scholarly journals Benefit of a Short Chain Peptide as a Targeting Ligand of Nanocarriers for a Brain-Driven Purpose

Pharmaceutics ◽  
2021 ◽  
Vol 13 (8) ◽  
pp. 1249
Author(s):  
Yu-Chen Lo ◽  
Wen-Jen Lin

Treatment of glioma remains a critical challenge worldwide, since the therapeutic effect is greatly hindered by poor transportation across the blood brain barrier (BBB) and low penetration into tumor cells. In this study, a peptide-conjugated nano-delivery system was explored for the purpose of glioma therapy. A peptide-decorated copolymer was used to prepare nanoparticles (NPs) by a solvent evaporation method. The particle size was in the range of 160.9 ± 3.3–173.5 ± 3.6 nm with monodistribution, and the zeta potentials ranged from −18.6 ± 1.2 to +7.9 ± 0.6 mV showing an increasing trend with R9-peptide. An in vitro cocultured BBB model illustrated the internalization of peptide-conjugated NPs in bEnd.3 cells followed by uptake by U87-MG cells indicating both BBB-crossing and glioma-penetrating abilities. IVIS (In Vivo Imaging System) images revealed that T7-conjugated NPs specifically accumulated in the brain more than peptide-free NPs and had less biodistribution in nontarget tissues than T7/R9 dual-peptide conjugated NPs. The benefit of T7-peptide as a targeting ligand for NPs across the BBB with accumulation in the brain was elucidated.

2017 ◽  
Vol 12 (1) ◽  
Author(s):  
Maria Mir ◽  
Saba Ishtiaq ◽  
Samreen Rabia ◽  
Maryam Khatoon ◽  
Ahmad Zeb ◽  
...  

2018 ◽  
Vol 26 (1) ◽  
pp. 138-139 ◽  
Author(s):  
Teruki Shimizu ◽  
Masatsugu Miyashita ◽  
Atsuko Fujihara ◽  
Fumiya Hongo ◽  
Osamu Ukimura ◽  
...  

2017 ◽  
Vol 55 (2) ◽  
pp. 429-435 ◽  
Author(s):  
Alicia Cawlfield ◽  
Brian Vesely ◽  
Franklyn Ngundam ◽  
Kirk Butler ◽  
Dylan Nugent ◽  
...  

2011 ◽  
Vol 109 (suppl_1) ◽  
Author(s):  
Roberta A Gottlieb ◽  
M R Sayen ◽  
Chengqun Huang ◽  
Jennifer Ramil ◽  
Bruce Ito ◽  
...  

Autophagy is a homeostatic response to cellular stress. It has been shown to be potently upregulated in the heart in response to a variety of interventions. However, to date, it has not been possible to monitor autophagy without sacrificing the animal. Here we report the use of the Caliper Life Sciences Spectrum In Vivo Imaging System (IVIS) to image autophagy in homozygous transgenic mice expressing mCherryLC3 under control of the alpha myosin heavy chain promoter. Autophagy was stimulated by the administration of rapamycin (2mg/kg), and autophagosomal flux was blocked by administration of chloroquine (10mg/kg) ip. Mice were imaged at baseline and four hours later, using a protocol of 3 acquisitions of 15 seconds each. Total flux was 3.19±0.72 before drug administration and 3.93+1.10 after 4 hr, p<;0.01, n=14. These results show for the first time imaging of autophagy in hearts of live mice.


Author(s):  
Junmeng Zheng ◽  
Lijun Xu ◽  
Hongmin Zhou ◽  
Weina Zhang ◽  
Zhonghua Chen

2018 ◽  
Vol 115 (28) ◽  
pp. E6622-E6629 ◽  
Author(s):  
Hiroshi Ueki ◽  
I-Hsuan Wang ◽  
Satoshi Fukuyama ◽  
Hiroaki Katsura ◽  
Tiago Jose da Silva Lopes ◽  
...  

The pathophysiological changes that occur in lungs infected with influenza viruses are poorly understood. Here we established an in vivo imaging system that combines two-photon excitation microscopy and fluorescent influenza viruses of different pathogenicity. This approach allowed us to monitor and correlate several parameters and physiological changes including the spread of infection, pulmonary permeability, pulmonary perfusion speed, number of recruited neutrophils in infected lungs, and neutrophil motion in the lungs of live mice. Several physiological changes were larger and occurred earlier in mice infected with a highly pathogenic H5N1 influenza virus compared with those infected with a mouse-adapted human strain. These findings demonstrate the potential of our in vivo imaging system to provide novel information about the pathophysiological consequences of virus infections.


2015 ◽  
Vol 33 (7) ◽  
pp. 1034-1038 ◽  
Author(s):  
Kazuhide Inage ◽  
Yoshihiro Sakuma ◽  
Kazuyo Yamauchi ◽  
Akiko Suganami ◽  
Sumihisa Orita ◽  
...  

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