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Catalog | name | Description | price |
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R-M2-9583 | DMG-PEG2K-Chitosan5000 | DMG-PEG2K-Chitosan5k is a multifunctional polymeric system with potential in various biomedical fields, particularly in drug delivery and tissue engineering. The combination of PEG and chitosan enhances biocompatibility and provides versatile functions that can be tailored to specific applications. | price> |
R-M-7053 | Sulfo-Cy7-TCO | RuixiBio provides Sulfo-Cy7-TCO(Sulfo-Cyanine7-TCO) probe can be used for detection and visualization of tetrazine-containing molecules. TCO moiety reacts with tetrazines to produce a stable. | price> |
R-C-5566 | 18:1 Dodecanyl PE CAS:474923-47-2 | 18:1 Dodecanyl PE is a modified phospholipid that can be used in various applications related to liposomes, lipid-based drug delivery systems, and biomaterials.The presence of the oleic acid acyl chain provides stability and structure to the lipid bilayer, while the dodecyl modification can introduce unique properties and functionalities. | price> |
R-M2-9584 | DBCO-TPP | DBCO-Triphenyl phosphate(TPP)/Dibenzocyclooctyne-TPP/Dibenzocyclooctyne-Triphenyl phosphate could be utilized in various chemical and biological applications, especially in fields such as bioorthogonal chemistry and material science. DBCO Triphenyl Phosphate (TPP)/Diphenylocycloutyne TPP/Dibenzocycloutyne Triphenyl Phosphate can also detect biological systems or track cellular processes. The integration of DBCO into TPP-based flame retardant systems can allow for more functional materials with enhanced properties, such as easier processing and improved performance. DBCO-Triphenyl Phosphate (TPP) might enable the development of novel sensors that exploit the bioorthogonal reaction with azide-labeled analytes for detection. | price> |
R-M-7054 | NH2-PEG4-hydrazone-DBCO | NH2-PEG4-hydrazone DBCO is a polymer customized peg derivative. Our company accepts various customized products. | price> |
R-C-5567 | 16:0 Biotinyl Cap PE CAS:384835-52-3 | 16:0 Biotinyl Cap PE is a modified phospholipid that can be used in various biotechnological and biomedical applications,including protein detection and purification,as well as in targeted drug delivery systems.The presence of the palmitic acid acyl chains provides stability and structure to the lipid bilayer, while the biotin modification can facilitate specific protein binding or allow for targeted delivery to cells expressing biotin-binding proteins. | price> |
R-M2-9585 | DOX-TPP | DOX-TPP/Doxorubicin-Triphenyl Phosphate can be used for cellular imaging, Drug Delivery,Biosensing,Membrane Studies.Utilize the fluorescence for imaging live or fixed cells.Explore the efficacy of co-encapsulated compounds in pharmacological studies.Use the dyes for multiplexed fluorescence assays.Investigate interactions with cell membranes or lipid bilayers. | price> |
R-M-7055 | FITC-Zymosan | FITC Zymosan is a fluorescent labeled polysaccharide compound. Our company accepts various customized products. | price> |
R-C-5568 | 18:1 Biotinyl Cap PE CAS:384835-51-2 | 18:1 Biotinyl Cap PE is a modified phospholipid that is commonly used in biotechnology applications. The presence of the oleic acid acyl chain provides stability and structure to the lipid bilayer, while the biotinyl caproyl modification enables specific binding to biotin-binding proteins. | price> |
R-M2-9586 | DOX-TPP-CY2 | Doxorubicin-Triphenyl Phosphate-CY2/DOX-TPP-CY2 could facilitate targeted delivery to cancer cells, potentially reducing systemic toxicity and enhancing therapeutic efficacy.This compound could also serve as a useful tool in chemical biology to study the interactions of doxorubicin with cellular mechanisms and to evaluate the effects of TPP modification on drug behavior. | price> |
R-M-7056 | Human Smad1 ELISA Kit | Human Smad1 ELISA Kit, the kit adopts double antibody one-step sandwich enzyme-linked immunosorbent assay (ELISA). | price> |
R-C-5569 | 16:0 Biotinyl PE CAS:384835-54-5 | 16:0 Biotinyl PE is a modified phospholipid that finds applications in various biochemical and biotechnological assays and techniques. The presence of the palmitic acid acyl chains provides stability and structure to the lipid bilayer, while the biotin modification allows for specific binding to biotin-binding proteins. | price> |
R-M2-9587 | FITC-TPP-PDL10 | FITC-TPP-PDL10/Fluorescein Isothiocyanate-Triphenyl Phosphate-PDL10/FITC-TPP-Poly-D-Lysine 10 is a multifunctional construct combining a fluorescent dye, a mitochondrial targeting agent, and a polymer, which could have numerous applications in drug delivery, therapeutic targeting, and cellular imaging. Researchers would generally synthesize this compound and evaluate its efficacy in both laboratory and in vivo studies to understand its potential in clinical applications. Targeted delivery of chemotherapeutics using a mitochondrial approach FITC can be used to visualize cellular processes in real-time, allowing for potential biomarkers.The formulation can be employed to assess mitochondrial function and dynamics in cells, as well as responses to various treatments. | price> |
R-M-7057 | NODAGA-tris(t-Bu ester),Cas:438553-50-3 | NODAGA-tris(t-Bu ester),Cas:438553-50-3 is a bifunctional chelating agent.. | price> |
R-C-5570 | 18:1 Biotinyl PE CAS:384835-53-4 | 18:1 Biotinyl PE is often used in bioconjugation processes and biotechnological applications. The presence of the oleic acid acyl chain provides stability and structure to the lipid bilayer, while the biotinyl modification enables specific binding to biotin-binding proteins. | price> |
R-M2-9588 | FITC-PDL10 | FITC-PDL10 to study cell adhesion properties and interactions with different substrates. The fluorescence offers an easy way to visualize and quantify how well cells are adhering to surfaces coated with PDL10. FITC-PDL10 can also be used as a model for drug delivery where it may help in targeting cells with incorporated therapeutic agents while monitoring the uptake via fluorescence. FITC-PDL10 can be utilized in fluorescent microscopy, allowing for real-time imaging of interactions between cells and surfaces or materials modified with PDL10. This is particularly useful in understanding cell behavior in tissue engineering or regenerative medicine. FITC-PDL10 can help in studying the morphology and growth patterns of different cell types in culture and understanding how synthetic peptides can enhance or influence biological responses. | price> |
R-M-7058 | mPEG-BA | Methoxypoly(ethylene glycol) butanoic acid (mPEG-BA)is formed by a degradable linker connecting PEG polymer chain and thecarboxyl group, which is reactive with amine on protein. | price> |
R-C-5571 | 16:0 Cyanur PE CAS:1246304-37-9 | 16:0 Cyanur PE is used in bioconjugation processes and biotechnological applications where the phospholipid can be incorporated into liposomes or lipid-based systems and subsequently conjugated with molecules of interest through the cyanur group.The presence of the palmitic acid acyl chains provides stability and structure to the lipid bilayer,while the cyanur modification allows for specific covalent attachment to amine-containing molecules. | price> |
R-M2-9589 | TPP-PDL10 | TPP-Right-handed polylysine/TPP-Poly-D-Lysine10/TPP-PDL10 can be designed as a carrier for drugs or gene therapy agents, specifically targeting mitochondria within cells. This targeting is particularly beneficial for treating diseases where mitochondrial dysfunction is implicated, such as neurodegenerative diseases, cancer, and metabolic disorders. The positive charge from both TPP and Poly-D-Lysine may improve the uptake of the conjugate into cells through endocytosis. This characteristic can be harnessed for efficient delivery of therapeutic proteins, nucleic acids (like siRNA or DNA), or any hydrophilic compounds that have poor cellular permeability. If the TPP-Poly-D-Lysine conjugate is tagged with a fluorescent dye, it can be utilized for imaging mitochondria in live cells. This can help in studies aimed at elucidating mitochondrial dynamics, morphology, and their role in various cellular processes. | price> |
R-M-7059 | mpeg-propanoic Acid | mpeg-propanoic Acid,Methoxypolyethylene glycol propionic acid is a peg derivative. | price> |