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Showing 1 to 20 of 47 for “"T-cell receptors"”.

  1. Engineering human single-chain T cell receptors

    The alpha-beta T cell receptor (TCR) is responsible for mediating T cell recognition of self and non-self tissues, through recognition between a complex of a peptide and a product of the major histocompatibility complex (pepMHC) on target cells. In the immune response to cancerous tissue, the …

    uiuc Repository record for Engineering human single-chain T cell receptors (opens in a new tab)

  2. Engineering T Cell Receptors for Potential Therapeutic Applications

    … selections have involved incubating yeast cells with fluorescently labeled recombinant pepMHC ligand. Many pepMHC ligands are difficult to express and purify, so an alternative affinity selection strategy that obviates the need for this material would likewise facilitate affinity …

    uiuc Repository record for Engineering T Cell Receptors for Potential Therapeutic Applications (opens in a new tab)

  3. Engineering and Characterization of High-Affinity T Cell Receptors

    In Chapter 6, the role of TCR affinity in T cell activation was studied using CD8-negative T cells, as well as T cells expressing the co-receptor CD8. The peptide sensitivity of T cells that expressed the highest-affinity TCRs reached a plateau, suggesting the existence of an affinity maximum for T …

    uiuc Repository record for Engineering and Characterization of High-Affinity T Cell Receptors (opens in a new tab)

  4. Intratumoral B and T cell receptors: reconstruction and analysis

    When cells divide, mistakes happen. However, an intricate surveillance system has evolved to detect and eliminate anomalous cells before they become detrimental to the host organism. In cancer, abnormal cells manage to escape the immune system and grow uncontrollably. In this sense, cancer can be …

    cambridge Repository record for Intratumoral B and T cell receptors: reconstruction and analysis (opens in a new tab)

  5. Engineering and characterizing human T cell receptors for cancer immunotherapies

    The T cell receptor (TCR) is an heterodimer that binds to a short peptide bound to a product of the major histocompatibility complex (MHC). The chains each contain variable (V) and constant (C) region domains, followed by a transmembrane region. Each V domain contains three loops, called …

    uiuc Repository record for Engineering and characterizing human T cell receptors for cancer immunotherapies (opens in a new tab)

  6. Engineering and characterization of human single-chain T cell receptors

    All nucleated cells display a sampling of their protein contents in the form of short 9-10 amino acid peptides bound to a product of the major histocompatibility complex (MHC) on the cell surface. This class of MHC-restricted antigens provides the broadest class of potential disease targets, as the …

    uiuc Repository record for Engineering and characterization of human single-chain T cell receptors (opens in a new tab)

  7. Recognition of hepatitis B epitopes by T cell receptors and T cell receptor-like antibodies

    T cells play a vital role in the adaptive immune response against viral infections. Virus-specific T cells recognize infected cells through a heterodimeric surface receptor known as the αβ T cell receptor (TCR). The TCR recognizes a peptide epitope presented by a product of the major …

    uiuc Repository record for Recognition of hepatitis B epitopes by T cell receptors and T cell receptor-like antibodies (opens in a new tab)

  8. Engineering T Cell Receptors to Examine the Role of Affinity and *Kinetics in T Helper Cell Function

    Chapter five details the engineering of a class II restricted human TCR isolated from a patient with multiple sclerosis called 3A6. Yeast display of TCRs has previously relied on the use of an antibody specific for a properly folded TCR, here various strategies were used to generate stabilized 3A6 …

    uiuc Repository record for Engineering T Cell Receptors to Examine the Role of Affinity and *Kinetics in T Helper Cell Function (opens in a new tab)

  9. The Use of High-Affinity T Cell Receptors to Study Specificity in the 2C T Cell System

    … virus or tumor antigens (peptide-MHC) on the cell surface. In addition, the TCRs would provide a useful probe for tracking the processing and presentation of specific antigens. Chapter 6 discusses the development of soluble single-chain TCRs with enhanced properties, such as increased avidity …

    uiuc Repository record for The Use of High-Affinity T Cell Receptors to Study Specificity in the 2C T Cell System (opens in a new tab)

  10. Adoptive cell therapy using primary T lymphocytes with genetically engineered T cell receptors against melanoma and glioma

    … results, including therapy with adoptive cell transfer (ACT) of T lymphocytes. T cell immunotherapy is highly attractive because T cells have the ability to selectively recognize and destroy malignant neoplastic cells. Although a promising approach, one of the limitations encountered …

    uiuc Repository record for Adoptive cell therapy using primary T lymphocytes with genetically engineered T cell receptors against melanoma and glioma (opens in a new tab)

  11. Statistical physics of T cell receptor development and antigen specificity

    … made in understanding pertinent molecular and cellular phenomena, the mechanistic principles that govern many aspects of an immune response are not known. In this thesis, I illustrate how complementary approaches from the physical and life sciences can help confront this challenge. …

    mit Repository record for Statistical physics of T cell receptor development and antigen specificity (opens in a new tab)

  12. Model systems for the retargeting of T cell-mediated immunity to tumor antigens

    B cells and T cells are involved in the response against foreign antigens. Specificity of B cells is determined by antibodies while the specificity of T cells is determined by similar proteins called T-cell receptors. One function of T cells is surveillance against tumor cells. Progressing tumors …

    uiuc Repository record for Model systems for the retargeting of T cell-mediated immunity to tumor antigens (opens in a new tab)

  13. Determination of class II peptide-MHC repertoires and recognition via large yeast-displayed libraries

    T cells occupy essential roles throughout the immune system to prevent and limit disease. As such, breakdowns in their function and recognition underlie poor clinical outcomes across diverse maladies including pathogen infection, cancer, autoimmunity, allergies, and transplant rejection. Yet, when …

    mit Repository record for Determination of class II peptide-MHC repertoires and recognition via large yeast-displayed libraries (opens in a new tab)

  14. Tsyn-Seq: A T Cell Synapse-Based Antigen Identification Platform

    … histocompatibility complex targets of T-cell receptors (TCRs) are not yet universally available. We present a new antigen screening method, the T-synapse (Tsyn) reporter system, which includes antigen-presenting cells (APCs) with a Fas-inducible NF-κB reporter and T cells with a nuclear …

    uthsc Repository record for Tsyn-Seq: A T Cell Synapse-Based Antigen Identification Platform (opens in a new tab)

  15. T-cell Receptor CDR3 Sequence but Not Recognition Characteristics Distinguish Autoreactive Effector and Foxp3+ Regulatory T-cells

    <p>Regulatory T-cells (Treg) play an important role in maintaining immune tolerance to self-antigens and in suppressing excessive immune responses in the host. The source, specificity, and plasticity of the forkhead box transcription factor 3 (Foxp3<sup>+</sup>) Treg and conventional T (Tconv) cell

    tenn-hsc Repository record for T-cell Receptor CDR3 Sequence but Not Recognition Characteristics Distinguish Autoreactive Effector and Foxp3+ Regulatory T-cells (opens in a new tab)

  16. Mechanisms of generating T cell receptor diversity

    T cells are able to respond to foreign antigens by means of a diverse repertoire of antigen-specific receptors (T cell receptors or TCRs). There are two classes of TCRs ($\alpha\beta$ and $\gamma\delta$) that are found on mutually exclusive populations of T cells. Diversity in each receptor subunit …

    uiuc Repository record for Mechanisms of generating T cell receptor diversity (opens in a new tab)

  17. Inferring mechanisms of V(D)J recombination using statistical inference on high-throughput immune repertoire data

    … generate highly diverse repertoires of B cell and T cell receptors through a random process called V(D)J recombination. Receptor diversity arises during recombination from the combinatorial assembly of V(D)J genes and the junctional deletion and insertion of nucleotides. While molecular …

    washington Repository record for Inferring mechanisms of V(D)J recombination using statistical inference on high-throughput immune repertoire data (opens in a new tab)

  18. Autosomal random asynchronous replication is analogous to X-chromosome inactivation

    … a number of autosomal genes, including odorant receptors, immunoglobulins, T-cell receptors, interleukins, natural killer-cell receptors, and pheromone receptors. Random asynchronous replication of DNA in S-phase represents an epigenetic mark that often parallels monoallelic expression. All …

    mit Repository record for Autosomal random asynchronous replication is analogous to X-chromosome inactivation (opens in a new tab)

  19. Structural basis for escaping negative selection by T cell receptor with high affinity for self antigen

    The failure to eliminate self-reactive T cells is a prerequisite for autoimmunity. To escape thymic deletion, autoreactive T cell receptors (TCRs) may form relatively unstable complexes with self-peptide-MHC. These TCRs adopt suboptimal docking topologies in striking contrast to the classical …

    maryland Repository record for Structural basis for escaping negative selection by T cell receptor with high affinity for self antigen (opens in a new tab)

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