SummaryBackground Infraorbital skin hyperpigmentation, commonly called dark circles, and crow's feet wrinkles are common cosmetic concerns. Various methods of treatment have been evaluated with variable outcomes. Objective This study was performed to assess the efficacy of platelet-rich plasma (PRP) injection for treating periorbital dark circles and crow's feet. Methods Ten participants with a mean age of 41.2 years were treated in a single session with intradermal injections of 1.5 mL PRP into tear trough area and crow's feet wrinkles on each side. The effects on melanin content, color homogeneity of the treated area, epidermal stratum corneum hydration, and wrinkle volume and visibility index were compared 3 months after treatment with baseline. Physician's global assessment and participants' satisfaction and any potential side effects were also assessed. Results The improvement in infraorbital color homogeneity was statistically significant (P = 0.010), but no statistically significant changes were observed in melanin content, stratum corneum hydration, wrinkle volume, and visibility index. Participant's satisfaction score and physician's global assessment score were 2.2 and 1.7, respectively, on a 0-3 scale. Conclusion Platelet-rich plasma may have the potential to improve infraorbital dark circle in terms of color homogeneity of the region, though this remains to be proven using larger, controlled studies using multiple injections.
BackgroundEnhancing athletic performance is a great desire among the athletes, coaches and researchers. Mint is one of the most famous natural herbs used for its analgesic, anti-inflammatory, antispasmodic, antioxidant, and vasoconstrictor effects. Even though inhaling mint aroma in athletes has been investigated, there were no significant effects on the exercise performance.MethodsTwelve healthy male students every day consumed one 500 ml bottle of mineral water, containing 0.05 ml peppermint essential oil for ten days. Blood pressure, heart rate, and spirometry parameters including forced vital capacity (FVC), peak expiratory flow rate (PEF), and peak inspiratory flow (PIF) were determined one day before, and after the supplementation period. Participants underwent a treadmill-based exercise test with metabolic gas analysis and ventilation measurement using the Bruce protocol.ResultsThe FVC (4.57 ± 0.90 vs. 4.79 ± 0.84; p < 0.001), PEF (8.50 ± 0.94 vs. 8.87 ± 0.92; p < 0.01), and PIF (5.71 ± 1.16 vs. 6.58 ±1.08; p < 0.005) significantly changed after ten days of supplementation. Exercise performance evaluated by time to exhaustion (664.5 ± 114.2 vs. 830.2 ± 129.8 s), work (78.34 ±32.84 vs. 118.7 ± 47.38 KJ), and power (114.3 ± 24.24 vs. 139.4 ± 27.80 KW) significantly increased (p < 0.001). In addition, the results of respiratory gas analysis exhibited significant differences in VO2 (2.74 ± 0.40 vs. 3.03 ± 0.351 L/min; p < 0.001), and VCO2 (3.08 ± 0.47 vs. 3.73 ± 0.518 L/min; p < 0.001).ConclusionsThe results of the experiment support the effectiveness of peppermint essential oil on the exercise performance, gas analysis, spirometry parameters, blood pressure, and respiratory rate in the young male students. Relaxation of bronchial smooth muscles, increase in the ventilation and brain oxygen concentration, and decrease in the blood lactate level are the most plausible explanations.
One of the significant hallmarks of cancer is angiogenesis. It has a crucial function in tumor development and metastasis. Thus, angiogenesis has become one of the most exciting targets for drug development in cancer treatment. Here we discuss the regulatory effects on angiogenesis in glioblastoma (GBM) of non-coding RNAs (ncRNAs), including long ncRNA (lncRNA), microRNA (miRNA), and circular RNA (circRNA). These ncRNAs may function in trans or cis forms and modify gene transcription by various mechanisms, including epigenetics. NcRNAs may also serve as crucial regulators of angiogenesis-inducing molecules. These molecules include, metalloproteinases, cytokines, several growth factors (platelet-derived growth factor, vascular endothelial growth factor, fibroblast growth factor, hypoxia-inducible factor-1, and epidermal growth factor), phosphoinositide 3-kinase, mitogen-activated protein kinase, and transforming growth factor signaling pathways.
Probiotics include a group of microorganisms with numerous effects acting as normal flora and masking binding sites of pathogens and inhibition of their colonization. Most common probiotic species include Bifidobacterium spp., Lactobacilli and Saccharomyces boulardii. Some other beneficial properties of probiotics include cancer prevention, reduction of blood cholesterol and its absorption from the intestine (by bile digestion), stimulation and strengthen of the immune system, treatment and prevention of acute diarrhea, reducing inflammation in the intestines, and food allergies or eczema in children, improving the symptoms of irritable bowel syndrome and colitis, and remedy of vaginal yeast infections, and also antibiotics associated diarrhea, oral lesions, dental caries, and vaginal swelling. Furthermore, probiotics contribute to prevent viral infections, athlete's foot and fungal infections, and improvement of digestion and enhancing nutrition absorbance, inhibition of biofilm formation and increase in vitamins biosynthesis; especially those in groups B and K. Probiotics use in defined amounts has desirable outcomes. Side effects of probiotics are rare which occur among immunocompromised patients and pediatrics, thus care should be taken to avoid their side effects. Use of germ-free animals and study of symbiotic interactions among probiotics is possibly helpful for future perspectives.
Nineteen bacterial strains able to degrade and metabolize formaldehyde as a sole carbon source were isolated from soil and wastewater of a formaldehyde production factory. The samples were cultured in complex and mineral salts media containing 370 mg formaldehyde/l. The bacterial strains were identified to be Pseudomonas pseudoalcaligenes, P. aeruginosa, P. testosteroni, P. putida, and Methylobacterium extorquens. After adaptation of these microorganisms to high concentrations of formaldehyde; two isolated strains of M. extorquens (strains ESS and PSS) and four strains of P. pseudoalcaligenes (strains LSW, SSW, NSW and OSS) degraded 1850 mg formaldehyde/l, where as P. pseudoalcaligenes strain OSS completely consumed 3700 mg of formaldehyde/l after 24 h and degraded 70% of 5920 mg of formaldehyde/l after 72 h.
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