• 제목/요약/키워드: host cell

검색결과 1,043건 처리시간 0.025초

Anti-apoptosis effects by Eimeria tenella infection in Madin-Darby bovine kidney cells

  • Lee, Hyun-A;Hong, Sun-Hwa;Chung, Yung-Ho;Kim, Ok-Jin
    • 한국동물위생학회지
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    • 제35권2호
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    • pp.105-109
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    • 2012
  • Apoptosis is a host defense mechanism that the cell uses to limit production of infectious pathogens. Although many bacteria, viruses and parasites can induce apoptosis in infected cells, some pathogens usually exhibit the ability to suppress the induction of apoptosis in the infected cells. Sophisticated evasion strategies of obligate intracellular parasites, in particular prevention of host cell apoptosis, are necessary to ensure successful replication. To study the ability of Eimeria tenella in this regard, in vitro experiments were performed applying Madin-Darby bovine kidney (MDBK) cells as host cell. We have demonstrated that productive infection of adherent cell lines by E. tenella resulted in an anti-apototic effect. This phenomenon was confirmed using in situ terminal deoxynucleotidyl transferase-mediated (TdT) deoxyuridine triphosphates (dUTP)-fluorescein nick end labeling (TUNEL) assay to detect apoptosis. Therefore, E. tenella could complete its cycle of productive infection while inducing anti-apoptosis in the infected cells. This finding might have implications for the pathobiology of E. tenella and other Eimeria species.

가금의 유전물질전달체로서의 원시생식세포의 이용 (Utilization of Primordial Germ Cell(PGC) as Transferor of Avian Genetic Materials)

  • 여정수
    • 한국가축번식학회지
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    • 제12권1호
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    • pp.11-14
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    • 1988
  • Utilizatin of primordial germ cell(PGC) as transferor of genetic materials is great potential in manipulating genes to promote genetic performances in chicken. This study explored that PGCs from early embryos as vehicle for molecular breeding strategles were isolated, these chromosomally marked donor PGCs were transplanted to germinal crescent of host embryos, and genetic materials of donor PGC were identified at the proliferative stage in host gonads.

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Effects of Squalene on the Immune Responses in Mice(II):Cellular and Non-specific Immune Response and Antitumor Activity of Squalene

  • Ahn, Young-Keun;Kim, Joung-Hoon
    • Archives of Pharmacal Research
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    • 제15권1호
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    • pp.20-29
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    • 1992
  • Effects of squalene on cellular and non-specific immune responses and antitumor activity in mice were investigated. Cellular and non-specific immunological assay parameters adopted in the present study were delayed-type hypersensitivity reaction and resette forming cells (RFC) for cellular immunity, activities of natural killer (NK) cells and phagocyte for non-specific immunity. Squalene resulted in marked increases of cellular and non-specific immune functions and enhancement of host resistance to tumor challenge in dose-dependent manner.

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Host-Directed Therapeutics as a Novel Approach for Tuberculosis Treatment

  • Kim, Ye-Ram;Yang, Chul-Su
    • Journal of Microbiology and Biotechnology
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    • 제27권9호
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    • pp.1549-1558
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    • 2017
  • Despite significant efforts to improve the treatment of tuberculosis (TB), it remains a prevalent infectious disease worldwide owing to the limitations of current TB therapeutic regimens. Recent work on novel TB treatment strategies has suggested that directly targeting host factors may be beneficial for TB treatment. Such strategies, termed host-directed therapeutics (HDTs), focus on host-pathogen interactions. HDTs may be more effective than the currently approved TB drugs, which are limited by the long durations of treatment needed and the emergence of drug-resistant strains. Targets of HDTs include host factors such as cytokines, immune checkpoints, immune cell functions, and essential enzyme activities. This review article discusses examples of potentially promising HDTs and introduces novel approaches for their development.

구제역의 병인론과 숙주와의 상호작용 (Pathogenesis and Host Interaction of Foot-and-mouth Disease)

  • 박종현;이광녕;김수미;고영준;이향심;조인수
    • 한국임상수의학회지
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    • 제28권1호
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    • pp.113-121
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    • 2011
  • Foot-and-mouth disease (FMD) is a severe vesicular disease of cloven-hoofed animals including domesticated ruminants and pigs. Acute clinical signs may be mild in sheep and goats but are associated with lameness in pigs and mouth lesions with vesicles in cattle. The required condition for a successful pathogen appears to be the ability to counteract both the host innate and adaptive immune response. FMD virus (FMDV) inhibits the induction of antiviral molecules and interferes with the secretory pathway in the infected cell. The surface expression of Major Histocompatibility Complex (MHC) class I molecules is reduced in infected cells. Thus, the ability of the host to recognize and eliminate virus infected cells is decreased. Furthermore, FMDV infection results in a rapid, but transient lymphopenia, reducing the number of T and B cells, and affecting T cell function. The virus appears to premature apoptosis-mediated cell death because it has a very short replication cycle and is able to rapidly produce large amounts of virus. FMDV engages the host protective response at multiple steps to ensure its effective replication and pathogenesis. This review describes the recent pathological and immunological studies to overcome the powerful abilities of FMDV to counteract defense mechanism of host.

Dipenyleneiodonium Induces Growth Inhibition of Toxoplasma gondii through ROS Induction in ARPE-19 Cells

  • Sun, Pu Reum;Gao, Fei Fei;Choi, Hei Gwon;Zhou, Wei;Yuk, Jae-Min;Kwon, Jaeyul;Lee, Young-Ha;Cha, Guang-Ho
    • Parasites, Hosts and Diseases
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    • 제57권2호
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    • pp.83-92
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    • 2019
  • Based on the reactive oxygen species (ROS) regulatory properties of diphenyleneiodonium (DPI), we investigated the effects of DPI on host-infected T. gondii proliferation and determined specific concentration that inhibit the intracellular parasite growth but without severe toxic effect on human retinal pigment epithelial (ARPE-19) cells. As a result, it is observed that host superoxide, mitochondria superoxide and $H_2O_2$ levels can be increased by DPI, significantly, followed by suppression of T. gondii infection and proliferation. The involvement of ROS in anti-parasitic effect of DPI was confirmed by finding that DPI effect on T. gondii can be reversed by ROS scavengers, N-acetyl-L-cysteine and ascorbic acid. These results suggest that, in ARPE-19 cell, DPI can enhance host ROS generation to prevent T. gondii growth. Our study showed DPI is capable of suppressing T. gondii growth in host cells while minimizing the un-favorite side-effect to host cell. These results imply that DPI as a promising candidate material for novel drug development that can ameliorate toxoplasmosis based on ROS regulation.

At Death's Door: Alternaria Pathogenicity Mechanisms

  • Lawrence, Christopher B.;Mitchell, Thomas K.;Craven, Kelly D.;Cho, Yang-Rae;Cramer, Robert A.;Kim, Kwang-Hyung
    • The Plant Pathology Journal
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    • 제24권2호
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    • pp.101-111
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    • 2008
  • The fungal genus Alternaria is comprised of many saprophytic and endophytic species, but is most well known as containing many notoriously destructive plant pathogens. There are over 4,000 Alternaria/host associations recorded in the USDA Fungal Host Index ranking the genus 10th among nearly 2,000 fungal genera based on the total number of host records. While few Alternaria species appear to have a sexual stage to their life cycles, the majority lack sexuality altogether. Many pathogenic species of Alternaria are prolific toxin producers, which facilitates their necrotrophic lifestyle. Necrotrophs must kill host cells prior to colonization, and thus these toxins are secreted to facilitate host cell death often by triggering genetically programmed apoptotic pathways or by directly causing cell damage resulting in necrosis. While many species of Alternaria produce toxins with rather broad host ranges, a closely-related group of agronomically important Alternaria species produce selective toxins with a very narrow range often to the cultivar level. Genes that code for and direct the biosynthesis of these host-specific toxins for the Alternaria alternata sensu lato lineages are often contained on small, mostly conditionally dispensable, chromosomes. Besides the role of toxins in Alternaria pathogenesis, relatively few genes and/or gene products have been identified that contribute to or are required for pathogenicity. Recently, the completion of the A. brassicicola genome sequencing project has facilitated the examination of a substantial subset of genes for their role in pathogenicity. In this review, we will highlight the role of toxins in Alternaria pathogenesis and the use of A. brassicicola as a model representative for basic virulence studies for the genus as a whole. The current status of these research efforts will be discussed.

T Cell Immune Responses against SARS-CoV-2 in the With Corona Era

  • Ji-Eun Oh
    • 대한의생명과학회지
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    • 제28권4호
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    • pp.211-222
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    • 2022
  • After more than two years of efforts to end the corona pandemic, a gradual recovery is starting in countries with high vaccination rates. Easing public health policies for a full-fledged post-corona era, such as lifting the mandatory use of outdoor mask and quarantine measures in entry have been considered in Korea. However, the continuous emergence of new variants of SARS-CoV-2 and limitations in vaccine efficacy still remain challenging. Fortunately, T cells and memory T cells, which are key components of adaptive immunity appear to contribute substantially in COVID-19 control. SARS-CoV-2 specific CD4+/CD8+ T cells are induced by natural infection or vaccination, and rapid induction and activation of T cells is mainly associated with viral clearance and attenuated clinical severity. In addition, T cell responses induced by recognition of a wide range of epitopes were minimally affected and conserved against the highly infectious subsets of omicron variants. Polyfunctional SARS-CoV-2 specific T cell memory including stem cell-like memory T cells were also developed in COVID-19 convalescent patients, suggesting long lasting protective T cell immunity. Thus, a robust T-cell immune response appears to serve as a reliable and long-term component of host protection in the context of reduced efficacy of humoral immunity and persistent mutations and/or immune escape.

어류 주화세포에서의 계대배양에 의한 해양버나바이러스의 감염특성의 변화 (Change of Infection Properties of Subcultured Marine Birnavirus in Several Fish Cell Lines)

  • 정성주
    • 한국어병학회지
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    • 제11권2호
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    • pp.89-96
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    • 1998
  • 해양버나바이러스(MABV)는 여러 종의 해양생물에 감염되며 숙주역이 넓다. 다양한 종의 숙주에 감염되었을 때의 MABV의 감염 특성을 규명하기 위하여, 주화세포 내에서 바이러스를 10대 계대 배양하여 in vitro로 연구했다. CHSE-214, RTG-2와 RSBK-2세포에서는 전형적인 CPE를 보이며 많은 양의 바이러스가 생산되었고, 높은 바이러스 단백질의 발현도 관찰되었다. 이에 반하여, EPC, FHM과 BF-2세포에서는 형광항체법에 의하여 바이러스단백질은 검출되었으나 CPE는 나타나지 않았다. EPC와 FHM 세포에서는 계대를 할수록 바이러스의 역가가 높아져, 바이러스의 숙주세포에의 적응이 일어난 것으로 보인다. 플라크의 크기는 CHSE-214, RTG-2와 RSBK-2세포에서 계대한 것이 다른 세포에서 계대한 것보다 커, 숙주세포의 종류에 따른 변이가 바이러스에 일어난 것으로 추측되었다. 게놈분절 A에 존재하는 VP2/NS 경계영역의 염기배열에서는 195번째의 염기에 특이적인 변이가 보였다. 숙주세포의 종류에 따라 다른 MABV의 감염특성은 자연계에서 다양한 숙주종에서 일어나는 in vivo에서의 감염특성을 반영하는 것으로 생각된다.

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Host-Microbe Interactions Regulate Intestinal Stem Cells and Tissue Turnover in Drosophila

  • Ji-Hoon Lee
    • International Journal of Stem Cells
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    • 제17권1호
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    • pp.51-58
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    • 2024
  • With the activity of intestinal stem cells and continuous turnover, the gut epithelium is one of the most dynamic tissues in animals. Due to its simple yet conserved tissue structure and enteric cell composition as well as advanced genetic and histologic techniques, Drosophila serves as a valuable model system for investigating the regulation of intestinal stem cells. The Drosophila gut epithelium is in constant contact with indigenous microbiota and encounters externally introduced "non-self" substances, including foodborne pathogens. Therefore, in addition to its role in digestion and nutrient absorption, another essential function of the gut epithelium is to control the expansion of microbes while maintaining its structural integrity, necessitating a tissue turnover process involving intestinal stem cell activity. As a result, the microbiome and pathogens serve as important factors in regulating intestinal tissue turnover. In this manuscript, I discuss crucial discoveries revealing the interaction between gut microbes and the host's innate immune system, closely associated with the regulation of intestinal stem cell proliferation and differentiation, ultimately contributing to epithelial homeostasis.