Introductions: Azithromycin is the most popular prescribed antimicrobial agent around the world. It comes under the class of macrolide antibiotics. Because of its higher efficacy, tolerance, and broad-spectrum activity, it is primarily used in upper and lower respiratory tract infections, some sexually transmitted infections, and major bacterial infections. Methods: Pieces of literature were reviewed to access the risk and benefits associated with azithromycin. Results: Generally, this is commercially available in solids, liquids, and ophthalmic formulations due to its minimal adverse events. It is also used in the case of COVID-19 drug therapy due to its pharmacological and therapeutic properties. Conclusions: The review of literature presented that it may increase the risk of cardiac death, hepatic injury, ototoxicity, hypersensitivity reactions.
: The immune system involves both active and passive immunization. The antibodies are devloped against the antigens during active immunization and are permanently stored. But, in case of passive immunization, the antibodies are exposed to the same antigens in every person who are already infected. In order to enhance the immune systems i.e. innate and adaptive immune responses, herbal plants are used as immune booster. Some of the herbal plants have been proved clinically to enhance the immunity that include Morniga oleifera (Drumstick), Azadirachta indica (Neem), Ocimum sanctum (Tulsi), Withania somnifera (Aswagandha), Zingiber officinale (Ginger), Allium sativum (Garlic), Curcuma longa (Turmeric), Emblica officinalis (Amla) etc. Compared to synthetic drugs, the herbal drugs have fewer or less side effects and stimulate the immune system to defend against various foreign pathogens. Even though, herbal medicines are usually considered as safe and effective therapy, but it is clinically proved that if a drug is effective, it would have some side effects. But, sometimes the antioxidant property of herbal medicines is helpful to reduce the toxicities produced by any toxic substances or any drugs. This review aims to encourage the study of various herbal constituents and their role in the treatment of different types of viral infections.
Background: Presence of free radicals in human body are harmful and cell systems are induce many diseases like cardiovascular, diabetes, cancer, inflammation, neuro-degenerative disorder, atherosclerosis, cataract, etc. Antioxidants can balance the effect of free radicals. Antioxidant-rich herbs are identified for preparation of drugs that can be administered to neutralize the free radicals. In the present context the selected medicinal plant is “Origanum majorana” (Family- Lamiaceae) widely known as Marwa in India sub-continent. As the medical professionals show their desires towards composite or lateral treatment, application of drugs with herbal origin gained its importance. Objective: This review presented various in vitro and in vivo methods used in the antioxidant activity study of O.majorana and observed its efficacy to reduce oxidative stress. Methods: Referred many reliable sources like Research gate, PubMed, Science Direct, Google scholar, Wiley online library, books to collect all information about the antioxidant activity of the selected plant. Results: Used several methods to determine the antioxidants activity of O.majorana, such as superoxide radical scavenging, ferric ion reducing antioxidant potency, thiobarbituric acid reactive substances, hydrogen peroxide scavenging, hydroxyl radical scavenging, lipid peroxidation inhibition, etc. The selected plant contains many phytoconstituents such as gallic acid, ferulic acid, apigenin, catechin, rutin, quercetin, luteolin, linolenic acid, β-sitosterol, and essential oils, which may be responsible for antioxidant activity. Conclusions : The review article provides information for investigating and developing new antioxidant methods and major phytoconstituents from O.majorana for better therapy of oxidative stress-mediated complications.
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