23 research outputs found

    Somatic cell reprogramming-free generation of genetically modified pigs

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    Genetically modified pigs for biomedical applications have been mainly generated using the somatic cell nuclear transfer technique; however, this approach requires complex micromanipulation techniques and sometimes increases the risks of both prenatal and postnatal death by faulty epigenetic reprogramming of a donor somatic cell nucleus. As a result, the production of genetically modified pigs has not been widely applied. We provide a simple method for CRISPR (clustered regularly interspaced short palindromic repeats)/Cas9 gene editing in pigs that involves the introduction of Cas9 protein and single-guide RNA into in vitro fertilized zygotes by electroporation. The use of gene editing by electroporation of Cas9 protein (GEEP) resulted in highly efficient targeted gene disruption and was validated by the efficient production of Myostatin mutant pigs. Because GEEP does not require the complex methods associated with micromanipulation for somatic reprogramming, it has the potential for facilitating the genetic modification of pigs

    地域活動への住民参加を促すための保健師の支援方法

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    A地区の地域活動への住民の参加状況と参加条件を明らかにするため、4団体108名を対象に質問紙調査を行った。地域活動への参加条件として重要なのは、健康であること、家族の理解と協力があること、身近な人と一緒に参加できること、活動場所が自宅に近いこと、活動する時間的余裕があること等が明らかとなった。地域活動支援のあり方としては、個人や家族の健康を保持・増進し、地域の人々のつながりを強め、時間・場所・移動手段を工夫し住民が集いやすくすることにより、参加条件を満たすことが有効と考えられた。保健師は、個人や集団が地域活動を活発にするための工夫や連携を図り、個人・集団の力を引き出せるような支援をしていくことが重要であると考えられた

    Insights into the performance of Samuel Barber's Sonata for piano movement IV : fugue

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    There is no abstract available for this creative project.Thesis (M.M.)School of Musi

    A recording and guide to the performance of Samuel Barber's complete solo piano works, including the recently published early works

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    This project explores Samuel Barber’s complete works for solo piano, including his early works published in 2010. The recording, captured on two CDs, represents the first complete collection of Barber’s published piano works and outlines Barber’s maturation from his teenage years to his full development as a world-renowned composer. The document includes a biographical sketch, an overview of his published solo piano works, and a performer’s guide. The performer’s guide examines technical and musical difficulties commonly found throughout his piano output, focusing on three aspects of Barber’s compositional appeal: lyricism, virtuosity, and eclecticism. The goal of this discussion is to aid the student in her exploration of Samuel Barber’s piano music.Thesis (D.A.)School of Musi

    Mothers' perspectives on care needs after experiencing a stillbirth

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    IL-12 Inhibits Lipopolysaccharide Stimulated Osteoclastogenesis in Mice

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    Lipopolysaccharide (LPS) is related to osteoclastogenesis in osteolytic diseases. Interleukin-(IL-) 12 is an inflammatory cytokine that plays a critical role in host defense. In this study, we investigated the effects of IL-12 on LPS-induced osteoclastogenesis. LPS was administered with or without IL-12 into the supracalvariae of mice, and alterations in the calvarial suture were evaluated histochemically. The number of osteoclasts in the calvarial suture and the mRNA level of tartrate-resistant acid phosphatase (TRAP), an osteoclast marker, were lower in mice administered LPS with IL-12 than in mice administered LPS alone. The serum level of tartrate-resistant acid phosphatase 5b (TRACP 5b), a bone resorption marker, was also lower in mice administered LPS with IL-12 than in mice administered LPS alone. These results revealed that IL-12 might inhibit LPS-induced osteoclastogenesis and bone resorption. In TdT-mediated dUTP-biotin nick end-labeling (TUNEL) assays, apoptotic changes in cells were recognized in the calvarial suture in mice administered LPS with IL-12. Furthermore, the mRNA levels of both Fas and FasL were increased in mice administered LPS with IL-12. Taken together, the findings demonstrate that LPS-induced osteoclastogenesis is inhibited by IL-12 and that this might arise through apoptotic changes in osteoclastogenesis-related cells induced by Fas/FasL interactions
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