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calculated mol. wt. 1,760. Uses: They adopt nanometer-scale dimensions, and can be ideal candidates for drug delivery, gene transfection applications. Group: Dendrimers. Alternative Names: Dendron-G4-Carboxyl-OH. Pack Sizes: 250 mg in glass insert. Molecular formula: generation 4.
hydroxyl surface groups. Uses: They adopt nanometer-scale dimensions, and can be ideal candidates for drug delivery, gene transfection applications. Group: Dendrimers. Alternative Names: Dendron-G5-Acetylene-OH. Pack Sizes: 250 mg in glass insert. Molecular formula: 3655.64. Mole weight: C158H252O94. 0.97.
calculated mol. wt. 3,618. Uses: They adopt nanometer-scale dimensions, and can be ideal candidates for drug delivery, gene transfection applications. Group: Dendrimers. Alternative Names: Dendron-G5-Carboxyl-OH. Pack Sizes: 250 mg in glass insert. Molecular formula: 3617.59.
Bis-MPA (or 2,2-Bis(methylol)propionic acid) is an aliphatic, pro-chiral molecule comprised of two hydroxyls and one carboxylic group that has been used in the synthesis of many different types of polymers. Uses: Dendrons synthesized from bis-mpa are biodegradable and have low cytotoxicity, making them well suited for use in biological research s. these materials have been used in many s such as signal amplification in bioassays and in drug delivery s. these alkyne-functionalized dendrimers can be readily functionalized using either copper(I)-catalysed alkyne-azide cycloaddition (cuaac), strain-promoted alkyne-azide cycloaddition (spaac), or thiol-yne click reactions. additionally, the amine-functionalized core can be readily used in edc or dcc coupling reactions (after boc deprotection) with carbonyl-containing compounds to yield highly functionalized materials for a variety of biomedical s. Group: Dendrimers. Alternative Names: Bis-MPA dendron, PFd-G4-BocNH-acetylene. Molecular formula: 4317.08.
Polyester bis-MPA dendron 2 carboxyl, 1 biotin (core) stands as an incredibly versatile substance widely employed in the realm of biomedicine. Possessing a paramount core structure, it garners extensive utilization within the domain of drug delivery systems. Manifesting exceptional attributes conducive to the targeting of distinct ailments, drug conveyance, and proficient release at designated loci, this product proves instrumental in combatting an array of maladies encompassing cancers, infections, and neurological disorders. Molecular formula: C31H48N2O16S. Mole weight: 736.78.
Polyester bis-MPA dendron 2 NHBoc, 1 Biotin (core) is a biomedical product used in the drug development of certain diseases. This product acts as a carrier system for targeted drug delivery due to its unique properties. It can effectively encapsulate and transport drugs, such as anti-cancer agents or antibiotics, to specific sites in the body. Additionally, the presence of biotin allows for the attachment of targeting moieties, enhancing drug specificity and efficacy. Molecular formula: C39H66N4O16S. Mole weight: 879.02.
Polyester bis-MPA dendron, 32 carboxyl, 1 amine
generation 5. Group: Dendrimers.
Polyester bis-MPA dendron, 32 carboxyl, 1 amine
We offer a diverse selection of dendrimers containing a large number of peripheral groups. Uses: Amine dendrons can be covalently attached through conjugation to carboxyl groups, primary amines, or sulfhydryl groups. amines can also attach to oxidized carbohydrate groups (usually aldehydes) by reductive amination. Group: Dendrimers. Alternative Names: bisMPA dendrimer, bisMPA dendron. Pack Sizes: 250 mg in glass bottle. Molecular formula: generation 5. NQULMOAGCWOIQE-UHFFFAOYSA-N.
Polyester bis-MPA dendron, 32 hydroxyl, 1 allyl
calculated mol. wt. 3657.7. Uses: Allyl dendrons can be coupled to thiol functional molecules. Group: Dendrimers. Pack Sizes: 250 mg in glass insert. Molecular formula: generation 5.
Polyester bis-MPA dendron, 32 hydroxyl, 1 allyl
generation 5, 95%. Group: Dendrimers.
Polyester bis-MPA dendron, 32 hydroxyl, 1 amine
generation 5, 95%. Group: Dendrimers.
Polyester bis-MPA dendron, 32 hydroxyl, 1 amine
Polyester dendritic structures which are based on 2,2-bismethylolpropionic acid (bis-MPA) monomer are highly branched and can be end functionalized with a wide range of functional groups. They are widely used in biosensors, optics, adhesives and coatings. The hydroxyl and amine end surface groups increase the biocompatibility and the scaffolding ability of these dendritic polymers. Uses: Amine dendrons can be covalently attached through conjugation to carboxyl groups, primary amines, or sulfhydryl groups. amines can also attach to oxidized carbohydrate groups (usually aldehydes) by reductive amination. Group: Dendrimers. Pack Sizes: 250 mg in glass insert. Molecular formula: generation 5.
Polyester bis-MPA dendron, 32 hydroxyl, 1 azide
Calculated mol. wt. 3742.8. Uses: Azide dendrons can be coupled to acetylene functionalized molecules, including acetylene dendrons to form asymmetric dendrimers. Group: Dendrimers. Alternative Names: bisMPA dendrimer, bisMPA dendron. Pack Sizes: 250 mg in glass insert. Molecular formula: generation 5.
Polyester bis-MPA dendron, 32 hydroxyl, 1 azide
generation 5, 95%. Group: Dendrimers.
Polyester bis-MPA dendron, 32 hydroxyl, 1 thiol
calculated mol. wt. 3677.7. Uses: Thiol dendrons can be conjugated to varius noble surfaces or coupled to unsaturated carbon-carbon bonds using various radical initiators. Group: Dendrimers. Alternative Names: bisMPA dendrimer, bisMPA dendron. Pack Sizes: 250 mg in glass insert. Molecular formula: generation 5.
Polyester bis-MPA dendron 4 carboxyl, biotin (core) presents a versatile groundwork for the nuanced realm of targeted drug delivery. Through the strategic attachment of biotin to its core structure, an array of possibilities manifests, encompassing the potential to combat malignant neoplasms and diverse autoimmune maladies. Molecular formula: C49H72N2O28S. Mole weight: 1169.16.
Dendrimers and dendrons are symmetrically branched polymer structures that possess a well-defined spatial distribution of functional groups. The properties of dendrimers are steered by controlling the generation number, repeating unit, end groups. hydrophilicity/hydrophobicity are controlled by the functionality of the end groups. Uses: These form extremely attractive molecular targets. nanotechnological applications range from microelectronics to biomedical devices.2 other proposed applications are: coatings resins additives, analytical techniques medicine drug and dye delivery molecular imprinting organic polymer synthesis catalysis optoelectronic applications. Group: Dendrimers. Alternative Names: bisMPA dendrimer, bisMPA dendron. CAS No. 919988-18-4. Pack Sizes: 250 mg in glass insert. Molecular formula: generation 2. CC (CO) (CO)C (=O)OCC (C) (COC (=O)C (C) (CO)CO)C (=O)OCCCCCCN=[N+]=[N-]. 1S/C21H37N3O10/c1-19 (10-25, 11-26)16 (29)33-14-21 (3, 15-34-17 (30)20 (2, 12-27)13-28)18 (31)32-9-7-5-4-6-8-23-24-22/h25-28H, 4-15H2, 1-3H3. LGPUUVBKCMNFLE-UHFFFAOYSA-N.
Polyester bis-MPA dendron 4 NHBoc, 1 Biotin (core) is designed for targeted drug delivery. Its core, consisting of Biotin, allows for specific binding to targeted cells or receptors. This facilitates the delivery of drugs for the treatment of various diseases, enhancing therapeutic efficacy and reducing side effects. Its unique structure, incorporating Polyester bis-MPA dendron with NHBoc, further improves drug encapsulation and stability. Molecular formula: C65H108N6O28S. Mole weight: 1453.64.
Polyester bis-MPA dendron, 8 carboxyl, 1 amine
generation 3. Group: Dendrimers.
Polyester bis-MPA dendron, 8 carboxyl, 1 amine
We offer a diverse selection of dendrimers containing a large number of peripheral groups. Uses: Amine dendrons can be covalently attached through conjugation to carboxyl groups, primary amines, or sulfhydryl groups. amines can also attach to oxidized carbohydrate groups (usually aldehydes) by reductive amination. Group: Dendrimers. Alternative Names: bisMPA dendrimer, bisMPA dendron. Pack Sizes: 250 mg in glass insert. Molecular formula: generation 3. 1S/C75H99NO46/c1-8-75 (41-116-62 (101)44-9-11-45 (76)12-10-44, 42-121-67 (106)73 (6, 37-117-63 (102)69 (2, 29-108-54 (93)21-13-46 (77)78)30-109-55 (94)22-14-47 (79)80)38-118-64 (103)70 (3, 31-110-56 (95)23-15-48 (81)82)32-111-57 (96)24-16-49 (83)84)43-122-68 (107)74 (7, 39-119-65 (104)71 (4, 33-112-58 (97)25-17-50 (85)86)34-113-59 (98)26-18-51 (87)88)40-120-66 (105)72 (5, 35-114-60 (99)27-19-52 (89)90)36-115-61 (100)28-20-53 (91)92/h9-12H, 8, 13-43, 76H2, 1-7H3, (H, 77, 78) (H, 79, 80) (H, 81, 82) (H, 83, 84) (H, 85, 86) (H, 87, 88) (H, 89, 90) (H, 91, 92). ACOBVJDQVWUHRD-UHFFFAOYSA-N.
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