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| Catalog | name | Description | price |
|---|---|---|---|
| R-C-6025 | d5-D-myo-Phosphatidylinositol 4,5-bisphosphate DiC16 | Phosphoinositides(PIPns)are minor components of cellular membranes but are integral signaling molecules for cellular communication.Phosphatidylinositol 4,5-bisphosphate(PIP2)has been shown to play a central role in a variety of cellular functions.Amongst its many functions,PIP2 is a substrate for Phospholipase C-coupled G-protein pathways involved in intracellular calcium release in several tissues and is a substrate for class I phosphoinositide 3-kinase (PI3-K). | price> |
| R-M2-10042 | Sulfo-Cy5-PSMA(Glu-urea-Lys) | Sulfo-Cy5-PSMA(Glu-urea-Lys) is a near-infrared fluorescent PSMA-targeted probe built on the classic Glu-urea-Lys pharmacophore, the core binding motif used in most modern PSMA ligands (e.g., PSMA-11, PSMA-617, PSMA-I&T). | price> |
| R-M1-8408 | Galactose-FITC | Galactose-FITC is a conjugate between galactose, a monosaccharide commonly found as a part of glycans on cell surfaces and extracellular matrix proteins, and fluorescein isothiocyanate (FITC), a fluorescent dye commonly used as a bioimaging tool. This conjugate enables specific detection and visualization of galactosylated molecules, such as glycoproteins, glycolipids, and proteoglycans, in various biological samples using fluorescence microscopy or flow cytometry. | price> |
| R-C-6026 | d5-D-myo-Phosphatidylinositol DiC16 | Phosphoinositides(PIPns)are minor components of cellular membranes but are integral signaling molecules for cellular communication.Phosphatidylinositol(PI or PtdIns)is biosynthesized from CDP-diacylglycerol and inositol by phosphatidylinositol synthase. | price> |
| R-M2-10043 | ¹⁸F-PSMA-1007 | ¹⁸F-PSMA-1007 is a clinically used PSMA-targeted PET radiotracer for imaging prostate cancer. A key advantage of ¹⁸F-PSMA-1007 is low urinary activity, which improves lesion detection in the:prostate bed;pelvis;prostatectomy fossa;(where Ga-68-PSMA tracers can have bladder spillover signals). | price> |
| R-M1-8409 | N3-PEG4-NH2 | Azide-PEG4-NH2 is a molecule consisting of an azide group, a polyethylene glycol chain with four repeating units, and an amine group. The azide group enables the molecule to selectively react with suitable alkyne-containing compounds through "click chemistry" reactions to form stable triazole linkages, making it a useful tool for bioconjugation and labeling.The use of azide-PEG4-NH2 can lead to improvements in drug delivery systems, biosensors, and other molecular biology applications. | price> |
| R-C-6027 | d5-PAPEth | Phosphaytidylethanol(PEth)is formed primarily by transphosphatidylation of phosphatyidylcholine(PC) by phospholipase D.1-Palmitoyl-2-arachidonoyl-sn-glycero-3-phosphoethol-d5(d5-PAPEth)is fully deuterated on the ethanol headgroup and is an analog of one of the five most abundant naturally occurring PEth species. | price> |
| R-M2-10044 | Sulfo-Cy3-PSMA-617 | Sulfo-Cy3-PSMA-617 is a fluorescent PSMA-targeted probe.The purpose of Sulfo-Cy3-PSMA-617:In vitro optical imaging,Surface-level or shallow in vivo imaging,Ligand-design and pharmacokinetic comparison,Fluorescent surrogate for PSMA-617. | price> |
| R-M1-8410 | Alkyne-PEG4-NH2 | Alkyne-PEG4-NH2 is a molecule consisting of an alkyne group, a polyethylene glycol chain with four repeating units, and an amine group. The alkyne group enables the molecule to selectively react with suitable azide-containing compounds through click chemistry reactions to form stable triazole linkages, making it a useful tool for bioconjugation and labeling. The PEG chain provides water solubility and can increase the molecules circulation time in vivo. The amine group can also be used as a site for further modification, such as adding targeting moieties or fluorophores. The use of alkyne-PEG4-NH2 can lead to improvements in drug delivery systems, biosensors, and other molecular biology applications. | price> |
| R-C-6028 | d5-POPEth | Phosphatidylethanol (PEth) is formed primarily by transphosphatidylation of phosphatidylcholine (PC) by phosphlipase D. Most PEth (about 75%) is incorporated into erythrocyte membranes, and is one of the longest-lived circulating EtOH metabolite yet identified. | price> |
| R-M2-10045 | Sulfo-Cy3-PSMA-I&T | Sulfo-Cy3-PSMA-I&T is a fluorescently labeled PSMA-targeted probe based on the clinically important ligand PSMA-I&T, but tagged with a Sulfo-Cy3 dye for optical imaging. | price> |
| R-M1-8411 | NH2-PEG2000-FAEKFKEAVKDYFAKFWD | NH2-PEG2000-FAEKFKEAVKDYFAKFWD is a molecule consisting of a polyethylene glycol (PEG) chain with 2000 repeating units, an amine group, and a peptide sequence (FAEKFKEAVKDYFAKFWD) attached to the amine group. The PEG chain provides water solubility and can increase the molecules circulation time in vivo. The peptide sequence is derived from a protein and can be used as a targeting moiety for specific cells or tissues that express a receptor for the sequence. The sequence also contains specific amino acids that can potentially inhibit protease enzymes. The use of NH2-PEG2000-FAEKFKEAVKDYFAKFWD can lead to improvements in drug delivery systems, targeting of cancer cells, and other biomedical applications. | price> |
| R-C-6029 | d5-SLPEth | Phosphatidylethanol (PEth) is formed primarily by transphosphatidylation of phosphatidylcholine(PC)by phosphlipase D.Most PEth(about 75%) is incorporated into erythrocyte membranes,and is one of the longest-lived circulating EtOH metabolite yet identified.1-Stearoyl-2-linoleoyl-sn-glycero-3-phosphoethanol-d5(d5-SLPEth)has a fully deuterated ethanol headgroup and can be used as a mass spectrometry standard. | price> |
| R-M2-10046 | Sulfo-Cy3-PSMA-11 | Sulfo-Cy3-PSMA-11 is a fluorescent derivative of PSMA-11 in which the clinically established PET imaging ligand PSMA-11 is conjugated to a Sulfo-Cy3 near-visible fluorophore for optical imaging applications. | price> |
| R-M1-8412 | Rabbit IgG thiol | Rabbit IgG thiol/IgG from rabbit, thiol refers to rabbit immunoglobulin G (IgG) that has been modified to contain a thiol group (-SH) on its structure. The thiol group can be introduced to the IgG molecule through various chemical modification methods. This thiol modification allows for specific conjugation or binding of the IgG to other molecules or surfaces that contain groups susceptible to thiol reactions, such as maleimide or pyridyldithio groups. Rabbit IgG thiol can be used for various applications, including antibody conjugation, protein labeling, immobilization, and protein-protein interaction studies. | price> |
| R-C-6030 | d5-SOPEth | Phosphatidylethanol (PEth) is formed primarily by transphosphatidylation of phosphatidylcholine (PC) by phosphlipase D.1-Stearoyl-2-oleoyl-sn-glycero-3-phosphoethanol-d5(d5-SOPEth)has a fully deuterated ethanol headgroup and can be used as a mass spectrometry standard. | price> |
| R-M2-10047 | Sulfo-Cy3-PSMA-ligand-1 | Sulfo-Cy3-PSMA-ligand-1 is a fluorescent PSMA-targeted small-molecule probe built from a Glu-urea-Lys PSMA-binding ligand (“PSMA-ligand-1”) conjugated to a Sulfo-Cy3 dye for optical imaging. | price> |
| R-M1-8413 | ICG-PEG2K-TPE | ICG-PEG2K-TPE,Indocyanine green-Polyethylene glycol2000-Tetraphenylethylene from ruixibio.ICG-PEG2K-TPE, it describes a conjugation or combination of these three components. The presence of PEG provides water solubility and stability, while TPE enhances the fluorescence properties of ICG. This hybrid molecule could potentially be used in applications such as targeted imaging, drug delivery, or theranostics (combined diagnostic and therapeutic) approaches that benefit from the near-infrared fluorescence properties of ICG and the improved fluorescence intensity of TPE. | price> |
| R-C-6031 | DHPS (6:0/6:0 PS) CAS:321862-85-5 | 1,2-Dihexanoyl-sn-glycero-3-phosphoserine,sodium salt (DHPS) is a form of phosphatidylserine(PS),a negatively charged phospholipid located in the inner leaflet of the cell membrane.During apoptosis PS is no longer restricted to the inner leaflet of the plasma membrane and migrates to the outer leaflet. | price> |
| R-M2-10048 | Sulfo-Cy3-PSMA(Glu-urea-Lys) | Sulfo-Cy3-PSMA(Glu-urea-Lys) is a fluorescent PSMA-targeted small-molecule probe in which the classical Glu-urea-Lys PSMA-binding pharmacophore is conjugated to a Sulfo-Cy3 dye for optical imaging applications. | price> |

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