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Authors = Abdullah O. Alawad

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39 pages, 2850 KiB  
Review
Emerging Trends and Innovations in the Treatment and Diagnosis of Atherosclerosis and Cardiovascular Disease: A Comprehensive Review towards Healthier Aging
by Ibrahim Alradwan, Nojoud AL Fayez, Mohammad N. Alomary, Abdullah A. Alshehri, Alhassan H. Aodah, Fahad A. Almughem, Khulud A. Alsulami, Ahmad M. Aldossary, Abdullah O. Alawad, Yahya M. K. Tawfik and Essam A. Tawfik
Pharmaceutics 2024, 16(8), 1037; https://doi.org/10.3390/pharmaceutics16081037 - 3 Aug 2024
Cited by 10 | Viewed by 9673
Abstract
Cardiovascular diseases (CVDs) are classed as diseases of aging, which are associated with an increased prevalence of atherosclerotic lesion formation caused by such diseases and is considered as one of the leading causes of death globally, representing a severe health crisis affecting the [...] Read more.
Cardiovascular diseases (CVDs) are classed as diseases of aging, which are associated with an increased prevalence of atherosclerotic lesion formation caused by such diseases and is considered as one of the leading causes of death globally, representing a severe health crisis affecting the heart and blood vessels. Atherosclerosis is described as a chronic condition that can lead to myocardial infarction, ischemic cardiomyopathy, stroke, and peripheral arterial disease and to date, most pharmacological therapies mainly aim to control risk factors in patients with cardiovascular disease. Advances in transformative therapies and imaging diagnostics agents could shape the clinical applications of such approaches, including nanomedicine, biomaterials, immunotherapy, cell therapy, and gene therapy, which are emerging and likely to significantly impact CVD management in the coming decade. This review summarizes the current anti-atherosclerotic therapies’ major milestones, strengths, and limitations. It provides an overview of the recent discoveries and emerging technologies in nanomedicine, cell therapy, and gene and immune therapeutics that can revolutionize CVD clinical practice by steering it toward precision medicine. CVD-related clinical trials and promising pre-clinical strategies that would significantly impact patients with CVD are discussed. Here, we review these recent advances, highlighting key clinical opportunities in the rapidly emerging field of CVD medicine. Full article
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24 pages, 1151 KiB  
Review
Recent Advancement in mRNA Vaccine Development and Applications
by Nojoud Al Fayez, Majed S. Nassar, Abdullah A. Alshehri, Meshal K. Alnefaie, Fahad A. Almughem, Bayan Y. Alshehri, Abdullah O. Alawad and Essam A. Tawfik
Pharmaceutics 2023, 15(7), 1972; https://doi.org/10.3390/pharmaceutics15071972 - 18 Jul 2023
Cited by 70 | Viewed by 23716
Abstract
Messenger RNA (mRNA) vaccine development for preventive and therapeutic applications has evolved rapidly over the last decade. The mRVNA vaccine has proven therapeutic efficacy in various applications, including infectious disease, immunotherapy, genetic disorders, regenerative medicine, and cancer. Many mRNA vaccines have made it [...] Read more.
Messenger RNA (mRNA) vaccine development for preventive and therapeutic applications has evolved rapidly over the last decade. The mRVNA vaccine has proven therapeutic efficacy in various applications, including infectious disease, immunotherapy, genetic disorders, regenerative medicine, and cancer. Many mRNA vaccines have made it to clinical trials, and a couple have obtained FDA approval. This emerging therapeutic approach has several advantages over conventional methods: safety; efficacy; adaptability; bulk production; and cost-effectiveness. However, it is worth mentioning that the delivery to the target site and in vivo degradation and thermal stability are boundaries that can alter their efficacy and outcomes. In this review, we shed light on different types of mRNA vaccines, their mode of action, and the process to optimize their development and overcome their limitations. We also have explored various delivery systems focusing on the nanoparticle-mediated delivery of the mRNA vaccine. Generally, the delivery system plays a vital role in enhancing mRNA vaccine stability, biocompatibility, and homing to the desired cells and tissues. In addition to their function as a delivery vehicle, they serve as a compartment that shields and protects the mRNA molecules against physical, chemical, and biological activities that can alter their efficiency. Finally, we focused on the future considerations that should be attained for safer and more efficient mRNA application underlining the advantages and disadvantages of the current mRNA vaccines. Full article
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3 pages, 223 KiB  
Reply
Reply to Zandi, M.; Soltani, S. Comment on “Alfassam et al. Development of a Colorimetric Tool for SARS-CoV-2 and Other Respiratory Viruses Detection Using Sialic Acid Fabricated Gold Nanoparticles. Pharmaceutics 2021, 13, 502”
by Haya A. Alfassam, Majed S. Nassar, Manal M. Almusaynid, Bashayer A. Khalifah, Abdullah S. Alshahrani, Fahad A. Almughem, Abdullah A. Alshehri, Majed O. Alawad, Salam Massadeh, Manal Alaamery, Ibrahim M. Aldeailej, Aref A. Alamri, Abdulwahab Z. Binjomah and Essam A. Tawfik
Pharmaceutics 2022, 14(9), 1878; https://doi.org/10.3390/pharmaceutics14091878 - 6 Sep 2022
Viewed by 1755
Abstract
When COVID-19 was first announced back in 2019, there were vast number of attempts to halt the progression of the SARS-CoV-2 virus once and for all [...] Full article
11 pages, 2277 KiB  
Article
Development of a Colorimetric Tool for SARS-CoV-2 and Other Respiratory Viruses Detection Using Sialic Acid Fabricated Gold Nanoparticles
by Haya A. Alfassam, Majed S. Nassar, Manal M. Almusaynid, Bashayer A. Khalifah, Abdullah S. Alshahrani, Fahad A. Almughem, Abdullah A. Alshehri, Majed O. Alawad, Salam Massadeh, Manal Alaamery, Ibrahim M. Aldeailej, Aref A. Alamri, Abdulwahab Z. Binjomah and Essam A. Tawfik
Pharmaceutics 2021, 13(4), 502; https://doi.org/10.3390/pharmaceutics13040502 - 6 Apr 2021
Cited by 9 | Viewed by 3657
Abstract
Sialic acid that presents on the surface of lung epithelial cells is considered as one of the main binding targets for many respiratory viruses, including influenza and the current coronavirus (SARS-CoV-2) through the viral surface protein hemagglutinin. Gold nanoparticles (Au NPs) are extensively [...] Read more.
Sialic acid that presents on the surface of lung epithelial cells is considered as one of the main binding targets for many respiratory viruses, including influenza and the current coronavirus (SARS-CoV-2) through the viral surface protein hemagglutinin. Gold nanoparticles (Au NPs) are extensively used in the diagnostic field owing to a phenomenon known as ‘surface plasmonic resonance’ in which the scattered light is absorbed by these NPs and can be detected via UV-Vis spectrophotometry. Consequently, sialic acid conjugated Au NPs (SA-Au NPs) were utilized for their plasmonic effect against SARS-CoV-2, influenza B virus, and Middle-East respiratory syndrome-related coronavirus (MERS) in patients’ swab samples. The SA-Au NPs system was prepared by a one-pot synthesis method, through which the NPs solution color changed from pale yellow to dark red wine color, indicting its successful preparation. In addition, the SA-Au NPs had an average particle size of 30 ± 1 nm, negative zeta potential (−30 ± 0.3 mV), and a UV absorbance of 525 nm. These NPs have proven their ability to change the color of the NPs solutions and patients’ swabs that contain SARS-CoV-2, influenza B, and MERS viruses, suggesting a rapid and straightforward detection tool that would reduce the spread of these viral infections and accelerate the therapeutic intervention. Full article
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21 pages, 6712 KiB  
Article
Decidua Basalis Mesenchymal Stem Cells Favor Inflammatory M1 Macrophage Differentiation In Vitro
by Mohamed H. Abumaree, Seham Al Harthy, Abdullah M. Al Subayyil, Manal A. Alshabibi, Fawaz M. Abomaray, Tanvier Khatlani, Bill Kalionis, Mohammed F. El- Muzaini, Mohammed A. Al Jumah, Dunia Jawdat, Abdullah O. Alawad and Ahmed S. AlAskar
Cells 2019, 8(2), 173; https://doi.org/10.3390/cells8020173 - 18 Feb 2019
Cited by 20 | Viewed by 4652
Abstract
Placental mesenchymal stem cells from maternal decidua basalis tissue (DBMSCs) are promising cells for tissue repair because of their multilineage differentiation and ability to protect endothelial cells from injury. Here, we examined DBMSC interaction with macrophages and whether this interaction could modulate the [...] Read more.
Placental mesenchymal stem cells from maternal decidua basalis tissue (DBMSCs) are promising cells for tissue repair because of their multilineage differentiation and ability to protect endothelial cells from injury. Here, we examined DBMSC interaction with macrophages and whether this interaction could modulate the characteristics and functions of these macrophages. We induced monocytes to differentiate into M1-like macrophages in the presence of DBMSCs. DBMSC effects on differentiation were evaluated using microscopy, flow cytometry, and ELISA. DBMSC effects on M1-like macrophage induction of T cell function were also examined. The culture of DBMSCs with monocytes did not inhibit monocyte differentiation into M1-like inflammatory macrophages. This was confirmed by the morphological appearance of M1-like macrophages, increased expression of inflammatory molecules, and reduced expression of anti-inflammatory molecules. In addition, DBMSCs did not interfere with M1-like macrophage phagocytic activity; rather, they induced stimulatory effects of M1-like macrophages on CD4+ T cell proliferation and subsequent secretion of inflammatory molecules by T cells. We showed that DBMSCs enhanced the differentiation of M1-like inflammatory macrophages, which function as antitumor cells. Therefore, our findings suggest that DBMSCs are inflammatory cells that could be useful in cancer treatment via the enhancement of M1- like macrophages. Full article
(This article belongs to the Special Issue Immunomodulation by Mesenchymal Stem Cells)
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