Texas Red™ 1,2-Dihexadecanoyl-sn-Glycero-3-Phosphoethanolamine, Triethylammonium Salt (Texas Red™ DHPE)
Texas Red&trade; 1,2-Dihexadecanoyl-<i>sn</i>-Glycero-3-Phosphoethanolamine, Triethylammonium Salt (Texas Red&trade; DHPE)
Invitrogen™

Texas Red™ 1,2-Dihexadecanoyl-sn-Glycero-3-Phosphoethanolamine, Triethylammonium Salt (Texas Red™ DHPE)

リン脂質であるTexas Red™ 1,2-dihexadecanoyl-snグリセロ-3-ホスホエタノールアミン、トリエチルアンモニウム塩(Texas Red™ DHPE)は、明るい赤色蛍光のTexas Red™色素詳細を見る
製品番号(カタログ番号)数量
T1395MP1 mg
製品番号(カタログ番号) T1395MP
価格(JPY)
32,100
온라인 행사
Ends: 27-Mar-2026
53,600
割引額 21,500 (40%)
1 mg
お問い合わせください ›
数量:
1 mg
リン脂質であるTexas Red™ 1,2-dihexadecanoyl-snグリセロ-3-ホスホエタノールアミン、トリエチルアンモニウム塩(Texas Red™ DHPE)は、明るい赤色蛍光のTexas Red™色素(励起/最大発光約595/615 nm)でヘッドグループに標識されています。
研究用にのみ使用できます。診断用には使用いただけません。
仕様
化学物質名または材質Phospholipids
励起/発光583/601 nm
推奨保存方法Store in freezer (-5°C to -30°C) and protect from light.
分子量(g/mol)1381.85
物理的フォームSolid
製品ラインTexas Red
数量1 mg
Unit Size1 mg

引用および参考文献 (65)

引用および参考文献
Abstract
Fabrication of phospholipid bilayer-coated microchannels for on-chip immunoassays.
Authors:Yang T, Jung S, Mao H, Cremer PS
Journal:Anal Chem
PubMed ID:11199961
'Herein we describe a new class of microfluidic immunoassays based upon solid supported lipid bilayers. Two-dimensionally fluid bilayer material, which can accommodate multivalent binding between surface-bound ligands and aqueous receptors, was coated on the surface of poly(dimethylsiloxane) microchannels. The bilayers contained dinitrophenyl (DNP)-conjugated lipids for binding with bivalent anti-DNP antibodies. ... More
Restriction of receptor movement alters cellular response: physical force sensing by EphA2.
Authors:Salaita K, Nair PM, Petit RS, Neve RM, Das D, Gray JW, Groves JT,
Journal:Science
PubMed ID:20223987
'Activation of the EphA2 receptor tyrosine kinase by ephrin-A1 ligands presented on apposed cell surfaces plays important roles in development and exhibits poorly understood functional alterations in cancer. We reconstituted this intermembrane signaling geometry between live EphA2-expressing human breast cancer cells and supported membranes displaying laterally mobile ephrin-A1. Receptor-ligand binding, ... More
Formation of supported phospholipid bilayers on molecular surfaces: role of surface charge density and electrostatic interaction.
Authors:Cha T, Guo A, Zhu XY
Journal:Biophys J
PubMed ID:16449198
'Electrostatic interaction is known to play important roles in the adsorption of charged lipids on oppositely charged surfaces. Here we show that, even for charge neutral (zwitterionic) lipids, electrostatic interaction is critical in controlling the adsorption and fusion of lipid vesicles to form supported phospholipid bilayers (SPBs) on surfaces. We ... More
Optical detection of ion-channel-induced proton transport in supported phospholipid bilayers.
Authors:Yang TH, Yee CK, Amweg ML, Singh S, Kendall EL, Dattelbaum AM, Shreve AP, Brinker CJ, Parikh AN,
Journal:Nano Lett
PubMed ID:17629349
'The integration of ion-channel transport functions with responses derived from nanostructured and nanoporous silica mesophase materials is demonstrated. Patterned thin-film mesophases consisting of alternating hydrophilic nanoporous regions and hydrophobic nanostructured regions allow for spatially localized proton transport via selective dimerization of gramicidin in lipid bilayers formed on the hydrophilic regions. ... More
The location of fluorescence probes with charged groups in model membranes.
Authors:Kachel K, Asuncion-Punzalan E, London E
Journal:Biochim Biophys Acta
PubMed ID:9814853
'The location of commonly used charged fluorescent membrane probes in membranes was determined in order to: (1) investigate the relationship between the structure of hydrophobic molecules and their depth within membranes; and (2) aid interpretation of experiments in which these fluorescent probes are used to examine membrane structure. Membrane depth ... More