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	<title>2025Alexadrescu Mix - Revision history</title>
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	<updated>2026-08-13T18:45:23Z</updated>
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		<title>WikiSysop: Created page with &quot;== Citation ==  Alexandrescu, L., Lessin, W. and Lander, G.C. 2025. Mix-it-up’: accessible time-resolved cryo-EM on the millisecond timescale. IUCrJ. 12, 6 (2025), 710–724.  == Abstract ==  Biological reactions often involve macromolecules that undergo substrate-induced conformational changes in under a second, yet capturing these transient states remains challenging. While high-resolution structural techniques such as X-ray crystallography and cryo-electron microsco...&quot;</title>
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		<updated>2026-08-13T06:25:28Z</updated>

		<summary type="html">&lt;p&gt;Created page with &amp;quot;== Citation ==  Alexandrescu, L., Lessin, W. and Lander, G.C. 2025. Mix-it-up’: accessible time-resolved cryo-EM on the millisecond timescale. IUCrJ. 12, 6 (2025), 710–724.  == Abstract ==  Biological reactions often involve macromolecules that undergo substrate-induced conformational changes in under a second, yet capturing these transient states remains challenging. While high-resolution structural techniques such as X-ray crystallography and cryo-electron microsco...&amp;quot;&lt;/p&gt;
&lt;p&gt;&lt;b&gt;New page&lt;/b&gt;&lt;/p&gt;&lt;div&gt;== Citation ==&lt;br /&gt;
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Alexandrescu, L., Lessin, W. and Lander, G.C. 2025. Mix-it-up’: accessible time-resolved cryo-EM on the millisecond timescale. IUCrJ. 12, 6 (2025), 710–724.&lt;br /&gt;
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== Abstract ==&lt;br /&gt;
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Biological reactions often involve macromolecules that undergo substrate-induced conformational changes in under a second, yet capturing these transient states remains challenging. While high-resolution structural techniques such as X-ray crystallography and cryo-electron microscopy (cryo-EM) have advanced our mechanistic understanding of protein–substrate interactions, traditional sample-preparation methods are too slow to capture rapid biochemical events. Time-resolved cryo-EM has emerged as a promising approach to visualize structural dynamics on microsecond-to-millisecond timescales, but its widespread adoption has been limited by costly equipment and challenges in achieving rapid mixing, application and vitrification of samples in a reproducible manner. To address these limitations, we developed `Mix-it-up&amp;#039; (MIU), a modified spray device designed for rapid on-grid mixing and vitrification of cryo-EM samples. By manually applying one sample onto the EM grid, blotting and subsequently spraying the second sample, we achieve on-grid mixing with a vitrification delay of as low as ∼120 ms. We demonstrate MIU&amp;#039;s time-resolved capabilities through high-resolution structure determination of mixed samples, pH-induced viral capsid contraction and ligand-dependent complex formation. These findings establish MIU as a cost-effective, versatile tool for studying rapid biochemical processes and lay the groundwork for future applications to time-resolved cryo-EM.&lt;br /&gt;
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== Keywords ==&lt;br /&gt;
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== Links ==&lt;br /&gt;
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https://journals.iucr.org/m/issues/2025/06/00/fq5027/index.html&lt;br /&gt;
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== Related software ==&lt;br /&gt;
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== Related methods ==&lt;br /&gt;
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== Comments ==&lt;/div&gt;</summary>
		<author><name>WikiSysop</name></author>
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