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April 1, 2026Experimental Eye Research0 citationsOpen Access

Metformin Reduces Intracellular M. tuberculosis Replication and Inflammation in vitro: A Potential Host-Directed Therapy for Ocular Tuberculosis?

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IPIkhwanuliman PuteraNNNicole M.A. NagtzaamSSSigrid M.A. Swagemakers

Key Points

  • This study aims to evaluate metformin as a host-directed therapy for ocular tuberculosis by assessing its effects on M. tuberculosis and inflammation in vitro.
  • Performed in silico drug discovery using a bioinformatics platform.
  • Conducted in vitro assays with retinal pigment epithelial and human retinal endothelial cells infected with M. tuberculosis.
  • Measured colony-forming units and cytokine levels in culture supernatants after metformin treatment.
  • Metformin reduced intracellular M. tuberculosis replication in infected RPE cells (median CFU: 2.4 × 10^5 CFU/mL vs. 3.9 × 10^5 CFU/mL in untreated; p = 0.019).
  • Reduced production of cytokines CCL2/MCP-1 and IL-6 in M. tuberculosis-infected RPE cells and RECs.
  • Observed significant decreases in CXCL10/IP-10, CCL5/RANTES, and IL-8 in human retinal endothelial cells.

Abstract

Ocular tuberculosis (TB) remains a leading cause of infectious uveitis in TB-endemic settings. Antitubercular therapy, with or without adjunctive corticosteroids or immunosuppressive agents, is the mainstay of treatment; however, more rapid resolution of intraocular inflammation is desirable to reduce visual morbidity. This preliminary study investigates metformin as a potential host-directed therapy (HDT) for ocular TB through in silico prediction and validation using in vitro disease models. In silico drug discovery was conducted using a bioinformatics platform. In vitro assays were performed using retinal pigment epithelial (RPE) cells and human retinal endothelial cells (RECs) infected with both the H37Rv and a hypervirulent clinical (Beijing) Mycobacterium tuberculosis ( Mtb) strains, with and without metformin treatment. Colony-forming unit (CFU) assays and cytokine expression levels in culture supernatants were measured. Through in silico prediction, metformin was identified as a potential HDT for ocular TB. It exhibited significant “anti-match” characteristics when compared to inflammatory pathways derived from the transcriptomic profiles of Mtb -infected RPE cells. A reduction in intracellular Mtb replication (t= 48 hours) was observed in Mtb -infected RPE cells treated with 4 mM metformin (median CFU: 2.4 × 10 5 CFU/mL vs. 3.9 × 10 5 CFU/mL in untreated cells; p = 0.019). Metformin treatment decreased the production of CCL2/MCP-1 and IL-6 in both Mtb -infected RPE cells and RECs. Additionally, in RECs, a significant reduction in the production of CXCL10/IP-10, CCL5/RANTES, and IL-8 was observed. Altogether, our data suggests that metformin demonstrates potential as a HDT for ocular TB by inhibiting intracellular Mtb replication and reducing inflammation in in vitro ocular TB models.

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Cite This Study

Putera et al. (2026) studied this question.

synapsesocial.com/papers/69ccb6ce16edfba7beb888bahttps://doi.org/10.1016/j.exer.2026.110989
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Clinical Features and Predictors of Treatment Outcome in Patients with Ocular Tuberculosis from the Netherlands and Indonesia: The OculaR TB in Low versus High Endemic Countries (ORTEC) Study2024 · 10 citations
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  4. 4Mycobacterium tuberculosis clinical isolates of the Beijing and East-African Indian lineage induce fundamentally different host responses in mice compared to H37Rv2019 · 24 citations
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