• 제목/요약/키워드: H3N2 virus

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Deoxynivalenol- and zearalenone-contaminated feeds alter gene expression profiles in the livers of piglets

  • Reddy, Kondreddy Eswar;Jeong, Jin young;Lee, Yookyung;Lee, Hyun-Jeong;Kim, Min Seok;Kim, Dong-Wook;Jung, Hyun Jung;Choe, Changyong;Oh, Young Kyoon;Lee, Sung Dae
    • Asian-Australasian Journal of Animal Sciences
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    • 제31권4호
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    • pp.595-606
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    • 2018
  • Objective: The Fusarium mycotoxins of deoxynivalenol (DON) and zerolenone (ZEN) cause health hazards for both humans and farm animals. Therefore, the main intention of this study was to reveal DON and ZEN effects on the mRNA expression of pro-inflammatory cytokines and other immune related genes in the liver of piglets. Methods: In the present study, 15 six-week-old piglets were randomly assigned to the following three different dietary treatments for 4 weeks: control diet, diet containing 8 mg DON/kg feed, and diet containing 0.8 mg ZEN/kg feed. After 4 weeks, liver samples were collected and sequenced using RNA-Seq to investigate the effects of the mycotoxins on genes and gene networks associated with the immune systems of the piglets. Results: Our analysis identified a total of 249 differentially expressed genes (DEGs), which included 99 upregulated and 150 downregulated genes in both the DON and ZEN dietary treatment groups. After biological pathway analysis, the DEGs were determined to be significantly enriched in gene ontology terms associated with many biological pathways, including immune response and cellular and metabolic processes. Consistent with inflammatory stimulation due to the mycotoxin-contaminated diet, the following Kyoto encyclopedia of genes and genomes pathways, which were related to disease and immune responses, were found to be enriched in the DEGs: allograft rejection pathway, cell adhesion molecules, graft-versus-host disease, autoimmune thyroid disease (AITD), type I diabetes mellitus, human T-cell leukemia lymphoma virus infection, and viral carcinogenesis. Genome-wide expression analysis revealed that DON and ZEN treatments downregulated the expression of the majority of the DEGs that were associated with inflammatory cytokines (interleukin 10 receptor, beta, chemokine [C-X-C motif] ligand 9), proliferation (insulin-like growth factor 1, major facilitator superfamily domain containing 2A, insulin-like growth factor binding protein 2, lipase G, and salt inducible kinase 1), and other immune response networks (paired immunoglobulin-like type 2 receptor beta, Src-like-adaptor-1 [SLA1], SLA3, SLA5, SLA7, claudin 4, nicotinamide N-methyltransferase, thyrotropin-releasing hormone degrading enzyme, ubiquitin D, histone $H_2B$ type 1, and serum amyloid A). Conclusion: In summary, our results demonstrated that high concentrations DON and ZEN disrupt immune-related processes in the liver.

의안(醫案)을 통한 신종 인플루엔자의 한의학적 대처방안 (A Study on Traditional Korean Medical Countermeasures of Influenza A by Case Histories)

  • 안상영;한창현;권오민;박상영;안상우
    • 대한한의학원전학회지
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    • 제22권4호
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    • pp.221-239
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    • 2009
  • Background: The recent outbreak of the novel strain of influenza A (H1N1) virus has raised a global concern of the future risk of pandemic. Traditional Korean Medicine(TKM) has been combatting against contagious diseases and developed its own particular and efficient way in treating those diseases. Objectives: Provide a distinctive and effective TKM method in understanding the principles of treatment, prevention, and contraindications against influenza A through case histories. Method: We revised case histories of eminent doctors of Ming and Qing dynasties according to their clinical manifestations similar to those of influenza A. We also verified prescriptions of the "Dong-uibogam(東醫寶鑑)" through examining clinical practices of China today. Results: 1. The subtypes of Warm disease; Wind Warmth and Pestilence has the most similar clinical manifestation in comparison to Influenza A. Specifying these terms is important in recognizing and classifying various diseases under the name of Warm disease. 2. TKM considered not only external factors but also individual factors like general condition, diet, emotion, constitutional types, etc in the treatment of febrile diseases. 3. TKM developed a new way in the treatment of contagious diseases. considering the characteristics of each pathogen. TKM described the Warm pathogen being light as a feather, which enters through the nose, principally affecting the Lung. Therefore, they emphasized treatment with Pungent Sweet Cooling Moistening[辛甘凉潤] method. 4. As the conservation of fluid and humor is the primordial concern in the treatment of Warm disease, they restricted release of the exterior with pungent-warm and purgation method. The purgation methods was used exclusively to decrease fever and preserve fluid and humor. 5. The only differentiating characteristics of Influenza A with seasonal influenza are vomiting and diarrhea. Case research revealed the possibility of these manifestations to be a mechanism of restoration. 6. TKM provides alimento prevention method like Mint Pear Porridge, mung bean, and etc also combination of herbal medicine. Also emphasized in the conservation of essence for the prevention of contagious diseases. Conclusions: TKM developed its unique way in understanding the pathogenesis, diagnosis, treatment, and prevention of contagious diseases and formed its independent scheme of Warm Disease. This knowledge in febrile contagious disease is relevant today in providing diverse treatment and prevention for influenza A.

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교반식 축분 퇴비화 및 톱밥 탈취처리 시스템의 퇴비화 암모니아 제거 성능 (Performance Characteristics of Agitated Bed Manure Composting and Ammonia Removal from Composting Using Sawdust Biofiltration System)

  • 홍지형;박금주
    • 한국축산시설환경학회지
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    • 제13권1호
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    • pp.13-20
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    • 2007
  • 퇴비화 목적은 축분을 오물감과 악취 없이 살균처리 하고, 토양과 작물에 무해한 유기성 자원의 순환이용이다. 퇴비화 호기성 미생물의 이분해성 유기물 (영양원: 탄질비)분해 적정조건은 수분, 공기, 온도, 퇴비화 기간 등이며, 퇴비화 부숙 목적은 이분해성 유기물분해 및 생육저해 물질분해 등에 있다. 부숙도 판정법은 퇴적물의 온도변화(이분해성유기물분해 검사) 및 발아시험(생육저해물질 검사)등이 바람직하다. 본 연구는 퇴비화 온도, 퇴비화 암모니아가스 농도와 악취물질의 탈취처리, 종자 발아율, 퇴비재료 성분 및 EC 농도 등의 퇴비화 부숙도 주요 요인에 대한 3회 반복 실험성과는 다음과 같다. 본 연구결과로서 퇴비화 주발효 및 후숙 6주간 전반기에서 이분해성 유기물 분해와 취기물질 제거에 관련된 퇴비화 온도, 암모니아 농도, 탄질비 및 염류농도, 후반기 후숙 기간에 작물생육저해물질 제거에 연관된 발아율과 탄산가스 발생량 등을 실측조사 분석한 결과는 다음과 같으며, 안정된 숙성 퇴비의 적정 범위를 유지하여 양질 퇴비 생산이 가능하였다. 1. 축사저류조의 돼지배설물의 고액분리 고형분과 착즙액 정화처리 잉여오니 및 톱밥혼합물의 퇴비화 온도가 $55\sim65^{\circ}C$를 2일 이상 유지하여 병원균과 잡초 종자를 사멸하고, 악취가 미미한 44ppm 이하수준의 비교적 낮은 암모니아농도 및 50% 내외의 저수분의 양질 퇴비 생산이 가능하였다. 2. 퇴비화 실험결과는 퇴비화 온도가 $55\sim65^{\circ}C$로서 1주간 이상, 퇴비재료 수분 50%, 종자 발아율 70% 이상 및 EC농도 5ds/m 이하 등의 수준을 유지하고 있어 완숙퇴비 조건을 구비하고 있었다.상관관계가 비교적 높았으나, 음수량과 분 배설량$(R^2=0.2950)$, 사료 섭취량과 뇨 배설량$(R^2=0.1985)$, 산유량과 뇨 배설량$(R^2=0.2335)$의 상관관계는 낮게 나타났다. 6. 따라서 산유량과 음수량, 산유량과 사료 섭취량의 상관관계식은 $Y=0.1919X_1+11.181(R^2=0.7742),\;Y=0.8568X_2+9.3067(R^2=0.7459)$(Y=milk yield $X_1=water$ consumption, $X_2=feed$ intake)로 추정할 수 있다.. 이상(以上)의 결과(結果)로서 통일(統一)벼가 일반품종(一般品種)에 비(比)하여 저장성(貯藏性)이 우수(優秀)함을 인정(認定)할수 있어 장기저장(長期貯藏)을 위(爲)한 미곡(米穀)으로 활용(活用)할 수 있는 가능성(可能性)을 암시(暗示)하고 있다.록 Lact. plantarum ATCC 8014, Lact. fermenti ATCC 9338균주(菌株)의 산생성(酸生成)을 촉진(促進)하는 경향(傾向)을 보였다.V또는 ara-A의 동시첨가는 GCV또는 ara-A를 단독으로 첨가했을 경우보다 단백질의 합성을 더욱 억제하였다. 이상의 실험결과로 보아 GCV와 ara-A의 동시사용은 HSV-1 혹은 ACV저항 DNA polymerase변이주인 $PAA^r5$에 대해서 상승적인 억제작용을 나타냈으며 이 효과는 virus DNA 합성 억제에 의한 것으로 생각된다. ACV저항 thymidine kinase 변이주인 $ACV^r$$IUdR^r$

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여뀌과 이형경식물의 Dinorphism과 Bisexuality의 변화 (STUDIES ON THE DIMORPHISM AND TRANSITION OF BISEXUALITY OF HETEROSTYLOUS POLYGONACEAE)

  • Harn, Chang-Yawl
    • Journal of Plant Biology
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    • 제3권2호
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    • pp.6-18
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    • 1960
  • The present experiments were designed in order to clarify the differences between the long and short styled plants and the transgressive gradition in the degree of dimorphism among the three heterostylous species of the Polygonus, P. japonica, F. esculentum, and P. senticosa, based on investigations regarding the floral structure, ecological and physiological traits, the results of which are summarized as follows: (1) P. japonica, although it exhibits typical dimorphism, has undergone so high a differentiation between long and short styled that its long styled individuals behave as if they were female; and short styled individuals as if male. In long-styled individuals, filament, anther, and pollen grains show signs of degeneration, most of the pollen being abortive. On the other hand, in short styled individuals, the filament, anther, and pollen grains have attained remarkable development; the pollen grians are large and fertile. In short-plant the fertilized flowers readily drop off in every stage of their embryo development. This species has completely lost the self-fertile property, which is characteristic of the non-dimorphic Polygonum genus. Although this specsei typically exhibits the physiological characteristics of the non-dimorphic Polygonum genus. Although this specisei typically exhibits the physiological characteristics of dimorphism in controlled pollination, the short-styled individuals bear no seed in nature, thus misleading taxonomists to idenfity the short-styled plant as male. 2) The morphological feature of the flower organ of P. senticosa obviously indicates definite dimorphism. Physiologically, however, no differentiation towards dimorphism was observed, the species still retaining, both in long and short-individuals, the self-fertile property common to the Polygonum genus. Elaborate examinations revealed that regardless of the modes of pollination, both fertiization and seed setting flourish, no differentiation betwen legitimate and illegitimate unions being recognizable. This sort of physiological property has not been observed in the investigations of other heterostylous plants. It is assumed that this species is differentiated structurally into dimorphism, but not yet physiologically. In nature, however, this plant would have more opportunities to be cross-pollinated, i.e., legitimately combined, than self-pollinated because of the development of two forms of flowers. 3) In terms of heterostylism, the F. esculentum just occupies the intermediate position between P. japonica and P. senticosa structurally, ecologically, and physiologically. Doescription of some of the physiological behavior of the plant will suffice to demonstrate the above facts. While P. japonica has completely lost its self-fertile property, P. senticosa still retains it wolly. In F. esculentum 2-6% of self-fertility is the result in illegitimate combination. There occur occasionally hereditary self fertile individuals among some of the F. or 20 min. irradiation plot, when they reach any stage of the same bacterial population. In addition to this increase of total population in the plots with the more dose of UV light irradiation, it seems that the more dose of UV light irradiation is the more shortened the generation time of Azotobacter. Therefore, it is clear that variation of reproductive rate must be, mere or less, due to the genetic effects induced by UV light irradiation. On the other hand, the lag phase or logarithmic growth phase in nonirradiated culture is shortened prominently, and this must be due to the difference in bacterial number of the original inoculm. The generation time of Azotobacter is shortened by exogeneous treatment of nuclei acid derivatives, and the degree is greater in case of DNA derivatives than RNA dervatives. W.H. Price reported that the rate of ribose nucleic acid to protein in Staphylococcus muscae is proportional to the generation time: that is the faster the cell can form ribose nucleic acid, the more rapid its growth. This explains the shortening of generation time by exogeneous RNA derivatives in this work reasonably. On the other hand, it is well known that the desoxyribose nuclic acid content per cell is constant and independent of the generation time. A.D. Laren and W.N. Takahashi reported that the infectious RNA from TMV is 6 times as sensitive to inactivation by UV as it is in the form of intact virus, and that inactivation of infectious TMV involves onlu a local change on RNA chain. But, the effect of exogeneous DNA in this work suggests that irradiated living cell which cotain DNA bring about some change on DNA moleculs as well as RNA molecules. And if the mutagenic effects of UV take into consideration, it is very reasonable. Therefore, it is clear that the variation of the generation time by UV irradiation is, more or less, due to the genetic effects. Therefore, it seems that the shortness of the average lifewpan of Azotobacter by UV irradiation is resulted not only from the influence of the environmental conditions, but also from the variation of genetic factor of the individual.

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