webinar
Oct. 27-28, 2025, Boston, MA, USA - Booth 114.
Read More

Boc-gly-PEG3-endo-BCN

  CAS No.: 2110444-63-6   Cat No.: BADC-01062   Purity: ≥95% 4.5  

Boc-gly-PEG3-endo-BCN is a protected ADC linker combining endo-BCN for click reactions and Boc-protected glycine. Ideal for designing site-specific antibody conjugates via strain-promoted cycloadditions.

Boc-gly-PEG3-endo-BCN

Structure of 2110444-63-6

Quality
Assurance

Worldwide
Delivery

24/7 Customer
Support
Category
ADC Linker
Molecular Formula
C28H47N3O8
Molecular Weight
553.69
Shipping
Room temperature
Shipping
Store at -20 °C, keep in dry and avoid sunlight.

* For research and manufacturing use only. We do not sell to patients.

Size Price Stock Quantity
-- $-- In stock

Looking for different specifications? Click to request a custom quote!

Capabilities & Facilities

Popular Publications Citing BOC Sciences Products
Synonyms
Bicyclo[6.1.0]non-4-yn-9-ylmethyl tert-butyl (2-oxo-7,10,13-trioxa-3-azahexadecane-1,16-diyl)dicarbamate
IUPAC Name
Canonical SMILES
CC(C)(C)OC(=O)NCC(=O)NCCCOCCOCCOCCCNC(=O)OCC1C2C1CCC#CCC2
InChI
InChI=1S/C28H47N3O8/c1-28(2,3)39-27(34)31-20-25(32)29-12-8-14-35-16-18-37-19-17-36-15-9-13-30-26(33)38-21-24-22-10-6-4-5-7-11-23(22)24/h22-24H,6-21H2,1-3H3,(H,29,32)(H,30,33)(H,31,34)
InChIKey
SPXNLNQWLORDDS-UHFFFAOYSA-N
Solubility
10 mm in DMSO
Shelf Life
-20°C 3 years powder; -80°C 2 years in solvent
Shipping
Room temperature
Storage
Store at -20 °C, keep in dry and avoid sunlight.

Boc-gly-PEG3-endo-BCN is a versatile chemical compound used primarily in bioconjugation and molecular biology. Here are some key applications of Boc-gly-PEG3-endo-BCN:

Targeted Drug Delivery: Boc-gly-PEG3-endo-BCN can be used to conjugate therapeutic agents to targeting molecules, such as antibodies or peptides. This facilitates the delivery of drugs directly to specific cells or tissues, enhancing treatment efficacy while minimizing side effects. It is particularly useful in developing targeted cancer therapies and precision medicine approaches.

Protein Labeling: The compound can be employed in labeling proteins for imaging and analytical applications. By attaching fluorophores or other probes to proteins via Boc-gly-PEG3-endo-BCN, researchers can track protein localization, interactions, and dynamics in live cells. This technique aids in understanding cellular processes and protein functions in real-time.

Biomaterials Development: Boc-gly-PEG3-endo-BCN is utilized in the fabrication of advanced biomaterials for tissue engineering and regenerative medicine. Its ability to form stable linkages with various biomolecules makes it ideal for designing scaffolds that promote cell attachment and growth. This contributes to the development of functional tissue constructs and improved healing outcomes.

Surface Functionalization: The compound can be used to functionalize surfaces of medical devices and biosensors. By modifying surfaces with Boc-gly-PEG3-endo-BCN, researchers can create biocompatible interfaces that enhance the performance of implants and diagnostic tools. This application is crucial for improving the interaction between devices and biological environments.

The molarity calculator equation

Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)

The dilution calculator equation

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)

This equation is commonly abbreviated as: C1V1 = C2V2

Related Products

Contact our experts today for pricing and comprehensive details on our ADC offerings.

You May Also Be Interested In

From cytotoxin synthesis to linker design, discover our specialized services that complement your ADC projects.

ADC Linker Development Enzyme Cleavable Linker Cathepsin B Cleavable Linker/Peptide Linker Phosphatase Cleavable Linker β-Glucuronide Linker β-Galactosidase Cleavable Linker Sulfatase Cleavable Linker Chemically Cleavable Linker Non-Cleavable Linker Services Acid Cleavable Linker/Hydrazone Linker

Unlock Deeper ADC Insights

Learn more about payload design, linker strategies, and integrated CDMO support through our curated ADC content.

Linkers - A Crucial Factor in Antibody–Drug Conjugates In-Depth Review of ADC Linkers: Types, Mechanisms, and Research Progress New Structural Insights Solve Instability Issues of Maleimide Linkers in ADCs PEG Linkers in Antibody-Drug Conjugates Peptide Linkers in Antibody-Drug Conjugates Disulfide Linkers in Antibody-Drug Conjugates Biotinylation Reagents in Antibody-Drug Conjugates Maleimide Linkers in Antibody-Drug Conjugates Current ADC Linker Chemistry SPDB Linkers in Antibody-Drug Conjugates

Explore More ADC Products

Find exactly what your project needs from our expanded range of ADCs, offering flexible options to fit your timelines and goals.

ADC Cytotoxin

Powerful Targeted Cancer Solutions

ADC  Cytotoxin with Linker

Enhanced Stability And Efficacy

ADC Linker

Precise Conjugation For Success

Antibody-Drug  Conjugates (ADCs)

Maximized Therapeutic Performance

Auristatins

Next-Level Tubulin Inhibition

Calicheamicins

High-Impact DNA Targeting

Camptothecins

Advanced Topoisomerase Inhibition

Daunorubicins / Doxorubicins

Trusted Anthracycline Payloads

Duocarmycins

Potent DNA Alkylation Agents

Maytansinoids

Superior Microtubule Disruption

Pyrrolobenzodiazepines

Ultra-Potent DNA Crosslinkers

Traditional Cytotoxic Agents

Proven Chemotherapy Solutions

Cleavable Linker

Precise Intracellular Drug Release

Non-Cleavable Linker

Exceptional Long-Term Stability

Historical Records:
Send Inquiry
Verification code
Inquiry Basket