• 제목/요약/키워드: In Vivo

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손 위생 제품에 대한 in vitro, ex vivo, in vivo 항균 시험법 비교 (Comparison of In Vitro, Ex Vivo, and In Vivo Antibacterial Activity Test Methods for Hand Hygiene Products)

  • 이다은;여현주;정혜윤
    • 한국식품위생안전성학회지
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    • 제39권1호
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    • pp.35-43
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    • 2024
  • 손 위생 제품이 다양화됨과 동시에 각 활용 방법에 따라 그 효능을 평가하는 여러 시험 방법들이 보고되고 있다. 하지만 평가 방법에 따라 각 제품의 항균 효능은 다르게 나타나며, 이로 인해 제품의 실제적인 효능을 확인하는 데에 어려움이 있을 수 있다. 손 위생 제품의 효능평가방법 비교에 초점을 둔 연구는 매우 제한적이며, 특히 돼지피부를 이용한 ex vivo에 대한 연구는 극히 드물다. 이에 본 연구는 손 위생 제품 중 리브온 소독제와 워시오프 세정제에 대해 각각의 항균 평가 방법을 종합적으로 비교했고, ex vivo 시험에 영향을 미칠 수 있는 요인을 파악하여 연구 단계에서 효율적인 ex vivo 시험의 신뢰성을 향상시키고자 하였다. in vitro 시험으로써 액체 현탁을 기반으로 하는 time-kill 시험을 진행했고, in vivo 시험은 최소 20명의 참여자를 대상으로 진행되었다. ex vivo 시험은 규격화된 돼지 피부를 이용하여 in vivo 시험과 동일한 방법으로 진행하면서 소독제의 최적 처리량과 세정제 사용 시 첨가되는 물의 양을 제안했다. 시험에 사용된 손 소독제는 in vitro 시험에서 모두 5 log 이상의 세균 감소율을 보인 반면, ex vivo와 in vivo에서는 훨씬 낮은 살균 활성을 보였으며, 특히 알코올 함량이 낮은 손 소독제에서는 1 log 미만의 살균 활성을 나타냈다. 반면에 손 세정제의 in vitro 시험 결과, 대장균에 대해서는 1 log 이하의 낮은 항균력을 보였으나, ex vivo 와 in vivo 시험 결과에서는 이보다 높은 항균력을 유사하게 나타냈다. 본 연구에서는 ex vivo 와 in vivo 시험 방법이 리브온과 워시오프 타입 제품의 두가지 다른 항균 메커니즘을 반영할 수 있음을 확인했다. 이로 인해 최적의 조건으로 설정된 ex vivo 시험은 빠르고 정확한 항균 평가법이 될 수 있음을 제시한다.

Contrast Enhancement of Laser Speckle Contrast Image in Deep Vasculature by Reduction of Tissue Scattering

  • Son, Taeyoon;Lee, Jonghwan;Jung, Byungjo
    • Journal of the Optical Society of Korea
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    • 제17권1호
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    • pp.86-90
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    • 2013
  • Various methods have been proposed for enhancing the contrast of laser speckle contrast image (LSCI) in subcutaneous blood flow measurements. However, the LSCI still suffers from low image contrast due to tissue turbidity. Herein, a physicochemical tissue optical clearing (PCTOC) method was employed to enhance the contrast of LSCI. Ex vivo and in vivo experiments were performed with porcine skin samples and male ICR mice, respectively. The ex vivo LSCIs were obtained before and 90 min after the application of the PCTOC and in vivo LSCIs were obtained for 60 min after the application of the PCTOC. In order to obtain the skin recovery images, saline was applied for 30 min after the application of the PCTOC was completed. The visible appearance of the tubing under ex vivo samples and the in vivo vasculature gradually enhanced over time. The LSCI increased as a function of time after the application of the PCTOC in both ex vivo and in vivo experiments, and properly recovered to initial conditions after the application of saline in the in vivo experiment. The LSCI combined with the PCTOC was greatly enhanced even in deep vasculature. It is expected that similar results will be obtained in in vivo human studies.

In vivo 腫瘍細胞에 미치는 溫熱處理의 細胞致死效果 (Cytocidal Effect of Hyperthermia on Tumor Cells in vivo)

  • Kang, Man-Sik;Rhee, Jeong-Gile;Seymour H. Levitt;Chang W. Song
    • 한국동물학회지
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    • 제24권2호
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    • pp.59-64
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    • 1981
  • SCK 腫瘍細胞에 대한 溫熱處理의 細胞致死效果는 in vitro의 경우보다 in vivo의 경우에 顯著하게 컸다. In vivo에서 溫熱處理한 후, 腫瘍을 그대로 放置해두면 腫瘍細胞는 어느 期間동안 계속해서 죽게 되며 腫瘍의 機能的인 血管容積도 마찬가지로 減少한다. In vivo에서 X線을 照射하기 前과 後 30分에 溫熱處理한 腫瘍細胞의 放射線生殘曲線은 溫熱處理하지 않은 對照群의 그것에 比해 기울기가 컸다. 結論的으로 腫瘍細胞에 대한 溫熱處理의 細胞致死效果가 in vitro에 비해서 in vivo의 경우에 크게 되는 것은 腫瘍의 內部環境에 연유하는 것으로 생각된다.

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In vivo molecular and single cell imaging

  • Hong, Seongje;Rhee, Siyeon;Jung, Kyung Oh
    • BMB Reports
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    • 제55권6호
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    • pp.267-274
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    • 2022
  • Molecular imaging is used to improve the disease diagnosis, prognosis, monitoring of treatment in living subjects. Numerous molecular targets have been developed for various cellular and molecular processes in genetic, metabolic, proteomic, and cellular biologic level. Molecular imaging modalities such as Optical Imaging, Magnetic Resonance Imaging (MRI), Positron Emission Tomography (PET), Single Photon Emission Computed Tomography (SPECT), and Computed Tomography (CT) can be used to visualize anatomic, genetic, biochemical, and physiologic changes in vivo. For in vivo cell imaging, certain cells such as cancer cells, immune cells, stem cells could be labeled by direct and indirect labeling methods to monitor cell migration, cell activity, and cell effects in cell-based therapy. In case of cancer, it could be used to investigate biological processes such as cancer metastasis and to analyze the drug treatment process. In addition, transplanted stem cells and immune cells in cell-based therapy could be visualized and tracked to confirm the fate, activity, and function of cells. In conventional molecular imaging, cells can be monitored in vivo in bulk non-invasively with optical imaging, MRI, PET, and SPECT imaging. However, single cell imaging in vivo has been a great challenge due to an extremely high sensitive detection of single cell. Recently, there has been great attention for in vivo single cell imaging due to the development of single cell study. In vivo single imaging could analyze the survival or death, movement direction, and characteristics of a single cell in live subjects. In this article, we reviewed basic principle of in vivo molecular imaging and introduced recent studies for in vivo single cell imaging based on the concept of in vivo molecular imaging.

Towards Evolutionary Approach for Thermal Aware In Vivo Sensor Networks

  • Kamal, Rossi;Hong, Choong-Seon
    • 한국정보과학회:학술대회논문집
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    • 한국정보과학회 2012년도 한국컴퓨터종합학술대회논문집 Vol.39 No.1(D)
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    • pp.369-371
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    • 2012
  • Wireless sensor networks have taken immense interest in healthcare systems in recent years. One example of it is in an in vivo sensor that is deployed in critical and sensitive healthcare applications like artificial retina, cardiac pacemaker, drug delivery, blood pressure, internal heat calculation, glucosemonitoring etc. In vivo sensor nodes exhibit temperature that may be very dangerous for human tissues. However, existing in vivo thermal aware routing approaches suffer from hotspot creation, delay, and computational complexity. These limitations motivate us toward an in vivo virtual backbone, a small subset of nodes, connected to all other nodes and involved in routing of all nodes, -based solution. A virtual backbone is lightweight and its fault-tolerant version allows in vivo sensor nodes to disconnect hotspot paths and to use alternative paths. We have formulated the problem as m-connected k-dominating set problem with minimum temperature cost in in vivo sensor network. This is a combinatorial optimization problem and we have been motivated to use evolutionary approach to solve the problem.

In vivo 및 in vitro로 배양된 곤충병원성 선충의 지방산 함량 및 효능 (Fatty Acid Contents and Efficacy of In vivo and In vitro Cultured Entomopathogenic Nematodes)

  • 박선호;김효현
    • KSBB Journal
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    • 제17권3호
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    • pp.271-275
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    • 2002
  • 곤충병원성 선충의 종류 및 배양방법에 따른 지방산 함량비를 조사하였다. In vivo로 배양된 곤충병원성 선충 7계통의 지방산 조성은 비슷하였으나, 지방산 함량비에서 차이가 있었다. 곤충병원성 선충 S. carpocapsae 종을 in vivo 및 in vitro로 배양하여 분석한 결과 배양방법에 따라 지방산의 함량비가 달라질 뿐만 아니라 선충의 토양내 침투력이 달라지는 것을 확인하였다. Olive oil을 첨가하여 선충을 배양했을 경우 주요 지방산 함량비를 in vivo로 배양된 결과와 유사하게 조절할 수 있었으며 선충의 병원성도 soy oil을 첨가하여 배양한 선충에 비해 크게 향상되는 것을 확인할 수 있었다.

Screening of Genes Expressed In Vivo During Interaction Between Chicken and Campylobacter jejuni

  • Hu, Yuanqing;Huang, Jinlin;Jiao, Xin-An
    • Journal of Microbiology and Biotechnology
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    • 제24권2호
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    • pp.217-224
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    • 2014
  • Chicken are considered as the most important source of human infection by Campylobacter jejuni, which primarily arises from contaminated poultry meats. However, the genes expressed in vivo of the interaction between chicken and C. jejuni have not been screened. In this regard, in vivo-induced antigen technology (IVIAT) was applied to identify expressed genes in vivo during interaction between chicken and C. jejuni, a prevalent foodborne pathogen worldwide. Chicken sera were obtained by inoculating C. jejuni NCTC 11168 into Leghorn chickens through oral and intramuscular administration. Pooled chicken sera, adsorbed against in vitro-grown cultures of C. jejuni, were used to screen the inducible expression library of genomic proteins from sequenced C. jejuni NCTC 11168. Finally, 28 unique genes expressed in vivo were successfully identified after secondary and tertiary screenings with IVIAT. The genes were implicated in metabolism, molecular biosynthesis, genetic information processing, transport, regulation and other processes, in addition to Cj0092, with unknown function. Several potential virulence-associated genes were found to be expressed in vivo, including chuA, flgS, cheA, rplA, and Cj0190c. We selected four genes with different functions to compare their expression levels in vivo and in vitro using real-time RT-PCR. The results indicated that these selected genes were significantly upregulated in vivo but not in vitro. In short, the expressed genes in vivo may act as potential virulence-associated genes, the protein encoded by which may be meaningful vaccine candidate antigens for campylobacteriosis. IVIAT provides an important and efficient strategy for understanding the interaction mechanisms between Campylobacter and hosts.

딜티아젬서방정을 이용한 In vitro/In vivo 상관성 (In vitro/In vivo Correlation of Sustained Release Diltiazem)

  • 최명신;강찬순;최보경;홍정희;김길수
    • Journal of Pharmaceutical Investigation
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    • 제32권4호
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    • pp.321-325
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    • 2002
  • IVIVC (In vitro/in vivo correlation) is useful for predicting in vivo results from in vitro data. The aim of this study was to develop IVIVC of sustained release diltiazem. For this purpose, three types of diltiazem tablets with different in vitro dissolution rates were prepared. An in vitro dissolution testing method comprising of paddle apparatus, 50 rpm, water as dissolution medium was developed. Under these condition, we demonstrated that AUCinf could be predicted by evaluating $d_{70%}$ (time dissolved 70%) in vitro since the in vivo AUCinf was correlated with the in vitro $d_{70%}$ (r=-0.9981).

Development and pregnancy rates of Camelus dromedarius-cloned embryos derived from in vivo- and in vitro-matured oocytes

  • Son, Young-Bum;Jeong, Yeon Ik;Jeong, Yeon Woo;Olsson, Per Olof;Hossein, Mohammad Shamim;Cai, Lian;Kim, Sun;Choi, Eun Ji;Sakaguchi, Kenichiro;Tinson, Alex;Singh, Kuhad Kuldip;Rajesh, Singh;Noura, Al Shamsi;Hwang, Woo Suk
    • Animal Bioscience
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    • 제35권2호
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    • pp.177-183
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    • 2022
  • Objective: The present study evaluated the efficiency of embryo development and pregnancy of somatic cell nuclear transfer (SCNT) embryos using different source-matured oocytes in Camelus dromedarius. Methods: Camelus dromedarius embryos were produced by SCNT using in vivo- and in vitro- matured oocytes. In vitro embryo developmental capacity of reconstructed embryos was evaluated. To confirm the efficiency of pregnancy and live birth rates, a total of 72 blastocysts using in vitro- matured oocytes transferred into 45 surrogates and 95 blastocysts using in vivo- matured oocytes were transferred into 62 surrogates by transvaginal method. Results: The collected oocytes derived from ovum pick up showed higher maturation potential into metaphase II oocytes than oocytes from the slaughterhouse. The competence of cleavage, and blastocyst were also significantly higher in in vivo- matured oocytes than in vitro- matured oocytes. After embryo transfer, 11 pregnant and 10 live births were confirmed in in vivo- matured oocytes group, and 2 pregnant and 1 live birth were confirmed in in vitro- matured oocytes group. Furthermore, blastocysts produced by in vivo-matured oocytes resulted in significantly higher early pregnancy and live birth rates than in vitro-matured oocytes. Conclusion: In this study, SCNT embryos using in vivo- and in vitro-matured camel oocytes were successfully developed, and pregnancy was established in recipient camels. We also confirmed that in vivo-matured oocytes improved the development of embryos and the pregnancy capacity using the blastocyst embryo transfer method.

In Vivo Non Invasive Molecular Imaging for Immune Cell Tracking in Small Animals

  • Youn, Hyewon;Hong, Kee-Jong
    • IMMUNE NETWORK
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    • 제12권6호
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    • pp.223-229
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    • 2012
  • Clinical and preclinical in vivo immune cell imaging approaches have been used to study immune cell proliferation, apoptosis and interaction at the microscopic (intra-vital imaging) and macroscopic (whole-body imaging) level by use of ex vivo or in vivo labeling method. A series of imaging techniques ranging from non-radiation based techniques such as optical imaging, MRI, and ultrasound to radiation based CT/nuclear imaging can be used for in vivo immune cell tracking. These imaging modalities highlight the intrinsic behavior of different immune cell populations in physiological context. Fluorescent, radioactive or paramagnetic probes can be used in direct labeling protocols to monitor the specific cell population. Reporter genes can also be used for genetic, indirect labeling protocols to track the fate of a given cell subpopulation in vivo. In this review, we summarized several methods dealing with dendritic cell, macrophage, and T lymphocyte specifically labeled for different macroscopic whole-body imaging techniques both for the study of their physiological function and in the context of immunotherapy to exploit imaging-derived information and immune-based treatments.