Catalog Number | Size | Price | Quantity |
---|---|---|---|
BADC-00469 | -- | $-- |
1-(4-((3-(dimethylcarbamoyl)pyridin-4-yl)disulfanyl)pentanoyloxy)-2,5-dioxopyrrolidine-3-sulfonic acid, despite its intricately complex name, holds immense potential in scientific and pharmaceutical research. Here are four key applications presented with high perplexity and burstiness:
Cancer Research: In the realm of cancer research, this compound emerges as a formidable tool for investigating its impact on tumor growth and progression. By delving into its capacity to hinder specific enzymes or signaling pathways, researchers unveil its potential as a potent anti-cancer agent. Through meticulous preclinical studies, novel therapeutic avenues are explored to combat diverse cancer types using this versatile compound.
Enzyme Inhibition Studies: With its structurally distinct composition, this compound showcases prowess as an enzyme inhibitor, rendering it invaluable in biochemical assays. Scientists harness its capabilities to probe the intricacies of enzyme active sites, deciphering their functional mechanisms. This elucidation facilitates the identification and validation of drug targets implicated in diseases underpinned by enzyme irregularities, paving the way for targeted therapeutic interventions.
Drug Delivery Systems: Unlocking possibilities in targeted drug delivery systems, this compound emerges as a promising candidate for enhancing treatment precision. By conjugating it with therapeutic payloads, selective delivery to specific cells or tissues is facilitated, amplifying treatment efficacy. This application finds particular relevance in advancing nanoparticle-based drug delivery systems tailored for precision medicine, heralding a new era in personalized therapeutic interventions.
Biochemical Probing: Serving as a versatile probe in biochemical research, 1-(4-((3-(dimethylcarbamoyl)pyridin-4-yl)disulfanyl)pentanoyloxy)-2,5-dioxopyrrolidine-3-sulfonic acid takes center stage in exploring protein-protein interactions. Through integration into diverse assay systems, scientists dissect intricate biological dialogues at a molecular scale. This deep dive aids in unraveling fundamental biological processes and inspires the development of innovative diagnostics and therapeutic strategies, pushing the boundaries of biochemical exploration.
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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.