scholarly journals Editorial: Bypassing the Biological Barriers by Means of Biocompatible Drug Delivery Systems

2021 ◽  
Vol 12 ◽  
Author(s):  
Vibhudutta Awasthi ◽  
Stefania Bulotta ◽  
Donato Cosco
2021 ◽  
Vol 142 ◽  
pp. 110129
Author(s):  
Marcela Tavares Luiz ◽  
Leonardo Delello Di Filippo ◽  
Renata Carolina Alves ◽  
Victor Hugo Sousa Araújo ◽  
Jonatas Lobato Duarte ◽  
...  

2021 ◽  
Author(s):  
Benjamin J Lee ◽  
Yahya Cheema ◽  
Shahed Bader ◽  
Gregg A Duncan

Nanoparticle drug delivery systems encounter many biological barriers, such as the extracellular matrix and mucus gels, that they must bypass to gain access to target cells. A design parameter that has recently gained attention is nanoparticle shape, as it has been shown elongated rod shaped nanoparticles achieve higher diffusion rates through biological gels. However, the optimal dimensions of rod shaped nanoparticles to enhance this effect has yet to be established. To systematically approach this, rod-shaped nanoparticles were synthesized by mechanically stretching 100 nm, 200 nm, and 500 nm spherical nanoparticles. Transmission electron microscopy confirmed this procedure yields a significant fraction of elongated rods and remaining spheres could be removed by centrifugation. Fluorescent microscopy and multiple particle tracking analysis was then used to characterize rod-shaped and spherical nanoparticle diffusion in MaxGel, a model extracellular matrix hydrogel. When dispersed in MaxGel, we found rod-shaped nanoparticles exhibited the greatest enhancement in diffusion rate when their length far exceeds the average hydrogel network size. These results further establish the importance of shape as a design criterion to improve nanoparticle based drug delivery systems.


Pharmaceutics ◽  
2021 ◽  
Vol 13 (5) ◽  
pp. 611
Author(s):  
Driton Vllasaliu

Non-invasive drug delivery generally refers to painless drug administration methods involving drug delivery across the biological barriers of the mucosal surfaces or the skin [...]


2019 ◽  
Vol 87 (4) ◽  
pp. 33 ◽  
Author(s):  
Ádám Haimhoffer ◽  
Ágnes Rusznyák ◽  
Katalin Réti-Nagy ◽  
Gábor Vasvári ◽  
Judit Váradi ◽  
...  

Cyclodextrins are widely used excipients, composed of glucopyranose units with a cyclic structure. One of their most important properties, is that their inner cavity is hydrophobic, while their surface is hydrophilic. This enables them for the complex formation with lipophilic molecules. They have several applications in the pharmaceutical field like solubility enhancers or the building blocks of larger drug delivery systems. On the other hand, they have numerous effects on cells or biological barriers. In this review the most important properties of cyclodextrins and cyclodextrin-based drug delivery systems are summarized with special focus on their biological activity.


Author(s):  
G.E. Visscher ◽  
R. L. Robison ◽  
G. J. Argentieri

The use of various bioerodable polymers as drug delivery systems has gained considerable interest in recent years. Among some of the shapes used as delivery systems are films, rods and microcapsules. The work presented here will deal with the techniques we have utilized for the analysis of the tissue reaction to and actual biodegradation of injectable microcapsules. This work has utilized light microscopic (LM), transmission (TEM) and scanning (SEM) electron microscopic techniques. The design of our studies has utilized methodology that would; 1. best characterize the actual degradation process without artifacts introduced by fixation procedures and 2. allow for reproducible results.In our studies, the gastrocnemius muscle of the rat was chosen as the injection site. Prior to the injection of microcapsules the skin above the sites was shaved and tattooed for later recognition and recovery. 1.0 cc syringes were loaded with the desired quantity of microcapsules and the vehicle (0.5% hydroxypropylmethycellulose) drawn up. The syringes were agitated to suspend the microcapsules in the injection vehicle.


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