2,5-dioxopyrrolidin-1-yl 3-(2-(2-undec-10-ynamidoethoxy)ethoxy)propanoate is a small molecule compound. It has attracted great attention in the biomedical field because of its remarkable ability to fight bacterial infections. Its unparalleled efficacy in precisely targeting drug delivery systems and amplifying therapeutic effects has been extensively documented through comprehensive research.
Catalog Number | Size | Price | Quantity |
---|---|---|---|
BADC-00428 | -- | $-- |
One of the key applications of 2,5-dioxopyrrolidin-1-yl 3-(2-(2-undec-10-ynamidoethoxy)ethoxy)propanoate is its use in medicinal chemistry. This compound serves as a versatile building block for the synthesis of various biologically active molecules. Due to its structural complexity and unique functional groups, it can be employed in the development of novel drugs targeting a range of diseases, including cancer, cardiovascular disorders, and infectious diseases. Moreover, its ability to act as a linker in drug conjugation strategies enhances the efficacy and specificity of therapeutic agents, paving the way for advanced treatment options.
In the field of organic synthesis, 2,5-dioxopyrrolidin-1-yl 3-(2-(2-undec-10-ynamidoethoxy)ethoxy)propanoate is utilized as a coupling reagent. Its reactivity allows for the formation of amide bonds and ester linkages, which are crucial in the synthesis of peptides, oligonucleotides, and other complex organic molecules. This makes it an essential component in the chemical toolbox of researchers aiming to construct sophisticated molecular architectures with high precision and efficiency. Furthermore, its stability and compatibility with a wide range of substrates make it a preferred choice in organic synthesis protocols.
Another significant application of this compound is in materials science, particularly in the development of advanced polymers and coatings. The presence of reactive functional groups enables it to participate in polymerization reactions, resulting in materials with enhanced mechanical properties, thermal stability, and chemical resistance. These advanced materials find applications in various industries, including aerospace, automotive, and electronics, where high-performance materials are essential. Additionally, its incorporation into coatings can impart unique surface properties, such as hydrophobicity or antimicrobial activity, thereby extending the functionality and lifespan of the coated products.
In the realm of biomedical research, 2,5-dioxopyrrolidin-1-yl 3-(2-(2-undec-10-ynamidoethoxy)ethoxy)propanoate is employed in the design of bio-conjugates and biocompatible materials. Its ability to form stable covalent bonds with biomolecules like proteins, antibodies, and DNA makes it valuable for creating targeted drug delivery systems, diagnostics, and tissue engineering scaffolds. By enabling the precise attachment of therapeutic or imaging agents to biological targets, this compound enhances the specificity and effectiveness of biomedical interventions, contributing to the advancement of personalized medicine and bioengineering technologies.
Customer Support
Providing excellent 24/7 customer service and support
Project Management
Offering 100% high-quality services at all stages
Quality Assurance
Ensuring the quality and reliability of products or services
Global Delivery
Ensuring timely delivery of products worldwide
BOC Sciences offers comprehensive services for ADC manufacturing, including antibody modification, linker chemistry, payload conjugation, and formulation development. In particular, our payload-linker customization service offers a convenient and fast raw material channel for many ADC researchers.
BOC Sciences provides one-stop site-specific conjugation services for amino acids, glycans, unnatural amino acids, and short peptide tags. In addition, cysteine conjugation, lysine conjugation, enzymatic conjugation, thio-engineered antibody can also be obtained quickly.
BOC Sciences offers a full range of linkers, including peptide linkers, PEG linkers, click chemistry, PROTAC linkers, non-cleavable linkers, etc. We also provide custom development services for chemically labile linkers and enzymatically cleavable linkers.