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1.
Appl Biochem Biotechnol ; 2022 Feb 14.
Artigo em Inglês | MEDLINE | ID: covidwho-2264795

RESUMO

The recent pandemic due to the COVID-19 virus has caused a global catastrophe. ACE2 and TMPRSS2 are recognized as key targets for viral entry into the host cells. The pandemic has led to the utilization of many synthetic drugs; however, due to various side effects, there is still no effective drug available against the virus. Several natural approaches have been devised, including herbal and ayurvedic medicines, that have proven to be effective against the COVID-19 virus. In the present study, the effect of phytocompounds of Piper longum and Ocimum sanctum on ACE2 and TRMPSS2 proteins has been studied. The in silico study is done using computational tools of networks of protein-protein interaction, molecular docking, and drug assessment in terms of physicochemical properties, drug-likeness, lipophilicity, water solubility, and pharmacokinetics. Out of selected phytoconstituents, vicenin 2, rosmarinic acid, and orientin were found to have the highest efficacy in terms of molecular interaction and drug-likeness properties against ACE2 and TMPRSS2 host receptor proteins. Our in silico study proposes the therapeutic potential of phytocompounds from Piper longum and Ocimum sanctum in modulating ACE2 and TMPRSS2 expression. Targeting ACE2 and TMPRSS2 against the SARS-CoV2 by phytomolecules can serve as a rational approach for designing future anti-COVID drugs.

2.
Infect Disord Drug Targets ; 22(6): 74-82, 2022.
Artigo em Inglês | MEDLINE | ID: covidwho-2022296

RESUMO

BACKGROUND: Coronavirus disease 2019 (COVID-19) was caused by the severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) and patients with COVID-19 may be treated with traditional medicine like Ayurveda alone or in combination with standard allopathic treatment, as Ayurveda is one of the oldest traditional medicinal systems followed by millions around the world. METHODS: The literature was searched in databases such as LitCOVID, Google Scholar, Science Direct, EBSCO, Scopus, Web of Science, EMBASE, and reference lists to identify articles relevant to the use of Ayurvedic medicines in the management of COVID-19. RESULTS: Several clinical studies have determined the efficacy of Ayurvedic medicines and formulations in the management of patients with COVID-19. CONCLUSION: The Ayurvedic medicines and formulations with antiviral, antioxidant, anti-inflammatory, and immunomodulatory properties could be used along with standard allopathic medicines to assist in the earlier detection of virus, speedy recovery of patients with COVID-19, faster discharge from hospitals, and the prevention of further deterioration.


Assuntos
COVID-19 , Anti-Inflamatórios , Antioxidantes , Humanos , Ayurveda , SARS-CoV-2
3.
International Journal of Pharmaceutical Sciences Review and Research ; 73(1):53-63, 2022.
Artigo em Inglês | EMBASE | ID: covidwho-1798545

RESUMO

Obesity is a complex multi factorial preventable disease affecting all age groups of both the sexes. Now one third of world’s population is overweight or obese. From 1980 the world-wide prevalence of obesity has become doubled. Overweight and obesity were the 5th foremost causes of death globally. Obesity is associated with many co morbid diseases. Prevalence of obesity with co morbidities is on big alarm throughout the world. Recently in COVID-19 pandemic most of the obese people get affected due to the co morbidities and reduced immunity. The anti-obesity properties of medicinal plants were known from ancient times in traditional Siddha medicine some thousand years ago. Many Siddha medicinal plants showed anti-obesity activities that can be utilized in the management of obesity, through which the complications of obesity can be prevented. Most researches explored the anti-obesity potentials of medicinal plants. Terminalia chebula, Phyllanthus niruri, zingiber officinale, Piper longum, Curcuma longa, Elettaria cardamomum, Cuminum cyminum, Picrorhiza kurroa, Ipomea turpethum, Tinospora cordifolia, Michelia champaka are some medicinal plants possess anti-obesity properties that had been indicated in Siddha classical text. The objective of this review is to validate the anti-obesity potentials of Siddha medicinal plants scientifically through various research reports. Due to the presence of Phyto compounds like phenols, flavonoids, terpenoids, alkaloids, anti-oxidants these medicinal plants revealed anti-obesity activities and its anti-obesity mechanism had been proven scientifically through various animal experimental studies collected from many research articles. Modern anti-obesity drugs produce numerous side effects. Regular consumption of Siddha anti-obesity medicinal plants, in the prescribed dose and duration, can induce gradual and sustainable weight loss effectively. Furthermore, in future, there is a need for the development of standardized, safe and effective anti-obesity drugs from medicinal plants and highly economical too. Hence eventually exploration of anti-obesity Siddha medicinal plants will lead to safe and effective treatment for obesity.

4.
J Ayurveda Integr Med ; 13(2): 100454, 2022.
Artigo em Inglês | MEDLINE | ID: covidwho-1594675

RESUMO

BACKGROUND: After declaration of COVID- 19 as pandemic by WHO, countries adopted several measures to contain the spread as well as test and treat the patients. Further, as no effective management protocols to address this pandemic were available, a need was felt to explore the integration of modern and traditional medicines to treat COVID- 19 cases. OBJECTIVE: To undertake a study with Ayurveda formulation as add on to existing standard of care (SOC) and to compare the outcomes in terms of patient acceptability, the time to clinical recovery, hospital stay as well as any signs of drug-herb interaction between the Ayurveda formulation and the SOC. MATERIAL AND METHODS: An exploratory nonrandomized prospective study has been undertaken for comparing the outcomes of traditional Ayurvedic classical formulation of Tinospora cordifolia (Guduchi) and Piper longum (Pippali) as an add on to standard of care (SOC) using modern medicine with SOC alone. This has been done in mild and moderate COVID- 19 cases, at a tertiary care integrative Medicine hospital in the National Capital Region, Gurgaon, India. The outcomes have been evaluated in terms of the duration of hospital stay, the time to clinical recovery, safety and non- interference/interaction of Ayurvedic and Further, long term impact of COVID- 19 treatment has been evaluated using quality of life questionnaire after 3 months of discharge. RESULTS: Findings of present study reveals that the Ayurveda add-on formulation of T. cordifolia (Guduchi) and P. longum (Pippali) has reduced the length of hospital stay and improve the recovery time. General feeling of wellbeing and activity levels were better in the 3 month follow-up post discharge in the Ayurveda add-on group. CONCLUSION: Addition of Ayurveda formulation has reduced the time of recovery and duration of hospital stay. However, this formulation needs further investigated to provide more information on effective and safe herbal add-on to SOC for better outcomes to treatment of COVID-19 disease.

5.
Results Chem ; : 100199, 2021 Sep 24.
Artigo em Inglês | MEDLINE | ID: covidwho-1433775

RESUMO

Unavailability of treatment for the SARS-CoV-2 virus has raised concern among the population worldwide. This has led to many attempts to find alternative options to prevent the infection of the disease, including focusing on vaccines and drugs. The use of natural products and herbal extracts can be a better option in beating the virus and boosting up immunity. In the present paper, we have done a systematic in silico study of papain-like protease of COVID-19 virus with the chemical constituents of herbal plant Piper Longum. Screening of the pharmacokinetic properties is done with thirty-two phytoconstituents of Piper Longum which help us in selecting the most active components of the plant. After selection molecular docking is performed with Aristololactam (C17H11NO4), Fargesin (C21H22O6), l-asarinin (C20H18O6), Lignans Machilin F (C20H22O5), Piperundecalidine (C23H29NO3), and Pluviatilol (C20H20O6). Molecular dynamic (MD) is also performed with the inhibitor-receptor complex which suggest significant inhibition and a stable complex of I-Asarinin with PLpro. Docking scores and simulation results suggest that I-Asarinin can act as a potential drug like candidate against COVID-19.

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