Back

Aging of the blood-brain barrier: Metabolic signatures of mouse brain endothelial cell senescence

Tahir, A.; Balasubramanian, H. B.; Kahr, D.; Haage, F.; Zille, M.

2025-08-18 neuroscience
10.1101/2025.08.14.670255 bioRxiv
Show abstract

The blood-brain barrier (BBB) serves as a critical boundary between the peripheral circulation and the brain. Brain endothelial cells (BECs), which form the inner lining of cerebral blood vessels, play a key role in maintaining this barrier. They express tight junction proteins that prevent molecules from leaking between cells into the brain and efflux transporters that actively remove substances from the brain. As we age, the BBB becomes leaky and dysfunctional, leading to cerebrovascular diseases and dementia. Here, we investigated how BECs become senescent, a major feature of aging, and change their metabolic profile. First, we demonstrate that both the chemotherapeutic doxorubicin, a known inducer of cellular senescence, as well as hydrogen peroxide, a mediator of oxidative stress, induce BEC senescence. This was indicated by positive senescence-associated {beta}-galactosidase staining (P = 0.002 and P = 0.001 for doxorubicin and H2O2, respectively) and increased P16 gene expression (both P = 0.004). Next, we analyzed the metabolic profile of the senescent cells using mass spectrometry. We identified 47 significantly altered metabolites (P < 0.05) in cells and 65 in the supernatant samples of doxorubicin-induced senescent cells, as well as, 53 significantly altered metabolites in cells and 82 in the supernatant samples of H2O2-induced senescent cells. There was an overlap of 10 and 44 metabolites between both treatments in the cell and supernatant samples, respectively. Of those, 9 cellular and 12 supernatant metabolites have already been reported in the literature to be changed during senescence in the brain or other organs. We also identified new metabolites and provide pathway analyses of the significantly altered metabolites. These analyses are the first to characterize BBB cell senescence at a metabolite level and provide the basis for the development of novel therapeutic interventions for age-related neurological disorders. HighlightsO_LIHydrogen peroxide and doxorubicin induced senescence in mouse brain endothelial cells C_LIO_LISenescent cells showed increased SA-{beta}-galactosidase activity and p16 expression C_LIO_LIWe provide the first metabolic profiling of senescent brain endothelial cells C_LIO_LILipids and amino acid metabolites play a major role in brain endothelial senescence C_LIO_LIFindings provide new insights into blood-brain barrier aging and therapeutic targets C_LI Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=75 SRC="FIGDIR/small/670255v1_ufig1.gif" ALT="Figure 1"> View larger version (29K): org.highwire.dtl.DTLVardef@9a09d9org.highwire.dtl.DTLVardef@fca089org.highwire.dtl.DTLVardef@18fba45org.highwire.dtl.DTLVardef@10e2796_HPS_FORMAT_FIGEXP M_FIG C_FIG

Matching journals

The top 8 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.