• 제목/요약/키워드: survival phenotype

검색결과 69건 처리시간 0.031초

Immunological Characteristics of Hyperprogressive Disease in Patients with Non-small Cell Lung Cancer Treated with Anti-PD-1/PD-L1 Abs

  • Kyung Hwan Kim;Joon Young Hur;Jiae Koh;Jinhyun Cho;Bo Mi Ku;June Young Koh;Jong-Mu Sun;Se-Hoon Lee;Jin Seok Ahn;Keunchil Park;Myung-Ju Ahn;Eui-Cheol Shin
    • IMMUNE NETWORK
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    • 제20권6호
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    • pp.48.1-48.11
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    • 2020
  • Hyperprogressive disease (HPD) is a distinct pattern of progression characterized by acceleration of tumor growth after treatment with anti-PD-1/PD-L1 Abs. However, the immunological characteristics have not been fully elucidated in patients with HPD. We prospectively recruited patients with metastatic non-small cell lung cancer treated with anti-PD-1/PD-L1 Abs between April 2015 and April 2018, and collected peripheral blood before treatment and 7-days post-treatment. HPD was defined as ≥2-fold increase in both tumor growth kinetics and tumor growth rate between pre-treatment and post-treatment. Peripheral blood mononuclear cells were analyzed by multi-color flow cytometry to phenotype the immune cells. Of 115 patients, 19 (16.5%) developed HPD, 52 experienced durable clinical benefit (DCB; partial response or stable disease ≥6 months), and 44 experienced non-hyperprogressive progression (NHPD). Patients with HPD had significantly lower progression-free survival (p<0.001) and overall survival (p<0.001). When peripheral blood immune cells were examined, the pre-treatment frequency of CD39+ cells among CD8+ T cells was significantly higher in patients with HPD compared to those with NHPD, although it showed borderline significance to predict HPD. Other parameters regarding regulatory T cells or myeloid derived suppressor cells did not significantly differ among patient groups. Our findings suggest high pre-treatment frequency of CD39+CD8+ T cells might be a characteristic of HPD. Further investigations in a larger cohort are needed to confirm our results and better delineate the immune landscape of HPD.

Role of Citrate Synthase in Acetate Utilization and Protection from Stress-Induced Apoptosis

  • Lee, Yong-Joo;Kang, Hong-Yong;Maeng, Pil Jae
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2008년도 International Meeting of the Microbiological Society of Korea
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    • pp.39-41
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    • 2008
  • The yeast Saccharomyces cerevisiae has been shown to contain three isoforms of citrate synthase (CS). The mitochondrial CS, Cit1, catalyzes the first reaction of the TCA cycle, i.e., condensation of acetyl-CoA and oxaloacetate to form citrate [1]. The peroxisomal CS, Cit2, participates in the glyoxylate cycle [2]. The third CS is a minor mitochondrial isofunctional enzyme, Cit3, and related to glycerol metabolism. However, the level of its intracellular activity is low and insufficient for metabolic needs of cells [3]. It has been reported that ${\Delta}cit1$ strain is not able to grow with acetate as a sole carbon source on either rich or minimal medium and that it shows a lag in attaining parental growth rates on nonfermentable carbon sources [2, 4, 5]. Cells of ${\Delta}cit2$, on the other hand, have similar growth phenotype as wild-type on various carbon sources. Thus, the biochemical basis of carbon metabolism in the yeast cells with deletion of CIT1 or CIT2 gene has not been clearly addressed yet. In the present study, we focused our efforts on understanding the function of Cit2 in utilizing $C_2$ carbon sources and then found that ${\Delta}cit1$ cells can grow on minimal medium containing $C_2$ carbon sources, such as acetate. We also analyzed that the characteristics of mutant strains defective in each of the genes encoding the enzymes involved in TCA and glyoxylate cycles and membrane carriers for metabolite transport. Our results suggest that citrate produced by peroxisomal CS can be utilized via glyoxylate cycle, and moreover that the glyoxylate cycle by itself functions as a fully competent metabolic pathway for acetate utilization in S. cerevisiae. We also studied the relationship between Cit1 and apoptosis in S. cerevisiae [6]. In multicellular organisms, apoptosis is a highly regulated process of cell death that allows a cell to self-degrade in order for the body to eliminate potentially threatening or undesired cells, and thus is a crucial event for common defense mechanisms and in development [7]. The process of cellular suicide is also present in unicellular organisms such as yeast Saccharomyces cerevisiae [8]. When unicellular organisms are exposed to harsh conditions, apoptosis may serve as a defense mechanism for the preservation of cell populations through the sacrifice of some members of a population to promote the survival of others [9]. Apoptosis in S. cerevisiae shows some typical features of mammalian apoptosis such as flipping of phosphatidylserine, membrane blebbing, chromatin condensation and margination, and DNA cleavage [10]. Yeast cells with ${\Delta}cit1$ deletion showed a temperature-sensitive growth phenotype, and displayed a rapid loss in viability associated with typical apoptotic hallmarks, i.e., ROS accumulation, nuclear fragmentation, DNA breakage, and phosphatidylserine translocation, when exposed to heat stress. Upon long-term cultivation, ${\Delta}cit1$ cells showed increased potentials for both aging-induced apoptosis and adaptive regrowth. Activation of the metacaspase Yca1 was detected during heat- or aging-induced apoptosis in ${\Delta}cit1$ cells, and accordingly, deletion of YCA1 suppressed the apoptotic phenotype caused by ${\Delta}cit1$ mutation. Cells with ${\Delta}cit1$ deletion showed higher tendency toward glutathione (GSH) depletion and subsequent ROS accumulation than the wild-type, which was rescued by exogenous GSH, glutamate, or glutathione disulfide (GSSG). Beside Cit1, other enzymes of TCA cycle and glutamate dehydrogenases (GDHs) were found to be involved in stress-induced apoptosis. Deletion of the genes encoding the TCA cycle enzymes and one of the three GDHs, Gdh3, caused increased sensitivity to heat stress. These results lead us to conclude that GSH deficiency in ${\Delta}cit1$ cells is caused by an insufficient supply of glutamate necessary for biosynthesis of GSH rather than the depletion of reducing power required for reduction of GSSG to GSH.

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원발성 소세포폐암에서 Microsatellite 분석을 이용한 Microsatellite 불안정화에 대한 연구 (A Study of Microsatellite Instability in Primary Small Cell Lung Cancers by Microsatellite Analysis)

  • 조은송;장준;박재민;신동환;김세훈;김영삼;장윤수;조철호;곽승민;이준구;정경영;김성규;이원영;김세규
    • Tuberculosis and Respiratory Diseases
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    • 제48권2호
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    • pp.180-190
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    • 2000
  • 연구배경: Microsatellite 돌연변이 유발유전자 표현형으로 나타나는 유전자 불안정화는 암 발생에 필요한 유전자 변이의 출현을 조장하는 것으로 알려져 있다. Merlo 등은 원발성 소세포폐암에서 빈번한 microsatellite 불안정화가 관찰됨을 보고하였으나 최근 Kim 등의 또 다른 보고에서는 검사를 시행한 loci중 오직 1%에서만 microsatellite instability가 관찰되어 상반된 결과를 보였다. 따라서 저자들은 종양 발생에 관여하는 원인을 찾는 노력의 일환으로 유전자 불안정화가 원발성 소세포폐암의 발생과 진행에 어떠한 병인적 중요성을 갖는지 확인하고, 외국의 결과와 비교하여 우리나라 환자들에서 유전적 변이의 차이점을 관찰하고자 하였으며, microsatellite 불안정화가 빈번히 관찰된다면 이를 우리나라 소세포폐암 환자들의 분자생물학적 조기 진단 및 환자의 예후 판정에도 활용할 수 있는지 알아보고자 하였다. 대상 및 방법: 연세대학교 의과대학 세브란스병원에서 원발성 소세포폐암으로 진단된 15 명의 남자 환자를 대상으로 하였다. 암조직과 이에 대응하는 정상 조직의 파라핀 포매 블록으로부터 DNA를 추출하였으며, 염색체 1p, 2p, 3p, 5q, 6p, 6q, 9p, 9q, 13q, 17p에 위치한 총 40개의 microsatellite markers를 이용하여 microsatellite 분석을 실시하였다. 결 과: 1) 대상 환자 15예중에서 LOH가 1개라도 관찰된 경우는 13예(86.7%) 이었다. 2) LOH가 관찰된 13예중 3예에서는 염색체 9p의 광범위한 지역에서 결손이 관찰되었다. 3) LOH는 염색체 2p에서 72.7%, 염색체 3p 40%, 염색체 5q 50%, 염색체 9p 46.7%, 염색체 13q 69.2%, 그리고 염색체 17p에서 66.7% 가 관찰되었다(Table 1). 4) 대상 환자 15예중에서 shifted bands가 1개라도 관찰된 경우는 9예(60%)이었다. 5) Shifted bands, 즉 microsatellite 불안정화를 보이는 9예중 altered loci는 2.5~52.5%( 평균 $9.4\pm16.19$)에서 관찰되었다(Table 2). 6) 검사한 총 600개 loci 중에서 shifted bands가 있는 경우는 34 loci로 5.7% 이었다(Table 2). 7) Shifted bands를 보이는 9예에서 LOH는 0~83.3% 까지 관찰되었으며, 중앙생존기간은 35주이었다. Shifted bands를 보이지 않는 6예에서 LOH는 0~83.3%까지 관찰되었으며, 중앙생존기간은 73주이었다(Table 1). 그러나 양군간의 중앙생존기간은 유의한 차이가 없었다(p=0.4712). 결 론: 원발성 소세포폐암 일부에서 여러 종양억제유전자들의 불활성화뿐 아니라 microsatellite 불안정화도 암발생에 관여하는 것으로 생각된다. 그러나 microsatellite 불안정화와 소세포폐암의 임상적 예후와의 연관성은 관찰할 수 없었다.

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비/비인강 비호즈킨 림프종의 임상양상과 예후 인자 : 면역 표현형의 임상적 의의 (Clinical Features and Prognostic Factors in 41 Patients of Primary Nasal/Nasopharyngeal Non-Hodgkin's Lymphoma: Prognostic Significance of Immunophenotype)

  • 박순서;서철원;박종범;박지운;임소덕;허주령;남순열;김상윤;이호규;장혜숙;김태원;이제환;김성배
    • 대한두경부종양학회지
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    • 제15권2호
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    • pp.149-155
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    • 1999
  • Objectives: To study the clinical features of the primary nasal/nasopharyngeal non-Hodgkin's lymphomas and to evaluate the implication of immunophenotyping as a prognostic factor. Patients and Methods: From January 1990 to December 1997,41 patients(median age, 41 years) of primary nasal/nasopharyngeal non-Hodgkin's lymphoma were studied. The clinical records and paraffin-embedded tissue blocks were reviewed retrospectively. The histologic features, immunophenotypic findings(pan-T, pan-B, CD3, CD56) and Epstein-Barr virus in situ hybridizatios were examined. The prognostic factors for clinical outcome were evaluated in these patients. According to Ann-Arbor system, there were 30 patiets(73%) with stage IE, 4(10%) with stage IIE, 3(7%) with stage IIIE, 4(10%) with stage IVE lymphoma. Among the patients with stage IE/IIE, 4 patients received local radiation alone, 4 received chemotherapy alone, 25 received combination chemotherapy and radiotherapy and 1 refused treatment. The patients with stage IIIE/IVE were given combination chemotherapy and radiotherapy. Results: Immunophenotyping were performed in 40 patients and staining results were as follows: 3(7%) patients with B cell, 17(42%) with T cell, 18(44%) with NK/T cell(CD56 positive), and two patients with unclassifiable result. Epstein-Barr(EB) virus in situ hybridization were performed in 28 patients and 23(82%) patients had positive EBV-encoded RNAs(EBERs). 21(55%) patients achieved a complete remission. There was no difference in complete remission between radiation alone and combination therapy. With median follow-up of 30 months, 5-years disease free survival of complete responders was 60% and 5-years overall survival rate was 36%. Multivariate analysis showed that better overall survival was related with absence of B symptoms, ECOG performance${\leq}1$ and non-NK cells. Conclusion: Most of all cases were positive for EBER. Since NK/T phenotype carried the worst prognosis, analysis for CD56 expression should be done. Further prospective studies were warranted to evaluate the role of chemotherapy in stage IE/IIE.

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Overview of Transforming Growth Factor β Superfamily Involvement in Glioblastoma Initiation and Progression

  • Nana, Andre Wendindonde;Yang, Pei-Ming;Lin, Hung-Yun
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권16호
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    • pp.6813-6823
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    • 2015
  • Glioblastoma, also known as glioblastoma multiforme (GBM), is the most aggressive of human brain tumors and has a stunning progression with a mean survival of one year from the date of diagnosis. High cell proliferation, angiogenesis and/or necrosis are histopathological features of this cancer, which has no efficient curative therapy. This aggressiveness is associated with particular heterogeneity of the tumor featuring multiple genetic and epigenetic alterations, but also with implications of aberrant signaling driven by growth factors. The transforming growth factor ${\beta}$ ($TGF{\beta}$) superfamily is a large group of structurally related proteins including $TGF{\beta}$ subfamily members Nodal, Activin, Lefty, bone morphogenetic proteins (BMPs) and growth and differentiation factor (GDF). It is involved in important biological functions including morphogenesis, embryonic development, adult stem cell differentiation, immune regulation, wound healing and inflammation. This superfamily is also considered to impact on cancer biology including that of GBM, with various effects depending on the member. The $TGF{\beta}$ subfamily, in particular, is overexpressed in some GBM types which exhibit aggressive phenotypes. This subfamily impairs anti-cancer immune responses in several ways, including immune cells inhibition and major histocompatibility (MHC) class I and II abolishment. It promotes GBM angiogenesis by inducing angiogenic factors such as vascular endothelial growth factor (VEGF), plasminogen activator inhibitor (PAI-I) and insulinlike growth factor-binding protein 7 (IGFBP7), contributes to GBM progression by inducing metalloproteinases (MMPs), "pro-neoplastic" integrins (${\alpha}v{\beta}3$, ${\alpha}5{\beta}1$) and GBM initiating cells (GICs) as well as inducing a GBM mesenchymal phenotype. Equally, Nodal promotes GICs, induces cancer metabolic switch and supports GBM cell proliferation, but is negatively regulated by Lefty. Activin promotes GBM cell proliferation while GDF yields immune-escape function. On the other hand, BMPs target GICS and induce differentiation and sensitivity to chemotherapy. This multifaceted involvement of this superfamily in GBM necessitates different strategies in anti-cancer therapy. While suppressing the $TGF{\beta}$ subfamily yields advantageous results, enhancing BMPs production is also beneficial.

The Site-Directed A184S Mutation in the HTH Domain of the Global Regulator IrrE Enhances Deinococcus radiodurans R1 Tolerance to UV Radiation and MMC Shock

  • Zhang, Chen;Zhou, Zhengfu;Zhang, Wei;Chen, Zhen;Song, Yuan;Lu, Wei;Lin, Min;Chen, Ming
    • Journal of Microbiology and Biotechnology
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    • 제25권12호
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    • pp.2125-2134
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    • 2015
  • IrrE is a highly conserved global regulator in the Deinococcus genus and contributes to survival from high doses of UV radiation, ionizing radiation, and desiccation. Drad-IrrE and Dgob-IrrE from Deinococcus radiodurans and Deinococcus gobiensis I-0 each share 66% sequence identity. However, Dgob-IrrE showed a stronger protection phenotype against UV radiation than Drad-IrrE in the D. radiodurans irrE-deletion mutant (ΔirrE), which may be due to amino acid residues differences around the DNA-binding HTH domain. Site-directed mutagenesis was used to generate a Drad-IrrE A184S single mutant, which has been characterized and compared with the ΔirrE mutant complemented strain with Drad-irrE, designated ΔirrE-E. The effects of the A184S mutation following UV radiation and mitomycin C (MMC) shock were determined. The A184S mutant displayed significantly increased resistance to UV radiation and MMC shock. The corresponding A184 site in Dgob-IrrE was inversely mutated, generating the S131A mutant, which exhibited a loss of resistance against UV radiation, MMC shock, and desiccation. qPCR analysis revealed that critical genes in the DNA repair system, such as recA, pprA, uvrA, and ddrB, were remarkably induced after UV radiation and MMC shock in the ΔirrE-IE and A184S mutants. These data suggested that A184S improves the ability against UV radiation and MMC shock, providing new insights into the modification of IrrE. We speculated that the serine residue may determine the efficiency of DNA binding, leading to the increased expression of IrrE-dependent genes important for protection against DNA damage.

Highly Expressed Integrin-α8 Induces Epithelial to Mesenchymal Transition-Like Features in Multiple Myeloma with Early Relapse

  • Ryu, Jiyeon;Koh, Youngil;Park, Hyejoo;Kim, Dae Yoon;Kim, Dong Chan;Byun, Ja Min;Lee, Hyun Jung;Yoon, Sung-Soo
    • Molecules and Cells
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    • 제39권12호
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    • pp.898-908
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    • 2016
  • Despite recent groundbreaking advances in multiple myeloma (MM) treatment, most MM patients ultimately experience relapse, and the relapse biology is not entirely understood. To define altered gene expression in MM relapse, gene expression profiles were examined and compared among 16 MM patients grouped by 12 months progression-free survival (PFS) after autologous stem cell transplantation. To maximize the difference between prognostic groups, patients at each end of the PFS spectrum (the four with the shortest PFS and four with the longest PFS) were chosen for additional analyses. We discovered that integrin-${\alpha}8$ (ITGA8) is highly expressed in MM patients with early relapse. The integrin family is well known to be involved in MM progression; however, the role of integrin-${\alpha}8$ is largely unknown. We functionally overexpressed integrin-${\alpha}8$ in MM cell lines, and surprisingly, stemness features including $HIF1{\alpha}$, VEGF, OCT4, and Nanog, as well as epithelial mesenchymal transition (EMT)-related phenotypes, including N-cadherin, Slug, Snail and CXCR4, were induced. These, consequently, enhanced migration and invasion abilities, which are crucial to MM pathogenesis. Moreover, the gain of integrin-${\alpha}8$ expression mediated drug resistance against melphalan and bortezomib, which are the main therapeutic agents in MM. The cBioPortal genomic database revealed that ITGA8 have significant tendency to co-occur with PDGFRA and PDGFRB and their mRNA expression were up-regulated in ITGA8 overexpressed MM cells. In summary, integrin-${\alpha}8$, which was up-regulated in MM of early relapse, mediates EMT-like phenotype, enhancing migration and invasion; therefore, it could serve as a potential marker of MM relapse and be a new therapeutic target.

항암제에 내성인 생쥐의 백혈병세포 L1210의 세포막 단백질의 변환 (Membrane Protein Alterations Associated with Anticancer Drug Resistance in Mouse Lymphoblastic Leukemia L1210 Cells)

  • 김성용;손성권;김재룡;김정희
    • Journal of Yeungnam Medical Science
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    • 제10권2호
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    • pp.432-444
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    • 1993
  • Adriamycin과 vincristine 각각에 내성인 생쥐의 림프아세포성 백혈병세포 L1210세포의 특성과 내성관계 단백질을 찾아내고 항암제의 세포내 분포를 관찰하였다. 항암제의 내성생성은 adriamycin이 $10^{-5}M$$10^{-6}M$에서 자란 세포를 L1210-$AdR_5$$-AdR_6$로 하고 vincristine은 $10^{-6}M$$10^{-7}M$에서 자란 세포를 L1210-$VcR_6$$-VcR_7$로 하였다. 감수성세포는 L1210으로 하였다. 내성세포의 성장속도는 감수성세포에 비해 느렸으며 doubling time은 L1210가 29.7시간, L1210-$AdR_5$가 68.7시간 $-VdR_6$가 58.2시간이었다. 복합내성은 내성인자로 표기되었고 L1210-$AdR_5$는 vincristine에 대해 76.4배, $-VcR_6$는 adriamycin에 대해 98.6배로 나타냈다. 감수성세포와 내성세포의 세포막 단백질을 비교한 결과 L1210-$AdR_5$에서는 220, 158, 88 Kd의 내성관계단백질이 나타났고 $-VcR_6$에서는 158, 140 및 88Kd의 내성관계단백질이 관찰되었다. 세포막 표면단백질을 $^{125}I$로 결합시켜 자가방사선상으로 분석하였다. 세포막 표면단백질에 결합되는 $^{125}I$의 정도는 L1210에 0.95% L1210-$AdR_5$에 5.4%, $-VcR_6$에 1.7%였다. 세포막표면단백질은 L1210-$AdR_5$에서는 158, 72.8 및 42.4 Kd의 단백질, $-VcR_6$에서는 300, 158, 72.8 및 42.4 Kd의 단백질이 관찰되었다.

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A Study on Anti-Bone Resorption & Osteoporosis by Taeyoungion-Jahage Extracts

  • ;;;;;신정식
    • 대한한방부인과학회지
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    • 제15권4호
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    • pp.61-75
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    • 2002
  • 유전자 재조합으로 제조한 사람 $interleukin-1{\beta}$ $(rhIL-1{\beta})$는 생쥐의 calvarial 골세포계에서 분리한 골아세포에 여러 가지 조절기능을 갖는 것으로 알려져 있다. 본 연구에서 $rhIL-1{\beta}$가 농도의존적으로 골세포에 영향을 주는지 해명하기 위하여 배양된 골아세포의 세포증식과 prostaglandin $E_2$합성 그리고 plasminogen activator활성에 대한 영향을 검토한 결과 이들을 촉진하였다. 그러나 비타민D에 따라 반응하는 골아세포의 특징으로 알려진 osteocalcin생합성과 alkaine phosphatase활성의 유도생성은 $rhIL-1{\beta}$에 의해 오히려 길항적이었다. 이러한 결과는 골세포대사의 병리학적인 조절과정에서 $IL-1{\beta}$가 골다공증의 병리학적 역할을 규명하는 새로운 결과이다. $IL-1{\beta}$에 의한 골흡수현상이 생쥐의 calvarial골세포에서 calcitonin처리로 크게 억제되어, 결과적으로 이러한 결과는 $IL-1{\beta}$에 의해 유발되는 골재흡수란 osteoclast에 의한다는 사실을 시사하였다. 한편, 한방에서 골다공증치료와 예방에 사용되는 대영전-자하거추출물의 기능을 해명하기 위하여, $IL-1{\beta}$-유발 $PGE_2$합성만을 특이적으로 저해하였다. 또한, 대영전-자하거 extract을 1시간 동안 여러 가지 농도로 전처리하고 다음으로 $PGE_2$-유도시약을 처리한 결과, $PGE_2$합성을 억제하였으며 동시에 $IL-1{\beta}$에 의해 유도된 plasminogen 의존적인 fibrinolysis을 억제하는 보호효과가 인정되었다. 한편, calcitonin처리가 $IL-1{\beta}$-촉진 골재흡수에 대한 저해활성을 보였으며 이러한 결과들은 calcitonin과 대영전-자하거 extract이 osteoclast매개성 골재흡수의 억제에 핵심적인 역할을 함을 시사하며 한방치료제로서의 근거를 제시하였다고 사료된다.

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