Related Experiment Video
Updated: Jan 27, 2026

Procedures of Laboratory Fumigation for Pest Control with Nitric Oxide Gas
Published on: November 24, 2017
Anti-CD24 Antibody-Nitric Oxide Conjugate Selectively and Potently Suppresses Hepatic Carcinoma
Fumou Sun1, Yang Wang1, Xiaojun Luo2
1Antibody Engineering Laboratory, School of Life Science & Technology, China Pharmaceutical University, Nanjing, China.
Abstract:
Nitric oxide (NO) has a wide range of potential applications in tumor therapy. However, a targeted delivery system for NO donors has remained elusive, creating a bottleneck that limits its druggability. The antibody-drug conjugate (ADC) is a targeted drug delivery system composed of an antibody linked to an active cytotoxic drug. This design may compensate for the weak targeting ability and various biological functions of the NO donor. In this study, we designed the NO donor HL-2, which had a targeted, cleaved disulfide bond and an attachable maleimide terminal. We conjugated HL-2 with an antibody that targeted CD24 through a thioether bond to generate an ADC-like immunoconjugate, antibody-nitric oxide conjugate (ANC), which we named HN-01. HN-01 showed efficient internalization and significantly increased the release of NO in hepatic carcinoma cells in vitro. HN-01 induced apoptosis of tumor cells and suppressed tumor growth in hepatic carcinoma-bearing nude mice through antibody-dependent co-toxicity; HN-01 also increased NO levels in tumor cells. Collectively, this study expands the concept of ADC and provides an innovative NO donor and ANC to address current challenges in targeted delivery of NO. This new inspiration for an ANC design can also be used in future studies for other molecules with intracellular targets. SIGNIFICANCE: This study is the first to expand the concept of ADC with an antibody-nitric oxide conjugate that suppresses hepatic carcinoma in vitro and in vivo.
Insights
This study introduces antibody-nitric oxide conjugates (ANCs) for targeted cancer therapy. These novel ANCs deliver nitric oxide (NO) donors, enhancing tumor cell apoptosis and suppressing growth in hepatic carcinoma models.
Area of Science:
- Oncology
- Drug Delivery
- Bioconjugation
Background:
- Nitric oxide (NO) shows promise in tumor therapy, but targeted delivery remains a challenge.
- Antibody-drug conjugates (ADCs) offer a targeted delivery platform.
- Developing effective NO delivery systems is crucial for cancer treatment.
Purpose of the Study:
- To design and evaluate an antibody-nitric oxide conjugate (ANC) for targeted hepatic carcinoma therapy.
- To assess the efficacy of the ANC in vitro and in vivo.
- To expand the application of ADC technology for NO delivery.
Main Methods:
- Designed a novel NO donor (HL-2) with a cleavable disulfide bond and maleimide terminus.
- Conjugated HL-2 to a CD24-targeting antibody to create an ANC (HN-01).
- Evaluated HN-01's internalization, NO release, and anti-tumor effects in hepatic carcinoma cells and mouse models.
Main Results:
- HN-01 demonstrated efficient internalization and increased NO release in hepatic carcinoma cells.
- HN-01 induced tumor cell apoptosis and suppressed tumor growth in vivo.
- The ANC effectively increased NO levels within tumor cells.
Conclusions:
- This study presents the first antibody-nitric oxide conjugate (ANC) for targeted cancer therapy.
- The developed ANC (HN-01) effectively suppresses hepatic carcinoma in vitro and in vivo.
- This work provides a novel strategy for targeted NO delivery and expands ADC concepts for intracellular targets.
Related Concept Videos
Nitric Oxide Signaling Pathway
Oxidation of Alkenes: Anti Dihydroxylation with Peroxy Acids
Conjugated Proteins
Nucleoproteins are protein complexes that contain nucleic acids, categorized as deoxyribonucleoproteins (DNPs) or ribonucleoproteins (RNPs) respectively. The nucleosome is a typical example of a DNP where nuclear DNA is associated with histone proteins. The major antigen for the Covid-19 virus SARS-CoV is an RNP that is critical...
Conjugated Proteins
Oxidation Numbers
Conjugation

