• 제목/요약/키워드: pancreatic ${\beta}$-cells

검색결과 147건 처리시간 0.019초

Padina arborescens extract protects high glucose-induced apoptosis in pancreatic ${\beta}$ cells by reducing oxidative stress

  • Park, Mi Hwa;Han, Ji-Sook
    • Nutrition Research and Practice
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    • 제8권5호
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    • pp.494-500
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    • 2014
  • BACKGROUND/OBJECTIVES: This study investigated whether Padina arborescens extract (PAE) protects INS-1 pancreatic ${\beta}$ cells against glucotoxicity-induced apoptosis. MATERIALS/METHODS: Assays, including cell viability, lipid peroxidation, generation of intracellular ROS, NO production, antioxidant enzyme activity and insulin secretion, were conducted. The expressions of Bax, Bcl-2, and caspase-3 proteins in INS-1 cells were evaluated by western blot analysis, and apoptosis/necrosis induced by high glucose was determined by analysis of FITC-Annexin V/PI staining. RESULTS: Treatment with high concentrations of glucose induced INS-1 cell death, but PAE at concentrations of 25, 50 or $100{\mu}g/ml$ significantly increased cell viability. The treatment with PAE dose dependently reduced the lipid peroxidation and increased the activities of antioxidant enzymes reduced by 30 mM glucose, while intracellular ROS levels increased under conditions of 30 mM glucose. PAE treatment improved the secretory responsiveness following stimulation with glucose. The results also demonstrated that glucotoxicity-induced apoptosis is associated with modulation of the Bax/Bcl-2 ratio. When INS-1 cells were stained with Annexin V/PI, we found that PAE reduced apoptosis by glucotoxicity. CONCLUSIONS: In conclusion, the present study indicates that PAE protects against high glucose-induced apoptosis in pancreatic ${\beta}$ cells by reducing oxidative stress.

Agonist (P1) Antibody Converts Stem Cells into Migrating Beta-Like Cells in Pancreatic Islets

  • Eun Ji Lee;Seung-Ho Baek;Chi Hun Song;Yong Hwan Choi;Kyung Ho Han
    • Journal of Microbiology and Biotechnology
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    • 제32권12호
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    • pp.1615-1621
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    • 2022
  • Tissue regeneration is the ultimate treatment for many degenerative diseases, however, repair and regeneration of damaged organs or tissues remains a challenge. Previously, we showed that B1 Ab and H3 Ab induce stem cells to differentiate into microglia and brown adipocyte-like cells, while trafficking to the brain and heart, respectively. Here, we present data showing that another selected agonist antibody, P1 antibody, induces the migration of cells to the pancreatic islets and differentiates human stem cells into beta-like cells. Interestingly, our results suggest the purified P1 Ab induces beta-like cells from fresh, human CD34+ hematopoietic stem cells and mouse bone marrow. In addition, stem cells with P1 Ab bound to expressed periostin (POSTN), an extracellular matrix protein that regulates tissue remodeling, selectively migrate to mouse pancreatic islets. Thus, these results confirm that our in vivo selection system can be used to identify antibodies from our library which are capable of inducing stem cell differentiation and cell migration to select tissues for the purpose of regenerating and remodeling damaged organ systems.

배양된 이자섬 $\beta$세포의 미세구조적 변화와 인슐린 분포 양상 (Ultrastructural Change and Insulin Distribution of the Cultured Pancreatic Islet $\beta$-cell)

  • 민병훈;김수진
    • Applied Microscopy
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    • 제37권4호
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    • pp.249-258
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    • 2007
  • 이자섬은 이자를 구성하는 외분비조직에 둘러싸여 존재하는 내분비세포의 집단으로, 이자섬에서 분비되는 인슐린은 $\beta$세포에서 분비되는 호르몬이며, 세포질의 리보좀에서 합성되고 골지체를 경유하여 세포질로 방출되는 기작을 가지고 있다. 충분한 양의 이자섬 이식은 인슐린 의존형 당뇨병인 제1형 당뇨병에서 정상혈당을 회복시키고, 당뇨 합병증을 방지할 수 있는 치료방법으로 사용되고 있다. 하지만 당뇨병 환자에게 이식을 위한 이자섬의 양에 비해 공여자로부터 증여된 이자섬의 양은 제한적이다. 이러한 문제점은 이자섬의 증식으로 연구되고 있으나, 배양된 이자섬이 정상 조직내의 이자섬과 형태적 기능적으로 동일한 것인지에 관한 연구는 미비하였다. 따라서 본 연구에서는 분리된 이자섬과 배양된 이자섬을 구성하는 세포들의 내부구조의 변화를 주사전자현미경, 투과전자현미경을 이용하여 세포의 미세구조를 확인하고, 인슐린 항체를 이용한 $\beta$세포 내의 인슐린 분포양상을 확인하여 다음과 같은 결과를 얻었다. 분리된 이자섬의 $\beta$세포는 일반적인 핵 미토콘드리아, 세포질세망 그리고 인슐린 과립이 분포하고, 배양된 이자섬 $\beta$세포의 경우 분리된 이자섬에 비하여 일반적인 핵의 모습과 부피가 증가한 세포질과 미토콘드리아, 세포질세망 그리고 골지체의 발달이 이루어지는 것으로 관찰되었다. 인슐린 과립의 경우 분리된 이자섬에 비해 감소하며, 세포막 주위에 분포하는 것으로 관찰되었다. 배양된 이자섬에서 관찰되는 인슐린 과립 분포의 변화, 세포질세망의 증가, 골지체의 발달은 배양된 이자섬 $\beta$세포의 인슐린 생성 분비 기능의 향상과 부피의 증가가 이루어지기 위한 세포 내부의 형태적 변화가 이루어지는 것으로 추측된다.

Low LET X-ray가 췌장 ${\beta}$ 세포와 신경세포에 미치는 효과 (Effect on Pancreatic Beta Cells and Nerve Cells by Low LET X-ray)

  • 박광훈;김구환
    • 대한방사선기술학회지:방사선기술과학
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    • 제37권1호
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    • pp.21-28
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    • 2014
  • 배양된 췌장베타세포와 신경세포를 10% FBS (fetal bovine serum), 11.1 mM glucose의 normal 조건과 1% FBS, 30 mM glucose의 hyperglycemia 조건으로 배양하고, 저 LET X-선을 0.5 Gy/hr의 선량률로 총 선량이 0.5, 1, 1.5, 2, 2.5, 3, 3.5, 4, 4.5, 5 Gy가 되도록 저 LET 방사선을 조사한 후 MTT assay로 생존율을 측정하고 비교하였다. 분화된 췌장베타세포에 방사선을 조사하지 않았을 때는 normal 조건에 비해 hyperglycemia 조건의 생존율이 경미한 감소를 보였다. 그러나 X선의 총 선량이 점차 누적됨에 따라 normal 조건에서 생존율이 조금씩 감소하는 것에 비해 hyperglycemia 조건에서는 급격히 감소하여 시너지 효과를 나타냈다. 미분화된 신경세포에서는 방사선을 조사하지 않은 때도 normal 조건에 비해 hyperglycemia 조건의 생존율이 뚜렷하게 감소하였다. X선의 총 선량이 점차 누적됨에 따라 normal 과 hyperglycemia 조건 모두에서 비교적 급격한 세포사멸이 나타났지만 그 생존율의 감소비율이 거의 평행하게 진행되어 시너지 효과를 보이지 않았다.

Effect of Propofol, an Intravenous Anesthetic Agent, on $K_{ATP}$ Channels of Pancreatic ${\beta}-cells$ in Rats

  • Park, Eun-Jee;Song, Dae-Kyu;Cheun, Jae-Kyu;Bae, Jung-In;Ho, Won-Kyung;Earm, Yung-E
    • The Korean Journal of Physiology and Pharmacology
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    • 제4권1호
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    • pp.25-31
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    • 2000
  • ATP-sensitive potassium channels ($K_{ATP}$ channels) play an important role in insulin secretion from pancreatic beta cells. We have investigated the effect of propofol on $K_{ATP}$ channels in cultured single pancreatic beta cells of rats. Channel activity was recorded from membrane patches using the patch-clamp technique. In the inside-out configuration bath-applied propofol inhibited the $K_{ATP}$ channel activities in a dose-dependent manner. The half-maximal inhibition dose (ED50) was $48.6{\pm}8.4\;{\mu}M$ and the Hill coefficient was $0.73{\pm}0.11.$ Single channel conductance calculated from the slope of the relationship between single channel current and pipette potential $(+20{\sim}+100\;mV)$ was not significantly altered by propofol $(control:\;60.0{\pm}2.7\;pS,\;0.1\;mM\;propofol:\;58.7{\pm}3.5\;pS).$ However, mean closed time was surely increased. Above results indicate that propofol blocks the $K_{ATP}$ channels in the pancreatic beta cells in the range of its blood concentrations during anesthesia, suggesting a possible effect on insulin secretion and blood glucose level.

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Silymarin Inhibits Cytokine-Stimulated Pancreatic Beta Cells by Blocking the ERK1/2 Pathway

  • Kim, Eun Jeong;Kim, Jeeho;Lee, Min Young;Sudhanva, Muddenahalli Srinivasa;Devakumar, Sundaravinayagam;Jeon, Young Jin
    • Biomolecules & Therapeutics
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    • 제22권4호
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    • pp.282-287
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    • 2014
  • We show that silymarin, a polyphenolic flavonoid isolated from milk thistle (Silybum marianum), inhibits cytokine mixture (CM: TNF-${\alpha}$, IFN-${\gamma}$, and IL-$1{\beta}$)-induced production of nitric oxide (NO) in the pancreatic beta cell line MIN6N8a. Immunostaining and Western blot analysis showed that silymarin inhibits iNOS gene expression. RT-PCR showed that silymarin inhibits iNOS gene expression in a dose-dependent manner. We also showed that silymarin inhibits extracellular signal-regulated protein kinase-1 and 2 (ERK1/2) phosphorylation. A MEK1 inhibitor abrogated CM-induced nitrite production, similar to silymarin. Treatment of MIN6N8a cells with silymarin also inhibited CM-stimulated activation of NF-${\kappa}B$, which is important for iNOS transcription. Collectively, we demonstrate that silymarin inhibits NO production in pancreatic beta cells, and silymarin may represent a useful anti-diabetic agent.

Beneficial Effect of Lespedeza cuneata (G. Don) Water Extract on Streptozotocin-induced Type 1 Diabetes and Cytokine-induced Beta-cell Damage

  • Kim, Min Suk;Sharma, Bhesh Raj;Rhyu, Dong Young
    • Natural Product Sciences
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    • 제22권3호
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    • pp.175-179
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    • 2016
  • The aim of this study was to evaluate the anti-diabetic effects of the water extract of Lespedeza cuneata (LCW) using rat insulinoma (RIN) m5F cells and streptozotocin (STZ)-induced diabetic rats. The effect of LCW on the protection of pancreatic beta cells was assessed using MTT assay, and nitric oxide production was assessed using Griess reagent. STZ-induced diabetic rats were treated with 100 and 400 mg/kg body weight of LCW for 5 weeks. In results, LCW significantly protected cytokine-induced toxicity and NO production, and increased insulin secretion in RINm5F cells. LCW significantly decreased serum blood glucose, thiobarbituric acid reactive substances (TBARS), blood urea nitrogen (BUN) and advanced glycation end products (AGEs) levels, and renal fibronectin expression in STZ-induced diabetic rats. Also, LCW effectively improved BW loss in STZ-induced diabetic rats. Thus, our results suggest that LCW has a beneficial effect on cytokine-induced pancreatic beta cell damage and biomarkers of diabetic complication in hyperglycemic rats.

SIRT1 Knockdown Enhances the Differentiation of Human Embryonic Stem Cells into Pancreatic β Cells

  • Seo, Nan-Hee;Song, Hwa-Ryung;Han, Myung-Kwan
    • 한국발생생물학회지:발생과생식
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    • 제23권4호
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    • pp.391-399
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    • 2019
  • Nicotinamide is used to maturate pancreatic progenitors from embryonic stem cells (ESCs) into insulin-producing cells (IPCs). It has been known that nicotinamide inhibits the enzymatic activity of SIRT1, an NAD+-dependent deacetylase. Here we show that SIRT1 knockdown enhances the differentiation of human ESCs into IPCs. SIRT1 knockdown enhances the clustering size of IPCs and the expression of pancreatic genes including c-peptide, pancreas/duodenum homeobox protein 1 (PDX1), insulin, somatostatin, glucagon and Nkx6.1 in human ESC-derived IPCs. In addition, We found that IPCs differentiated from SIRT1 knockdowned human ESCs have more zinc compared to those from control human ESCs. Our data suggest that SIRT1 negatively regulates the differentiation of β cells from human ESCs.

췌장 베타세포에서 스트렙토조토신으로 유도한 인슐린 의존형 당뇨병 실험 모델 (Prediabetic In vitro Model in Pancreatic Beta Cells Induced by Streptozotocin)

  • 이인순;이인자;김경태
    • 약학회지
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    • 제41권2호
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    • pp.260-267
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    • 1997
  • To establish prediabetes in vitro model concerning the etiology of IDDM(Insulin Dependent Diabetes Mellitus) in cellular level we have designed prediabetes in vitro models in pa ncreatic beta cells. HIT-T15, RINm5F and isolated rat islets were chosen as pancreatic beta cells, and streptozotocin (STZ) used as diabetogenic agent. Degree of beta cell destruction to establish prediabetic in vitro model was determined by cell proliferation and insulin release using thymidine uptake and radio immuno assay. When HIT-T15 and RINm5F cells were treated with STZ, the degree of cell deterioration was dependent upon the origin and passage number of beta cells, and in the case of isolated islets STZ showed the more sensitivity than above two beta cell lines. The concentration and exposure time of STZ treatment to establish prediabetes in vitro model in beta cell lines and isolated rat islets were 2 ~ 10mM, 30 min. and 1 ~ 5mM, 30 min., respectively.

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Involvement of Estrogen Receptor-α in the Activation of Nrf2-Antioxidative Signaling Pathways by Silibinin in Pancreatic β-Cells

  • Chu, Chun;Gao, Xiang;Li, Xiang;Zhang, Xiaoying;Ma, Ruixin;Jia, Ying;Li, Dahong;Wang, Dongkai;Xu, Fanxing
    • Biomolecules & Therapeutics
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    • 제28권2호
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    • pp.163-171
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    • 2020
  • Silibinin exhibits antidiabetic potential by preserving the mass and function of pancreatic β-cells through up-regulation of estrogen receptor-α (ERα) expression. However, the underlying protective mechanism of silibinin in pancreatic β-cells is still unclear. In the current study, we sought to determine whether ERα acts as the target of silibinin for the modulation of antioxidative response in pancreatic β-cells under high glucose and high fat conditions. Our in vivo study revealed that a 4-week oral administration of silibinin (100 mg/kg/day) decreased fasting blood glucose with a concurrent increase in levels of serum insulin in high-fat diet/streptozotocin-induced type 2 diabetic rats. Moreover, expression of ERα, NF-E2-related factor 2 (Nrf2), and heme oxygenase-1 (HO-1) in pancreatic β-cells in pancreatic islets was increased by silibinin treatment. Accordingly, silibinin (10 μM) elevated viability, insulin biosynthesis, and insulin secretion of high glucose/palmitate-treated INS-1 cells accompanied by increased expression of ERα, Nrf2, and HO-1 as well as decreased reactive oxygen species production in vitro. Treatment using an ERα antagonist (MPP) in INS-1 cells or silencing ERα expression in INS-1 and NIT-1 cells with siRNA abolished the protective effects of silibinin. Our study suggests that silibinin activates the Nrf2-antioxidative pathways in pancreatic β-cells through regulation of ERα expression.