Catalog Number | Size | Price | Quantity |
---|---|---|---|
BADC-01161 | -- | $-- |
4-Methyl-4-(methyldisulfanyl)pentanoic acid, a specialized chemical compound, plays a pivotal role in biochemistry and pharmaceuticals. Here are four key applications presented with a high degree of perplexity and burstiness:
Enzyme Inhibition Studies: Delving into biochemical research, this compound emerges as a key player in the realm of enzyme inhibition dynamics. It interacts intricately with specific enzyme active sites, shedding light on the intricate mechanisms governing enzyme regulation and inhibition. This knowledge forms the bedrock for the development of groundbreaking drugs targeting disease-associated enzymes, propelling advancements in therapeutic interventions.
Drug Development: Positioned on the forefront of pharmaceutical research, 4-Methyl-4-(methyldisulfanyl)pentanoic acid takes center stage as a lead compound with immense potential in the creation of novel therapeutic agents. Its unique chemical structure serves as a canvas for modifications aimed at optimizing pharmacokinetic and pharmacodynamic properties. Researchers harness its capabilities to pioneer new medications with heightened efficacy and diminished side effects, shaping the landscape of modern medicine.
Protein Modification: Within the realm of protein chemistry, this compound emerges as a catalyst for introducing disulfide bonds, thereby sculpting protein structure and function with finesse. This capability proves invaluable in the exploration of protein stability and folding dynamics across diverse conditions. Such modifications also find application in the realm of biopharmaceutical design, paving the way for enhanced stability and activity, pushing the boundaries of protein engineering.
Industrial Biotechnology: Embracing the realm of industrial biotechnology, 4-Methyl-4-(methyldisulfanyl)pentanoic acid emerges as a powerhouse in the synthesis of specialty chemicals and polymers. Its reactivity becomes a cornerstone in the creation of chemical intermediates crucial for industrial processes. This application underpins the production of advanced materials tailored to meet the specific requirements of diverse technological applications, driving innovation and progress in industrial sectors.
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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.