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Biology subjects

Sezgin, Y.

Publications and source records attributed to Sezgin, Y..

3 recordsLinked to original sources

Allogeneic Polyclonal CD38KO/CD38-CAR γδT Cells For The Treatment Of T Cell Malignancies

Relapsed and refractory T cell malignancies are associated with poor clinical outcomes. Autologous sources of {beta}T cells have been employed for chimeric antigen receptor (CAR) therapies to eliminate the potential for graft-vs-host disease (GvHD). However, the application of CAR-T therapy for T-ALL has been hindered by an inability to obtain sufficient healthy {beta}T cells from patients combined with fratricide due to concurrent antigen expression on normal T cells. Here, we genetically engineered polyclonal {gamma}{delta}T cells, which do not cause GvHD, as an allogeneic source for cancer immunotherapy targeting the pancancer antigen CD38. Utilizing a novel expansion protocol in combination with CRISPR/AAV gene editing, we developed CD38KO/CD38-CAR polyclonal {gamma}{delta}T cells that target T-ALL. Our editing strategy enabled site-directed, on-target insertion of the CD38-CAR transgene into the CD38 locus, with no evidence of significant random CAR DNA integration (as commonly seen with lentiviral CAR transduction) or chromatin abnormalities resulting from CRISPR editing. This enhanced targeting effectively mitigated fratricide through simultaneous CD38 disruption and CAR expression. We demonstrated the efficacy of the CD38KO/CD38-CAR {gamma}{delta}T cells in vitro across multiple patient-derived T-ALL samples collected at baseline and relapse. In vivo, a single injection of CD38KO/CD38-CAR {gamma}{delta}T cells without exogenous cytokine support resulted in potent anti-leukemic efficacy. Fratricide-resistant CD38KO/CD38-CAR polyclonal {gamma}{delta}T cells thus represent a promising off-the-shelf therapeutic platform for T cell malignancies and other CD38-expressing cancers. Key PointsO_LIHybrid pan-{gamma}{delta}TCR antibody/mbIL21-41BBL feeder expansion yields high-purity, polyclonal {gamma}{delta}T cells suitable for CRISPR/AAV editing. C_LIO_LIOn-target CD38-CAR knock-in with simultaneous CD38 knockout prevents fratricide and enables potent T-ALL killing in vitro and in vivo. C_LI

immunology↗

REMEDY: REpair of heterozygous Mutations independent of Exogenous Donor template with high efficiency using allele specific CRISPR targeting and HDR enhancers

We report the development of REMEDY (REpair of heterozygous Mutations independent of Exogenous Donor template with high efficiencY), a genome editing strategy that allows efficient repair of heterozygous mutations in human and mouse cells without necessitating an exogenous donor DNA template. Here, we used in-PAM or near-PAM CRISPR strategies to induce a double-strand break (DSB) in mutant alleles. Following the DSB, the wild-type homologous chromosome itself serves as an endogenous DNA donor template and initiates the correction of the mutant allele. Concurrently treating the cells with HDR enhancers, such as AZD7648, further improved the efficiency of the correction. We demonstrated the utility of REMEDY in the context of six different diseases with heterozygous mutations such as IBMPFD, cystic fibrosis, progeria, ITPR3-associated combined immunodeficiency, ACTA1, and TBCD in human patient derived primary cells and complementary mouse model cell lines. O_FIG O_LINKSMALLFIG WIDTH=91 HEIGHT=200 SRC="FIGDIR/small/641201v1_ufig1.gif" ALT="Figure 1"> View larger version (18K): org.highwire.dtl.DTLVardef@5f6c41org.highwire.dtl.DTLVardef@bc50d5org.highwire.dtl.DTLVardef@15edca2org.highwire.dtl.DTLVardef@e74ada_HPS_FORMAT_FIGEXP M_FIG Graphical Abstract C_FIG

genetics↗

FBM: Freestanding bilayer microscope for single-molecule imaging of membrane proteins

Integral membrane proteins (IMPs) constitute a large fraction of organismal proteomes, playing fundamental roles in physiology and disease. Despite their importance, the mechanisms underlying dynamic features of IMPs, such as anomalous diffusion, protein-protein interactions, and protein clustering, remain largely unknown due to the high complexity of cell membrane environments. Available methods for in vitro studies are insufficient to study IMP dynamics systematically. This publication introduces the Freestanding-Bilayer Microscope (FBM), which combines the advantages of freestanding bilayers with single-particle tracking. The FBM, based on planar lipid bilayers, enables the study of IMP dynamics with single-molecule resolution and unconstrained diffusion. This paper benchmarks the FBM against total internal reflection fluorescence (TIRF) imaging on supported bilayers and is used here to estimate ion channel open probability and to examine the diffusion behavior of an ion channel in phase- separated bilayers. The FBM emerges as a powerful tool to examine membrane protein/lipid organization and dynamics to understand cell membrane processes.

biophysics↗