Publications by authors named "Barry Kriegsman"

Importance: Immune checkpoint inhibitors (CPIs) are now part of standard therapy for patients with recurrent or metastatic head and neck squamous cell carcinoma (HNSCC) because of improved outcomes compared with chemotherapy in clinical trials. However, data on outcomes in patients with HNSCC in the general population who are treated with CPIs remain limited.

Objective: To assess response rates, survival outcomes, and associations with key clinical covariates in a large, contemporary cohort of patients with recurrent or metastatic mucosal HNSCC who were treated with CPIs with or without chemotherapy.

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Over the course of the last century, otolaryngology-head and neck surgery has made significant medical and surgical advancements. Several of these efforts are credited to women and minorities despite their having faced systemic barriers to entering medical schools and the medical professions. This article highlights some of these pioneering doctors and their contributions to the field.

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To arise and progress, cancers need to evade immune elimination. Consequently, progressing tumors are often MHC class I (MHC-I) low and express immune inhibitory molecules, such as PD-L1, which allows them to avoid the main antitumor host defense, CD8 T cells. The molecular mechanisms that led to these alterations were incompletely understood.

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To monitor the health of cells, the immune system tasks antigen-presenting cells with gathering antigens from other cells and bringing them to CD8 T cells in the form of peptides bound to MHC-I molecules. Most cells would be unable to perform this function because they use their MHC-I molecules to exclusively present peptides derived from the cell's own proteins. However, the immune system evolved mechanisms for dendritic cells and some other phagocytes to sample and present antigens from the extracellular milieu on MHC-I through a process called cross-presentation.

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Generation of potent antibodies by a mutation-selection process called affinity maturation is a key component of effective immune responses. Antibodies that protect against highly mutable pathogens must neutralize diverse strains. Developing effective immunization strategies to drive their evolution requires understanding how affinity maturation happens in an environment where variants of the same antigen are present.

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gp120 is a substrate for protein engineering both for human immunodeficiency virus (HIV) immunogen design and as a bait for isolating anti-HIV antibodies from patient samples. In this work, we describe the display of a stripped core gp120 on the yeast cell surface. Validation against a panel of neutralizing antibodies confirms that yeast-displayed gp120 presents the CD4 binding site in the correct conformation.

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G-quadruplexes are four-stranded nucleic acid structures whose biological functions remain poorly understood. In the yeast S. cerevisiae, we report that G-quadruplexes form and, if not properly processed, pose a specific challenge to replication.

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