Exosomes: Applications in Respiratory Infectious Diseases and Prospects for Coronavirus Disease 2019 (COVID-19)

2020 ◽  
Vol 16 (4) ◽  
pp. 399-418
Author(s):  
Jia Feng ◽  
Ahmed Waqas ◽  
Zhihan Zhu ◽  
Lukui Chen

Exosomes are small extracellular vesicles of 30–150 nm diameter secreted by almost all cells. In recent years, with continuous deeper understanding of exosomes physiological functions, different reports have proven that exosomes can facilitate cell-to-cell communication by binding to target cells and transferring their contents, together with RNAs, DNAs, proteins, and lipids between cells and tissues. With advantages that exosomes can be involved in various types of physiological processes, such as blood coagulation, cellular homeostasis, inflammation, immune surveillance, stem cell differentiation, neuroprotection, and tissue regeneration and angiogenesis. Exosomes have been demonstrated that they can be applied in identification and treatment of multiple disorders such as cancers, cerebral ischemia, and respiratory infectious diseases. Importantly, researchers utilize application of exosomes in the treatment of various respiratory infectious diseases that have made some breakthrough progress. However, with the global pandemic of Coronavirus Disease 2019 (COVID-19), we have focused on applications of exosomes in respiratory infectious diseases and their serious complications, including influenza, TB, ARDS and sepsis. In this review, we explain the use of exosomes in various respiratory infectious diseases and their serious complications, and hope to provide new ideas for the treatment of new coronavirus infections.

Author(s):  
Maria Moros ◽  
Eugenio Fergola ◽  
Valentina Marchesano ◽  
Margherita Mutarelli ◽  
Giuseppina Tommasini ◽  
...  

Recent body of evidence demonstrates that extracellular vesicles (EVs) represent the first language of cell-cell communication emerged during evolution. In aquatic environments, transferring signals between cells by EVs offers protection against degradation, allowing delivering of chemical information in high local concentrations to the target cells. The packaging of multiple signals, including those of hydrophobic nature, ensures target cells to receive the same EV-conveyed messages, and the coordination of a variety of physiological processes across cells of a single organisms, or at the population level, i.e., mediating the population’s response to changing environmental conditions. Here, we purified EVs from the medium of the freshwater invertebrate Hydra vulgaris, and the molecular profiling by proteomic and transcriptomic analyses revealed multiple markers of the exosome EV subtype, from structural proteins to stress induced messages promoting cell survival. Moreover, positive and negative regulators of the Wnt/β-catenin signaling pathway, the major developmental pathway acting in body axial patterning, were identified. Functional analysis on amputated polyps revealed EV ability to modulate both head and foot regeneration, suggesting bioactivity of the EV cargo and opening new perspectives on the mechanisms of developmental signalling. Our results open the path to unravel EV biogenesis and function in all cnidarian species, tracing back the origin of the cell-cell, cross-species or cross-kingdom communication in aquatic ecosystems.


Author(s):  
А.А. Кубатиев ◽  
Т.Г. Боровая ◽  
В.Г. Жуховицкий ◽  
С.Г. Адреевская ◽  
Н.В. Шевлягина

Статья является обзорной, содержит информацию об образовании и свойствах микрочастиц тромбоцитов, их роли в физиологических процессах организма и патогенезе заболеваний. Рассматриваются механизмы ремоделирования плазмолеммы и цитоскелета тромбоцитов в ходе формирования микрочастиц, приводятся фенотипические особенности микрочастиц и их значение как молекулярных трансмиттеров и активаторов сигнальных путей в клетках-мишенях. Представлена информация об участии микрочастиц в патогенезе заболеваний, сопровождающихся тромбообразованием, в регуляции ангиогенеза и метастазировании опухолей. Рассматривается влияние микрочастиц тромбоцитов на факторы воспаления и потенциальная роль микрочастиц в патогенезе инфекционных заболеваний. This article is a review that contains information about the formation and properties of microparticles of platelets, about their role in the physiological processes of the organism and pathogenesis of the disease. Are considered: mechanisms of remodeling plasmolemma and platelet cytoskeleton during formation of microparticles, the phenotypic features of microparticles and their role as molecular transmitters and activators of signaling pathways in target cells. Presents information on the involvement of microparticles in the pathogenesis of diseases associated with thrombus formation, in the regulation of angiogenesis and metastasis of tumors. Discusses the influence of platelet microparticles on inflammation factors and the potential role of microparticles in the pathogenesis of infectious diseases.


2015 ◽  
Vol 58 ◽  
pp. 115-131 ◽  
Author(s):  
Ayane Motomitsu ◽  
Shinichiro Sawa ◽  
Takashi Ishida

The ligand–receptor-based cell-to-cell communication system is one of the most important molecular bases for the establishment of complex multicellular organisms. Plants have evolved highly complex intercellular communication systems. Historical studies have identified several molecules, designated phytohormones, that function in these processes. Recent advances in molecular biological analyses have identified phytohormone receptors and signalling mediators, and have led to the discovery of numerous peptide-based signalling molecules. Subsequent analyses have revealed the involvement in and contribution of these peptides to multiple aspects of the plant life cycle, including development and environmental responses, similar to the functions of canonical phytohormones. On the basis of this knowledge, the view that these peptide hormones are pivotal regulators in plants is becoming increasingly accepted. Peptide hormones are transcribed from the genome and translated into peptides. However, these peptides generally undergo further post-translational modifications to enable them to exert their function. Peptide hormones are expressed in and secreted from specific cells or tissues. Apoplastic peptides are perceived by specialized receptors that are located at the surface of target cells. Peptide hormone–receptor complexes activate intracellular signalling through downstream molecules, including kinases and transcription factors, which then trigger cellular events. In this chapter we provide a comprehensive summary of the biological functions of peptide hormones, focusing on how they mature and the ways in which they modulate plant functions.


2018 ◽  
Vol 2 (5) ◽  
pp. 682
Author(s):  
Masniar Masniar

Various difficulties in learning English which have been an obstacle for almost all students, this should be avaluable lesson to spark new ideas in group learning implementation programs. To overcome the problem of thelow level of English learning outcomes of class VII students of Bangkinang State 2 Junior High School inKampar Regency, group learning is one good alternative. The study is a classroom action research conducted inBangkinang Kota 2 Public Middle School, Kampar district. The subjects of this study were seventh gradestudents. The results of the study obtained data on teacher activity in the first cycle of the first meeting with apercentage of 57%, the second meeting with a percentage of 66.5%, in the second cycle at the third meeting thepercentage was 83.5%, and at the fourth meeting percentage obtained 90.5%. The observation data of studentsin the first cycle of the 1st meeting was 51%, the second meeting was 62.5%, in the second cycle the thirdmeeting was 80%, and the fourth meeting was 88%. Data on the improvement of learning outcomes in the initialdata obtained an average of 63, in daily I repetition of 75, and in the second daily test of 88.


2020 ◽  
Vol 25 (42) ◽  
pp. 4510-4522 ◽  
Author(s):  
Biancamaria Longoni ◽  
Irene Fasciani ◽  
Shivakumar Kolachalam ◽  
Ilaria Pietrantoni ◽  
Francesco Marampon ◽  
...  

: Exosomes are extracellular vesicles produced by eukaryotic cells that are also found in most biological fluids and tissues. While they were initially thought to act as compartments for removal of cellular debris, they are now recognized as important tools for cell-to-cell communication and for the transfer of pathogens between the cells. They have attracted particular interest in neurodegenerative diseases for their potential role in transferring prion-like proteins between neurons, and in Parkinson’s disease (PD), they have been shown to spread oligomers of α-synuclein in the brain accelerating the progression of this pathology. A potential neuroprotective role of exosomes has also been equally proposed in PD as they could limit the toxicity of α-synuclein by clearing them out of the cells. Exosomes have also attracted considerable attention for use as drug vehicles. Being nonimmunogenic in nature, they provide an unprecedented opportunity to enhance the delivery of incorporated drugs to target cells. In this review, we discuss current knowledge about the potential neurotoxic and neuroprotective role of exosomes and their potential application as drug delivery systems in PD.


2020 ◽  
Vol 22 (Supplement_N) ◽  
pp. N135-N137
Author(s):  
Teresa Fedele ◽  
Silvia Orefice ◽  
Ludovica Fiorillo ◽  
Vittoria Cuomo ◽  
Valentina Capone ◽  
...  

Abstract Aims The inability to carry office visits was collateral damage caused by the Coronavirus (COVID-19) pandemic. Tele-health is a relatively new, and yet fundamental amid the current crisis, resource to bridge the gap between phisicians and patients. Methods and results We report our experience with telemedicine and describe the major events occured in our patients. 121 consecutive adult patients with arterial hypertension (F/M: 56/65; mean age: 66.8 years) were enrolled. 33 patients (27%) had also diabetes, 94 (78%) were also affected from dyslipidemia and 11 (9%) had CAD. They all referred to our ambulatory of hypertension, in most of case for several years. Given the impossibility to continue routine outpatient visits during lockdown, they were all phone called by three residents in order to detect their state of health or any events they could have experienced over this period. They were all asked about their own blood pressure values, the occurrence of new symptoms and of new-onset both cardiovascular and non cardiovascular events. We also followed a self-made preset form. 31 of them (26%) experienced cardiovascular symptoms/events during this period: 11 had hypertensive peaks, in one case associated with nausea and vomiting while 2 of them had hypotensive episodes; 10 had typical angina and/or dyspnoea while 4 had atypical angina; 6 had palpitations; 1 of them developed new onset atrial fibrillation resolved with pharmacologic cardioversion during hospitalization; 1 had syncope; 1 patient reported new onset peripheral oedema; 2 patients died during lockdown for non cardiovascular causes. 17 of them also developed non cardiovascular symptoms, 7 of whom were severe anxiety and/or panic attacks. Almost all patients had important lifestyle changes, in 15 cases (12.3%) associated with weight increase. Conclusion The impossibility to access to routine outpatient visits during lockdown due to global pandemic of SARS-CoV2, has brought out the risk of underestimating consequences of chronic disease, in absence of appropriate Follow-up. Nevertheless, the two deaths we report were not related to cardiovascular disease. The risk is that both the missing of cardiovascular control visit and the extension of the waiting list, could provoke serious complications in patients suffering from chronic cardiovascular disease.


2021 ◽  
Vol 22 (4) ◽  
pp. 2213
Author(s):  
Natalia Diaz-Garrido ◽  
Cecilia Cordero ◽  
Yenifer Olivo-Martinez ◽  
Josefa Badia ◽  
Laura Baldomà

Communication between cells is crucial to preserve body homeostasis and health. Tightly controlled intercellular dialog is particularly relevant in the gut, where cells of the intestinal mucosa are constantly exposed to millions of microbes that have great impact on intestinal homeostasis by controlling barrier and immune functions. Recent knowledge involves extracellular vesicles (EVs) as mediators of such communication by transferring messenger bioactive molecules including proteins, lipids, and miRNAs between cells and tissues. The specific functions of EVs principally depend on the internal cargo, which upon delivery to target cells trigger signal events that modulate cellular functions. The vesicular cargo is greatly influenced by genetic, pathological, and environmental factors. This finding provides the basis for investigating potential clinical applications of EVs as therapeutic targets or diagnostic biomarkers. Here, we review current knowledge on the biogenesis and cargo composition of EVs in general terms. We then focus the attention to EVs released by cells of the intestinal mucosa and their impact on intestinal homeostasis in health and disease. We specifically highlight their role on epithelial barrier integrity, wound healing of epithelial cells, immunity, and microbiota shaping. Microbiota-derived EVs are not reviewed here.


2021 ◽  
Vol 104 (2) ◽  
pp. 003685042110198
Author(s):  
Helen Onyeaka ◽  
Christian K Anumudu ◽  
Zainab T Al-Sharify ◽  
Esther Egele-Godswill ◽  
Paul Mbaegbu

COVID-19, caused by the severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), was declared a pandemic by the World Health Organization (WHO) on the 11th of March 2020, leading to some form of lockdown across almost all countries of the world. The extent of the global pandemic due to COVID-19 has a significant impact on our lives that must be studied carefully to combat it. This study highlights the impacts of the COVID-19 pandemic lockdown on crucial aspects of daily life globally, including; Food security, Global economy, Education, Tourism, hospitality, sports and leisure, Gender Relation, Domestic Violence/Abuse, Mental Health and Environmental air pollution through a systematic search of the literature. The COVID-19 global lockdown was initiated to stem the spread of the virus and ‘flatten the curve’ of the pandemic. However, the impact of the lockdown has had far-reaching effects in different strata of life, including; changes in the accessibility and structure of education delivery to students, food insecurity as a result of unavailability and fluctuation in prices, the depression of the global economy, increase in mental health challenges, wellbeing and quality of life amongst others. This review article highlights the impacts of the COVID-19 pandemic lockdown across the globe. As the global lockdown is being lifted in a phased manner in various countries of the world, it is necessary to explore its impacts to understand its consequences comprehensively. This will guide future decisions that will be made in a possible future wave of the COVID-19 pandemic or other global disease outbreak.


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