• 제목/요약/키워드: Cell disruption

검색결과 309건 처리시간 0.023초

재조합 생촉매를 이용한 Diazinon 제거 (Removal of Diazinon Using Recombinant Biocatalyst)

  • 최석순;서상환;강동균;차형준;권인찬
    • 공업화학
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    • 제22권5호
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    • pp.486-489
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    • 2011
  • 본 연구에서는 대장균 세포 표면에서 발현되는 유기인분해효소(organophosphorus hydrolase; OPH)를 이용하여 난분해성 및 환경독성물질로 알려진 diazinon의 효과적 처리가 이루어졌다. 이 실험에서는 $25^{\circ}C$ 배양 온도와 배지에 0.2 mM ethylenediamine tetraacetate (EDTA) 첨가 조건이 유기인분해 효소 생산에 효과적임을 알 수 있었다. 이 조건에서 성장한 대장균을 이용하여 초음파 파쇄공정이 수행되었을 때, 25, 50 mg/L diazinon는 각각 4.5, $7.2mg/g{\cdot}min$의 diazinon 제거 속도를 나타내었고, 두 농도(25, 50 ppm) 모두 90% 이상 제거 효율을 구할 수 있었다. 따라서 이러한 실험 결과들은 diazinon과 같은 독성 화합물을 친환경적으로 처리할 수 있는 생물학적 처리 시스템으로 활용될 수 있을 것이다.

3-Deoxysappanchalcone Inhibits Cell Growth of Gefitinib-Resistant Lung Cancer Cells by Simultaneous Targeting of EGFR and MET Kinases

  • Jin-Young Lee;Seung-On Lee;Ah-Won Kwak;Seon-Bin Chae;Seung-Sik Cho;Goo Yoon;Ki-Taek Kim;Yung Hyun Choi;Mee-Hyun Lee;Sang Hoon Joo;Jin Woo Park;Jung-Hyun Shim
    • Biomolecules & Therapeutics
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    • 제31권4호
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    • pp.446-455
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    • 2023
  • The mechanistic functions of 3-deoxysappanchalcone (3-DSC), a chalcone compound known to have many pharmacological effects on lung cancer, have not yet been elucidated. In this study, we identified the comprehensive anti-cancer mechanism of 3-DSC, which targets EGFR and MET kinase in drug-resistant lung cancer cells. 3-DSC directly targets both EGFR and MET, thereby inhibiting the growth of drug-resistant lung cancer cells. Mechanistically, 3-DSC induced cell cycle arrest by modulating cell cycle regulatory proteins, including cyclin B1, cdc2, and p27. In addition, concomitant EGFR downstream signaling proteins such as MET, AKT, and ERK were affected by 3-DSC and contributed to the inhibition of cancer cell growth. Furthermore, our results show that 3-DSC increased redox homeostasis disruption, ER stress, mitochondrial depolarization, and caspase activation in gefitinib-resistant lung cancer cells, thereby abrogating cancer cell growth. 3-DSC induced apoptotic cell death which is regulated by Mcl-1, Bax, Apaf-1, and PARP in gefitinib-resistant lung cancer cells. 3-DSC also initiated the activation of caspases, and the pan-caspase inhibitor, Z-VAD-FMK, abrogated 3-DSC induced-apoptosis in lung cancer cells. These data imply that 3-DSC mainly increased mitochondria-associated intrinsic apoptosis in lung cancer cells to reduce lung cancer cell growth. Overall, 3-DSC inhibited the growth of drug-resistant lung cancer cells by simultaneously targeting EGFR and MET, which exerted anti-cancer effects through cell cycle arrest, mitochondrial homeostasis collapse, and increased ROS generation, eventually triggering anti-cancer mechanisms. 3-DSC could potentially be used as an effective anti-cancer strategy to overcome EGFR and MET target drug-resistant lung cancer.

Effect of Various Pathological Conditions on Nitric Oxide Level and L-Citrulline Uptake in Motor Neuron-Like (NSC-34) Cell Lines

  • Shashi Gautam;Sana Latif;Young-Sook Kang
    • Biomolecules & Therapeutics
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    • 제32권1호
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    • pp.154-161
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    • 2024
  • Amyotrophic lateral sclerosis (ALS) is a fatal motor neuron disorder that causes progressive paralysis. L-Citrulline is a nonessential neutral amino acid produced by L-arginine via nitric oxide synthase (NOS). According to previous studies, the pathogenesis of ALS entails glutamate toxicity, oxidative stress, protein misfolding, and neurofilament disruption. In addition, L-citrulline prevents neuronal cell death in brain ischemia; therefore, we investigated the change in the transport of L-citrulline under various pathological conditions in a cell line model of ALS. We examined the uptake of [14C]L-citrulline in wild-type (hSOD1wt/WT) and mutant NSC-34/ SOD1G93A (MT) cell lines. The cell viability was determined via MTT assay. A transport study was performed to determine the uptake of [14C]L-citrulline. Quantitative real-time polymerase chain reaction (qRT-PCR) analysis was performed to determine the expression levels of rat large neutral amino acid transported 1 (rLAT1) in ALS cell lines. Nitric oxide (NO) assay was performed using Griess reagent. L-Citrulline had a restorative effect on glutamate induced cell death, and increased [14C]L-citrulline uptake and mRNA levels of the large neutral amino acid transporter (LAT1) in the glutamate-treated ALS disease model (MT). NO levels increased significantly when MT cells were pretreated with glutamate for 24 h and restored by co-treatment with L-citrulline. Co-treatment of MT cells with L-arginine, an NO donor, increased NO levels. NSC-34 cells exposed to high glucose conditions showed a significant increase in [14C]L-citrulline uptake and LAT1 mRNA expression levels, which were restored to normal levels upon co-treatment with unlabeled L-citrulline. In contrast, exposure of the MT cell line to tumor necrosis factor alpha, lipopolysaccharides, and hypertonic condition decreased the uptake significantly which was restored to the normal level by co-treating with unlabeled L-citrulline. L-Citrulline can restore NO levels and cellular uptake in ALS-affected cells with glutamate cytotoxicity, pro-inflammatory cytokines, or other pathological states, suggesting that L-citrulline supplementation in ALS may play a key role in providing neuroprotection.

HT-22 신경세포에서 아밀로이드 베타 펩티드에 의한 미토콘드리아와 세포 손상 기전에서 FUN14 도메인 함유 단백 1의 역할 (FUN14 Domain-Containing Protein 1 Is Involved in Amyloid Beta Peptide-Induced Mitochondrial Dysfunction and Cell Injury in HT-22 Neuronal Cells)

  • 강재훈;우재석
    • 생명과학회지
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    • 제34권1호
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    • pp.37-47
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    • 2024
  • Fun14 도메인 함유 단백 1(Fun14 domain-containing protein 1, FUNDC1)은 미토콘드리아 외막에 존재하는 단백질로, 미토콘드리아의 마이토파지(mitophage) 기전 조절에 관여하는 것으로 알려져 있다. 본 연구에서는 해마 뉴런 기원의 HT-22 세포에서 아밀로이드 베타 펩티드(Aβ)에 의한 미토콘드리아와 세포 손상 과정에서 FUNDC1의 개재 가능성과 역할을 조사하였다. HT-22 세포에서 Aβ를 처리하면 처리 시간에 의존적으로 FUNDC1의 발현 감소가 관찰되었다. 또한 MTT 환원능과 세포 내 ATP 농도, 미토콘드리아 막전압의 감소, 반응성 산소종의 생성과 미토콘드리아 Ca2+ 부하의 증가 등 미토콘드리아의 기능적 손상을 나타내는 지표들의 변화와 함께 세포사멸의 증가가 관찰되었다. FUNDC1의 발현을 일시적으로 차단한 세포군에서도 미토콘드리아의 기능적 손상을 나타내는 지표 변화와 세포사멸의 증가가 관찰되었다. 반면에 FUNDC1을 일시적으로 과발현시킨 세포군에서는 Aβ 처리에 의한 미토콘드리아 손상과 세포 사멸이 유의하게 억제되었다. 이와 같은 결과들은 Aβ에 의한 미토콘드리아와 세포 손상 기전에 FUNDC1이 중요하게 관여할 가능성을 시사한다.

Gentamicin이 적혈구막을 통한 $Na^+$ 이동에 미치는 영향 (Effect of Gentamicin on Sodium Transport in Human Erythrocytes)

  • 김경효;박계숙;김희진;신호임;안미라;강복순
    • The Korean Journal of Physiology
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    • 제23권1호
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    • pp.23-34
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    • 1989
  • Gentamicin (GM) is a polybasic, aminoglycoside antibiotic used frequently for the treatment of serious gram-negative infections. The major limiting factors in the clinical use of GM as well as other aminoglycoside antibiotics are their nephrotoxicity and ototoxicity. The primary mechanism of cell injury in aminoglycoside toxicity appears to be the disruption of normal membrane function and the inhibition of $Na^{+}-K^{+}$ ATPase activity. There are both indirect and direct evidences which suggests that the effect of aminoglycoside antibiotics on $Na^{+}-K^{+}$ ATPase may explain, or contribute to, their toxicity. It has been shown that aminoglycoside reduce total ATPase activity (Kaku et al., 1973) and $Na^{+}-K^{+}$ ATPase activity (linuma et al., 1967) in the stria vascularis and spiral ligament of the guinea-pig cochlea. Lipsky and Lietman (1980) reported that aminoglycoside antibitoics inhibited the activity of $Na^{+}-K^{+}$ ATPase in microsomal fractions of the cortex and medulla of the guinea-pig kidney, isolated rat renal tubule and human erythrocyte ghosts. The present invstigation was undertaken to elucidate the mechanism of GM on human erythrocytes by examining its effect on $Na^{+}-K^{+}$ ATPase activity, actives sodium and potassium transport across red blood cell and $^{3}H-ouabain$ binding to red blood cell membranes. The results obtained are summarized as follows: 1) CM inhibited significantly both the activity of total ATPase and $Na^{+}-K^{+}$ ATPase at all concentrations tested. 2) GM inhibited active $^{22}Na$ efflux across red blood cell. When ouabain is present, the rate of $^{22}Na$ efflux was completely inhibited. When both GM and ouabain were added, the inhibitory effect of active $^{22}Na$ efflux was more pronounced. 3) Active $^{86}Rb$ influx was inhibited significantly by GM. In the presence of ouabain, the rate of $^{86}Rb$ influx is markedly inhibited. But $^{86}Rb$ influx is not appreciably altered by the presence of both GM and ouabain. 4) In the presence of GM, $^{3}H-ouabain$ binding to red blood cell membrane increased. From the above results, it may be concluded that the inhibition of active sodium and potassium transport across red blood cell by gentamicin appears to be due to the inhibition of $Na^{+}-K^{+}$ ATPase activity and an increase in ouabain binding to red blood cell membranes.

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고농도 당에 노출된 혈관 내피세포에서 미토콘드리아 의존성 세포사멸 기작 활성화에 미치는 diazoxide의 억제 효과 (Diazoxide Suppresses Mitochondria-dependent Apoptotic Signaling in Endothelial Cells Exposed to High Glucose Media)

  • 정현주;김태현;우재석
    • 생명과학회지
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    • 제29권12호
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    • pp.1393-1400
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    • 2019
  • 본 연구에서는 사람의 제대정맥 내피세포에서 고농도 당에 의해 유도되는 세포사멸과 연관된 미토콘드리아의 기능적 지표 변화에 미치는 diazoxide의 효과를 관찰하였다. 고농도 당에 노출된 내피세포에서 세포사멸이 시간에 따라 증가하였고, caspase 3와 8, 9의 활성 증가가 동반되었다. Caspase 3와 9의 억제제들이 세포사멸을 감소시킨 반면 caspase 8의 억제제는 효과가 없었다. 고농도 당에 노출된 세포에서 미토콘드리아 막전위의 탈분극과 막투과도의 증가, 치토크롬 C (cytochrome C)의 유리가 동반됨을 관찰할 수 있었다. Diazoxide는 고농도 당에 의한 미토콘드리아 의존성 세포사멸 신호의 활성화를 억제하였다. Diazoxide의 이러한 효과들은 미토콘드리아막의 ATP-억제성 칼륨통로 차단제인 5-hydroxydecanoate에 의해 차단되었다. 이상의 결과들을 종합하면 diazoxide가 미토콘드리아막의 ATP-억제성 칼륨통로 개방을 통해 미토콘드리아 의존성 세포사멸 신호기작의 활성화를 차단하여 고농도 당에 의해 유도되는 세포사멸을 억제하는 것으로 사료된다.

Phlojodicarpus sibiricus와 Artemisia kruhsiana Besser 추출물의 항림프종 효과 분석 (Anti-lymphoma Activities of Phlojodicarpus sibiricus and Artemisia kruhsiana Besser Extracts)

  • 김지수;김동욱;남제현;전별은;재나 오클롭코바;이스마일 줄푸가로프;김상우
    • 생명과학회지
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    • 제30권4호
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    • pp.379-385
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    • 2020
  • Phlojodicarpus sibiricus와 Artemisia kruhsiana Besser는 러시아 극한 지방에서 자생하며, 민간요법으로 널리 쓰여 왔다. 최근 연구에 따르면, 두 식물 추출액(PSE와 AKBE)은 항비만효과, 혈관신생 억제 효과 등 다양한 의학적 효과를 가진 것으로 나타났다. 본 연구논문에서는 PSE와 AKBE의 항림프종 효과와 기작을 분석하였다. PSE와 AKBE를 다양한 유전적 변이를 가진 DLBCL 세포주에 처리하였을 때, 농도 의존적으로 세포 생존율이 감소하였다. 하지만, 마우스의 골수나 비장으로부터 분리한 정상 세포에는 거의 영향을 미치지 않는 것으로 보아, 두 식물 추출액의 세포사멸 효과는 종양세포 특이적인 것으로 예상되며, 환자에 적용할 경우 부작용이 최소한만 나타날 것으로 예상된다. PSE와 AKBE의 세포사멸 효과는 Bcl-2, Bcl-xL, 그리고 Mcl-1 등의 anti-apoptotic Bcl-2 family member 유전자의 감소로 인한 미토콘드리아의 막 전위 붕괴에 기인함을 증명하였다. 흥미롭게도, 두 식물 추출액에 의한 세포사멸 효과는 Myc 종양유전자와는 독립적으로 일어났다. 이 결과를 종합하면, PSE와 AKBE는 항림프종 효과를 보유하고 있으며, 추후 연구를 통하여 세포사멸에 관여하는 단일 물질을 분리할 경우, 기존의 항암제를 대체할 수 있는 새로운 방법을 제시할 수 있을 것으로 기대된다.

Utilizing cell-free DNA to validate targeted disruption of MYO7A in rhesus macaque pre-implantation embryos

  • Junghyun Ryu;Fernanda C. Burch;Emily Mishler;Martha Neuringer;Jon D. Hennebold;Carol Hanna
    • 한국동물생명공학회지
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    • 제37권4호
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    • pp.292-297
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    • 2022
  • Direct injection of CRISPR/Cas9 into zygotes enables the production of genetically modified nonhuman primates (NHPs) essential for modeling specific human diseases, such as Usher syndrome, and for developing novel therapeutic strategies. Usher syndrome is a rare genetic disease that causes loss of hearing, retinal degeneration, and problems with balance, and is attributed to a mutation in MYO7A, a gene that encodes an uncommon myosin motor protein expressed in the inner ear and retinal photoreceptors. To produce an Usher syndrome type 1B (USH1B) rhesus macaque model, we disrupted the MYO7A gene in developing zygotes. Identification of appropriately edited MYO7A embryos for knockout embryo transfer requires sequence analysis of material recovered from a trophectoderm (TE) cell biopsy. However, the TE biopsy procedure is labor intensive and could adversely impact embryo development. Recent studies have reported using cell-free DNA (cfDNA) from embryo culture media to detect aneuploid embryos in human in vitro fertilization (IVF) clinics. The cfDNA is released from the embryo during cell division or cell death, suggesting that cfDNA may be a viable resource for sequence analysis. Moreover, cfDNA collection is not invasive to the embryo and does not require special tools or expertise. We hypothesized that selection of appropriate edited embryos could be performed by analyzing cfDNA for MYO7A editing in embryo culture medium, and that this method would be advantageous for the subsequent generation of genetically modified NHPs. The purpose of this experiment is to determine whether cfDNA can be used to identify the target gene mutation of CRISPR/Cas9 injected embryos. In this study, we were able to obtain and utilize cfDNA to confirm the mutagenesis of MYO7A, but the method will require further optimization to obtain better accuracy before it can replace the TE biopsy approach.

Inhibition of Langerhans cell function by UVB radiation

  • Okamoto, Hiroyuki;Mizuno, Kana;Horio, Takeshi
    • Journal of Photoscience
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    • 제9권2호
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    • pp.190-193
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    • 2002
  • The functional disruption of Langerhans cells (LC) by UVB radiation is involved in antigen-specific immunosuppression of contact hypersensitivity. We tested whether UVB radiation inhibits the endocytotic activity of LC, which leads to impaired subsequent migration and maturation. Human monocyte-derived LC that took up lucifer yellow (L Y) or FITC-dextran (Fd) exclusively migrated in response to 6Ckine and matured. Exposing LC to 10-40 mJ/cm$^2$ of UVB radiation reduced their endocytotic activity in fluid phase pinocytosis (measured by uptake of LY) and in receptor-mediated endocytosis (measured by uptake of Fd). Membrane ruffling and CD32 expression were also suppressed by UVB radiation. UVB-irradiated, endocytosing LC had less movement towards 6Ckine, expressed less CD54 and CD86, and had less effective stimulatory activity in allo-MLR than nonirradiated, endocytosing LC. Endocytosis up-regulated TNF-$\alpha$ production by LC, but prior UVB radiation inhibited this enhancement. The finding that impaired endocytosis of LC by UVB radiation inhibits subsequent migration and maturation was also confirmed in murine epidermal cells obtained from unirradiated and 2OmJ/cm$^2$ of UVB-irradiated skin.

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A Preparative Purification Process for Recombinant Hepatitis B Core Antigen Using Online Capture by Expanded Bed Adsorption Followed by Size-Exclusion Chromatography

  • Ho, Chin Woi;Tan, Wen Siang;Chong, Fui Chin;Ling, Tau Chuan;Tey, Beng Ti
    • Journal of Microbiology and Biotechnology
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    • 제19권4호
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    • pp.416-423
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    • 2009
  • Hepatitis B core antigen(HBcAg) is an important serological marker used in the diagnosis of hepatitis B virus(HBV) infections. In the current study, a fast and efficient preparative purification protocol for truncated HBcAg from Escherichia coli disruptate was developed. The recombinant HBcAg was first captured by anion exchange expanded bed adsorption chromatography integrated with a cell disruption process. This online capture process has shortened the process time and eliminated the "hold-up" period that may be detrimental to the quality of target protein. The eluted product from the expanded bed adsorption chromatography was subsequently purified using size-exclusion chromatography. The results showed that this novel purification protocol achieved a recovery yield of 45.1% with a product purity of 88.2%, which corresponds to a purification factor of 4.5. The recovered HBcAg is still biologically active as shown by ELISA test.