• 제목/요약/키워드: host cells

검색결과 1,065건 처리시간 0.029초

인체 폐섬유아세포 배양에 의한 수두바이러스의 생산 (Production of Varicella-zoster Virus Using Human Lung Fibroblast Cells As Host Cells)

  • 김원배;박정극
    • KSBB Journal
    • /
    • 제11권2호
    • /
    • pp.254-261
    • /
    • 1996
  • 수두 바이 러스(Varicella-zoster virus, VZV) 백신을 생산하기 위하여 약독화된 수두 바이러스 주인 Oka 주를 사용하여 정상세포인 인체 폐세 포(human lung fibroblast cells)로부터 수두 바이 러스 생산조건을 검토하였다. 숙주세포의 배양을 위 한 최적 성장배지로는 DMEM이 조사된 배지 중에 서는 가장 좋음을 알 수 있었으며 숙주세포의 성장율은 세포 age의 지표인 population doubling level (PDL) 이 46 이상인 경우 낮아지는 것무로 확인되 었으며 따라서 수두바이러스 생산을 위해서는 PDL 4 46 이하의 young cell을 사용해야 할 것으로 사료된 다 한편 수두바이러스 생산을 위한 최적 증식조건 으로는 배양온도 $37^{\circ}C$, 혈청농도 2%, MOl 1:5였다. 숙주세포를 대량배양하기 위한 기본조건을 검토 하기 위하여 미 럽담체 (Cytodex-3)를 이용한 spm­n ner flask culture를 시행하였다. 미럽담체에서의 숙 주세포 성장은 T -flask와 비하여 별다른 차이가 없었으나 VZV의 증식은 T-flask 배양에서보다 훨씬 낮았다. 이는 미립담체배양에서의 높은 전단응력 과 미립담체끼리의 영김현상 때문으로 생각된다.

  • PDF

침습성 세균 감염에 의한 사람 장상피세포에서의 Cyclooxygenase-2 발현 및 이의 발현이 상피세포 Apoptosis에 미치는 영향 (Expression of Cyclooxygenase-2 in Intestinal Epithelial Cells in Response to Invasive Bacterial Infection and its Role of Epithelial Cell Apoptosis)

  • 김정목;강신재;조양자
    • 대한미생물학회지
    • /
    • 제34권5호
    • /
    • pp.479-489
    • /
    • 1999
  • Invasion of enteric bacteria, such as Salmonella and invasive E. coli, into intestinal epithelial cells induces proinflammatory gene responses and finally epithelial cell apoptosis. In this study, we asked whether invasive bacterial infection of human intestinal epithelial cells could upregulate cyclooxygenase-2 (COX-2) gene expression and whether increased COX-2 expression could influence intestinal epithelial cell apoptosis. Expression of COX-2 mRNA and prostaglandin (PG) $E_2$ production were upregulated in HT-29 colon epithelial cells which were infected with S. dublin or invasive E. coli, as examined by quantitative RT-PCR and radioimmunoassay. Inhibition of COX-2 expression and $PGE_2$ production using NS-398, a specific COX-2 inhibitor, showed a significant increase of epithelial cell apoptosis and caspase-3 activation in HT-29 cells infected with invasive bacteria. However, the addition of valerylsalicylate, a specific COX-1 inhibitor, did not change apoptosis in S. dublin-infected HT-29 cells. These results suggest that up regulated COX-2 expression and $PGE_2$ production in response to invasive bacterial infection could contribute to host defense by inhibiting apoptosis of intestinal epithelial cells.

  • PDF

Establishment of Human-Mouse Chimeric Animal by Injecting Human Embryonic Stem Cells into Mouse Blastocoele Cavity

  • 윤지연;이영재;김은영;이훈택;정길생;박세필;임진호
    • 한국동물번식학회:학술대회논문집
    • /
    • 한국동물번식학회 2003년도 학술발표대회 발표논문초록집
    • /
    • pp.77-77
    • /
    • 2003
  • Chimeric animals are referred to as an organism composed of tissues derived from more than one species. In order to examine if a pluripotency of embryonic stem cells can cross the limitation of a species, we tried to establish human-mouse chimeric animals. Human embryonic stem cells were genetically modified to express eGFP using eukaryonic expression vector pcDNA 3.1 (In Vitrogene) for an easy identification. After selection with neomycin, approximately 15 cells were implanted into mouse blastocoele cavity. Ten chimeric blastocysts were transferred to one of the uterine horn of 2.5 days pesudopregnent ICR female. Out of 272 blastocysts transferred to pseudopregnant recipients 20 live newborn were obtained after 20 days. When newborn were obtained, pups were quickly removed immersed into 4% PFA. By histological examination using fluorescent microscope, green fluorescence was observed from the liver, heart, and spleen in newborn mice. Three weeks after born, presence of eGFP sequence within mouse genome (tail and kidney) was reconfirmed by PCR. eGFP sequence was amplified from the progenies of the animal suggesting a genetic transmission of the transgene. These chimeric mice having human cells at the beginning of development, are expected to recognize human cells as “self”, therefore, human cells or tissues will be able to escape the immunological surveillance of the host if grafted into the animal. These animals will serve as a good model system for studying the graft rejection in tissue transplantation and the potential of the cells to work well in many human disease.

  • PDF

Calpains are Involved in Entamoeba histolytica-Induced Death of HT-29 Colonic Epithelial Cells

  • Jang, Yun-Soo;Song, Kyoung-Ju;Kim, Ju-Young;Lee, Young-Ah;Kim, Kyeong-Ah;Lee, Sang-Kyou;Shin, Myeong-Heon
    • Parasites, Hosts and Diseases
    • /
    • 제49권2호
    • /
    • pp.177-180
    • /
    • 2011
  • Entamoeba histolytica is an enteric tissue-invading protozoan parasite that can cause amebic colitis and liver abscess in humans. E. histolytica has the capability to kill colon epithelial cells in vitro; however, information regarding the role of calpain in colon cell death induced by ameba is limited. In this study, we investigated whether calpains are involved in the E. histolytica-induced cell death of HT-29 colonic epithelial cells. When HT-29 cells were co-incubated with E. histolytica, the propidium iodide stained dead cells markedly increased compared to that in HT-29 cells incubated with medium alone. This pro-death effect induced by ameba was effectively blocked by pretreatment of HT-29 cells with the calpain inhibitor, calpeptin. Moreover, knockdown of m- and ${\mu}$-calpain by siRNA significantly reduced E. histolytica-induced HT-29 cell death. These results suggest that m- and ${\mu}$-calpain may be involved in colon epithelial cell death induced by E. histolytica.

Contact-Independent Cell Death of Human Microglial Cells due to Pathogenic Naegleria fowleri Trophozoites

  • Kim, Jong-Hyun;Kim, Dae-Sik;Shin, Ho-Joon
    • Parasites, Hosts and Diseases
    • /
    • 제46권4호
    • /
    • pp.217-221
    • /
    • 2008
  • Free-living Naegleria fowleri leads to a fatal infection known as primary amebic meningoencephalitis in humans. Previously, the target cell death could be induced by phagocytic activity of N. fowleri as a contact-dependent mechanism. However, in this study we investigated the target cell death under a non-contact system using a tissue-culture insert. The human microglial cells, U87MG cells, co-cultured with N. fowleri trophozoites for 30 min in a non-contact system showed morphological changes such as the cell membrane destruction and a reduction in the number. By fluorescence-activated cell sorter (FACS) analysis, U87MG cells co-cultured with N. fowleri trophozoites in a non-contact system showed a significant increase of apoptotic cells (16%) in comparison with that of the control or N. fowleri lysate. When U87MG cells were co-cultured with N. fowleri trophozoites in a non-contact system for 30 min, 2 hr, and 4 hr, the cytotoxicity of amebae against target cells was 40.5, 44.2, and 45.6%, respectively. By contrast, the cytotoxicity of non-pathogenic N. gruberi trophozoites was 10.2, 12.4, and 13.2%, respectively. These results suggest that the molecules released from N. fowleri in a contact-independent manner as well as phagocytosis in a contact-dependent manner may induce the host cell death.

Chracterization of THP-1 Cell Death Induced by Porphyromonas gingivalis Infection

  • Song, YuRi;Kim, SeYeon;Park, Mee Hee;Na, Hee Sam;Chung, Jin
    • International Journal of Oral Biology
    • /
    • 제42권1호
    • /
    • pp.17-23
    • /
    • 2017
  • Background: Periodontitis is generally a chronic disorder characterized by the breakdown of tooth-supporting tissues. P. gingivalis, a Gram-negative anaerobic rod, is one of the major pathogens associated with periodontitis. Frequently, P. gingivalis infection leads to cell death. However, the correlation between P. gingivalis-induced cell death and periodontal inflammation remains to be elucidated. Among cell deaths, the death of immune cells appears to play a significant role in inflammatory response. Thus, the aim of this study was to examine P. gingivalis-induced cell death, focusing on autophagy and apoptosis in THP-1 cells. Methods: Human acute monocytic leukemia cell line (THP-1) was used for all experiments. Autophagy induced by P. gingivalis in THP-1 cells was examined by Cyto ID staining. Intracellular autophagic vacuoles were observed by fluorescence microscopy using staining Acridine orange (AO); and 3-methyladenine (3-MA) was used to inhibit autophagy. Total cell death was measured by LDH assay. Cytokine production was measured by an ELISA method. Results: P. gingivalis induced autophagy in an MOI-dependent manner in THP-1 cells, but 3-MA treatment decreased autophagy and increased the apoptotic blebs. P. gingivalis infection did not increase apoptosis compared to the control cells, whereas inhibition of autophagy by 3-MA significantly increased apoptosis in P. gingivalis-infected THP-1 cells. Inhibition of autophagy by 3-MA also increased total cell deaths and inflammatory cytokine production, including $IL-1{\beta}$ and $TNF-{\alpha}$. Conclusion: P. gingivalis induced autophagy in THP-1 cells, but the inhibition of autophagy by 3-MA stimulated apoptosis, leading to increased cell deaths and pro-inflammatory cytokines production. Hence, the modulation of cell deaths may provide a mechanism to fight against invading microorganisms in host cells and could be a promising way to control inflammation.

Inhibition of COX-2 Impairs Colon Cancer Liver Metastasis through Reduced Stromal Cell Reaction

  • Herrero, Alba;Benedicto, Aitor;Romayor, Irene;Olaso, Elvira;Arteta, Beatriz
    • Biomolecules & Therapeutics
    • /
    • 제29권3호
    • /
    • pp.342-351
    • /
    • 2021
  • Liver colonization is initiated through the interplay between tumor cells and adhesion molecules present in liver sinusoidal endothelial cells (LSECs). This crosstalk stimulates tumor COX-2 upregulation and PGE2 secretion. To elucidate the role of the LSEC intercellular adhesion molecule-1 (ICAM-1) in the prometastatic response exerted by tumor and stromal COX-2, we utilized celecoxib (CLX) as a COX-2 inhibitory agent. We analyzed the in vitro proliferative and secretory responses of murine C26 colorectal cancer (CRC) cells to soluble ICAM-1 (sICAM-1), cultured alone or with LSECs, and their effect on LSEC and hepatic stellate cell (HSC) migration and in vivo liver metastasis. CLX reduced sICAM-1-stimulated COX-2 activation and PGE2 secretion in C26 cells cultured alone or cocultured with LSECs. Moreover, CLX abrogated sICAM-1-induced C26 cell proliferation and C26 secretion of promigratory factors for LSECs and HSCs. Interestingly, CLX reduced the protumoral response of HSC, reducing their migratory potential when stimulated with C26 secretomes and impairing their secretion of chemotactic factors for LSECs and C26 cells and proliferative factors for C26 cells. In vivo, CLX abrogated the prometastatic ability of sICAM-1-activated C26 cells while reducing liver metastasis. COX-2 inhibition blocked the creation of a favorable tumor microenvironment (TME) by hindering the intratumoral recruitment of activated HSCs and macrophages in addition to the accumulation of fibrillar collagen. These results point to COX-2 being a key modulator of processes initiated by host ICAM-1 during tumor cell/LSEC/HSC crosstalk, leading to the creation of a prometastatic TME in the liver.

Enhanced Efficacy of Human Brain-Derived Neural Stem Cells by Transplantation of Cell Aggregates in a Rat Model of Parkinson's Disease

  • Shin, Eun Sil;Hwang, Onyou;Hwang, Yu-Shik;Suh, Jun-Kyo Francis;Chun, Young Il;Jeon, Sang Ryong
    • Journal of Korean Neurosurgical Society
    • /
    • 제56권5호
    • /
    • pp.383-389
    • /
    • 2014
  • Objective : Neural tissue transplantation has been a promising strategy for the treatment of Parkinson's disease (PD). However, transplantation has the disadvantages of low-cell survival and/or development of dyskinesia. Transplantation of cell aggregates has the potential to overcome these problems, because the cells can extend their axons into the host brain and establish synaptic connections with host neurons. In this present study, aggregates of human brain-derived neural stem cells (HB-NSC) were transplanted into a PD animal model and compared to previous report on transplantation of single-cell suspensions. Methods : Rats received an injection of 6-OHDA into the right medial forebrain bundle to generate the PD model and followed by injections of PBS only, or HB-NSC aggregates in PBS into the ipsilateral striatum. Behavioral tests, multitracer (2-deoxy-2-[$^{18}F$]-fluoro-D-glucose ([$^{18}F$]-FDG) and [$^{18}F$]-N-(3-fluoropropyl)-2-carbomethoxy-3-(4-iodophenyl)nortropane ([$^{18}F$]-FP-CIT) microPET scans, as well as immunohistochemical (IHC) and immunofluorescent (IF) staining were conducted to evaluate the results. Results : The stepping test showed significant improvement of contralateral forelimb control in the HB-NSC group from 6-10 weeks compared to the control group (p<0.05). [$^{18}F$]-FP-CIT microPET at 10 weeks posttransplantation demonstrated a significant increase in uptake in the HB-NSC group compared to pretransplantation (p<0.05). In IHC and IF staining, tyrosine hydroxylase and human ${\beta}2$ microglobulin (a human cell marker) positive cells were visualized at the transplant site. Conclusion : These results suggest that the HB-NSC aggregates can survive in the striatum and exert therapeutic effects in a PD model by secreting dopamine.

COVID-19 Vaccination Alters NK Cell Dynamics and Transiently Reduces HBsAg Titers Among Patients With Chronic Hepatitis B

  • Hyunjae Shin;Ha Seok Lee;Ji Yun Noh;June-Young Koh;So-Young Kim;Jeayeon Park;Sung Won Chung;Moon Haeng Hur;Min Kyung Park;Yun Bin Lee;Yoon Jun Kim;Jung-Hwan Yoon;Jae-Hoon Ko;Kyong Ran Peck;Joon Young Song;Eui-Cheol Shin;Jeong-Hoon Lee
    • IMMUNE NETWORK
    • /
    • 제23권5호
    • /
    • pp.39.1-39.15
    • /
    • 2023
  • Coronavirus disease 2019 (COVID-19) vaccination may non-specifically alter the host immune system. This study aimed to evaluate the effect of COVID-19 vaccination on hepatitis B surface Ag (HBsAg) titer and host immunity in chronic hepatitis B (CHB) patients. Consecutive 2,797 CHB patients who had serial HBsAg measurements during antiviral treatment were included in this study. Changes in the HBsAg levels after COVID-19 vaccination were analyzed. The dynamics of NK cells following COVID-19 vaccination were also examined using serial blood samples collected prospectively from 25 healthy volunteers. Vaccinated CHB patients (n=2,329) had significantly lower HBsAg levels 1-30 days post-vaccination compared to baseline (median, -21.4 IU/ml from baseline), but the levels reverted to baseline by 91-180 days (median, -3.8 IU/ml). The velocity of the HBsAg decline was transiently accelerated within 30 days after vaccination (median velocity: -0.06, -0.39, and -0.04 log10 IU/ml/year in pre-vaccination period, days 1-30, and days 31-90, respectively). In contrast, unvaccinated patients (n=468) had no change in HBsAg levels. Flow cytometric analysis showed that the frequency of NK cells expressing NKG2A, an NK inhibitory receptor, significantly decreased within 7 days after the first dose of COVID-19 vaccine (median, -13.1% from baseline; p<0.001). The decrease in the frequency of NKG2A+ NK cells was observed in the CD56dimCD16+ NK cell population regardless of type of COVID-19 vaccine. COVID-19 vaccination leads to a rapid, transient decline in HBsAg titer and a decrease in the frequency of NKG2A+ NK cells.

기생성 와편모류 Amoebophrya의 생리 생태적 특성과 적조 (Physiological Ecology of parasitic Dinoflagellate Amoebophrya and Harmful Algal Blooms)

  • 박명길
    • 한국해양학회지:바다
    • /
    • 제7권3호
    • /
    • pp.181-194
    • /
    • 2002
  • 기생은 공생하는 두 생물사이에 한쪽(기생생물)은 이득을 얻는 반면에 다른 한쪽(숙주)은 해를 입는 관계를 말한다. 이러한 기생관계가 생물학적으로 적조를 제어하기 위한 하나의 방법으로서 응용될 수 있으며, 특히 적조생물을 숙주로 하는 기생성 와편모류인 Amoebophrya spp.는 그 잠재력이 큰 것으로 오랫동안 주목받아 왔다. Amoebophrya spp.는 유독성 및 유해성 적조를 일으키는 종을 포함하여 24속 40여종 이상의 와편모류들을 감염시킬 수 있는 것으로 알려져 있다 기생성 와편모류 Amoebophrya는 포자(dinospore)의 분산 및 감염 단계,감염 후 숙주 세포내에서 성장단계 (trophont), 그리고 숙주 세포 밖의 생식단계(vermiform) 등의 간단한 생활사를 가지고 있다. 최근의 연구결과에 의하면, 분산 및 감염을 담당하는 dinospore는 각 숙주-기생생물 관계에 따라 감염능력, 생존능력 및 감염 성공률 등 서로 다른 생물학적 차별성을 보인다. 각 숙주기생생물 관계 기원 dinospores의 서로 다른 생물학적 특성, 교차 감염실험 및 분자생물학적 연구결과 등으로 보아 Amoebophrya ceratil가 숙주 특이성이 없는 단일종이라는 이전의 주장보다는 아마도 숙주 특이성을 갖고 있는 여러 분류군으로 구성된 종 복합체 (species complex)라는 가설이 타당하다. 숙주 와편모류들은 기생성 와편모류 Amoebophrya에 의해 일단 감염되고 나면 더 이상 성장하지 못하고 생식능력을 잃고 모두 사망하게 되는데, 이 감염 과정동안 해당 플랑크톤 생태계에 대한 영향은 다양하게 나타난다. 독립영양성 와편모류들이 감염될 경우 그들의 광합성 능력이 크게 영향을 받으며, 감염위치(핵 또는 세포질)에 따라서 영향받는 속도가 다르다. 이 기생성 와편모류에 의한 감염은 광주성 및 유영속도 등에 영향을 미쳐서 숙주 와편모류의 일주 수직이동 양상과 같은 동태에도 커다란 영향을 끼칠 수 있다. 기생성 와편모류의 감염으로 인한 숙주의 사망은 자연 사망할 때보다 시간적으로 더 빨리 숙주로부터 다량의 유기물이 방출되게 할 수 있을 뿐만 아니라, 기생생물에 의한 감염은 감염기간 동안에도 숙주로부터 상당한 양의 용존 유기물이 인위적으로 방출되게 할 가능성이 있다. 기생생물에 감염시에는 상대적으로 크기가 큰 숙주 와편모류의 생체량이 사망과 동시에 크기가 작은 수많은 포자들로 생물학적 전환이 일어나고, 이어서 이들 포자들은 섬모류 등의 포식자들에게 먹이로서 이용i소화될 수 있으므로, 숙주 와편모류가 지녔던 물질과 에너지가 미소생물고리내에서 보다 오랜기간 동안 머무를 수 있는 가능성이 더욱 커질 것으로 생각된다 다양한 숙주-기생생물 관계에 대하여 다양한 물리, 화학적 환경요인과 여타의 생물학적 요인들이 어떠한 영향을 미치는지에 대한 보다 심도있는 연구는 플랑크톤 생태학과 적조역학에서 기생성 와편모류의 역할을 보다 잘 이해하도록 하는데 기여할 것으로 기대된다.