彩之网首页

  • <tr id='9php6b'><strong id='9php6b'></strong><small id='9php6b'></small><button id='9php6b'></button><li id='9php6b'><noscript id='9php6b'><big id='9php6b'></big><dt id='9php6b'></dt></noscript></li></tr><ol id='9php6b'><option id='9php6b'><table id='9php6b'><blockquote id='9php6b'><tbody id='9php6b'></tbody></blockquote></table></option></ol><u id='9php6b'></u><kbd id='9php6b'><kbd id='9php6b'></kbd></kbd>

    <code id='9php6b'><strong id='9php6b'></strong></code>

    <fieldset id='9php6b'></fieldset>
          <span id='9php6b'></span>

              <ins id='9php6b'></ins>
              <acronym id='9php6b'><em id='9php6b'></em><td id='9php6b'><div id='9php6b'></div></td></acronym><address id='9php6b'><big id='9php6b'><big id='9php6b'></big><legend id='9php6b'></legend></big></address>

              <i id='9php6b'><div id='9php6b'><ins id='9php6b'></ins></div></i>
              <i id='9php6b'></i>
            1. <dl id='9php6b'></dl>
              1. <blockquote id='9php6b'><q id='9php6b'><noscript id='9php6b'></noscript><dt id='9php6b'></dt></q></blockquote><noframes id='9php6b'><i id='9php6b'></i>
                 
                Small 空军军医大学唐都医院
                    发布时间: 2024-04-25 09:16    

                科研绘图SCI画图作图学术杂志封面设计TOC示意图文章配图医学动画

                sci杂志封面设计

                Immunotherapy is a promising cancer therapeutic strategy. However, the “cold” tumor immune microenvironment (TIME), characterized by insufficient immune cell infiltration and immunosuppressive status, limits the efficacy of immunotherapy. Tumor vascular abnormalities due to defective pericyte coverage are gradually recognized as a profound determinant in “cold” TIME establishment by hindering immune cell trafficking. Recently, several vascular normalization strategies by improving pericyte coverage have been reported, whereas have unsatisfactory efficacy and high rates of resistance. Herein, a combinatorial strategy to induce tumor vasculature-targeted pericyte recruitment and zinc ion-mediated immune activation with a platelet-derived growth factor B (PDGFB)-loaded, cyclo (Arg-Gly-Asp-D-Phe-Lys)-modified zeolitic imidazolate framework 8 (PDGFB@ZIF8-RGD) nanoplatform is proposed.