Development of CXCR4 modulators by virtual HTS of a novel amide-sulfamide compound library
Renren Bai1, Qi Shi2, Zhongxing Liang1
1Department of Radiation Oncology, School of Medicine, Emory University, Atlanta, GA, USA.
Abstract:
CXCR4 plays a crucial role in recruitment of inflammatory cells to inflammation sites at the beginning of the disease process. Modulating CXCR4 functions presents a new avenue for anti-inflammatory strategies. However, using CXCR4 antagonists for a long term usage presents potential serious side effect due to their stem cell mobilizing property. We have been developing partial CXCR4 antagonists without such property. A new computer-aided drug design program, the FRESH workflow, was used for anti-CXCR4 lead compound discovery and optimization, which coupled both compound library building and CXCR4 docking screens in one campaign. Based on the designed parent framework, 30 prioritized amide-sulfamide structures were obtained after systemic filtering and docking screening. Twelve compounds were prepared from the top-30 list. Most synthesized compounds exhibited good to excellent binding affinity to CXCR4. Compounds Ig and Im demonstrated notable in vivo suppressive activity against xylene-induced mouse ear inflammation (with 56% and 54% inhibition). Western blot analyses revealed that Ig significantly blocked CXCR4/CXCL12-mediated phosphorylation of Akt. Moreover, Ig attenuated the amount of TNF-α secreted by pathogenic E. coli-infected macrophages. More importantly, Ig had no observable cytotoxicity. Our results demonstrated that FRESH virtual high throughput screening program of targeted chemical class could successfully find potent lead compounds, and the amide-sulfamide pharmacophore was a novel and effective framework blocking CXCR4 function.
Insights
Developing novel CXCR4 antagonists, researchers identified amide-sulfamide compounds with potent anti-inflammatory effects. These compounds effectively reduced inflammation and cytokine production without cytotoxicity, offering a safer therapeutic approach.
Area of Science:
- Medicinal Chemistry
- Immunology
- Pharmacology
Background:
- CXCR4 receptor is vital for inflammatory cell recruitment.
- Current CXCR4 antagonists have side effects due to stem cell mobilization.
- Partial CXCR4 antagonists are being developed as a safer alternative.
Purpose of the Study:
- To discover and optimize novel partial CXCR4 antagonists.
- To identify compounds with anti-inflammatory activity and minimal side effects.
- To evaluate the efficacy of a new computer-aided drug design workflow.
Main Methods:
- Utilized the FRESH workflow for computer-aided drug design and virtual screening.
- Designed and synthesized amide-sulfamide compounds based on a parent framework.
- Assessed compound binding affinity, in vivo anti-inflammatory activity, and molecular mechanisms.
Main Results:
- Identified potent amide-sulfamide CXCR4 antagonists with high binding affinity.
- Compounds Ig and Im showed significant in vivo suppression of ear inflammation.
- Compound Ig inhibited Akt phosphorylation and TNF-α secretion, with no observed cytotoxicity.
Conclusions:
- The FRESH workflow successfully identified potent lead compounds.
- Amide-sulfamide derivatives represent a novel and effective pharmacophore for blocking CXCR4.
- Developed partial CXCR4 antagonists offer a promising, safer anti-inflammatory strategy.
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