Insulin sensor cells for the analysis of insulin secretion responses in single living pancreatic β cells
文献情報
Takuto Ono, Takeshi Ikeda, Ryuichi Hirota, Takenori Ishida, Akio Kuroda
Investigation of the functions of insulin-secreting cells in response to glucose in single-living cells is essential for improving our knowledge on the pathogenesis of diabetes. Therefore, it is desired to develop a new convenient method that enables the direct detection of insulin secreted from single-living cells. Here, insulin-sensor-cells expressing a protein-based insulin-detecting probe immobilized on the extracellular membrane were developed to evaluate the insulin-secretion response in single-living pancreatic β cells. The protein-based insulin-detecting probe (NαLY) was composed of a bioluminescent protein (nano-luc), the αCT segment of the insulin receptor, L1 and CR domains of the insulin receptor, and a fluorescent protein (YPet). NαLY exhibited a bioluminescence resonance energy transfer (BRET) signal in response to insulin; thus, cells of Hepa1–6 line were genetically engineered to express NαLY on the extracellular membrane. The cells were found to act as insulin-sensor-cells, exhibiting a BRET signal in response to insulin. When the insulin-sensor-cells and pancreatic β cells (MIN6 cell line) were cocultured and stimulated with glucose, insulin-sensor-cells nearby pancreatic β cells showed the spike-shaped BRET signal response, whereas the insulin-sensor-cells close to one pancreatic β cell did not exhibit such signal response. However, all the insulin-sensor-cells showed a gradual increase in BRET signals, which were presumably attributed to the increase in insulin concentrations in the culture dish, confirming the function of these insulin-sensor-cells. Therefore, we demonstrated that heterogenetic insulin secretion in single-living pancreatic β cells could be measured directly using the insulin sensor cells.
関連文献
Access to phosphorus-containing cyclopenta[b]benzofuranols via a serendipitous cascade reaction promoted by a bifunctional phosphonium salt
Hui-Lin Hu, Siqiang Fang, Yulin Chen, Wei Wan, Yuqiao Zhou, Zhipeng Xu, Tianli Wang
DOI: 10.1039/D3QO00979C
Blue-light induced iron-catalyzed chemoselective α-alkylation and α-olefination of arylacetonitriles with alcohols
Dingguo Song, Shiliang Wang, Weiwei Huang, Rong Chen, Fangyuan Hu, Lingxin Cheng, Xianghua Zhao, Fei Ling, Weihui Zhong
DOI: 10.1039/D3QO01220D
Visible-light-induced electron donor–acceptor (EDA) complex-initiated synthesis of non-anomeric S-aryl glycosides
Jin-Yu Hou, Le Zhang, Shi-Yun He, Mei-Ling Ye, Jian Chen, Tian-Le Huang, Guang-Hui Lv, Li Hai, Zhong-Zhen Yang, Yong Wu
DOI: 10.1039/D3QO01495A
Ruthenium(ii)-catalyzed C–H activation/lactonization of aromatic acids with diazonaphthoquinones: regioselective synthesis of polycyclic coumarin frameworks
Chandan Kumar Giri, Sudeshna Mondal, Mahiuddin Baidya
DOI: 10.1039/D3QO01450A
Effect of polymer addition on the phase behavior of oil–water–surfactant systems of Winsor III type
Krister Holmberg
DOI: 10.1039/D3CP04730J
Direct electrochemical difluorination and azo-fluorination of gem-difluorostyrenes
Boao Li, Ziyan Zou, Naifu Zhou, Chengbo Sun, Pengju Feng, Hongsheng Li
DOI: 10.1039/D3QO00599B
Asymmetric synthesis of (E)-Secobutanolides: total synthesis and structural revision of (+)-Litseakolide F and G
Dong Guk Nam, Jin Won Lee, Hyun Sil Jung, Do Hyun Ryu
DOI: 10.1039/D3QO01523H
Recent advances in photochemical and electrochemical strategies for the synthesis of sulfonyl fluorides
Yu Zheng, Wenguang Lu, Tianting Ma, Shenlin Huang
DOI: 10.1039/D3QO01610B
Rh(iii)-catalyzed redox-neutral C–H [4 + 1] annulation of sulfoximines with α,α-difluoromethylene alkynes: diastereoselective synthesis of E-monofluoroalkenyl benzoisothiazole 1-oxides
Ting Wang, Zhi-Huan Peng, Liexin Wu, Qingwei Song, Qianying Li, Hui Gao, Zhongyi Zeng, Zhi Zhou, Wei Yi
DOI: 10.1039/D3QO01263H
こちらもおすすめ
3-イチチルビフェニルはどのように合成されますか?
3-イチチルビフェニルは、ビフェニルとイチプロピオニトリルを回収率約90%で反応させて合成されます。触媒は通常、亜リチウムホウ素を用います。
8-溴-5-三氟甲基喹啉はどのように合成されますか?
8-溴-5-三氟甲基喹啉は、5-トリフルオロメチル-2-メチル-1,3-ベンゼンジオールをブロモエタノールと反応させて生成します。この反応は塩基性条件下で行われ...
ジメチル4-(4,4,5,5-テトラメチル-1,3,2-ドioxaborolan-2-基)-2,6-ピリジンジカルボイル酸フェニルアミニドの代替品はありますか?
ジメチル4-(4,4,5,5-テトラメチル-1,3,2-ドioxaborolan-2-基)-2,6-ピリジンジカルボイル酸フェニルアミニドの代替品としては、4-...
N-(3,5-ヘキサクロロ-4-ピリドインイル)-8-メチオキシ-5-キノリンカーボン酸の市場動向や研究トレンドはどのようなものでしょうか?
N-(3,5-ヘキサクロロ-4-ピリドインイル)-8-メチオキシ-5-キノリンカーボン酸の市場動向は、主に産業用途での需要により影響を受けます。研究トレンドとし...
イソステアロイルグリセリルは安全ですか?
イソステアロイルグリセリルは一般的に安全性が高いとされていますが、過度な使用や個人差により皮�owsん炎などの反応が起こる可能性があります。使用前に医師に相談す...
1-(二苯甲基)-3,3-二氟-氮杂环丁烷の市場動向や研究トレンドはどうですか?
1-(二苯甲基)-3,3-二氟-氮杂环丁烷の市場動向は、医薬品や合成化学の研究分野で注目を集めています。新興研究は、該当化合物の合成改良と生体内での作用メカニズ...
3-チオフェンスチオールの物理化学的性質は何ですか?
3-チオフェンスチオールのCAS番号は7774-73-4です。結晶性の白色粉末で、分子量は122.17です。この化合物は水に微溶解し、エタノールやジクロロメタン...
2-Methyl-2-propanyl (2S)-2-(aminomethyl)-1-piperidinecarboxylateは安全ですか?
2-Methyl-2-propanyl (2S)-2-(aminomethyl)-1-piperidinecarboxylateは一定の安全性基準を満たしていま...
CAS番号1316822-90-8の化合物は安全ですか?
CAS番号1316822-90-8の化合物は安全性に関しては評価が不足していますが、一般的には生物学的に活性な物質であり、取り扱いには適切な安全防護措置が必要で...
Tert-butyl 2-(2-羟基乙基)哌嗪-1-羧酸はどのように保存すればよいですか?
Tert-butyl 2-(2-羟基乙基)哌嗪-1-羧酸は、冷暗所で保存し、直射日光から遠ざけてください。容器は密閉し、高湿度や高温を避けて保管してください。
掲載誌
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.









![2,4-Dichloro-6-isopropyl-5H-pyrrolo[3,4-d]pyrimidin-7(6H)-one structure 2,4-Dichloro-6-isopropyl-5H-pyrrolo[3,4-d]pyrimidin-7(6H)-one structure](https://static.chemtradehub.com/structs/107/1079649-94-7-ad4a.webp)



