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<H4text="Conclusion"id="text"/>
We use DMG-PEG2000 in our SORT LNP-based AirBuddy because of its superior biodegradability, enhanced stability, and reduced risk of immune system activation. By building on insights from experts and incorporating principles from Wang’s LNP work, we’ve tailored our nanoparticles for lung-specific delivery. This choice ensures that our formulations remain stable long enough to deliver the therapeutic payload effectively while minimizing potential long-term toxicity. This balance is crucial for pulmonary applications, where DMG-PEG2000 outperforms alternatives like mPEG-2000-DSPE, making it the ideal choice for treating CFTR-related lung diseases.
{/* <H4 text="text" id="text" />
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@@ -534,8 +534,9 @@ export function Engineering() {
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<Collapsibleid="Col2"open={false}title="Composition of our SORT LNP called Airbuddy">
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<p>Our lung-specific formulation uses <strong>Selective Organ-Targeting (SORT) LNPs</strong> [1], optimized for stability, targeting, and delivery efficiency. Combined with the <strong>spray-drying technique</strong>, our LNP <strong>AirBuddy</strong> offers an efficient way to deliver mRNA therapeutics to the lungs. The successful delivery of the prime editing complex via inhalation is key to our project.</p>
<H4text="Components of AirBuddy"id="text"/>
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<p>The final innovation for our LNP to become <strong>AirBuddy</strong> came through consultation with Benjamin Winkeljann from <aonClick={()=>goToPagesAndOpenTab('rnhale','/human-practices')}> RNhale</a>, where the use of spray-drying techniques was discussed. Spray-drying the LNPs, instead of using traditional methods, helped improve stability and eco-friendliness of the product [8]. The spray-dried SORT LNPs demonstrated lower cytotoxicity, and the technique proved effective in maintaining particle integrity.</p>