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Biology subjects

Michaelides, L.

Publications and source records attributed to Michaelides, L..

2 recordsLinked to original sources

Intracranial Targeting of Cholesterol Processing Reveals a Therapeutic Vulnerability that Reprograms Glioblastoma and Promotes Antitumor Immunity

Glioblastoma (GBM) remains the most lethal primary brain cancer due to its remarkable metabolic plasticity and therapeutic resistance. Here, we identify cholesterol dependency as a therapeutically exploitable vulnerability in GBM using two FDA approved drugs: the H1 histamine antagonist clemastine and the retinoid X receptor agonist bexarotene. Combined treatment induces potent synergistic anti tumor activity across patient-derived glioma models, suppressing proliferation, stemness, and survival at sub IC50 concentrations. Mechanistically, this therapy disrupts cholesterol biosynthesis, transport, and homeostasis, triggering endoplasmic reticulum stress and activation of the unfolded protein response, ultimately leading to autophagy and apoptotic cell death. Orthotopic patient derived glioma models recapitulate these mechanisms in vivo, where local intracranial administration significantly reduces tumor progression and prolongs survival using fourfold lower doses than systemic intraperitoneal delivery. Single cell RNA sequencing revealed activation of regeneration and plasticity programs, accompanied by immune microenvironment remodeling and enhanced inflammatory signaling. Importantly, syngeneic models preserved immune cell composition, supporting future integration with immunotherapeutic strategies. Together, these findings establish cholesterol dysregulation induced metabolic collapse as a promising therapeutic approach for GBM.

cancer biology↗

Whole-organism screening in a zebrafish model of CLN2 disease identifies pregnenolone as a modulator of lysosomal functions with anti-epileptic properties

Lysosomal storage disorders (LSDs), a group of inherited genetic diseases, are often associated with early-onset neurodegeneration and refractory epileptic seizures. In CLN2 disease, an LSD caused by recessively inherited dysfunction of lysosomal serine protease Tripeptidyl Peptidase 1 (TPP1), lysosomes are functionally impaired through a characteristic accumulation of subcellular materials. Here, we develop and apply a whole-organism screening workflow in tpp1-/- zebrafish to identify small molecules that suppress epileptic seizures - a hallmark of the human disease - in this model. Among 640 US Food and Drug Administration-approved drugs, pregnenolone, an endogenous precursor for steroid biosynthesis, efficiently suppresses seizures and cell death in tpp1-/- zebrafish. Using a semi-automated high-content workflow, we further show that pregnenolone normalizes lysosomal architecture in tpp1-/- zebrafish. Pregnenolone stimulates steroid hormone biosynthesis and related gene expression, which is dysregulated in tpp1-/- zebrafish. Taken together, tpp1-/- zebrafish are a suitable model to study CLN2 disease, in which we have identified pregnenolone as a candidate with therapeutic properties.

pharmacology and toxicology↗