scholarly journals Lipid-coated polymeric nanoparticles for cancer drug delivery

2015 ◽  
Vol 3 (7) ◽  
pp. 923-936 ◽  
Author(s):  
Sangeetha Krishnamurthy ◽  
Rajendran Vaiyapuri ◽  
Liangfang Zhang ◽  
Juliana M. Chan

This review discusses the recent advancements and future directions in the application of lipid-coated polymeric nanoparticles for cancer drug delivery.

2018 ◽  
Vol 27 (3) ◽  
pp. 292-299 ◽  
Author(s):  
Sepideh Zununi Vahed ◽  
Nazanin Fathi ◽  
Mohammad Samiei ◽  
Solmaz Maleki Dizaj ◽  
Simin Sharifi

2019 ◽  
Vol 116 (3) ◽  
pp. 465a ◽  
Author(s):  
Palanikumar Loganathan ◽  
Mona Kalmouni ◽  
Sumaya Al Hosani ◽  
Mazin M. Magzoub

2011 ◽  
Vol 360 (1) ◽  
pp. 39-51 ◽  
Author(s):  
N. Sanoj Rejinold ◽  
M. Muthunarayanan ◽  
V.V. Divyarani ◽  
P.R. Sreerekha ◽  
K.P. Chennazhi ◽  
...  

Pharmaceutics ◽  
2021 ◽  
Vol 13 (12) ◽  
pp. 1993
Author(s):  
Lisna Meylina ◽  
Muchtaridi Muchtaridi ◽  
I Made Joni ◽  
Ahmed Fouad Abdelwahab Mohammed ◽  
Nasrul Wathoni

Natural compounds are emerging as effective agents for the treatment of malignant diseases. The active constituent of α-mangostin from the pericarp of Garcinia mangostana L. has earned significant interest as a plant base compound with anticancer properties. Despite α-mangostin’s superior properties as an anticancer agent, its applications are limited due to its poor solubility and physicochemical stability, rapid systemic clearance, and low cellular uptake. Our review aimed to summarize and discuss the nanoparticle formulations of α-mangostin for cancer drug delivery systems from published papers recorded in Scopus, PubMed, and Google Scholar. We investigated various types of α-mangostin nanoformulations to improve its anticancer efficacy by improving bioavailability, cellular uptake, and localization to specific areas These nanoformulations include nanofibers, lipid carrier nanostructures, solid lipid nanoparticles, polymeric nanoparticles, nanomicelles, liposomes, and gold nanoparticles. Notably, polymeric nanoparticles and nanomicelles can increase the accumulation of α-mangostin into tumors and inhibit tumor growth in vivo. In addition, polymeric nanoparticles with the addition of target ligands can increase the cellular uptake of α-mangostin. In conclusion, nanoformulations of α-mangostin are a promising tool to enhance the cellular uptake, accumulation in cancer cells, and the efficacy of α-mangostin as a candidate for anticancer drugs.


2019 ◽  
Vol 43 (17) ◽  
pp. 6622-6635 ◽  
Author(s):  
Sevinc Ilkar Erdagi ◽  
Ufuk Yildiz

In this study, a polymeric nanoparticle-mediated dual anti-cancer drug delivery system was designed and developed.


2021 ◽  
Vol 9 (1) ◽  
pp. 4-16
Author(s):  
A. M. Amjad

Dendrimers are nanoparticles with unique features including globular 3D shape and nanometer size. The availability of numerous terminal functional groups and modifiable surface engineering permit modification of dendrimer surface with several therapeutic agents, diagnostic moieties and targeting substances.The aim. To enlighten the readers regarding design, development, limitations, challenges and future directions regarding anticancer bio-dendrimers.Materials and methods. The data base was represented by such systems as Medline, Cochrane Central Register of Controlled Trials, Scopus, Web of Science Core Collection, PubMed. gov, Google-Academy. A search was carried out for the following keywords and combinations: Polypropylene imine (PPI); Poly-L-lysine (PLL); polyamidoamine (PAMAM); cancer; drug delivery; dendrimers.Results. High encapsulation of drug and effective passive targeting are also among their therapeutic uses. Herein, we have described latest developments in chemotherapeutic delivery of drugs by dendrimers. For the most part, the potential and efficacy of dendrimers are anticipated to have considerable progressive effect on drug targeting and delivery.Conclusion. The newest discoveries have shown that the dendritic nanocarriers have many unique features that endorse more research and development.


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