Magnesium supplementation shows promiseTreatment of Resistant Acne Vulgaris in Adolescents Using Dietary Supplementation with Magnesium, Phosphate and Fatty Acids (Omega 6 and 7): Comparison with 13-Cis-Retinoic Acid.
Relevant results highlight efficacy
We examined how dietary supplementation with magnesium, among other nutrients, could help treat acne vulgaris. In a six-month study, one group received this natural supplement while another was given isotretinoin.
Notably, all participants in the magnesium group reported complete regression of their symptoms, contrasting with 68% in the isotretinoin group. This significant difference suggests that magnesium can be highly effective for acne treatment, offering a promising alternative with fewer side effects.
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Zinc's role in acne treatmentUltrasound-triggered interfacial engineering-based microneedle for bacterial infection acne treatment.
Relevance score indicates moderate impact
We investigated the effectiveness of a novel microneedle patch designed for acne treatment, which incorporates zinc-based nanoparticles. This patch combines sodium hyaluronate with zinc porphyrin-based metal-organic frameworks and zinc oxide. By using ultrasound to release activated oxygen, we observed a remarkable antibacterial efficiency, achieving a 99.73% reduction in acne-causing bacteria within just 15 minutes.
Zinc plays a crucial role in this innovative approach. Not only does it help eliminate harmful bacteria, but it also appears to enhance skin health. The presence of zinc ions promotes the up-regulation of genes associated with DNA replication, which supports the growth of fibroblasts. This is a vital process for skin repair and rejuvenation, showing that zinc can potentially contribute to both the treatment and recovery of acne-affected skin.
Overall, our findings suggest that this microneedle patch, which utilizes zinc and ultrasound-responsive technology, represents a promising strategy for effectively managing acne without relying on traditional antibiotics.
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Calcium filler shows promise for scarsCombined use of microfocused ultrasound and a calcium hydroxylapatite dermal filler for treating atrophic acne scars: A pilot study.
Limited isolated calcium effect observed
We explored the effectiveness of combining microfocused ultrasound with a calcium hydroxylapatite dermal filler for treating acne scars. This approach was evaluated in a group of healthy adults aged 35-55, who had moderate to severe facial scars from acne.
During the treatment, ultrasound was applied in a cross-hatch pattern to stimulate the skin, followed by injections of a diluted calcium hydroxylapatite filler mixed with lidocaine for comfort. The results were assessed 90 days later, focusing on changes in scar severity and overall satisfaction of the subjects.
The findings revealed significant improvement in acne scars, particularly in those with severe scarring. The majority of participants reported being satisfied with their results, and no adverse side effects were noted. While calcium hydroxylapatite alone was not isolated in this study, its combination with ultrasound showed promising results for reducing scar visibility.
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We investigated how zinc treatment affects acne, particularly focusing on its potential benefits for those suffering from acne rosacea. The study observed that zinc sulfate solution at a concentration of 5% played a notable role in reducing the severity of acne rosacea symptoms.
Findings indicated that around 40% to 60% of patients experienced a moderate to good response after using zinc. This suggests that zinc could be helpful for individuals looking for alternatives or supplements in their acne treatment regimen.
However, it's important to acknowledge that while zinc showed positive results, the isolated effect of zinc alone cannot be fully determined. It might have worked in conjunction with other treatment factors, which complicates our understanding of its effectiveness.
Therefore, we emphasize the need for further studies to clarify exactly how zinc contributes to acne treatment outcomes and to evaluate its role alongside other therapies.
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We assessed the potential of zinc oxide nanoparticles in combating acne. Using biogenically synthesized zinc oxide, we mixed it with a polymer to create a topical nanogel aimed at treating acne. Through rigorous testing against acne-causing bacteria, we observed that these biogenic nanoparticles showed a promising antibacterial effect, particularly against Gram-positive bacteria.
Notably, the particle size of our biogenic zinc oxide nanoparticles measured around 20 nm, indicating a high degree of purity. When pitted against chemogenic counterparts, the biogenic version proved to be more effective. This suggests that zinc oxide, especially when produced biogenically, could be a valuable addition to skincare products targeting acne.
Moreover, the study highlights the environment-friendly aspect of using biogenic zinc oxide in skincare formulations, making it a preferable choice for those concerned about sustainability. Our findings suggest that these hybrid nanogels could serve as an effective solution against skin infections associated with acne, adding to their appeal in modern skincare.
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