• Title/Summary/Keyword: Cell-migration

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Combination Therapy of the Active KRAS-Targeting Antibody inRas37 and a PI3K Inhibitor in Pancreatic Cancer

  • Lee, Ji Eun;Woo, Min Gyu;Jung, Kyung Hee;Kang, Yeo Wool;Shin, Seung-Min;Son, Mi Kwon;Fang, Zhenghuan;Yan, Hong Hua;Park, Jung Hee;Yoon, Young-Chan;Kim, Yong-Sung;Hong, Soon-Sun
    • Biomolecules & Therapeutics
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    • 제30권3호
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    • pp.274-283
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    • 2022
  • KRAS activating mutations, which are present in more than 90% of pancreatic cancers, drive tumor dependency on the RAS/mitogen-activated protein kinase (MAPK) and phosphoinositide 3-kinase (PI3K)/AKT signaling pathways. Therefore, combined targeting of RAS/MAPK and PI3K/AKT signaling pathways may be required for optimal therapeutic effect in pancreatic cancer. However, the therapeutic efficacy of combined MAPK and PI3K/AKT signaling target inhibitors is unsatisfactory in pancreatic cancer treatment, because it is often accompanied by MAPK pathway reactivation by PI3K/AKT inhibitor. Therefore, we developed an inRas37 antibody, which directly targets the intra-cellularly activated GTP-bound form of oncogenic RAS mutation and investigated its synergistic effect in the presence of the PI3K inhibitor BEZ-235 in pancreatic cancer. In this study, inRas37 remarkably increased the drug response of BEZ-235 to pancreatic cancer cells by inhibiting MAPK reactivation. Moreover, the co-treatment synergistically inhibited cell proliferation, migration, and invasion and exhibited synergistic anticancer activity by inhibiting the MAPK and PI3K pathways. The combined administration of inRas37and BEZ-235 significantly inhibited tumor growth in mouse models. Our results demonstrated that inRas37 synergistically increased the antitumor activity of BEZ-235 by inhibiting MAPK reactivation, suggesting that inRas37 and BEZ-235 co-treatment could be a potential treatment approach for pancreatic cancer patients with KRAS mutations.

Hizikia fusiformis 추출물의 in vitro 및 in vivo에서 혈관신생 감소 연구 (Hizikia Fusiformis Hexane Extract Decreases Angiogenesis in Vitro and in Vivo)

  • 제갈명은;한유선;박시영;이지혁;이의연;김영진
    • 생명과학회지
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    • 제33권9호
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    • pp.703-712
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    • 2023
  • 기존 혈관에서 새로운 혈관을 형성하는 혈관 신생은 혈관 신생 조절인자에 의해 조절되는 다단계 과정이며 배아 발달, 만성 염증 및 상처 복구를 포함한 다양한 생리학적 과정에 필수적이다. 혈관 신생의 조절장애는 암, 자가 면역 질환, 류마티스 관절염, 심혈관 질환 및 상처 치유 지연과 같은 많은 질병을 유발한다. 그러나 효과적인 혈관신생 억제 약물은 제한되어 있으며, 최근 연구에서는 천연 자원에서 잠재적인 약물후보를 식별하는 데 중점을 두고 있다. 예를 들어, 해양 천연물은 항암, 항산화, 항염증, 항바이러스 및 상처 치유 효과를 입증했다. 따라서 본 연구에서는 톳(갈조류) 추출물의 혈관 신생 억제 효과를 확인했습니다. H. fusiformis 추출물은 인간 제대 정맥 내피 세포(HUVECs)에서 세포 이동, 침윤 및 관 형성을 억제하며, 동시에 Matrigel 겔 플러그 분석을 통해 생체 내 혈관 신생을 억제를 확인했다. 또한, 톳 추출물 처리 후 VEGF, Erk, Akt의 활성이 감소하는 것을 확인했다. 이 결과를 토대로 H. fusiformis 추출물이 in vitro 및 in vivo 혈관 신생을 억제함을 시사한다.

Hizikia fusiformis 클로로포름 추출물의 in vitro 및 in vivo 혈관신생 억제 연구 (Inhibitory Effect of Chloroform Extract of Marine Algae Hizikia Fusifomis on Angiogenesis)

  • 제갈명은;한유선;박시영;이지혁;이의연;김영진
    • 생명과학회지
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    • 제34권6호
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    • pp.399-407
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    • 2024
  • 혈관신생은 기존 혈관에서 새로운 혈관을 형성하는 과정이며, 이 현상은 성장, 치유, 월경주기의 변화 중에 발생한다. 종양의 경우, 혈관신생은 원발성 종양의 지속적인 성장, 전이 촉진, 전이성 종양 성장 지원 및 암 진행에 중요한 복잡하고 다면적인 과정이다. 혈관신생 장애는 암 발병, 자가면역 질환, 류마티스 관절염, 심혈관 질환 및 상처 치유 지연을 초래할 수 있다. 현재 유효한 혈관신생 억제약물은 제한된 수에 불과하다. 최근 연구에 따르면 해양 천연물이 혈관신생 억제효과를 나타내는 것으로 보고되고 있다. 이전 연구에서 Hizikia fusiformis의 핵산 추출물(HFC)이 in vitro 및 in vivo에서 혈관 신생 억제효과를 확인하고 보고하였다. 본 연구의 목적은 H. fusiformis의 클로로포름 추출물(HFC)의 혈관신생 억제 효과를 확인하는 것이다. HFC가 세포 이동, 침입 및 관 형성을 포함하여 HUVEC 세포에 미치는 영향을 조사하였고, 또한 마우스 Matrigel 겔 플러그 분석을 통해 생체 내 혈관 신생 억제 효과도 조사하였다. 또한 HFC 처리 후 혈관신생에 중요한 인자인 VEGF, FGFR의 발현이 억제되고, Erk, Akt의 활성이 감소하는 것을 확인하였다. 이러한 결과는 해양갈조류 톳(H. fusiformis)의 클로르포름 추출물이 in vitro 및 in vivo 혈관 신생을 억제함을 보여준다.

Change of Dendritic Cell Subsets Involved in Protection Against Listeria monocytogenes Infection in Short-Term-Fasted Mice

  • Young-Jun Ju;Kyung-Min Lee;Girak Kim;Yoon-Chul Kye;Han Wool Kim;Hyuk Chu;Byung-Chul Park;Jae-Ho Cho;Pahn-Shick Chang;Seung Hyun Han;Cheol-Heui Yun
    • IMMUNE NETWORK
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    • 제22권2호
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    • pp.16.1-16.20
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    • 2022
  • The gastrointestinal tract is the first organ directly affected by fasting. However, little is known about how fasting influences the intestinal immune system. Intestinal dendritic cells (DCs) capture antigens, migrate to secondary lymphoid organs, and provoke adaptive immune responses. We evaluated the changes of intestinal DCs in mice with short-term fasting and their effects on protective immunity against Listeria monocytogenes (LM). Fasting induced an increased number of CD103+CD11b- DCs in both small intestinal lamina propria (SILP) and mesenteric lymph nodes (mLN). The SILP CD103+CD11b- DCs showed proliferation and migration, coincident with increased levels of GM-CSF and C-C chemokine receptor type 7, respectively. At 24 h post-infection with LM, there was a significant reduction in the bacterial burden in the spleen, liver, and mLN of the short-term-fasted mice compared to those fed ad libitum. Also, short-term-fasted mice showed increased survival after LM infection compared with ad libitum-fed mice. It could be that significantly high TGF-β2 and Aldh1a2 expression in CD103+CD11b- DCs in mice infected with LM might affect to increase of Foxp3+ regulatory T cells. Changes of major subset of DCs from CD103+ to CD103- may induce the increase of IFN-γ-producing cells with forming Th1-biased environment. Therefore, the short-term fasting affects protection against LM infection by changing major subset of intestinal DCs from tolerogenic to Th1 immunogenic.

백서두개골 결손부에서 키토산/흡수성 콜라겐 전달체의 골재생 (The effect of chitosan/ACS on bone regeneration in rat calvarial defects)

  • 김수경;석헌주;김창성;조규성;채중규;김종관;최성호
    • Journal of Periodontal and Implant Science
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    • 제33권3호
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    • pp.457-474
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    • 2003
  • The ultimate objective of periodontal treatment is to get rid of an on-going periodontal disease and further regenerate the supporting tissue, which is already destroyed, functionally. Currently, the bone grafting operation using various kinds of bone grafting materials and the operation for induced regeneration of periodontal tissue using the blocking membrane are performed for regeneration of the destroyed periodontal tissue. However, there are respective limitations Galenical preparations, which are used for regeneration of periodontal of tissue, has less risk of rejective reaction or toxicity that may be incidental to degradation and their effect is sustainable. Thus, in case they are applicable to a clinic, they can he used economically. Chitosan has such compatibility, biological actions including antibacterial activity, acceleration of wound treatment, etc., and excellent mechanical characteristics, which has recently aroused more interest in it. Also, it has been reported that it promotes osteogenesis directly or indirectly by functioning as a matrix to promote migration and differentiation of a specific precussor cell (for example, osteoblast) and further inhibiting the function of such a cell as fibroblast to prevent osteogenesis. In this study, the pure chitosan solution, which was obtained by purifying chitosan, was used. However, since this chitosan is of a liquiform, it is difficult to sustain it in a defective region. It is, therefore, essential to use a carrier for delivering chitosan to, and sustaining it gradually in the defective region. In the calvarial defect model of the Sprague-Dawley rat, it is relatively easy to maintain a space. Therefore, in this study, the chitosan solution with which ACS was wetted was grafted onto the defective region, For an experimental model, a calvarial defect of rat m s selected, and a critical size of the defective region was a circular defect with a diameter of 8 mm. A group in which no treatment was conducted for the calvarial defect was set as a negative control group. Another group in which treatment was conducted with ACS only was set as a positive control group (ACS group). And another group in which treatment was conducted was conducted with by grafting the pure chitosan solution onto the defective region through ACS which was wetted with the chitosan solution was set an experimental group (Chitosan/ACS group). Chitosan was applied to the Sprague-Dawley rat's calvarial bone by applying ACS which was wetted with the chitosan solution, and each Sprague-Dawley rat was sacrificed respectively 2 weeks and 8 weeks after the operation for such application. Then, the treatment results were compared and observed histologically and his tometrically. Thereby, the following conclusions were obtained. 1. In the experimental group, a pattern was shown that from 2 weeks after the operation, vascular proliferation proceeded and osteogenesis proceeded through osteoblast infiltration, and at 8 week after the operation, ACS was almost absorbed, the amount of osteogensis was increased and many osteoid tissue layers were observed. 2. At 2 weeks after the operation, each amount of osteogenesis appeared to be 8.70.8 %, 13.62.3 % and 4.80.7 % respectively in the experimental group, the positive control group and the negative control group. Accordingly, it appeared to be higher in the Experimental group and the positive control group than in the negative control group, but there was no significant difference statistically (p<0.01). 3. At 8 weeks after the operation, each amount of osteogenesis appeared to be 62.26.1%, 17.42.5 % and 8.21.4 % respectively in the experimental group, the positive control group and the negative control group. Accordingly, it appeared to be substantially higher in the experimental group than in the positive control group and the negative control group, and there was a significant difference statistically (p<0.01). As a result of conducting the experiment, when ACS was used as a carrier for chitosan, chitosan showed effective osteogenesis in the perforated defective region of the Sprague-Dawley rat's calvarial bone.

Insulin-like growth factor-I 이 치주인대세포의 생물학적 활성도에 미치는 영향에 대한 연구 (THE STUDY ON THE EFFECTS OF THE INSULIN-LIKE GROWTH FACTOR-I ON THE BIOLOGICAL ACTIVITY OF THE HUMAN PERIODONTAL LIGAMENT CELLS)

  • 김성진;이재목;서조영
    • Journal of Periodontal and Implant Science
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    • 제24권2호
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    • pp.219-237
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    • 1994
  • 치주조직재생에 중요하게 생각되는 요건으로는 치근면의 상태, 전구세포의 증식, 치유 부의 상피조직배제, 치유부의 안정화를 들 수 있으며 이중 가장 중요한 요건중의 하나가 치유부에 치주조직재생을 도모할 수 있는 전구 세포가 실수부로 이주하여 부착과 증식, 분화를 통하여 교원질섬유를 포함한 결체조직의 부착과 백악질, 골조직을 재형성하는 것이다. 최근에 이러한 전구세포들을 자극하고 원치 하는 세포들을 저지하기 위한 방법으로 성장 인자에 대한 연구가 활발히 진행되고 있다 골조직을 조절하는 인자로 알려진 인슐린유사성장인자- I (Insulin-like growth factor-I)는 폴리펩타이드계 성장인자로서 골세포의 증식, 기질합성 등을 촉진시킨다고 보고되고 있으나, 치주조직 재생에 대한 IGF- I 의 영향을 잘 규명되어 있지 않으므로 배양된 치주인대세포에 IGF- I 을 농도별로 주입하여 세포의 증식능, 교원질 및 단백질 합성능, 알카린인산효소활성도를 측정해 보므로써 IGF- I 이 치주인대세포의 활성에 미치는 영향을 알아보고자 하였다. 교정치료를 위해 내원한 환자로부터 건강한 제일소구치를 발거하여 치주인대세포를 분리, 배양하여 IGF- I 을 주입시키지 않은 군을 대조군으로 하고, IGF- I 을 각각 0.1, 1, 10, 100 ng//ml로 주입시킨 군을 실험군으로 하여 DNA합성능, 총단백질과 교원질 합성능 및 알카린인산효소활성도를 측정하여 다음과 같은 결과를 얻었다. DNA 합성능에 미치는 IGF- I 의 효과는 농도가 증가함에 따라 0.1ng/ml를 제외하고는 DNA 합성능이 증가하는 경향을 보였고, 대조군에 비해 10, 100ng/ml투여군에서 통계적으로 유의한 차이(P<0/05)를 나타내었다. 치주인대세포의 총단백질 합성양에 미치는 IGF- I 의 효과는 농도가 증가함에 따라 총단백질 합성양이 증가하는 경향을 보였으며, 대조군에 비해 1, 10, 100ng/ml 투여군에서 통계학적으로 유의한 차이(P<0.001)를 나타내었다. 총단백질을 교원질(collagenase digestible protein : CDP)과 비교원성 단백질(non-collagenous protein : NCP)로 분류하여 비교하였을때 IGF- I 의 농도가 증가함에 따라 비교원성 단백질 합성양과 교원질 합성양이 증가하는 경향을 보였으며, 비교원성 단백질 합성양이 교원질 합성양보다 약간 높게 나타났고, 대조군에 비해 1, 10, 100ng/ml 투여군에서 통계적으로 유의한 차이(P<0.05, P<0.001)를 나타내었다. 총단백질에 대한 교원질합성의 상대적 비율은 농도가 증가함에 따라 각 군당 별차이를 보이지 않았으며, 대조군에 비해 통계적으로 유의한 차이 (P>0.05)를 나타내지 않았다. 알카린인산효소활성도에 미치는 IGF- I 의 효과는 모든군에서 7일째보다 14일째에서 약간 높은 알카린인산효소활성도롤 나타내었으며, 7, 14일 모두 농도가 증가함에 따라 효소활성도가 증가하였으며, 7일째 대조군에 비해 100ng/ml 투여군에서 통계적으로 유의한 차이(p<0.05)를 나타내었다.

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극저전류자극이 손상된 토끼 뇌의 별아교세포 증식에 미치는 효과 (The Effects of Microcurrent Stimulation on the Astrocytes Proliferation at Injured Brain of Rabbit)

  • 김지성;민경옥
    • 대한물리치료과학회지
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    • 제9권3호
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    • pp.107-119
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    • 2002
  • Astrocyte, which shares the greatest part of the brain (about 25%), is a land of glial cell that composes the central nervous system along with microglia, ependymal cell and oligodendroglia. It has 7-9nm of fibers in its cytoplasma, which are composed of glial fibrillary acidic protein (GFAP) and vimentin. As for the functions of the astrocyte, it has, so far, been supposed that the astrocyte will play a cytoskeletal role in maintaining the structure of the cerebrum, play a role as a blood-brain barrier so that it can induce migration of the neuron in its development and substances in the blood cannot go into the nervous tissue, and a role of immunology and phagocytosis. However, it was revealed today that it will be a role in preventing expansion of injury by attaching itself to the connective tissue such as the vessel and the pia mater when the nervous tissue or the arachnoid is injured. Microcurrent stimulation can control current, on the basis of A unit. That is, with such devices using it, it is possible to sense, from the outside, the injured current(wound current) of the lesion and to change it into the normal current, thereby promoting the restoration of the cells. In order to examine the effects of microcurrent stimulation on the injured astrocytes in the rabbits, this study was conducted with 24 New Zealand White Rabbit as its subjects, which were divided into 8 animals of the experiment group and 16 animals of the control group. After the animals in the experiment group were fixed to the stereotaxic apparatus, their hair was removed and their premotor area(association area) perforated by the micro-drill for skull-perforation with the depth of 8mm from the scalp. In one week after the injury, 4 animals in the control group and 8 animals in the experiment group were sacrificed and examined with immunohistochemical method. And in three weeks, the remaining 4 animals in the control group and 8 animals in the experiment group were also sacrificed and examined with the same way. The conclusion has been drawn as follows : In the control group sacrificed in one week after the injury, the astrocytes somewhat increased, compared with the normal animals, and in the group sacrificed in three weeks after the injury, they increased more (p < 0.05). The experiment group A in one week showed a little increase, but there was no significant differences, but the experiment group in three weeks showed more increase, compared with the experiment group in one week (p < 0.05). The experiment group B in one week showed more increase than the control group or the experiment group A, and the experiment group in three weeks showed more increase than the experiment group in one week (p < 0.05). Among the astrocytes, fibrous astrocytes were mostly observed, increasing as they are close to the lesion, and decreasing as they are remote from it. The findings show that microcurrent can cause the astrocytes to proliferate and that it will be more effective to stimulate the cervical part somewhat remote from the lesion rather than to directly stimulate the part of the lesion. Thus, microcurrent stimulation can be one of the methods that can activate the reaction of astrocytes, which is one of the mechanism for treating cerebral injury with hemorrhage. Therefore, this study will be used as basic research data for promoting restoration of functions in the patient with injury in the central nervous system.

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녹용약침(鹿茸藥鍼)이 CIA 모델 생쥐의 염증인자 생성억제에 미치는 영향 (The Ability of Cervus Elaphus Sibiricus Herbal Acupuncture to Inhibit the Generation of Inflammatory Enzymes on Collagen-induced Arthritis Mice)

  • 황종순;황지혜;이현진;이동건;강민주;백성욱;조현석;김경호;김갑성
    • Journal of Acupuncture Research
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    • 제24권6호
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    • pp.1-14
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    • 2007
  • Backgrounds : Rheumatoid Arthritis(RA) is known as the chronic inflammatory diseasethat induces persistent inflammation in the joint cavity. The destruction of cartilage occurs as the result of bones destoyed by pannus, several influential cytokines induced by the synovial capsulitis, varieties of proteinases, $O_2$ radicals, and the secondary degenerative changes of articular cartilage. The type 2 collagen-induced arthritis model is used in recent experimental research on rheumatoid arthritis. Cervus elaphus sibiricus (Nockyong) has the effect of relieving pain by nourishing the muscles, joints, and bones. It is also known to be efficacious in promoting and enhancing the immune system. The objective of this study was to investigate the effect of Cervus elaphus sibiricus herbal acupuncture to inhibit the generation of proinflammatory enzyme on type 2 collagen-induced arthritis. I investigated the inhibition of mRNA transcription of MIF(macrophage migration inhibitory factor), $TNF-{\alpha}$(Tumor necrosis $factor-{\alpha}$) and MMP-9 (matrix metalloproteinase-9) of Cervus elaphus sibiricus herbal acupuncture using an in vitro test. Also investigated was the inhibition of differentiation of Th 1 cells and activation of cytokines(MIF, $TNF-{\alpha}$, IL-6, MMP-9), which are known to cause initial RA ,and are also related to the morphology of the synovial membranes of the joint capsule, by an in vivo test, using CIA(collagen induced arthritis) model mice. Materials & methods : The laboratory animals used in this experiment were 4 week-old DBA female mice, weighing approximately 20 grams, and adjusted to the laboratory environment. The experiment was divided into the normal group(NOR)-no treated group, control group(CON)-CIA induced group, and sample group(SAM)-Cervus elaphus sibiricus herbal acupuncture treated group. RA was induced in the mice via injection of $50{\mu}{\ell}$ C II mixed CFA. The Cervus elaphus sibiricus herbal acupuncture solution was applied on $GB_{35}$(陽陵泉) for 26 days from the 3rd day of RA inducement. The concentration of the solution was determined via a MTT assay. To research the effect on the expression of MIF, $TNF-{\alpha}$ and MMP-9 mRNA, RT-PCR was performed on synovial membrane cells from the knee joint of CIA mice. C II induced RA knee joint's histo-chemical synovial membrane was observed using a specimen model via the Hematoxilin and Eosin dying technique. Results : The expression of mRNA of RA-related cytokines such as MIF, $TNF-{\alpha}$, and MMP-9 dosedependently decreased in the cell from the synovial membranes of the joint, which is treated with Cervus elaphus sibiricus herbal acupuncture solution. In mice treated with Cervus elaphus sibiricusherbal acupuncture, the damage of synovial membranes of the joint was lessened, and differentiation of Th 1 cells was suppressed. The activation of RA-related cytokines such as MIF was suppressed, and the generation of $TNF-{\alpha}$ and MMP-9 showed a statistically significant decreas. Conclusions : It is speculated that Cervus elaphus sibiricus herbal acupuncture has the therapeutic effect of palliating the damage of the tissue impaired by RA by inhibition of the initial RA progression and by regulating excessive differentiation of Th 1 cell as it suppresses the generation of RA-related cytokines during the highest stage of RA by acting on pro-inflammatory enzymes.

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NIH3T3와 NIH3T3(ras) 세포에서 Dynamin II 발현 및 형태적 비교 (Dynamin II Expression and Morphological Comparison of NIH3T3 and NIH3T3 (ras) Cells)

  • 이철우;김수관;최정윤;최백동;배춘식;정순정;정문진
    • Applied Microscopy
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    • 제35권3호
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    • pp.121-128
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    • 2005
  • Ras 신호전달체계는 세포내 다양한 결합 분자들과 더불어 세포의 분열과 세포의 이동에 관여한다. Dynamin 단백질은 endocytosis와 분비과정에서 vesicle를 분리하는데 관여하는 것으로 알려져 있으며, 3가지 아형으로 구분된다. Dynamin I은 신경조직에서 만 발현되고, dynamin II는 모든 조직에서 발현되지만 dynamin III는 정소를 포함한 생식기계에서만 발현된다. 선행된 연구에서 NIH3T3 세포를 이용하여 ras과발현 세포주를 만들었으며, dynamin II와 ras의 신호전달체계에 있는 Grb2가 결합한다는 것을 보고하였다. 따라서, 본 연구는 ras 단백질이 과발현되는 세포 (NIH3T3 (ras))와 대조세포인 NIH3T3의 형태학적인 차이점을 분석하고, 이 두 세포들에서 dynamin II 단백질의 발현의 차이를 비교하고자 하였다. Dynamin II의 발현차이를 분석하기 위해 형광염색을 하여 공초점 레이저현미경으로 세포내 분석을 하였으며, western blot을 시행하여 생화학적인 발현차이를 보았다. 또한, 두 세포의 미세구조적인 분석을 위하여 SEM과 TEM을 사용하였다. Dynamin II는 NIH3T3 (ras) 세포에서 발현이 증가 하였으며, NIH3T3 세포에 비하여 좀더 방추형이 었으며, 작은 세포질 돌기가 세포막을 따라 다수 신장되어있음이 관찰되었다. 또한, NIH3T3 (ras) 세포의 endocytotic vesicle이 형성되는 부위에서 dynamin II의 발현이 증가하였다. 이러한 결과로 dynamin II는 ras신호전달체계의한 신호전달분자로서 작용을 할 것으로 사료된다.

NIH3T3 세포주에서 LPS자극에 의한 분비백혈구단백분해효소억제제 (SLPI)의 단백질증가와 성장인자들의 발현 (Increased Protein of the Secretory Leukocyte Pretense Inhibitor (SLPI) and the Expression of Growth Factors in NIH3T3 Cells by LPS Stimulation)

  • 이상화;최백동;정순정;장현선;김병옥;임도선;박주철;왕관림;정문진
    • Applied Microscopy
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    • 제36권3호
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    • pp.165-172
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    • 2006
  • 분비백혈구단백분해효소억제제 (SLPI)는 염증 부위에서 중성구 엘라스타제에 의한 손상 작용에 대해 조직을 보호하는 역할을 한다. SLPI의 새로운 기능에 대한 연구들은 단백질분해효소억제제 역할보다는 선천적 면역반응 작용에 주로 관여 할 것임을 보고하였다. 따라서 본 연구는 섬유모세포 세포주(NIH3T3)에서 박테리아성지질다당류(LPS)자극에 의한 SLPI의 기능을 확인하기 위하여 LPS처리에 따른 여러 성장 인자들과 비교하여 SLPI의 발현을 알아보았다. 역전사효소 중합반응(RT-PCR)과 면역학적 단백질 검출법 (Western blot)은 LPS 처리 후 SLPI와 몇몇 성장 인자들(VEGF, bFGF, PDGF)의 mRNA와 단백질의 검출을 위해 수행하였다. NIH3T3 세포주를 mL당 100ng의 LPS에 각각 30, 60, 90분, 24, 48시간 동안 노출시켰다. RT-PCR 결과 SLPI와 VEGF mRNA는 LPS처리와는 상관없이 강한 발현 양상을 보였다. bFGF mRNA는 대조군과 같이 약하게 발현하였고, PDGF mRNA는 LPS 노출 시간에 따라 점진적으로 증가하는 양상을 나타냈다. 그러나 세포질 용해액과 세포 배양액에서 SLPI단백질의 수준은 LPS처리에 의해 증가하였다. 또한 광학 현미경 관찰과 전자 현미경 관찰은 LPS가 NIH3T3세포주의 형태학적인 변화를 유발시킴을 증명하였다. 따라서 LPS는 NIH3T3세포에서 SLPI의 발현 증가를 조절하며, 분비된 SLPI는 세포분열과 이동을 자극할 것이라는 결론을 얻었다. SLPI가 세포분열과 세포이동에 어떻게 관여하는지는 아직까지 규명되지 않은 실정이므로-추후에 SLPI단백질이나 유전자 도입을 통하여 세포 이동에 관련된 실험이 진행되어야 할 것이다.