48 research outputs found

    Targeted single-cell gene induction by optimizing the dually regulated CRE/loxP system by a newly defined heat-shock promoter and the steroid hormone in Arabidopsis thaliana

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    Multicellular organisms rely on intercellular communication systems to organize their cellular functions. In studies focusing on intercellular communication, the key experimental techniques include the generation of chimeric tissue using transgenic DNA recombination systems represented by the CRE/loxP system. If an experimental system enables the induction of chimeras at highly targeted cell(s), it will facilitate the reproducibility and precision of experiments. However, multiple technical limitations have made this challenging. The stochastic nature of DNA recombination events, especially, hampers reproducible generation of intended chimeric patterns. Infrared laser-evoked gene operator (IR-LEGO), a microscopic system that irradiates targeted cells using an IR laser, can induce heat shock-mediated expression of transgenes, for example, CRE recombinase gene, in the cells. In this study, we developed a method that induces CRE/loxP recombination in the target cell(s) of plant roots and leaves in a highly specific manner. We combined IR-LEGO, an improved heat-shock-specific promoter, and dexamethasone-dependent regulation of CRE. The optimal IR-laser power and irradiation duration were estimated via exhaustive irradiation trials and subsequent statistical modeling. Under optimized conditions, CRE/loxP recombination was efficiently induced without cellular damage. We also found that the induction efficiency varied among tissue types and cellular sizes. The developed method offers an experimental system to generate a precisely designed chimeric tissue, and thus, will be useful for analyzing intercellular communication at high resolution in roots and leaves

    高齢がん患者の在宅移行期の文献レビュー

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    The purpose of this study was to characterize periods of hospital-to-home care transition for elderly cancer patients by extracting definitions of such periods and their characteristics as situations from the literature, and to discuss effective nursing support toward hospital-to-home care transition. Relevant research papers published within the period between 2010 and 2020 were searched for using Ichushi Web and PubMed. Descriptions related to periods of transition, characteristics of situations, and hindering/promoting factors were extracted without any changes and categorized based on descriptive content similarities. In these papers, a period of hospital-to-home care transition was described as 1 week to 1 year after discharge. As a situation, it was characterized as “a time when the patient rebuilds his/her life”, and therefore, “a time of instability”. Factors hindering and promoting hospital-to-home care transition were represented by6categories, which suggested the following commonalities between them : [ physical management],[patients’/families’ intentions],[home care systems],[other family members’ commitments to home care], [collaboration systems], and[nurses’ home care experience]

    認知症高齢がん患者の看護実践の関連要因

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    The purpose of this study was to clarify the current status of nursing practice for elderly cancer patients with dementia receiving treatment in acute care hospitals and related factors. An anonymous, self-administered questionnaire survey was conducted from May to July 2021, involving 400 people with experience of providing nursing care for elderly cancer patients with dementia. Factor analysis identified and as factors of self-evaluation of nursing practice for elderly cancer patients with dementia receiving treatment in acute care hospitals. Such evaluation was influenced by , , , , , and

    AUTS2 Governs Cerebellar Development, Purkinje Cell Maturation, Motor Function and Social Communication

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    Autism susceptibility candidate 2 (AUTS2), a risk gene for autism spectrum disorders (ASDs), is implicated in telencephalon development. Because AUTS2 is also expressed in the cerebellum where defects have been linked to ASDs, we investigated AUTS2 functions in the cerebellum. AUTS2 is specifically localized in Purkinje cells (PCs) and Golgi cells during postnatal development. Auts2 conditional knockout (cKO) mice exhibited smaller and deformed cerebella containing immature-shaped PCs with reduced expression of Cacna1a. Auts2 cKO and knock-down experiments implicated AUTS2 participation in elimination and translocation of climbing fiber synapses and restriction of parallel fiber synapse numbers. Auts2 cKO mice exhibited behavioral impairments in motor learning and vocal communications. Because Cacna1a is known to regulate synapse development in PCs, it suggests that AUTS2 is required for PC maturation to elicit normal development of PC synapses and thus the impairment of AUTS2 may cause cerebellar dysfunction related to psychiatric illnesses such as ASDs

    CCN3 and bone marrow cells

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    CCN3 expression was observed in a broad variety of tissues from the early stage of development. However, a kind of loss of function in mice (CCN3 del VWC domain -/-) demonstrated mild abnormality, which indicates that CCN3 may not be critical for the normal embryogenesis as a single gene. The importance of CCN3 in bone marrow environment becomes to be recognized by the studies of hematopoietic stem cells and Chronic Myeloid Leukemia cells. CCN3 expression in bone marrow has been denied by several investigations, but we found CCN3 positive stromal and hematopoietic cells at bone extremities with a new antibody although they are a very few populations. We investigated the expression pattern of CCN3 in the cultured bone marrow derived mesenchymal stem cells and found its preference for osteogenic differentiation. From the analyses of in vitro experiment using an osteogenic mesenchymal stem cell line, Kusa-A1, we found that CCN3 downregulates osteogenesis by two different pathways; suppression of BMP and stimulation of Notch. Secreted CCN3 from Kusa cells inhibited the differentiation of osteoblasts in separate culture, which indicates the paracrine manner of CCN3 activity. CCN3 may also affect the extracellular environment of the niche for hematopoietic stem cells

    Status of adult outpatients with congenital heart disease in Japan: The Japanese Network of Cardiovascular Departments for Adult Congenital Heart Disease Registry

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    BackgroundThe Japanese Network of Cardiovascular Departments for Adult Congenital Heart Disease (JNCVD-ACHD) was founded in 2011 for the lifelong care of adult patients with congenital heart disease (ACHD patients). This network maintains the first Japanese ACHD registry.Methods and resultsFrom 2011 to 2019, the JNCVD-ACHD registered 54 institutions providing specialized care for ACHD patients in 32 of the 47 prefectures in Japan. The registry collected data on the disease profile for 24,048 patients from 50 institutions and the patient characteristics for 9743 patients from 24 institutions. The most common ACHDs were atrial septal defect (20.5 %), ventricular septal defect (20.5 %), tetralogy of Fallot (12.9 %), and univentricular heart (UVH)/single ventricle (SV; 6.6 %). ACHD patients without biventricular repair accounted for 37.0 % of the population. Also examined were the serious anatomical and/or pathophysiological disorders such as pulmonary arterial hypertension (3.0 %) including Eisenmenger syndrome (1.2 %), systemic right ventricle under biventricular circulation (sRV-2VC; 2.8 %), and Fontan physiology (6.0 %). The sRV-2VC cases comprised congenitally corrected transposition of the great arteries without anatomical repair (61.9 %) and transposition of the great arteries with atrial switching surgery (38.1 %). The primary etiology (86.4 %) for Fontan physiology was UVH/SV. In addition, developmental/chromosomal/genetic disorders were heterotaxy syndromes (asplenia, 0.9 %; polysplenia, 0.7 %), trisomy 21 (4.0 %), 22q11.2 deletion (0.9 %), Turner syndrome (0.2 %), and Marfan syndrome (1.1 %).ConclusionsAlthough the specific management of ACHD has systematically progressed in Japan, this approach is still evolving. For ideal ACHD care, the prospective goals for the JNCVD-ACHD are to create local networks and provide a resource for multicenter clinical trials to support evidence-based practice

    The Potential of Digested Sludge-Assimilating Microflora for Biogas Production from Food Processing Wastes

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    Food processing wastes (FPWs) are residues generated in food manufacturing, and their composition varies depending on the type of food product being manufactured. Therefore, selecting and acclimatizing seed microflora during the initiation of biogas production is crucial for optimal outcomes. The present study examined the biogas production capabilities of digested sludge-assimilating and biogas-yielding soil (DABYS) and enteric (DABYE) microflorae when used as seed cultures for biogas production from FPWs. After subculturing and feeding these microbial seeds with various FPWs, we assessed their biogas-producing abilities. The subcultures produced biogas from many FPWs, except orange peel, suggesting that the heterogeneity of the bacterial members in the seed microflora facilitates quick adaptation to FPWs. Microflorae fed with animal-derived FPWs contained several methanogenic archaeal families and produced methane. In contrast, microflorae fed with vegetable-, fruit-, and crop-derived FPWs generated hydrogen, and methanogenic archaeal populations were diminished by repeated subculturing. The subcultured microflorae appear to hydrolyze carbohydrates and protein in FPWs using cellulase, pectinase, or protease. Despite needing enhancements in biogas yield for future industrial scale-up, the DABYS and DABYE microflorae demonstrate robust adaptability to various FPWs

    An autopsy case of acute poisoning via ingestion of hydrofluoric acid

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    We herein report an autopsy case of acute poisoning via ingestion of hydrofluoric (HF) acid. HF acid is an aqueous solution of hydrogen fluoride and is an extremely strong inorganic acid. A 69-year-old woman was found dead in her bathroom at home. There was a bottle of HF acid and an empty cup in the kitchen. Autopsy findings revealed white erosions on the surface of the oral and esophageal mucosae. The gastroduodenal mucosa was black and extensively corroded. The stomach contained 100 mL of black mud-like substance with an irritating odor. To prove oral ingestion of HF acid, we analyzed the fluoride content of the dissection materials using gas chromatography-mass spectrometry (GC-MS). Consequently, fluoride was detected in femoral venous blood (69.7 mg/L) and in the stomach (348.8 mg/L). The fluoride content was considered extremely high; therefore, it was concluded that the deceased ingested a corrosive poisonous substance

    Non-Profiled Deep Learning-Based Side-Channel Analysis With Only One Network Training

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    We propose efficient protocols for non-profiled deep learning-based side-channel analysis (DL-SCA). While the existing protocol, proposed by Timon in 2019, requires computational resources for training as many neural networks as the number of key candidates, our protocol requires training only one network, which can be transformed into a network associated with each key candidate. For instance, in the case of analysis for the AES, the network training complexity is 1/256 of that for the existing protocol. In this study, we describe our idea and formulate it as two protocols depending on the metrics used. We numerically examine them by implementing each protocol with two network architectures, multilayer perceptron and convolutional neural network. Using publicly available open data (ASCAD), we show that both protocols efficiently work as expected. We also clarify that our trained network, as in Timon’s original case, can be recycled for an attack against the same device with different key materials. Non-profiled DL-SCAs are superior to profiled ones in that they require no reference device for profiling before analyzing the target device. This property holds for our proposal as well
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