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  <title><![CDATA[PhD Proposal by Aaron Rosado]]></title>
  <body><![CDATA[<p><strong>Aaron Rosado</strong></p>

<p><strong>BME PhD Proposal Presenation</strong></p>

<p>&nbsp;</p>

<p><strong>Date: </strong>December 3<sup>rd</sup>, 2018</p>

<p><strong>Time: </strong>1:00pm</p>

<p><strong>Location:</strong> McIntire Room</p>

<p><strong>Advisor: </strong>Cheng Zhu</p>

<p>&nbsp;</p>

<p><strong>Committee Members:&nbsp;</strong></p>

<p>Arash Grakoui (Emory)</p>

<p>Susan Thomas (BME)</p>

<p>Michael Davis (BME)</p>

<p>Michelle Krogsgaard (NYU)</p>

<p>&nbsp;</p>

<p><strong>Title: </strong>Impairment of Mechanosensing and Lateral Crosstalk Among Immune Receptors in Tumor Infiltrating Lymphocytes</p>

<p>&nbsp;</p>

<p><strong>Abstract/Summary:</strong></p>

<p>The tumor microenvironment&rsquo;s (TME) unique immune characteristics play a major role in shaping tumor immune responses.&nbsp; Immune cells infiltrating into the tumor microenvironment encounter unique microenvironmental cues potentially resulting in anti-tumor immune response suppression.&nbsp; Immune checkpoint blockade (ICB) attempts to suppress inhibitory immune checkpoint receptors in ways that enhance anti-tumor immunity.&nbsp; Although ICB clearly enhances cytotoxic potential in infiltrating cytotoxic T cells, many questions remain about immune checkpoint receptors function within the TME.&nbsp; We propose that the TME impairs infiltrating cytotoxic T cell CD8, CD28, CTLA-4, and TCR complex mechanosensing and lateral crosstalk (LC).&nbsp; We will investigate TME immune synapse receptor mechanosensing and LC impairment in infiltrating cytotoxic T cells with bond quality and quantity measurements.&nbsp; We will employ biomechanical switching instrument techniques towards controlling LC spatially and temporally.&nbsp; We will demonstrate immune synapse receptor mechanosensing and LC impairment functionally impairs T cell function and can be modulated with small molecule inhibitors.&nbsp; We believe investigations into mechanosensing and LC impairment will provide invaluable immune checkpoint signaling insights and motivate cancer immunotherapy improvements.</p>
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