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Exploring the interactions of antihistamine with retinoic acid receptor beta (RARB) by molecular dynamics simulations
Minjae J Kim1, Vishnutheertha Kulkarni2, Micah A Goode1
1University of Tennessee Health Sciences Center School of Medicine, Memphis, TN, USA.
Abstract:
Kaposi sarcoma (KS) is one of the most common AIDS-related malignant neoplasms, which can leave lesions on the skin among HIV patients. These lesions can be treated with 9-cis-retinoic acid (9-cis-RA), an endogenous ligand of retinoic acid receptors that has been FDA-approved for treatment of KS. However, topical application of 9-cis-RA can induce several unpleasant side effects, like headache, hyperlipidemia, and nausea. Hence, alternative therapeutics with less side effects are desirable. There are case reports associating over-the-counter antihistamine usage with regression of KS. Antihistamines competitively bind to H1 receptor and block the action of histamine, best known for being released in response to allergens. Furthermore, there are already dozens of antihistamines that are FDA-approved with less side effects than 9-cis-RA. This led our team to conduct a series of in-silico assays to determine whether antihistamines can activate retinoic acid receptors. First, we utilized high-throughput virtual screening and molecular dynamics simulations to model high-affinity interactions between antihistamines and retinoic acid receptor beta (RARβ). We then performed systems genetics analysis to identify a genetic association between H1 receptor itself and molecular pathways involved in KS. Together, these findings advocate for exploration of antihistamines against KS, starting with our two promising hit compounds, bepotastine and hydroxyzine, for experimental validation study in the future.
Insights
Antihistamines may treat Kaposi sarcoma (KS), an AIDS-related cancer. Researchers found that antihistamines could activate retinoic acid receptors, suggesting a new therapeutic avenue for KS with potentially fewer side effects than current treatments.
Area of Science:
- Oncology
- Pharmacology
- Immunology
Background:
- Kaposi sarcoma (KS) is a common AIDS-related cancer causing skin lesions in HIV patients.
- Current treatment, 9-cis-retinoic acid (9-cis-RA), has significant side effects.
- Antihistamines, widely used with fewer side effects, have been anecdotally linked to KS regression.
Approach:
- Utilized high-throughput virtual screening and molecular dynamics simulations to assess antihistamine interactions with retinoic acid receptor beta (RARβ).
- Conducted systems genetics analysis to identify genetic links between H1 receptor and KS-related pathways.
- Investigated the potential of antihistamines as alternative therapeutics for Kaposi sarcoma.
Key Points:
- Identified high-affinity interactions between specific antihistamines and RARβ.
- Established a genetic association between H1 receptor and molecular pathways implicated in KS.
- Highlighted bepotastine and hydroxyzine as promising candidates for further study.
Conclusions:
- Antihistamines show potential as a novel therapeutic strategy for Kaposi sarcoma.
- This research supports exploring antihistamines for KS treatment, offering a potentially safer alternative to 9-cis-RA.
- Further experimental validation is warranted for identified antihistamine compounds.
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