Sarah Calve /bme/ en NIH Director's Blog: Capturing the Extracellular Matrix in 3D Color /bme/2021/12/16/nih-directors-blog-capturing-extracellular-matrix-3d-color <span>NIH Director's Blog: Capturing the Extracellular Matrix in 3D Color</span> <span><span>Anonymous (not verified)</span></span> <span><time datetime="2021-12-16T13:46:12-07:00" title="Thursday, December 16, 2021 - 13:46">Thu, 12/16/2021 - 13:46</time> </span> <div> <div class="imageMediaStyle focal_image_wide"> <img loading="lazy" src="/bme/sites/default/files/styles/focal_image_wide/public/article-thumbnail/screen_shot_2021-12-16_at_1.45.42_pm.png?h=3acfc4a7&amp;itok=KxEelLDx" width="1200" height="600" alt="interface of skin and muscle"> </div> </div> <div role="contentinfo" class="container ucb-article-categories" itemprop="about"> <span class="visually-hidden">Categories:</span> <div class="ucb-article-category-icon" aria-hidden="true"> <i class="fa-solid fa-folder-open"></i> </div> <a href="/bme/taxonomy/term/45"> Graduate ÀÖ²¥´«Ã½ </a> <a href="/bme/taxonomy/term/9"> Research </a> </div> <div role="contentinfo" class="container ucb-article-tags" itemprop="keywords"> <span class="visually-hidden">Tags:</span> <div class="ucb-article-tag-icon" aria-hidden="true"> <i class="fa-solid fa-tags"></i> </div> <a href="/bme/taxonomy/term/17" hreflang="en">2021</a> <a href="/bme/taxonomy/term/33" hreflang="en">Fall</a> <a href="/bme/taxonomy/term/93" hreflang="en">Media Coverage</a> <a href="/bme/taxonomy/term/59" hreflang="en">Sarah Calve</a> </div> <div class="ucb-article-content ucb-striped-content"> <div class="container"> <div class="paragraph paragraph--type--article-content paragraph--view-mode--default"> <div class="ucb-article-content-media ucb-article-content-media-above"> <div> <div class="paragraph paragraph--type--media paragraph--view-mode--default"> </div> </div> </div> <div class="ucb-article-text d-flex align-items-center" itemprop="articleBody"> </div> </div> </div> </div> <div>Sarah Lipp, a graduate student in the NIH-supported tissue engineering lab of Professor Sarah Calve, creates image showing the interface of skin and muscle during mammalian development.</div> <script> window.location.href = `https://directorsblog.nih.gov/2021/12/16/capturing-the-extracellular-matrix-in-3d-color/`; </script> <div>Traditional</div> <div>0</div> <div>On</div> <div>White</div> Thu, 16 Dec 2021 20:46:12 +0000 Anonymous 215 at /bme Calve, Ferguson awarded grant to study mechanisms that lead to tissue degradation /bme/2021/09/20/calve-ferguson-awarded-grant-study-mechanisms-lead-tissue-degradation <span>Calve, Ferguson awarded grant to study mechanisms that lead to tissue degradation</span> <span><span>Anonymous (not verified)</span></span> <span><time datetime="2021-09-20T12:13:36-06:00" title="Monday, September 20, 2021 - 12:13">Mon, 09/20/2021 - 12:13</time> </span> <div> <div class="imageMediaStyle focal_image_wide"> <img loading="lazy" src="/bme/sites/default/files/styles/focal_image_wide/public/article-thumbnail/calve_ferguson.png?h=1e74485a&amp;itok=rq6ZzPR1" width="1200" height="600" alt="Calve and Ferguson headshots"> </div> </div> <div role="contentinfo" class="container ucb-article-categories" itemprop="about"> <span class="visually-hidden">Categories:</span> <div class="ucb-article-category-icon" aria-hidden="true"> <i class="fa-solid fa-folder-open"></i> </div> <a href="/bme/taxonomy/term/7"> Faculty </a> <a href="/bme/taxonomy/term/9"> Research </a> </div> <div role="contentinfo" class="container ucb-article-tags" itemprop="keywords"> <span class="visually-hidden">Tags:</span> <div class="ucb-article-tag-icon" aria-hidden="true"> <i class="fa-solid fa-tags"></i> </div> <a href="/bme/taxonomy/term/17" hreflang="en">2021</a> <a href="/bme/taxonomy/term/33" hreflang="en">Fall</a> <a href="/bme/taxonomy/term/63" hreflang="en">Homepage News</a> <a href="/bme/taxonomy/term/59" hreflang="en">Sarah Calve</a> <a href="/bme/taxonomy/term/37" hreflang="en">Virginia Ferguson</a> </div> <span>Rachel Leuthauser</span> <div class="ucb-article-content ucb-striped-content"> <div class="container"> <div class="paragraph paragraph--type--article-content paragraph--view-mode--default"> <div class="ucb-article-content-media ucb-article-content-media-above"> <div> <div class="paragraph paragraph--type--media paragraph--view-mode--default"> <div> <div class="imageMediaStyle large_image_style"> <img loading="lazy" src="/bme/sites/default/files/styles/large_image_style/public/article-image/calve_ferguson.png?itok=hS_PwrHC" width="1500" height="1000" alt="Calve and Ferguson headshots"> </div> </div> </div> </div> </div> <div class="ucb-article-text d-flex align-items-center" itemprop="articleBody"> <div><div class="ucb-box ucb-box-title-hidden ucb-box-alignment-right ucb-box-style-fill ucb-box-theme-white"> <div class="ucb-box-inner"> <div class="ucb-box-title"></div> <div class="ucb-box-content"> <p><br> Professors Sarah Calve and Virginia Ferguson<br> </p></div> </div> </div> <p>Professors <a href="/mechanical/sarah-calve" rel="nofollow">Sarah Calve</a> and <a href="/mechanical/virginia-l-ferguson" rel="nofollow">Virginia Ferguson</a> have received a nearly $400,000 <a href="https://nsf.gov/awardsearch/showAward?AWD_ID=2126302" rel="nofollow">National Science Foundation (NSF) grant</a> to study the mechanisms that lead to tissue degradation in microgravity—by sending mice on a spaceflight.</p> <p>Calve and Ferguson's project, titled 'Quantifying the Effect of Unloading on Extracellular Matrix Remodeling in the Musculoskeletal System,' will look at the bone loss, muscle atrophy and degradation of soft tissues while housed on the International Space Station (ISS). While there are exercises and countermeasures to reduce that deterioration on Earth and in spaceflight, they point out&nbsp;that those measures are not always enough.&nbsp;</p> <p>Studies in the past have focused on the molecular and cellular mechanisms that underlie atrophy and recovery. Calve and Ferguson&nbsp;will study the&nbsp;extracellular matrix (ECM) instead, which is where cells reside. The ECM is a complex network that varies in composition depending on the mechanical and functional demands.&nbsp;</p> <p>Their goal is to understand how microgravity compromises tissue function by fundamentally changing the ECM. Calve and Ferguson's proposal explains that "changes to the ECM can permanently alter tissue material properties, prevent resident cells from re-establishing homeostasis and affect functionality."</p> <p>Calve and Ferguson will focus on changes in ECM proteins in response to microgravity by studying the&nbsp;reentry, landing&nbsp;and transport of&nbsp;mice from the ISS.</p> <p>The NSF and the Center for the Advancement of Science in Space (CASIS) awarded grants to <a href="https://www.issnationallab.org/iss360/nsf-casis-select-joint-solicitation-tissue-engineering-project/" rel="nofollow">three tissue engineering projects</a> in all—to leverage the ISS&nbsp;U.S. National Laboratory to advance fundamental science and biomedical engineering to help patients on Earth.</p> <p>CASIS, manager of the ISS National Lab, will facilitate hardware implementation&nbsp;and astronaut crew time to support the investigations on the orbiting laboratory.</p></div> </div> </div> </div> </div> <div>Professors Sarah Calve and Virginia Ferguson's tissue engineering project is one of three space-based experiments that recently received a NSF grant to help patients on Earth.</div> <div>Traditional</div> <div>0</div> <div>On</div> <div>White</div> Mon, 20 Sep 2021 18:13:36 +0000 Anonymous 149 at /bme