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Updated: May 18, 2026

SA-β-Galactosidase-Based Screening Assay for the Identification of Senotherapeutic Drugs
Published on: June 28, 2019
Screening system of blocking agents of the receptor for advanced glycation endproducts in cells using fluorescence
Dong Ho Jung1, Young Sook Kim, Jin Sook Kim
1Korean Medicine-Based Herbal Drug Research Group, Herbal Medicine Research Division, Korea Institute of Oriental Medicine (KIOM), 1672 Yuseongdae-ro, Yuseong-gu, Daejeon 305–811, Korea.
Abstract:
Activation of the receptor for advanced glycation endproducts (RAGE) triggers cellular responses implicated in the pathogenesis of diabetic complications; blockade of RAGE has been shown to inhibit the development of diabetic complications. To develop a screening system to identify novel disruptors of advanced glycation endproducts (AGE)-RAGE binding, we used an AGE-RAGE binding system in RAGE-overexpressing cells; test compounds were screened using this system. To construct human RAGE-overexpressing cells, mouse mesangial cells (MMCs) were stably transfected with the pcDNA-human RAGE (hRAGE) vector and selected under 1 mg/mL gentamicin (G418). RAGE expression in hRAGE-overexpressing MMCs was analyzed by Western blotting with specific RAGE antibody. To identify novel disruptors of AGE-RAGE binding, 50 single compounds and AGE-bovine serum albumin (BSA)-Alexa 488 (AGE-BSA labeled with Alexa 488) were treated to the hRAGE-overexpressing MMCs. Nonbinding AGE-BSA-Alexa 488 was washed and fluorescence measured by microtiter plate reader (excitation wavelength, 485 nm; emission wavelength, 528 nm). In hRAGE-overexpressing cells, only treatment with AGE-BSA-Alexa 488 significantly increased fluorescence intensity in a dose-dependent manner. Of 50 compounds tested, genistein disrupted AGE-RAGE binding in a dose-dependent manner. This AGE-RAGE binding system using AGE-BSA-Alexa 488 in hRAGE-overexpressing cells was suitable for screening of agents that disrupt AGE-hRAGE binding.
Insights
Researchers developed a new screening system to find compounds that block advanced glycation endproducts (AGE)-RAGE binding, crucial for diabetic complications. Genistein was identified as a disruptor, showing potential for therapeutic development.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Activation of the receptor for advanced glycation endproducts (RAGE) is implicated in diabetic complications.
- Blocking RAGE has shown potential in inhibiting the development of these complications.
Purpose of the Study:
- To develop a screening system for identifying novel disruptors of advanced glycation endproducts (AGE)-RAGE binding.
- To screen compounds using this system to find potential therapeutic agents.
Main Methods:
- Constructed human RAGE-overexpressing mouse mesangial cells (MMCs) via transfection.
- Utilized an AGE-bovine serum albumin-Alexa 488 (AGE-BSA) binding assay in RAGE-overexpressing cells.
- Screened 50 compounds for their ability to disrupt AGE-RAGE binding via fluorescence measurement.
Main Results:
- The developed AGE-RAGE binding system in RAGE-overexpressing cells was suitable for screening.
- Genistein was identified as a compound that disrupts AGE-RAGE binding in a dose-dependent manner.
- AGE-BSA-Alexa 488 treatment significantly increased fluorescence intensity in a dose-dependent manner in hRAGE-overexpressing cells.
Conclusions:
- A novel and effective screening system for AGE-RAGE binding disruptors was established.
- Genistein shows promise as a potential therapeutic agent by disrupting AGE-RAGE interactions.
- This system facilitates the discovery of new therapeutic strategies for diabetic complications.
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