4.6 Article

The potential role of neopterin in Covid-19: a new perspective

Journal

MOLECULAR AND CELLULAR BIOCHEMISTRY
Volume 476, Issue 11, Pages 4161-4166

Publisher

SPRINGER
DOI: 10.1007/s11010-021-04232-z

Keywords

Neopterin; SARS-CoV-2 infection; Covid-19 severity

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Funding

  1. Taif University Researchers Supporting Program [TURSP-2020/128]
  2. Taif University, Saudi Arabia

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NPT is a member of pteridines group synthesized by macrophages, which is regarded as a macrophage stimulation indicator and immune response marker, with potential independent prognostic significance in Covid-19. Early elevation of NPT levels may indicate the activation status of inflammatory cells.
Neopterin (NPT) is a member of pteridines group, synthesized by macrophages when stimulated by interferon gamma (INF-gamma). NPT is regarded as a macrophage stimulation indicator, marker of cellular immune activation and T helper 1 (Th1) type 1 immune response. Here, we aimed to provide a view point on the NPT features and role in Covid-19. Serum NPT level is regarded as an independent prognostic factor for Covid-19 severity, with levels starting to increase from the 3rd day of SARS-CoV-2 infection, being associated with severe dyspnea, longer hospitalization period and complications. Also, early raise of NPT reflects monocytes/macrophages activation before antibody immune response, despite the NPT level may also remain high in Covid-19 patients or at the end of incubation period before the onset of clinical symptoms. On the other hand, NPT attenuates the activity of macrophage foam cells and is linked to endothelial inflammation through inhibition of adhesion molecules and monocytes migration. However, NPT also exerts anti-inflammatory and antioxidant effects by suppressing NF-kappa B signaling and NLRP3 inflammasomes. NPT can be viewed as a protective compensatory mechanism to counterpoise hyper-inflammation, oxidative stress, and associated organ damage.

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Possible role of LCZ696 in atherosclerosis: new inroads and perspective

Hayder M. Al-kuraishy, Ali I. Al-Gareeb, Engy Elekhnawy, Gaber El-Saber Batiha

Summary: LCZ696 can effectively treat atherosclerosis by inhibiting inflammatory and oxidative stress signals. It blocks angiotensin receptor type 1 (ATR1) and neprilysin (NEP), which are involved in the degradation of natriuretic peptides (NPs) and other endogenous peptides.

MOLECULAR AND CELLULAR BIOCHEMISTRY (2023)

Article Biotechnology & Applied Microbiology

Graphene oxide-induced, reactive oxygen species-mediated mitochondrial dysfunctions and apoptosis: high-dose toxicity in normal cells

Ameer A. Imarah, Majid S. Jabir, Ali H. Abood, Ghassan M. Sulaiman, Salim Albukhaty, Hamdoon A. Mohammed, Riaz A. Khan, Hayder M. Al-Kuraishy, Ali Al-Gareeb, Waleed K. Al-Azzawi, Mazin A. Najm, Sabrean F. Jawad

Summary: In this study, the cytotoxic effects of graphene oxide nanoparticles (GONPs) were evaluated using MTT assays, observation of apoptotic markers, and oxidative stress. Significant cytotoxic and apoptotic effects were observed. Analyses of CYP2E1 and malondialdehyde concentrations confirmed the toxicity of GONPs, while the levels of glutathione showed a reduction compared to the control. The alterations in cytochrome CYP2E1, glutathione, malondialdehyde, and caspase-3 suggest an interlinked relationship.

NANOMEDICINE (2023)

Article Medicine, Research & Experimental

Evaluating the Efficacy of Platelet-Rich Fibrin Matrix versus Subepithelial Connective Tissue Grafts in Dental Root Coverage: A Comparative Study Using Modified Ruben's Technique

Justina P. Louis, Jasmine M. Crena, P. S. G. Prakash, Sangeetha Subramanian, Dhayanand John Victor, Thodur Madapusi Balaji, Bassam Zidane, Manea Musa Musleh Al-Ahmari, Nassreen H. Albar, Ibrahim F. Halawani, Khalid J. Alzahrani, Abdullah F. Halawani, Shankargouda Patil

Summary: Platelet-rich fibrin (PRF) matrix and connective tissue graft show comparable gains in root coverage and attached gingiva. The study supports the hypothesis that a subepithelial PRF matrix can serve as a viable alternative for dental root coverage treatment.

MEDICAL SCIENCE MONITOR (2023)

Article Public, Environmental & Occupational Health

High prevalence of norovirus GII.4 Sydney among children with acute gastroenteritis in Bangladesh, 2018-2021

Nadim Sharif, Shamsun Nahar Ahmed, Nazmul Sharif, Khalid J. Alzahrani, Meshari A. Alsuwat, Fuad M. Alzahrani, Shamim Khandaker, Nuzhat Haque Monifa, Shoko Okitsu, Anowar Khasru Parvez, Hiroshi Ushijima, Shuvra Kanti Dey

Summary: This study aimed to determine the genotypic diversity, molecular epidemiology, and evaluate a rapid diagnosis method for norovirus in Bangladesh. The results showed a wide diversity of norovirus genotypes, including GII.3, GII.4, GII.5, GII.6, GII.7, and GII.9. Norovirus strain GII.4 Sydney-2012 was the most predominant. The study also found a high prevalence of co-infection of norovirus and rotavirus, and the rapid diagnosis method showed high specificity and sensitivity.

JOURNAL OF INFECTION AND PUBLIC HEALTH (2023)

Article Public, Environmental & Occupational Health

Global, regional, and national mortality due to unintentional carbon monoxide poisoning, 2000-2021: results from the Global Burden of Disease Study 2021

Madeline Moberg

Summary: Unintentional carbon monoxide poisoning is a preventable cause of death that has not received enough attention globally. This study conducted a comprehensive analysis of fatal unintentional carbon monoxide poisoning from 2000 to 2021, revealing regional and temporal variations in mortality rates. Policy-level interventions should be prioritized to reduce the risk of carbon monoxide poisoning events.

LANCET PUBLIC HEALTH (2023)

Article Microbiology

Effects of Bacterial Metabolites on the Wnt4 Protein in Dental-Pulp-Stem-Cells-Based Endodontic Pulpitis Treatment

Ayman M. Abulhamael, Shilpa Bhandi, Nasreen H. Albar, Amal S. Shaiban, Shashit Shetty Bavabeedu, Khalid J. Alzahrani, Fuad M. Alzahrani, Ibrahim F. Halawani, Shankargouda Patil

Summary: Porphyromonas gingivalis, a bacteria associated with endodontic pulpitis, can inhibit the regenerative potential of dental pulp stem cells (DPSCs) through the production of metabolites. Among these metabolites, C29H46N7O18P3S-4 exhibits the strongest inhibitory effect on the Wnt4 protein, leading to alterations in protein structure and stability.

MICROORGANISMS (2023)

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