BODIPY™ TR Cadaverine (5-(((4-(4,4-Difluoro-5-(2-Thienyl)-4-Bora-3a,4a-Diaza-s-Indacene-3-yl)phenoxy)acetyl)amino)pentylamine, Hydrochloride)
BODIPY&trade; TR Cadaverine (5-(((4-(4,4-Difluoro-5-(2-Thienyl)-4-Bora-3a,4a-Diaza-<i>s</i>-Indacene-3-yl)phenoxy)acetyl)amino)pentylamine, Hydrochloride)
Invitrogen™

BODIPY™ TR Cadaverine (5-(((4-(4,4-Difluoro-5-(2-Thienyl)-4-Bora-3a,4a-Diaza-s-Indacene-3-yl)phenoxy)acetyl)amino)pentylamine, Hydrochloride)

アミンを含有したBODIPY™ TRカダベリンはアルデヒドおよびケトンと可逆的に結合し、シッフ塩基を形成できます。シッフ塩基は、水素化ホウ素ナトリウム(NaBH4)またはシアノ水素化ホウ素ナトリウム(NaCNH3)によって、安定したアミン誘導体を生成するように還元できます詳細を見る
製品番号(カタログ番号)数量
D6251
または、製品番号D-6251
5 mg
製品番号(カタログ番号) D6251
または、製品番号D-6251
価格(JPY)
38,500
Online offer
Ends: 27-Mar-2026
64,200
割引額 25,700 (40%)
Each
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数量:
5 mg
アミンを含有したBODIPY™ TRカダベリンはアルデヒドおよびケトンと可逆的に結合し、シッフ塩基を形成できます。シッフ塩基は、水素化ホウ素ナトリウム(NaBH4)またはシアノ水素化ホウ素ナトリウム(NaCNH3)によって、安定したアミン誘導体を生成するように還元できます。タンパク質や他の水溶性バイオポリマーのカルボン酸は、EDAC(E2247)などの水溶性カルボジイミドを使用して水溶液中のこの分子に結合できます。電気的に中性のBODIPY™ TR色素は、スペクトルの面で赤色蛍光のTexas Red™™色素と似ています。
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
化学反応性カルボン酸、ケトン、アルデヒド
標識または色素BODIPY™ TR
製品タイプTRカダベリン
数量5 mg
反応性部分アミン、カダベリン
出荷条件室温
標識タイプBODIPY色素
製品ラインBODIPY
Unit SizeEach
組成および保存条件
フリーザー(-5∼-30度)に保存し、遮光してください。

引用および参考文献 (5)

引用および参考文献
Abstract
Kinetics of penetration influence the apparent potency of vanilloids on TRPV1.
Authors:Lazar J, Braun DC, Tóth A, Wang Y, Pearce LV, Pavlyukovets VA, Blumberg PM, Garfield SH, Wincovitch S, Choi HK, Lee J,
Journal:Mol Pharmacol
PubMed ID:16418338
'Evidence that the ligand binding site of TRPV1 lies on the inner face of the plasma membrane and that much of the TRPV1 itself is localized to internal membranes suggests that the rate of ligand entry into the cell may be an important determinant of the kinetics of ligand action. ... More
Antimicrobial peptides: the LPS connection.
Authors:Giuliani A, Pirri G, Rinaldi AC,
Journal:Methods Mol Biol
PubMed ID:20094863
'An expanding body of evidence is rendering manifest that many cationic antimicrobial peptides are endowed with different properties and activities, well beyond their direct action on microbes. One of the most interesting and potentially important research avenue on the alternative use of antimicrobial peptides grounds on their affinity toward lipopolysaccharide ... More
Self-delivering nanoemulsions for dual fluorine-19 MRI and fluorescence detection.
Authors:Janjic JM, Srinivas M, Kadayakkara DK, Ahrens ET,
Journal:J Am Chem Soc
PubMed ID:18266363
We report the design, synthesis, and biological testing of highly stable, nontoxic perfluoropolyether (PFPE) nanoemulsions for dual 19F MRI-fluorescence detection. A linear PFPE polymer was covalently conjugated to common fluorescent dyes (FITC, Alexa647 and BODIPy-TR), mixed with pluronic F68 and linear polyethyleneimine (PEI), and emulsified by microfluidization. Prepared nanoemulsions (<200 ... More
Probing the cathepsin D using a BODIPY FL-pepstatin A: applications in fluorescence polarization and microscopy.
Authors:Chen CS, Chen WN, Zhou M, Arttamangkul S, Haugland RP
Journal:J Biochem Biophys Methods
PubMed ID:10737220
Redistribution of cathepsin D, a major lysosomal aspartic endopeptidase, has been related to various pathological progressions during tumor formation and oxidation stress. We have synthesized a fluorescent probe for cathepsin D, where the pepstatin A was covalently conjugated with the BODIPY (Boron dipyrromethene difluoride) fluorophore. In vitro, BODIPY FL-pepstatin A ... More
Anti-endotoxin agents. 1. Development of a fluorescent probe displacement method optimized for the rapid identification of lipopolysaccharide-binding agents.
Authors:Wood SJ, Miller KA, David SA
Journal:Comb Chem High Throughput Screen
PubMed ID:15134530
Lipopolysaccharides (LPS), otherwise termed 'endotoxins', are outer-membrane constituents of Gram-negative bacteria. Lipopolysaccharides play a key role in the pathogenesis of 'Septic Shock', a major cause of mortality in the critically ill patient. Therapeutic options aimed at limiting downstream systemic inflammatory processes by targeting lipopolysaccharide do not exist at the present ... More