, further research is necessary to solidify these findings and understand the therapeutic potential of targeting O-GlcNAc in heart disease.
Read More
8
Excessive -GlcNAcylation effects noted
Excessive -GlcNAcylation Causes Heart Failure and Sudden Death.
We investigated how levels of -GlcNAcylation, a modification involving N-acetyl glucosamine, relate to heart disease. Using transgenic mouse models, we found that excessive -GlcNAcylation can lead to serious heart issues, including cardiomyopathy and arrhythmias. Interestingly, reducing -GlcNAcylation levels through enhanced OGA activity shows promise in protecting against heart damage, especially under stress conditions. These insights suggest targeting -GlcNAcylation could be a new strategy in heart disease treatment.
We examined the effects of a unique polysaccharide, derived from the edible portion of Amphioctopus neglectus, on heart disease, specifically regarding its influence on cardiac hypertrophy linked to high blood pressure.
Our in-vitro analysis revealed that this compound reduced cardiac cell surface area significantly and improved cell viability, indicating its potential as a natural remedy against hypertension.
Although promising, further research is needed to fully establish how safe and effective this treatment is for heart disease in humans.
Read More
8
E2f1 deletion aids heart recovery
E2f1 deletion attenuates infarct-induced ventricular remodeling without affecting O-GlcNAcylation.
We investigated how deleting the gene E2f1 influences heart function after a heart attack. Our research involved male and female mice that underwent myocardial infarction and were monitored over four weeks.
While we found that deleting E2f1 improved heart function and reduced damage after the heart attack, it did not significantly change levels of O-GlcNAcylation, a protein modification linked to heart health. We observed that although the heart muscle changed after E2f1 ablation, the overall enzymatic impact on O-GlcNAcylation remained limited. This suggests E2f1 deletion helps in heart recovery, but not through the pathways we expected.
I purchase this for an adult with multiple sclerosis. Research suggests that this amino acid helps restore nerve connections in experimental models. Given the lack of alternatives aside from symptomatic treatment, we took the plunge. After one month, finger sensitivity improved, speech clarity increased, and overall, there were only positive outcomes. I have ordered another jar.
Read More
0
Avoid this product
This new form of NAG, made from chemically modified vegan sources, caused me severe heart palpitations and arrhythmia twice, each lasting 12 hours along with head pressure. I find it to be toxic and strongly recommend avoiding it.
Read More
6
Protects cell health
21 people found this helpful
N-acetylglucosamine, or NAG, is derived from glucosamine, a crucial component of peptidoglycan in bacterial cell walls. This compound is beneficial in treating multiple sclerosis and Crohn's disease, significantly alleviating the symptoms. Its mechanism involves filling voids in cells, thereby safeguarding them and allowing for regeneration. Ensure that you purchase products sourced from shellfish and fish, as synthetic NAG is ineffective.
Read More
7.5
Heals the gut
10 people found this helpful
This product is fantastic! I cannot believe I have lived with Crohn's disease for so long without discovering it. It genuinely aids in healing my gut and helps maintain stability. I will certainly keep a supply on hand.
Read More
7.5
Reduces disease symptoms
4 people found this helpful
This product effectively alleviates symptoms of both multiple sclerosis and Crohn's disease. Its action relies on filling cavities, protecting cells from harm, and allowing for their regeneration.
Heart disease refers to a range of conditions that affect the heart's function and overall health. This umbrella term includes various cardiovascular issues such as coronary artery disease, which is caused by the buildup of plaque in the arteries; heart rhythm problems (arrhythmias); and heart defects present at birth (congenital heart defects). Additionally, heart disease encompasses conditions related to the heart muscle, such as cardiomyopathy, and the heart's valves, which might not open or close properly. The effects of heart disease can be significant, impacting not only physical health but also quality of life, making prevention and timely medical intervention crucial.
Several risk factors contribute to the development of heart disease, including high blood pressure, high cholesterol levels, diabetes, obesity, poor diet, physical inactivity, and smoking. Genetics also play a role, as heart disease can run in families. To mitigate the risks, healthcare professionals typically recommend lifestyle changes such as adopting a heart-healthy diet, engaging in regular physical activity, and avoiding tobacco use. For those already diagnosed with heart disease, treatment options can vary widely, ranging from lifestyle modifications to medications and, in severe cases, surgical interventions. Understanding the nature of heart disease and its risk factors is an essential step toward prevention and effective management.
N-Acetyl Glucosamine (NAG) is a naturally occurring amino sugar and a derivative of glucose. It is a key component of various glycosaminoglycans, which are essential for the formation of cartilage, synovial fluid, and other connective tissues, making it particularly beneficial for joint health. In addition to its roles in the body, NAG is frequently used as a dietary supplement due to its potential anti-inflammatory properties and its ability to help maintain the structural integrity of tissues.
N-Acetyl Glucosamine is often included in skin care products for its moisturizing and reparative effects, as it may promote the production of hyaluronic acid in the skin, enhancing hydration and supporting skin barrier function. Many users appreciate NAG for its potential to improve skin tone and texture. When considering N-Acetyl Glucosamine as a supplement or ingredient, it's advisable to consult with a healthcare provider to determine if it meets your specific health or beauty needs.
Based on user reviews, the timeline for noticing results from this supplement can vary, but many users typically report seeing improvements within a month of consistent use. For instance, one review highlighted that after one month, there was a noticeable enhancement in finger sensitivity and overall positive outcomes for an individual dealing with multiple sclerosis Read Review. Another user using the supplement alongside traditional medications for multiple sclerosis mentioned a gradual improvement and potential slowing of their condition's progression after years of use Read Review.
Additionally, some users have noted slight symptom reduction after regular consumption over time, although specific timelines for heart disease were not detailed in the reviews provided. It seems that consistent use plays a crucial role in experiencing the intended benefits, with some users expressing a commitment to continued use based on positive results Read Review. However, always consult with a healthcare professional for personalized advice regarding supplements and heart health.
The research surrounding N-acetyl glucosamine (GlcNAc) suggests that it may offer some potential benefits for heart health, particularly in terms of recovery from cardiac events. One study highlighted that treatment with N-acetyl glucosamine improved functional outcomes in young mice after cardiac arrest, signaling its potential as a therapy for enhancing recovery after heart issues [1]. Additionally, its role in regulating -GlcNAcylation, a modification relevant to heart health, has been explored. Excessive -GlcNAcylation is linked to serious cardiac problems like cardiomyopathy, while interventions that reduce -GlcNAcylation appear promising in protecting the heart under stress [3].
However, some studies have also raised concerns about the implications of elevated O-GlcNAc levels, particularly in conditions like diabetes. These findings imply that while targeting GlcNAcylation could be beneficial, clarity on its long-term effects is still needed [4]. Moreover, though initial research indicates that substances derived from seafood may aid in reducing cardiac cell hypertrophy, more human studies are necessary to confirm safety and efficacy for broader applications in heart disease [5]. In summary, N-acetyl glucosamine presents a nuanced picture, with worthwhile considerations and cautious optimism for potential heart health applications.
Users report a range of improvements in symptoms when using supplements containing N-acetylglucosamine (NAG). For individuals with multiple sclerosis, noticeable enhancements such as improved finger sensitivity and increased speech clarity have been highlighted as significant outcomes after just one month of use Read Review. Additionally, some users have experienced ongoing relief of symptoms associated with chronic illnesses like Crohn's disease, with one individual expressing gratitude for discovering the product, noting that it helped heal their gut and maintain stability Read Review.
Other users have reported that NAG's benefits extend to improving conditions linked with autoimmune issues, such as rheumatoid arthritis, where they noted some reduction in pain during movement Read Review. While users generally indicate positive outcomes, it's vital to recognize that experiences can vary widely; some individuals have faced adverse reactions, including severe heart issues Read Review. Thus, any potential user should approach the supplement with caution and consult with a healthcare professional tailored to their condition.
Based on user reviews, experiences with combining this supplement—specifically N-acetylglucosamine (NAG)—with other treatments for heart disease appear to be varied. One user reported that a new form of NAG caused severe heart palpitations and arrhythmia, recommending caution due to these adverse effects Read Review. Despite these negative experiences, other users have noted benefits like reduced inflammation and improved overall health, which may indirectly support heart health, suggesting that NAG can be beneficial when used appropriately as part of a broader regimen Read Review.
However, users did not provide extensive feedback on the specific interactions of NAG with heart disease medications or related supplements. The general sentiment emphasizes the importance of personal caution and consultation with healthcare professionals before combining supplements, particularly for those with existing heart conditions or using heart medications. As always, individualized medical advice remains paramount in managing heart health while considering supplement use.
9
Restores sensitivity
12 people found this helpful
I purchase this for an adult with multiple sclerosis. Research suggests that this amino acid helps restore nerve connections in experimental models. Given the lack of alternatives aside from symptomatic treatment, we took the plunge. After one month, finger sensitivity improved, speech clarity increased, and overall, there were only positive outcomes. I have ordered another jar.
7.5
Slows MS progression
6 people found this helpful
My knees are feeling great. With multiple sclerosis, I came across a study indicating this supplement aids in alleviating various symptoms and potentially slows progression. Since 2009, I've been using it alongside traditional MS medications, and I'm grateful for the slow progression of my condition, possibly due to this.
7.5
Decreases symptoms
2 people found this helpful
I order NAG frequently and appreciate its effects; my symptoms have slightly diminished. I will continue to order more.
7.5
Heals the gut
10 people found this helpful
This product is fantastic! I cannot believe I have lived with Crohn's disease for so long without discovering it. It genuinely aids in healing my gut and helps maintain stability. I will certainly keep a supply on hand.
6
Alleviates joint pain
1 people found this helpful
I suffer from severe rheumatoid arthritis due to an autoimmune issue linked to a leaky gut, which causes pain in my hips and knees while walking. Thankfully, I am now experiencing some improvement.
0
Avoid this product
This new form of NAG, made from chemically modified vegan sources, caused me severe heart palpitations and arrhythmia twice, each lasting 12 hours along with head pressure. I find it to be toxic and strongly recommend avoiding it.
7.5
Reduces inflammation
The quality of all iHerb products is superb! They contain all-natural ingredients, are advantageous for health, come in convenient packaging, and are suitable for all ages. Derived solely from clean fish, they help reduce inflammation, benefit heart health, and my hair has become thicker with fewer split ends.
7
Effects of glucosamine on heart recovery
Activation of the XBP1s/O-GlcNAcylation Pathway Improves Functional Outcome After Cardiac Arrest and Resuscitation in Young and Aged Mice.
We delved into how a specific protein pathway can offer protection after cardiac arrest. By using various mouse models, we found that activating the XBP1s pathway helps improve brain function during recovery.
We explored the impact of N-acetyl glucosamine treatment on young and aged mice post-cardiac arrest. Remarkably, young mice showed reduced functional deficits, while aged mice demonstrated better performance in behavioral tests after treatment.
Overall, our findings suggest N-acetyl glucosamine could be a valuable therapy for enhancing recovery after cardiac events.
8
Excessive -GlcNAcylation effects noted
Excessive -GlcNAcylation Causes Heart Failure and Sudden Death.
We investigated how levels of -GlcNAcylation, a modification involving N-acetyl glucosamine, relate to heart disease. Using transgenic mouse models, we found that excessive -GlcNAcylation can lead to serious heart issues, including cardiomyopathy and arrhythmias. Interestingly, reducing -GlcNAcylation levels through enhanced OGA activity shows promise in protecting against heart damage, especially under stress conditions. These insights suggest targeting -GlcNAcylation could be a new strategy in heart disease treatment.
9
O-GlcNAcylation impacts diabetic heart
Fine-tuning the cardiac O-GlcNAcylation regulatory enzymes governs the functional and structural phenotype of the diabetic heart.
We examined how manipulating specific enzymes linked to O-GlcNAcylation, a sugar modification affecting heart proteins, impacts heart function in diabetes. Our research found that O-GlcNAc modification was higher in diabetic hearts, leading to left ventricular dysfunction. By delivering the right enzymes to mice, we saw that enhancing de-O-GlcNAcylation improved heart function, while adding more O-GlcNAc worsened it. This suggests targeted enzyme therapy could be a promising new way to help those with diabetes-related heart issues.
We examined the effects of a unique polysaccharide, derived from the edible portion of Amphioctopus neglectus, on heart disease, specifically regarding its influence on cardiac hypertrophy linked to high blood pressure.
Our in-vitro analysis revealed that this compound reduced cardiac cell surface area significantly and improved cell viability, indicating its potential as a natural remedy against hypertension.
Although promising, further research is needed to fully establish how safe and effective this treatment is for heart disease in humans.
References
Li R, Shen Y, Li X, Lu L, Wang Z, et al. Activation of the XBP1s/O-GlcNAcylation Pathway Improves Functional Outcome After Cardiac Arrest and Resuscitation in Young and Aged Mice. Shock. 2021;56:755. doi:10.1097/SHK.0000000000001732
Ou W, Liang Y, Qin Y, Wu W, Xie M, et al. Hypoxic acclimation improves cardiac redox homeostasis and protects heart against ischemia-reperfusion injury through upregulation of O-GlcNAcylation. Redox Biol. 2021;43:101994. doi:10.1016/j.redox.2021.101994
Umapathi P, Mesubi OO, Banerjee PS, Abrol N, Wang Q, et al. Excessive -GlcNAcylation Causes Heart Failure and Sudden Death. Circulation. 2021;143:1687. doi:10.1161/CIRCULATIONAHA.120.051911
Prakoso D, Lim SY, Erickson JR, Wallace RS, Lees JG, et al. Fine-tuning the cardiac O-GlcNAcylation regulatory enzymes governs the functional and structural phenotype of the diabetic heart. Cardiovasc Res. 2022;118:212. doi:10.1093/cvr/cvab043
Chakraborty K, Krishnan S, Joy M. Sulfated N-acetylglucosamino-glucuronopyranosyl-arabinopyranan from seafood Amphioctopus neglectus attenuates angiotensin-II prompted cardiac hypertrophy. Int J Biol Macromol. 2020;163:1223. doi:10.1016/j.ijbiomac.2020.07.037
Dassanayaka S, Brittian KR, Jurkovic A, Higgins LA, Audam TN, et al. E2f1 deletion attenuates infarct-induced ventricular remodeling without affecting O-GlcNAcylation. Basic Res Cardiol. 2019;114:28. doi:10.1007/s00395-019-0737-y
Zhu WZ, El-Nachef D, Yang X, Ledee D, Olson AK. O-GlcNAc Transferase Promotes Compensated Cardiac Function and Protein Kinase A O-GlcNAcylation During Early and Established Pathological Hypertrophy From Pressure Overload. J Am Heart Assoc. 2019;8:e011260. doi:10.1161/JAHA.118.011260