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R-PL2062 CY3.5-PEG-PLA CY3.5-PEG-PLA, Cyanine3.5-Polyethylene glycol-Poly(D,L-lactide) price>
R-L-105 PTX-PEG-SH The short chain polyethylene glycol molecule is used as the carrier (hydrophilic end) and connected with paclitaxel, and the latter itself is also used as a part of the carrier (hydrophobic end) to synthesize the doxorubicin prodrug PEG-PTX. It can self-assemble into nano scientific research under physiological environment. Thus, the ERP effect can be used for passive targeted drug delivery. price>
R-XASYS-00105 Melittoside,cas:19467-03-9 Melittoside(C21H32O15,524.47) is an iridoid glycoside that has been found in S. trojana and has antioxidant and enzyme inhibitory activities.It scavenges free radicals in a Trolox equivalent antioxidant capacity (TEAC) assay.Melittoside also inhibits the activity of acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) by 24.6 and 12.8%, respectively, when used at a concentration of 250 ?g/ml in a cell-free assay. price>
R-R-0105 Aldehyded sodium alginate Aldehyded sodium alginate/Aldehyde alginate refers to a modified form of sodium alginate that has been chemically modified with an aldehyde group.The specific applications of aldehyded sodium alginate depend on the desired properties and characteristics of the modified alginate. It can be used as a gel matrix or encapsulation material for controlled release of drugs or bioactive molecules. It can also be employed in tissue engineering applications to create biomaterial scaffolds or matrices that support cell growth and differentiation. price>
R-M3-104 5-Dehydroxy (3S)-Atorvastatin,CAS:887196-26-1 5-Dehydroxy (3S)-Atorvastatin represents a modified version of atorvastatin, focusing on a specific oxygen-containing functional group.The compound could be evaluated for its effectiveness in managing cholesterol levels similar to atorvastatin. price>
R-Mcs-105 DOPC:DOPG Liposomes Containing Self-quenching Concentration of Octadecyl Rhodamine B DOPC:DOPG Liposomes Containing Self-quenching Concentration of Octadecyl Rhodamine B can be used for drug delivery, bioimaging, or as a model system for studying membrane dynamics. The incorporation of a fluorescent probe also permits further studies in cellular uptake and tracking. price>
R-PL3369 PCL-Hyd-PEG-NHS PCL-Hyd-PEG-NHS,Poly(ε-caprolactone)-Hyd-Polyethylene glycol-NHS is an amphiphilic ABC block copolymer with NHS group at the end of PEG, price>
R-PL2063 CY5.5-PEG-PLA CY5.5-PEG-PLA, Cyanine5.5-Polyethylene glycol-Poly(D,L-lactide) price>
R-L-106 S-Butyrylthiocholine chloride 2-Butanoylsulfanylethyl(trimethyl)azanium Chloride is a metabolite analyzed from the bark of Weinmannia trichosperma Cav. (Cunoniaceae), which has been used to treat chronic diarrhea, inflammation, and wounds. price>
R-XASYS-00106 Methazolamide-d6,cas:1795142-30-1 Methazolamide-d6(C5H2D6N4O3S2,242.3) is intended for use as an internal standard for the quantification of methazolamide by GC- or LC-MS. Methazolamide is a carbonic anhydrase inhibitor (IC50 = 130 nM).It reduces intraocular pressure and cerebrospinal fluid flow in a rat model of glaucoma. Methazolamide reduces electroshock-induced seizures in rats with an ED50 value of 19.2 mg/kg. price>
R-R-0106 DSPE-PEG-DTPA-Gd 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-N-(polyethylene glycol) -Diethylenetriaminepentaacetic acid (sodium salt)-gadolinium/DSPE-PEG-DTPA-Gd.The combination of DSPE, PEG, and DTPA-Gd in DSPE-PEG-DTPA-Gd nanoparticles or micelles can be used for various applications in imaging and targeted drug delivery. The PEGylation of the nanoparticle surface helps to improve its stability and circulation time in the body, while the DTPA-Gd component allows for enhanced MRI contrast. This formulation can be used for imaging purposes, such as in tumor imaging or tracking the biodistribution of the nanoparticles. Additionally, it can be utilized as a drug delivery system, where drugs or therapeutic agents can be encapsulated within the nanoparticles and released at specific target sites in a controlled manner. price>
R-M3-105 1S,3S,αS-Deltamethrin,CAS:64364-02-9 1S,3S,αS-Deltamethrin,CAS:64364-02-9 is a potent insecticide well-accepted in agricultural. price>
R-Mcs-106 DOPG (100%) Liposomes Containing Self-quenching Concentration of Octadecyl Rhodamine B DOPG (100%) Liposomes Containing Self-quenching Concentration of Octadecyl Rhodamine B can be used in membrane interactions, cellular uptake experiments, and as components in drug delivery systems. price>
R-PL2064 CY7.5-PEG-PLA CY7.5-PEG-PLA, Cyanine7.5-Polyethylene glycol-Poly(D,L-lactide) price>
R-PL2065 CY3.5-PEG-PCL CY3.5-PEG-PCL, Cyanine3.5-Polyethylene glycol-Poly(ε-caprolactone) price>
R-PL3375 PCL-Hyd-PEG-SH PCL-Hyd-PEG-SH,Thiol-Polyethyleneglycol-Poly(D,L-lactide) is an amphiphilic AB block copolymer with sh group atthe end of PEG, the PLA and PEG are linked by Hyd.it can conjugatewith peptides, antibodies, proteins and others price>
R-L-107 DA-PEG-Mannose Mannose-PEG-DA, mannose-Dopamine, soluble in most organic solvents, DCM, DMF, DMSO, THF, etc. Dopamine combines with mannose-PEG to modify mannose-PEG price>
R-XASYS-00107 Methoxy-PMS (1-Methoxy PMS),cas:65162-13-2 1-methoxy-5-Methylphenazinium (methyl sulfate)(C15H16N2O5S,336.36) is a photochemically stable mediator of electron transport between NADPH and various electron acceptors such as tetrazolium dyes.It can be used to visualize NAD-linked dehydrogenase activities. price>
R-R-0107 Fitc-Carnosic Acid FITC-Carnosic Acid/Fluorescein-Carnosic Acid is a compound that combines Fluorescein Isothiocyanate (FITC) with Carnosic Acid. By combining FITC with Carnosic Acid, the resulting compound can serve as a fluorescent probe to track and visualize the distribution and localization of Carnosic Acid in biological systems. FITC-Carnosic Acid can be used in fluorescence microscopy, flow cytometry, and other imaging techniques to study the uptake, metabolism, and cellular localization of Carnosic Acid in living cells or tissues. price>
R-M3-106 N-Demethoxy Linuron-13C6,CAS:1346603-94-8 N-Demethoxy Linuron-13C6,CAS:1346603-94-8 is an important compound in both agricultural practice and scientific research. Its isotopic labeling allows for detailed studies into its metabolism and environmental fate, aiding in the development of safer, more effective herbicide management practices. When working with such compounds, understanding their properties, mechanisms, and safety profiles is vital for ensuring responsible usage and minimizing ecological impact. price>