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1.
Chem Biol Interact ; 358: 109898, 2022 May 01.
Article in English | MEDLINE | ID: covidwho-1838609

ABSTRACT

Coronavirus disease (COVID-19), a coronavirus-induced illness attributed to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) transmission, is thought to have first emerged on November 17, 2019. According to World Health Organization (WHO). COVID-19 has been linked to 379,223,560 documented occurrences and 5,693,245 fatalities globally as of 1st Feb 2022. Influenza A virus that has also been discovered diarrhea and gastrointestinal discomfort was found in the infected person, highlighting the need of monitoring them for gastro intestinal tract (GIT) symptoms regardless of whether the sickness is respiration related. The majority of the microbiome in the intestines is Firmicutes and Bacteroidetes, while Bacteroidetes, Proteobacteria, and Firmicutes are found in the lungs. Although most people overcome SARS-CoV-2 infections, many people continue to have symptoms months after the original sickness, called Long-COVID or Post COVID. The term "post-COVID-19 symptoms" refers to those that occur with or after COVID-19 and last for more than 12 weeks (long-COVID-19). The possible understanding of biological components such as inflammatory, immunological, metabolic activity biomarkers in peripheral blood is needed to evaluate the study. Therefore, this article aims to review the informative data that supports the idea underlying the disruption mechanisms of the microbiome of the gastrointestinal tract in the acute COVID-19 or post-COVID-mediated elevation of severity biomarkers.


Subject(s)
COVID-19 , Gastrointestinal Diseases , Gastrointestinal Microbiome , Biomarkers , COVID-19/complications , Humans , SARS-CoV-2 , Post-Acute COVID-19 Syndrome
3.
Br J Clin Pharmacol ; 88(8): 3562-3565, 2022 08.
Article in English | MEDLINE | ID: covidwho-1764882

ABSTRACT

COVID-19 has spread globally, affecting almost 160 million individuals. Elderly and pre-existing patients (such as diabetes, heart disease and asthma) seem more susceptible to severe illness with COVID-19. Roflumilast was licensed for usage in the European Union in July 2010 as a phosphodiesterase-4 (PDE4) inhibitor. Under preclinical studies, roflumilast has been shown to decrease bleomycin-induced lung fibrosis, lung hydroxyproline and right heart thickening. The current study reviewed existing data that the PDE-4 inhibitor, a roflumilast, protects renal tissues and other major organ systems after COVID-19 infection by decreasing immune cell infiltration. These immune-balancing effects of roflumilast were related to a decrease in oxidative and inflammatory burden, caspase-3 suppression and increased protein kinase A (PKA)/cyclic A.M.P. (cAMP) levels in renal and other organ tissue.


Subject(s)
COVID-19 Drug Treatment , Phosphodiesterase 4 Inhibitors , Aged , Aminopyridines/adverse effects , Benzamides , Cyclopropanes/adverse effects , Humans , Inflammation/drug therapy , Phosphodiesterase 4 Inhibitors/adverse effects , SARS-CoV-2
4.
Drug Dev Res ; 82(8): 1075-1078, 2021 12.
Article in English | MEDLINE | ID: covidwho-1380379

ABSTRACT

One of the most remarkable results in 2019 is the reduced prevalence and death of children from coronavirus infection (COVID-19). In 2019, a worldwide pandemic impacted around 0.1 billion individuals, with over 3.5 million mortality reported in the literature. There is minimal knowledge on SARS-CoV-2 infection immunological responses in kids. Studies have been focused mostly on adults and children since the course of pediatric sickness is often short. In adults, severe COVID-19 is related to an excessive inflammatory reaction. Macrophages and monocytes are well known to contribute to this systemic response, although numerous lines are indicative of the importance of neutrophils. An increased number of neutrophils and neutrophil to lymphocyte ratios are early signs of SARS-CoV-2 and a worse prognosis. In this study that it is crucial to monitor PAR2 and PAR4 expression and function (since nursing children have elevated levels) and the inhibiting the normal physiology through the use of anticoagulants may exacerbate the problem in adults. Thus, in COVID-19 infection, we propose the use of antiplatelet (thromboxane A2 inhibitors), if required rather than anticoagulants (FXa and thrombin Inhibitors).


Subject(s)
COVID-19/metabolism , Receptor, PAR-2/metabolism , Receptors, Thrombin/metabolism , Adult , Age Factors , Anticoagulants/pharmacology , Anticoagulants/therapeutic use , COVID-19/immunology , Child , Humans , Lymphocyte Count , Neutrophils/immunology , Platelet Aggregation Inhibitors/pharmacology , Platelet Aggregation Inhibitors/therapeutic use , COVID-19 Drug Treatment
5.
Expert Rev Anti Infect Ther ; 20(2): 231-241, 2022 02.
Article in English | MEDLINE | ID: covidwho-1266069

ABSTRACT

INTRODUCTION: Global emergence of coronavirus disease-19 (COVID-19) has clearly shown variable severity, mortality, and frequency between and within populations worldwide. These striking differences have made many biological variables attractive for future investigations. One of these variables, vitamin D, has been implicated in COVID-19 with rapidly growing scientific evidence. AREAS COVERED: The review intended to systematically explore the sources, and immunomodulatory role of vitamin D in COVID-19. Search engines and data sources including Google Scholar, PubMed, NCBI, Scopus, and Web of Science were used for data collection. The search terms used were Vitamin D, COVID-19, immune system, and antiviral mechanism. Overall, 232 sources of information were collected and 188 were included in this review. EXPERT OPINION: Interaction of vitamin D and vitamin D receptor (VDR) triggers the cellular events to modulate the immune system by regulation of many genes. Vitamin D operates as a double-edged sword against COVID-19. First, in macrophages, it promotes the production of antimicrobial and antiviral proteins like ß-defensin 2 and cathelicidin, and these proteins inhibit the replication of viral particles and promote the clearance of virus from the cells by autophagy. Second, it suppresses cytokine storm and inflammatory processes in COVID-19.


Subject(s)
Antiviral Restriction Factors/immunology , Autophagy , COVID-19 , Cytokines/immunology , Vitamin D , COVID-19/complications , COVID-19/immunology , Humans , Macrophages/immunology , Receptors, Calcitriol , SARS-CoV-2 , Vitamin D/immunology , Vitamins
6.
Alternative therapies in health and medicine ; 26:72-78, 2020.
Article in English | ProQuest Central | ID: covidwho-1229798

ABSTRACT

ContextRNA viruses exhibit an extraordinary ability to evolve in a changing environment and to switch from animal hosts to humans. The ongoing COVID-19 pandemic, recognized as a respiratory disease, is an example of zoonotic transmission of the RNA virus known as SARS-CoV-2. The development and regulatory approval of a vaccine against SARS-CoV-2 pose multiple preventive and therapeutic challenges, especially during an ongoing pandemic.ObjectiveThe review intended to examine the challenges and recent achievements in the development of vaccine candidates against COVID-19.DesignThe research team performed a literature review, searching relevant and up to date information from the literature. The sources of data included Google Scholar, PubMed, NCBI, and Yahoo. The search terms used were COVID-19 challenges, SARS-CoV-2 prospective challenges, RNA viruses adoptability, host switching by RNA viruses, COVID-19 vaccines.SettingThe study took place at the digital libraries of contributing institutions. The data was combined, selected for further analysis and manuscript preparation at King Abdulaziz University.ResultsRNA viruses with high rate of genome alterations and evolution have better chances to survive in the adverse environmental conditions by adopting the alternate host species. The recent epidemics such as SARS, MERS, and COVID-19 are examples of zoonotic transmission of RNA viruses from animal species to the humans. However, the mechanisms involved in the switching-on to new host species need further investigations to control the zoonotic transmissions in near future. As of April 2020, 115 candidate vaccines were being evaluated;78 of them had been found to be active, and a few of them are in Phase I trials. In the development of different types of vaccine candidates against COVID-19, multiple international pharmaceutical and biotechnology companies are involved.ConclusionsEmerging and re-emerging pathogenic RNA viruses pose a serious threat to human health. Little is known about the human-host adoptive mechanism for zoonotic transmission. Deep insights into the molecular mechanism responsible for the switching of animal or bird viruses to humans could provide target molecules or events to prevent such transmissions in the near future. Fast development and approval of efficacious and safe vaccines is key to the effort to provide preventive measures against COVID-19 and future viruses. However, the development and availability of a vaccine candidate is a time-consuming process and often can't be completed during an epidemic. Currently, several types of vaccines are under development, and most of them won't realistically be available in time for the present COVID-19 pandemic.

7.
Drug Dev Res ; 82(6): 784-788, 2021 09.
Article in English | MEDLINE | ID: covidwho-1120208

ABSTRACT

Over the recent decades, a number of new pathogens have emerged within specific and diverse populations across the globe, namely, the Nipah virus, the Ebola virus, the Zika virus, and coronaviruses (CoVs) to name a few. Recently, a new form of coronavirus was identified in the city of Wuhan, China. Interestingly, the genomic architecture of the virus did not match with any of the existing genomic sequencing data of previously sequenced CoVs. This had led scientists to confirm the emergence of a new CoV strain. Originally, named as 2019-nCoV, the strain is now called as SARS-CoV-2. High serum levels of proinflammatory mediators, namely, interleukin-12 (IL-12), IL-1ß, IL-6, interferon-gamma (IFNγ), chemoattractant protein-1, and IFN-inducible protein, have been repeatedly observed in subjects who were infected with this virus. In addition, the virus demonstrated strong coagulation activation properties, leading to further the understanding on the SARS-CoV2. To our understanding, these findings are unique to the published literature. Numerous studies have reported anomalies, namely, decline in the number of lymphocytes, platelets and albumins; and a rise in neutrophil count, aspartate transaminase, alanine aminotransaminase, lactate dehydrogenase, troponins, creatinine, complete bilirubin, D-dimers, and procalcitonin. Supplementation of calcium during the SARS CoV-2 associated hyperactive stage of calcium-sensing receptors (CaSR) may be harmful to the cardio-renal system. Thus, pharmacological inhibition of CaSR may prevent the increase in the levels of intracellular calcium, oxidative, inflammatory stress, and cardio-renal cellular apoptosis induced by high cytokines level in COVID-19 infection.


Subject(s)
COVID-19/metabolism , Coronavirus Envelope Proteins/metabolism , Receptors, Calcium-Sensing/metabolism , SARS-CoV-2/metabolism , Anti-Infective Agents/pharmacology , Anti-Infective Agents/therapeutic use , COVID-19/virology , Calcium/metabolism , Humans , Molecular Targeted Therapy , Receptors, Calcium-Sensing/drug effects , COVID-19 Drug Treatment
8.
Dermatol Ther ; 33(6): e13871, 2020 11.
Article in English | MEDLINE | ID: covidwho-603778

ABSTRACT

Severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), the primary causative organism in corona virus disease-19 (COVID-19) infections, is a novel member of the human coronavirus family which was first identified in Wuhan, China, towards the end of 2019. This letter reveals new vital missing links in our current understanding of the mechanisms that lead to cell death triggered by ferroptotic stress in COVID-19 infection. It further reveal the importance of homocysteine mediated trans-sulfuration pathway in COVID-19 infection. Hence, Vitamin B6, folic acid, and Vitamin B12 should be incorporated in the treatment regimen for SARS CoV-2 infections to suppress complications, as the virus mediates altered host cell metabolism.


Subject(s)
COVID-19/complications , Cell Death/physiology , Ferroptosis/physiology , COVID-19/prevention & control , COVID-19/virology , Folic Acid/administration & dosage , Humans , SARS-CoV-2/isolation & purification , Vitamin B 12/administration & dosage , Vitamin B 6/administration & dosage
9.
Pathogens ; 9(4)2020 Apr 22.
Article in English | MEDLINE | ID: covidwho-102008

ABSTRACT

The ongoing episode of coronavirus disease 19 (COVID-19) has imposed a serious threat to global health and the world economy. The disease has rapidly acquired a pandemic status affecting almost all populated areas of the planet. The causative agent of COVID-19 is a novel coronavirus known as SARS-CoV-2. The virus has an approximate 30 kb single-stranded positive-sense RNA genome, which is 74.5% to 99% identical to that of SARS-CoV, CoV-pangolin, and the coronavirus the from horseshoe bat. According to available information, SARS-CoV-2 is inferred to be a recombinant virus that originated from bats and was transmitted to humans, possibly using the pangolin as the intermediate host. The interaction of the SARS-CoV-2 spike protein with the human ACE2 (angiotensin-converting enzyme 2) receptor, and its subsequent cleavage by serine protease and fusion, are the main events in the pathophysiology. The serine protease inhibitors, spike protein-based vaccines, or ACE2 blockers may have therapeutic potential in the near future. At present, no vaccine is available against COVID-19. The disease is being treated with antiviral, antimalarial, anti-inflammatory, herbal medicines, and active plasma antibodies. In this context, the present review article provides a cumulative account of the recent information regarding the viral characteristics, potential therapeutic targets, treatment options, and prospective research questions.

10.
Non-conventional in English | WHO COVID | ID: covidwho-679469

ABSTRACT

CONTEXT: Some research has indicated that SARS-CoV-2 has had effects on the various functions of the renal system. Acute kidney injury (AKI) is a dangerous and broadly spread pathological illness. OBJECTIVE: In this review, we emphasize that AKI can be a severe complication of COVID-19 and highlight the importance of assessing, defining, and reporting the course of AKI. DESIGN: The research team performed a literature review, searching relevant literature databases. We searched four databases, PubMed, EMBASE, Web of Science and CNKI (Chinese Database), to identify studies reporting COVID-19. Articles published on or before May 10, 2020 were eligible for inclusion. We used the following search terms: "Coronavirus" or "2019-nCoV" or "COVID-19" or "AKI" or "renal failure" or "nephrology". SETTING: This study was take place at Jouf University, Sakaka, Al-Jouf, Saudi Arabia. RESULTS: The review showed that AKI patients, who were susceptible to a cytokine storm, showed clinical deterioration. This result allowed the current research team to develop a hypothesis of a set of adverse events in COVID-19 that proposes the modification of inflammatory pathways by stimulation of nAChRα7. The stimulation could occur by way of IL-6 / JAK2 / STAT3 / SOCS3 and NF-κB (p65)/IL-18, which work together to induce AKI and increase overall renal-related diagnostic markers, such as plasma creatinine and tubular cell damage. In addition, the functioning of the cholinergic anti-inflammatory pathway may be determined by nicotine. Pharmacological nicotine products are widely available, and their role in COVID-19-mediated AKI can be further evaluated. CONCLUSIONS: The research team concluded that the dysregulation of the cholinergic anti-inflammatory system could explain most of the clinical features of severe COVID-19.

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