1.Mesenchymal stem cell therapy for acute respiratory distress syndrome: from basic to clinics.
Protein & Cell 2020;11(10):707-722
The 2019 novel coronavirus disease (COVID-19), caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), has occurred in China and around the world. SARS-CoV-2-infected patients with severe pneumonia rapidly develop acute respiratory distress syndrome (ARDS) and die of multiple organ failure. Despite advances in supportive care approaches, ARDS is still associated with high mortality and morbidity. Mesenchymal stem cell (MSC)-based therapy may be an potential alternative strategy for treating ARDS by targeting the various pathophysiological events of ARDS. By releasing a variety of paracrine factors and extracellular vesicles, MSC can exert anti-inflammatory, anti-apoptotic, anti-microbial, and pro-angiogenic effects, promote bacterial and alveolar fluid clearance, disrupt the pulmonary endothelial and epithelial cell damage, eventually avoiding the lung and distal organ injuries to rescue patients with ARDS. An increasing number of experimental animal studies and early clinical studies verify the safety and efficacy of MSC therapy in ARDS. Since low cell engraftment and survival in lung limit MSC therapeutic potentials, several strategies have been developed to enhance their engraftment in the lung and their intrinsic, therapeutic properties. Here, we provide a comprehensive review of the mechanisms and optimization of MSC therapy in ARDS and highlighted the potentials and possible barriers of MSC therapy for COVID-19 patients with ARDS.
Adoptive Transfer
;
Alveolar Epithelial Cells
;
pathology
;
Animals
;
Apoptosis
;
Betacoronavirus
;
Body Fluids
;
metabolism
;
CD4-Positive T-Lymphocytes
;
immunology
;
Clinical Trials as Topic
;
Coinfection
;
prevention & control
;
therapy
;
Coronavirus Infections
;
complications
;
immunology
;
Disease Models, Animal
;
Endothelial Cells
;
pathology
;
Extracorporeal Membrane Oxygenation
;
Genetic Therapy
;
methods
;
Genetic Vectors
;
administration & dosage
;
therapeutic use
;
Humans
;
Immunity, Innate
;
Inflammation Mediators
;
metabolism
;
Lung
;
pathology
;
physiopathology
;
Mesenchymal Stem Cell Transplantation
;
methods
;
Mesenchymal Stem Cells
;
physiology
;
Multiple Organ Failure
;
etiology
;
prevention & control
;
Pandemics
;
Pneumonia, Viral
;
complications
;
immunology
;
Respiratory Distress Syndrome, Adult
;
immunology
;
pathology
;
therapy
;
Translational Medical Research
2.Progress in source tracking of SARS-CoV-2.
Journal of Southern Medical University 2020;40(12):1838-1842
Coronavirus disease 2019 (COVID-19) pandemic has caused a total of 55 928 327 confirmed cases and 1 344 003 deaths as of November 19, 2020. But so far the origin of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) that causes this pandemic has remained undetermined. The purpose of this study is to review the current research of SARS-CoV-2 and the existing problems therein, which may provide inspiration for further researches. Existing evidence suggested that SARS-CoV-2 may be derived from bat coronavirus 40-70 years ago. During the evolution, this virus underwent extensive variations in the process of mutations and natural selection. Different genomic regions of SARS-CoV-2 may have different selection pressures, but all of which increase the difficulty of tracing the origin of this virus. A wide variety of animals have been considered as potential hosts of SARS-CoV-2, including cats, lions, tigers, dogs and minks. SARS-CoV-2 has a chance to transmit from humans to animals and can be transmitted among animals. Current research evidence has shown that China is not the original source of SARS-CoV-2. It is still unclear how the virus spreads to human, and efforts are still need to be made to explore the origin of SARS-CoV-2, its hosts and intermediate hosts, and the mechanism of its transmission across different species of animals.
Animals
;
COVID-19/transmission*
;
Cats
;
China
;
Chiroptera/virology*
;
Disease Vectors
;
Dogs
;
Evolution, Molecular
;
Humans
;
SARS-CoV-2/classification*
3.Alzheimer's disease and nerve growth factor gene therapy.
Zhonghua HUANG ; Jian LI ; Jun ZHOU ; Jie ZHANG
Journal of Central South University(Medical Sciences) 2019;44(12):1413-1418
Gene therapy plays an important role in Alzheimer's disease (AD). In recent years, the research on gene delivery vector has gradually transferred from adenovirus vector, adeno-associated virus vector and lentivirus vector to liposomes and nanomaterial carrier systems. Graphene, the newest member of nanomaterial carrier system, has attracted extensive attention for its well permeability and biocompatibility. The methods of gene therapy can be divided into direct and indirect method. The stem cell therapy, which is the most-well studied one, belongs to the indirect method. In the gene therapy of AD, the selection of appropriate carrier and method will determine the therapeutic effect.
Alzheimer Disease
;
therapy
;
Dependovirus
;
Gene Transfer Techniques
;
Genetic Therapy
;
Genetic Vectors
;
Humans
4.Intersectoral collaborations for the prevention and control of Vector Borne diseases: A scoping review
Ma. Sophia Graciela L. Reyes ; Chelseah Denise H. Torres ; Amiel Nazer C. Bermudez ; Kim L. Cochon ; Evalyn A. Roxas ; Sophia Anne S.P. Liao ; Dorothy Jean N. Ortega ; Abegail Visia Marie C. Silang ; Deinzel R. Uezono ; Maria Sonia S. Salamat ; Carl Abelardo T. Antonio
Acta Medica Philippina 2019;53(4):315-326
Objectives:
This scoping review aimed to support a landscape analysis to identify lessons learned about intersectoral collaborations (ISCs) by describing their existing models in the context of dengue, malaria and yellow fever.
Methods:
A scoping review following the methodology of Joanna Briggs Institute was performed using the following inclusion criteria: studies involving humans; studies discussing intersectoral collaborations, malaria/dengue/yellow fever, and prevention or control at any level; and studies in countries endemic for the aforementioned diseases. Studies were screened using Covidence, while data were extracted using NVivo.
Results:
Of the 7,535 records retrieved, 69 were included in the qualitative analysis. Most ISCs were initiated by multilateral organizations and ministries of health, and none by communities. Strategies included advocacy, health education, research, public health measures, resource mobilization, service delivery and training; mostly employed on a community level. Monitoring and evaluation were mostly formative, ongoing, and participatory. Gaps included administrative and policy barriers, resource shortages, and inadequate research and training.
Conclusions
Multiple models of ISC exist in the literature. There is a need to develop a comprehensive framework for an effective and sustainable multisectoral approach for the prevention and control of VBDs ensuring adequate resources, active stakeholders, and strategies that span the entire socio-ecological spectrum.
Dengue
;
Disease Vectors
;
Intersectoral Collaboration
;
Malaria
;
Vector Borne Diseases
5.Dembo polymerase chain reaction technique for detection of bovine abortion, diarrhea, and respiratory disease complex infectious agents in potential vectors and reservoirs
Sayed Samim RAHPAYA ; Shinobu TSUCHIAKA ; Mai KISHIMOTO ; Mami OBA ; Yukie KATAYAMA ; Yuka NUNOMURA ; Saki KOKAWA ; Takashi KIMURA ; Atsushi KOBAYASHI ; Yumi KIRINO ; Tamaki OKABAYASHI ; Nariaki NONAKA ; Hirohisa MEKATA ; Hiroshi AOKI ; Mai SHIOKAWA ; Moeko UMETSU ; Tatsushi MORITA ; Ayako HASEBE ; Keiko OTSU ; Tetsuo ASAI ; Tomohiro YAMAGUCHI ; Shinji MAKINO ; Yoshiteru MURATA ; Ahmad Jan ABI ; Tsutomu OMATSU ; Tetsuya MIZUTANI
Journal of Veterinary Science 2018;19(3):350-357
Bovine abortion, diarrhea, and respiratory disease complexes, caused by infectious agents, result in high and significant economic losses for the cattle industry. These pathogens are likely transmitted by various vectors and reservoirs including insects, birds, and rodents. However, experimental data supporting this possibility are scarce. We collected 117 samples and screened them for 44 bovine abortive, diarrheal, and respiratory disease complex pathogens by using Dembo polymerase chain reaction (PCR), which is based on TaqMan real-time PCR. Fifty-seven samples were positive for at least one pathogen, including bovine viral diarrhea virus, bovine enterovirus, Salmonella enterica ser. Dublin, Salmonella enterica ser. Typhimurium, and Neospora caninum; some samples were positive for multiple pathogens. Bovine viral diarrhea virus and bovine enterovirus were the most frequently detected pathogens, especially in flies, suggesting an important role of flies in the transmission of these viruses. Additionally, we detected the N. caninum genome from a cockroach sample for the first time. Our data suggest that insects (particularly flies), birds, and rodents are potential vectors and reservoirs of abortion, diarrhea, and respiratory infectious agents, and that they may transmit more than one pathogen at the same time.
Animals
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Birds
;
Cattle
;
Cockroaches
;
Diarrhea Viruses, Bovine Viral
;
Diarrhea
;
Diptera
;
Disease Reservoirs
;
Disease Vectors
;
Enterovirus
;
Enterovirus, Bovine
;
Genome
;
Insects
;
Neospora
;
Polymerase Chain Reaction
;
Real-Time Polymerase Chain Reaction
;
Rodentia
;
Salmonella enterica
;
Virulence Factors
6.Possible Transmission of Irkut Virus from Dogs to Humans.
Teng CHEN ; Fa Ming MIAO ; Ye LIU ; Shou Feng ZHANG ; Fei ZHANG ; Nan LI ; Rong Liang HU
Biomedical and Environmental Sciences 2018;31(2):146-148
Lyssaviruses, including Rabies virus, Duvenhage virus, European bat lyssavirus 1, European bat lyssavirus 2, Australian bat lyssavirus, and Irkut virus (IRKV), have caused human fatalities, but infection of IRKV in dogs has not been previously reported. In China, a dead dog that previously bit a human was determined to be infected with IRKV. Pathogenicity tests revealed that IRKVs can cause rabies-like disease in dogs and cats after laboratory infection. The close relationship between humans and pets, such as dogs and cats, may generate a new spillover-spreading route for IRKV infection. Therefore, additional attention should be paid to trans-species infection of IRKV between bats and dogs or dogs and humans through investigation of the prevalence and circulation patterns of IRKV in China.
Animals
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China
;
Disease Transmission, Infectious
;
Disease Vectors
;
Dog Diseases
;
transmission
;
virology
;
Dogs
;
Genes, Viral
;
Humans
;
Lyssavirus
;
genetics
;
isolation & purification
;
pathogenicity
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Male
;
Phylogeny
;
Rhabdoviridae Infections
;
transmission
;
veterinary
;
virology
7.Ecological characteristics and current status of infectious disease vectors in South Korea.
Journal of the Korean Medical Association 2017;60(6):458-467
In light of global climate change, the seasonal and geographical distribution of vector species, especially mosquitoes, chigger mites, and ticks, are of great importance for human beings residing in rural and urban environments. A total of 12 species belonging to 4 genera have been identified as vector mosquitoes in the Republic of Korea. The most common of the 56 mosquito species in this country from 2013 through 2015 was found to be a malaria vector, Anopheles sinensis s.l. (species ratio [SR] 52%); followed by a potential vector of West Nile virus, Aedes vexans nipponii (SR 38%); a Japanese encephalitis vector, Culex tritaeniorhynchus (SR 6%); a West Nile virus vector, Culex pipiens (SR 3%); and a dengue and Zika virus vector, Ae. albopictus (SR 0.3%). Of the scrub typhus vectors, Leptotrombidium scutellare is the predominant chigger mite in Gyongnam province and Jeju island, whereas L. pallidum is the predominant species in other areas of Korea. Ticks were found to be prevalent in most environmental conditions, and high levels of their activity were consistently observed from May to September. Haemaphysalis species of ticks were mostly collected in grasslands, whereas Ixodes species were frequently found in coniferous forests. Haemaphysalis longicornis, known as the main vector of severe fever with thrombocytopenia syndrome, was the predominant species and was widely distributed throughout the country.
Aedes
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Anopheles
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Climate Change
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Communicable Diseases*
;
Coniferophyta
;
Culex
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Culicidae
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Dengue
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Disease Vectors*
;
Encephalitis, Japanese
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Fever
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Forests
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Globus Pallidus
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Grassland
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Humans
;
Ixodes
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Korea*
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Malaria
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Mites
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Republic of Korea
;
Scrub Typhus
;
Seasons
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Thrombocytopenia
;
Ticks
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Trombiculidae
;
West Nile virus
;
Zika Virus
8.Prevalence of Anaplasma and Bartonella spp. in Ticks Collected from Korean Water Deer (Hydropotes inermis argyropus).
Jun Gu KANG ; Sungjin KO ; Heung Chul KIM ; Sung Tae CHONG ; Terry A KLEIN ; Jeong Byoung CHAE ; Yong Sun JO ; Kyoung Seong CHOI ; Do Hyeon YU ; Bae Keun PARK ; Jinho PARK ; Joon Seok CHAE
The Korean Journal of Parasitology 2016;54(1):87-91
Deer serve as reservoirs of tick-borne pathogens that impact on medical and veterinary health worldwide. In the Republic of Korea, the population of Korean water deer (KWD, Hydropotes inermis argyropus) has greatly increased from 1982 to 2011, in part, as a result of reforestation programs established following the Korean War when much of the land was barren of trees. Eighty seven Haemaphysalis flava, 228 Haemaphysalis longicornis, 8 Ixodes nipponensis, and 40 Ixodes persulcatus (21 larvae, 114 nymphs, and 228 adults) were collected from 27 out of 70 KWD. A total of 89/363 ticks (266 pools, 24.5% minimum infection rate) and 5 (1.4%) fed ticks were positive for Anaplasma phagocytophilum using nested PCR targeting the 16S rRNA and groEL genes, respectively. The 16S rRNA gene fragment sequences of 88/89 (98.9%) of positive samples for A. phagocytophilum corresponded to previously described gene sequences from KWD spleen tissues. The 16S rRNA gene fragment sequences of 20/363 (5.5%) of the ticks were positive for A. bovis and were identical to previously reported sequences. Using the ITS specific nested PCR, 11/363 (3.0%) of the ticks were positive for Bartonella spp. This is the first report of Anaplasma and Bartonella spp. detected in ticks collected from KWD, suggesting that ticks are vectors of Anaplasma and Bartonella spp. between reservoir hosts in natural surroundings.
Anaplasma/genetics/*physiology
;
Animals
;
Arachnid Vectors/microbiology
;
Bartonella/genetics/*physiology
;
Chaperonin 60/genetics
;
Deer/parasitology
;
Disease Reservoirs/veterinary
;
RNA, Ribosomal, 16S/genetics
;
Republic of Korea/epidemiology
;
Ticks/*microbiology
9.Comparison of HBV persistent infection mice models by different serotypes of AAVs carrying HBV genomes.
Xinyao ZHU ; Qingzhang ZHOU ; Wenhong TIAN ; Chunguo LIU ; Xiaoyan DONG ; Xiaobing WU ; Changyuan YU
Chinese Journal of Biotechnology 2015;31(12):1764-1772
In recent years, Hepatitis B virus (HBV) persistent infection mouse model with recombinant adeno-associated virus 8 carrying 1.3 copies of HBV genome (rAAV8-1.3HBV) is concerned. We studied and compared the efficacy among HBV persistent infection mice models by other serotypes except AAV8. First, we prepared and purified five viruses: rAAV1-1.3HBV, rAAV2-1.3HBV, rAAV5-1.3HBV, rAAV8-1.3HBV and rAAV9-1.3HBV. Then we injected each virus into 3 C57BL/6J mice with the dose of lx 1011 vg (Viral genome, vg) per mouse. We detected HBsAg and HBeAg in sera by enzyme-linked immunosorbent assay (ELISA) at different time points post injection. We killed mice 8 weeks post injection and took blood and livers for assay. We detected copies of HBV DNA by real-time quantitative PCR in sera and livers. Meantime, we detected HBcAg in the livers of mice by immunohistochemistry and further performed pathology analysis of these livers. The five groups of mice, HBeAg and HBsAg expression sustained 8 weeks in serological detection and HBV DNA was both detected in sera and livers at the time of 8 weeks post injection. HBeAg, HBsAg, HBV DNA copies expression levels in descending order were AAV8>AAV9>AAV1>AAV5>AAV2. HBcAg expression was detected in livers as well. Varied degrees of liver damage were shown in five groups of mice. This study provides more alternative AAV vector species to establish a persistent infection with hepatitis B model.
Animals
;
Dependovirus
;
classification
;
Disease Models, Animal
;
Enzyme-Linked Immunosorbent Assay
;
Genetic Vectors
;
Genome, Viral
;
Hepatitis B
;
virology
;
Hepatitis B Core Antigens
;
metabolism
;
Hepatitis B Surface Antigens
;
blood
;
Hepatitis B e Antigens
;
blood
;
Hepatitis B virus
;
genetics
;
Mice
;
Mice, Inbred C57BL
;
Serogroup
;
Virus Replication
10.Development of transgenic maize with anti-rough dwarf virus artificial miRNA vector and their disease resistance.
Ning XUAN ; Chuanzhi ZHAO ; Zhenying PENG ; Gao CHEN ; Fei BIAN ; Mingzheng LIAN ; Guoxia LIU ; Xingjun WANG ; Yuping BI
Chinese Journal of Biotechnology 2015;31(9):1375-1386
Maize is one of the most important food crops. Rice black-streaked dwarf virus is a maize rough dwarf disease pathogen. The occurrence and transmission of maize rough dwarf disease brings great damage to maize production. The technology of using artificial miRNA to build antiviral plant has been proven effective in a variety of plants. However, such trials in maize have not been reported. We designed primers based on the sequence of maize zea-miR159a precursor and sequence of function protein genes and silencing RBSDV coding genes in RBSDV genome. We constructed amiRNA (artificial miRNA) gene for silencing RBSDV coding gene and gene silencing suppressor. We constructed pCAMBIA3301-121-amiRNA plant expression vector for transforming maize inbred lines Z31 by using agrobacterium mediated method. After molecular analysis of transgenic maize, homozygous lines with high miRNA expression were selected by molecular detection for a subsequent natural infection experiment. We studied the severity of maize rough dwarf disease according to a grading standard (grade 0 to 4). The experiment results showed that the disease resistance of transgenic homozygous maize with the anti-rough dwarf virus amiRNA vector was better than that of wild type. Among the transgenic maize, S6-miR159 transgenic maize had high disease resistance. It is feasible to create new maize variety by the use of artificial miRNA.
Disease Resistance
;
genetics
;
Gene Silencing
;
Genetic Vectors
;
MicroRNAs
;
genetics
;
Plant Diseases
;
genetics
;
virology
;
Plants, Genetically Modified
;
genetics
;
Reoviridae
;
pathogenicity
;
Zea mays
;
genetics


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