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Authors = Asma Gasmi Benahmed

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15 pages, 782 KiB  
Review
Metabolic Conditions and Peri-Implantitis
by Asma Gasmi Benahmed, Amin Gasmi, Torsak Tippairote, Pavan Kumar Mujawdiya, Oleksandr Avdeev, Yurii Shanaida and Geir Bjørklund
Antibiotics 2023, 12(1), 65; https://doi.org/10.3390/antibiotics12010065 - 29 Dec 2022
Cited by 14 | Viewed by 4725
Abstract
Dental implants to replace lost teeth are a common dentistry practice nowadays. Titanium dental implants display a high success rate and improved safety profile. Nevertheless, there is an increasing peri-implantitis (PI), an inflammatory disease associated with polymicrobial infection that adversely affects the hard [...] Read more.
Dental implants to replace lost teeth are a common dentistry practice nowadays. Titanium dental implants display a high success rate and improved safety profile. Nevertheless, there is an increasing peri-implantitis (PI), an inflammatory disease associated with polymicrobial infection that adversely affects the hard and soft tissues around the implant. The present review highlights the contribution of different metabolic conditions to PI. The considerations of both local and systemic metabolic conditions are crucial for planning successful dental implant procedures and during the treatment course of PI. Un- or undertreated PI can lead to permanent jaw bone suffering and dental implant losses. The common mediators of PI are inflammation and oxidative stress, which are also the key mediators of most systemic metabolic disorders. Chronic periodontitis, low-grade tissue inflammation, and increased oxidative stress raise the incidence of PI and the underlying systemic metabolic conditions, such as obesity, diabetes mellitus, or harmful lifestyle factors (cigarette smoking, etc.). Using dental biomaterials with antimicrobial effects could partly solve the problem of pathogenic microbial contamination and local inflammation. With local dentistry considering factors, including oral microbiota and implant quality control, the inclusion of the underlying systemic metabolic conditions into the pre-procedure planning and during the treatment course should improve the chances of successful outcomes. Full article
(This article belongs to the Special Issue Antimicrobial Activity of Dental Biomaterials)
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21 pages, 1980 KiB  
Review
Neurotransmitters Regulation and Food Intake: The Role of Dietary Sources in Neurotransmission
by Amin Gasmi, Aniqa Nasreen, Alain Menzel, Asma Gasmi Benahmed, Lyudmila Pivina, Sàdaf Noor, Massimiliano Peana, Salvatore Chirumbolo and Geir Bjørklund
Molecules 2023, 28(1), 210; https://doi.org/10.3390/molecules28010210 - 26 Dec 2022
Cited by 39 | Viewed by 33913
Abstract
Neurotransmitters (NTs) are biologically active chemicals, which mediate the electrochemical transmission between neurons. NTs control numerous organic functions particularly crucial for life, including movement, emotional responses, and the physical ability to feel pleasure and pain. These molecules are synthesized from simple, very common [...] Read more.
Neurotransmitters (NTs) are biologically active chemicals, which mediate the electrochemical transmission between neurons. NTs control numerous organic functions particularly crucial for life, including movement, emotional responses, and the physical ability to feel pleasure and pain. These molecules are synthesized from simple, very common precursors. Many types of NTs have both excitatory and inhibitory effects. Neurotransmitters’ imbalance can cause many diseases and disorders, such as Parkinson’s disease, depression, insomnia, increased anxiety, memory loss, etc. Natural food sources containing NTs and/or their precursors would be a potential option to help maintain the balance of NTs to prevent brain and psychiatric disorders. The level of NTs could be influenced, therefore, by targeting dietary habits and nutritional regimens. The progressive implementation of nutritional approaches in clinical practice has made it necessary to infer more about some of the nutritional NTs in neuropsychiatry. However, the importance of the intake of nutritional NTs requires further understanding, since there are no prior significant studies about their bioavailability, clinical significance, and effects on nerve cells. Interventional strategies supported by evidence should be encouraged. Full article
(This article belongs to the Special Issue Determination, Health Benefits and Metabolism of Food Bioactives)
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15 pages, 4078 KiB  
Review
Quercetin in the Prevention and Treatment of Coronavirus Infections: A Focus on SARS-CoV-2
by Amin Gasmi, Pavan Kumar Mujawdiya, Roman Lysiuk, Mariia Shanaida, Massimiliano Peana, Asma Gasmi Benahmed, Nataliya Beley, Nadiia Kovalska and Geir Bjørklund
Pharmaceuticals 2022, 15(9), 1049; https://doi.org/10.3390/ph15091049 - 25 Aug 2022
Cited by 80 | Viewed by 13617
Abstract
The COVID-19 outbreak seems to be the most dangerous challenge of the third millennium due to its highly contagious nature. Amongst natural molecules for COVID-19 treatment, the flavonoid molecule quercetin (QR) is currently considered one of the most promising. QR is an active [...] Read more.
The COVID-19 outbreak seems to be the most dangerous challenge of the third millennium due to its highly contagious nature. Amongst natural molecules for COVID-19 treatment, the flavonoid molecule quercetin (QR) is currently considered one of the most promising. QR is an active agent against SARS and MERS due to its antimicrobial, antiviral, anti-inflammatory, antioxidant, and some other beneficial effects. QR may hold therapeutic potential against SARS-CoV-2 due to its inhibitory effects on several stages of the viral life cycle. In fact, QR inhibits viral entry, absorption, and penetration in the SARS-CoV virus, which might be at least partly explained by the ability of QR and its derivatives to inhibit 3-chymotrypsin-like protease (3CLpro) and papain-like protease (PLpro). QR is a potent immunomodulatory molecule due to its direct modulatory effects on several immune cells, cytokines, and other immune molecules. QR-based nanopreparations possess enhanced bioavailability and solubility in water. In this review, we discuss the prospects for the application of QR as a preventive and treatment agent for COVID-19. Given the multifactorial beneficial action of QR, it can be considered a very valid drug as a preventative, mitigating, and therapeutic agent of COVID-19 infection, especially in synergism with zinc, vitamins C, D, and E, and other polyphenols. Full article
(This article belongs to the Special Issue Pharmacological Activities of Flavonoids and Its Analogues)
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