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Biology subjects

Phan, T. S.

Publications and source records attributed to Phan, T. S..

2 recordsLinked to original sources

Synovium-Restricted Armored PD-1-Targeted CAR-T Cells Reprogram Immunity and Resolve Experimental Arthritis

Despite major therapeutic advances, a substantial fraction of patients with autoimmune disease remains refractory to treatment. While B cell-targeted CAR-T therapies have shown considerable efficacy, the central contribution of pathogenic T cells to rheumatoid arthritis (RA) suggests that complementary T cell-directed strategies may enable deeper disease control. Using single-cell multi-omics of human RA and experimental models, PDCD1 was identified as a selective marker of synovial disease-associated T cells. We developed PD-1-directed CAR-T cells that potently eliminate these cells in vitro and in vivo, leading to marked attenuation of synovitis in RA models. To limit off-target activity, we engineered NR4A2-driven CAR-responsive biosensors to restrict CAR activity to inflamed synovium. To couple anti-PD-1 CAR-mediated cytotoxicity with microenvironmental modulation, we further engineered these CAR-T cells to secrete soluble TNF receptor II (sTNFRii), counteracting baseline inflammation and CAR-induced IFN response and promoting a tissue-reparative myeloid state. PD-1-targeted CAR-T therapy thus represents a promising, specific, and safe strategy for autoimmune diseases involving disease-associated T cells.

immunology↗

Liver Receptor Homolog-1 (LRH-1/NR5A2) orchestrates hepatic inflammation and TNF-induced cell death

Liver Receptor Homolog-1 (LRH-1/NR5A2) is a nuclear receptor that has been shown to promote apoptosis resistance in various tissues and disease contexts, however, its role in liver cell death remains unexplored. Deletion of LRH-1 in hepatocytes developed into a mild steatosis and inflammation already under steady-state conditions. Unexpectedly, hepatocyte-specific deletion of LRH-1 also resulted in a profound protection of mice from TNF-induced hepatocyte apoptosis and associated hepatitis. LRH-1-deficient hepatocytes showed elevated NF-B activity, while LRH-1 overexpression inhibited NF-B activity. This inhibition was based on direct physical interaction of the ligand-binding domain of LRH-1 and the Rel homology domain of NF-B subunit RelA. Mechanistically, we found that increased transcription of anti-apoptotic NF-B target genes, together with proteasomal degradation of pro-apoptotic BIM via regeneration-driven EGF receptor signaling, prevented mitochondrial apoptosis, ultimately protecting mice from TNF-induced liver damage. Collectively, our study demonstrates that LRH-1 is a critical modulator of cell death and inflammation in the healthy and diseased liver. HighlightsO_LIHepatic LRH-1 deletion causes mild liver steatosis, fibrosis, and inflammation. C_LIO_LIFemale LRH-1-deficient mice are protected from TNF-induced liver damage. C_LIO_LILRH-1 interacts with NF-B and inhibits its activity. C_LIO_LILRH-1 deletion-provoked inflammation causes degradation of pro-apoptotic protein BIM. C_LI Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=125 SRC="FIGDIR/small/542039v1_ufig1.gif" ALT="Figure 1"> View larger version (35K): org.highwire.dtl.DTLVardef@13cd609org.highwire.dtl.DTLVardef@1080012org.highwire.dtl.DTLVardef@3cd9c4org.highwire.dtl.DTLVardef@fd0438_HPS_FORMAT_FIGEXP M_FIG C_FIG

cell biology↗