logo
Product categories

EbookNice.com

Most ebook files are in PDF format, so you can easily read them using various software such as Foxit Reader or directly on the Google Chrome browser.
Some ebook files are released by publishers in other formats such as .awz, .mobi, .epub, .fb2, etc. You may need to install specific software to read these formats on mobile/PC, such as Calibre.

Please read the tutorial at this link.  https://ebooknice.com/page/post?id=faq


We offer FREE conversion to the popular formats you request; however, this may take some time. Therefore, right after payment, please email us, and we will try to provide the service as quickly as possible.


For some exceptional file formats or broken links (if any), please refrain from opening any disputes. Instead, email us first, and we will try to assist within a maximum of 6 hours.

EbookNice Team

Light modulates plant-derived extracellular vesicle properties: a photosensitive-responsive nanodelivery system by Yu Lu & Wenyu Zhang & Peiyuan Zeng & Yuqian He & Xiaolu Hua & Yan Liu & Jianbo Wu instant download

  • SKU: EBN-235860974
Zoomable Image
$ 32 $ 40 (-20%)

Status:

Available

4.6

41 reviews
Instant download (eBook) Light modulates plant-derived extracellular vesicle properties: a photosensitive-responsive nanodelivery system after payment.
Authors:Yu Lu & Wenyu Zhang & Peiyuan Zeng & Yuqian He & Xiaolu Hua & Yan Liu & Jianbo Wu
Pages:updating ...
Year:2025
Publisher:x
Language:english
File Size:1.37 MB
Format:pdf
Categories: Ebooks

Product desciption

Light modulates plant-derived extracellular vesicle properties: a photosensitive-responsive nanodelivery system by Yu Lu & Wenyu Zhang & Peiyuan Zeng & Yuqian He & Xiaolu Hua & Yan Liu & Jianbo Wu instant download

Discover Nano,AbstractPlant-derived extracellular vesicles (PDEVs) have emerged as innovative nanocarriers for drug delivery, ofering advantages such as biocompatibility, stability, and cost-efectiveness. This study explores light-mediated strategies to optimize cargo encapsulation into PDEVs while preserving structural integrity. Leveraging the intrinsic photosensitizing properties of PDEVs, light irradiation (LED) triggered reactive oxygen species (ROS) generation, including superoxide anions and singlet oxygen, which transiently enhanced membrane permeability for controlled drug loading. Using FITC-dextran (70 kDa) as a model cargo, we optimized light-induced loading efciency, achieving a peak (~80%) at 10 min of irradiation. Prolonged exposure (15 min) reduced efciency (~50%), likely due to excessive ROS-induced membrane destabilization. The optimal PDEVs-to-cargo ratio (1:30) ensured maximal loading while maintaining stability over 30 days. Lipid peroxidation analysis further confrmed ROS-induced membrane modifcations through malondialdehyde (MDA) accumulation. These fndings demonstrate that PLDENs (Pueraria lobate-derived exosomes-like nanovesicles) function as light-responsive nanocarriers, balancing ROS-mediated permeability enhancement with structural integrity. This lighttriggered strategy balances permeability modulation and structural integrity, advancing PDEVs as scalable, non-invasive platforms for precision drug delivery and photodynamic applications. Keywords Plant-derived extracellular vesicles · Light · Reactive oxygen species (ROS) · Encapsulation · Photosensitizing properties · Lipid peroxidation
*Free conversion of into popular formats such as PDF, DOCX, DOC, AZW, EPUB, and MOBI after payment.

Related Products