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<title>BUniverse: Videos tagged cells </title>
<link>https://www.bu.edu/buniverse/search/?q=&amp;sort=relevance&amp;view=thumbnail&amp;tag=cells</link>
<description><![CDATA[BUniverse: Videos tagged cells ]]></description>
<item>
<title>The Potential of iPS Cells at CReM</title>
<link>https://www.bu.edu/buniverse/view/?v=CglGx1RV</link>
<guid>https://www.bu.edu/buniverse/view/?v=CglGx1RV</guid>
<pubDate>Fri, 18 Apr 2014 12:31:56 -0400</pubDate>
<description><![CDATA[CReM founders discuss how they use iPS cells to study disease development, conduct drug screenings, and correct genetic mutations with the goal of producing healthy tissues and organs for transplantation.]]></description>
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<item>
<title>iPS Cells at the CReM</title>
<link>https://www.bu.edu/buniverse/view/?v=zsPVw1RT</link>
<guid>https://www.bu.edu/buniverse/view/?v=zsPVw1RT</guid>
<pubDate>Fri, 18 Apr 2014 12:28:12 -0400</pubDate>
<description><![CDATA[CReM founders discuss what iPS cells are and how they're made]]></description>
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<item>
<title>Geoffrey West Explains Universal Scaling</title>
<link>https://www.bu.edu/buniverse/view/?v=XKH7d1Gb</link>
<guid>https://www.bu.edu/buniverse/view/?v=XKH7d1Gb</guid>
<pubDate>Fri, 10 May 2013 13:02:13 -0400</pubDate>
<description><![CDATA[Professor Geoffrey West explains how universal scaling laws found in biology can be applied to cities in this clip from the Frederick S. Pardee Center Distinguished Lecture given on April 4, 2013 and titled, Growth, Innovation, and the Accelerating Pace of Life from Cells to Cities: Are They Sustainable?http://www.bu.edu/pardee/]]></description>
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<title>This BU Lab is Turning Living Cells Into Tiny Biosensors</title>
<link>https://www.bu.edu/buniverse/view/?v=QGtlc2ZL</link>
<guid>https://www.bu.edu/buniverse/view/?v=QGtlc2ZL</guid>
<pubDate>Thu, 23 Oct 2025 10:47:35 -0400</pubDate>
<description><![CDATA[Biotechnology is shrinking to the size of a blueberry at Boston University, where Assistant Professor Miguel Jimenez and his lab are engineering living cell biosensors for health care, agriculture, and other real-world applications. 

By integrating cells like yeast and bacteria into microelectronic devices, BU researchers are creating affordable, portable sensors that can detect molecules such as nitrogen in soil or hormones in blood. This innovative biotechnology bridges chemistry, engineering, and biomedicine, turning biological signals into usable data. From precision farming tools to at-home health diagnostics, the team is reimagining how biotechnology works outside the lab.

Potential applications range from soil monitors for precision farming to at-home hormone tests. Jimenez imagines a future where checking molecular information is as easy as checking the weather, putting advanced diagnostics in anyone’s hands.]]></description>
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