hydrophobic anticancer drugs
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Materials ◽  
2021 ◽  
Vol 14 (22) ◽  
pp. 7010
Author(s):  
Xiudong Liu ◽  
Huofei Zhou ◽  
Weiting Yu ◽  
Xin Xiong ◽  
Rumen Krastev ◽  
...  

Polymeric micelle-like nanoparticles have demonstrated effectiveness for the delivery of some poorly soluble or hydrophobic anticancer drugs. In this study, a hydrophobic moiety, deoxycholic acid (DCA) was first bonded on a polysaccharide, chitosan (CS), for the preparation of amphiphilic chitosan (CS-DCA), which was further modified with a cationic glycidyltrimethylammounium chloride (GTMAC) to form a novel soluble chitosan derivative (HT-CS-DCA). The cationic amphiphilic HT-CS-DCA was easily self-assembled to micelle-like nanoparticles about 200 nm with narrow size distribution (PDI 0.08–0.18). The zeta potential of nanoparticles was in the range of 14 to 24 mV, indicating higher positive charges. Then, doxorubicin (DOX), an anticancer drug with poor solubility, was entrapped into HT-CS-DCA nanoparticles. The DOX release test was performed in PBS (pH 7.4) at 37 °C, and the results showed that there was no significant burst release in the first two hours, and the cumulative release increased steadily and slowly in the following hours. HT-CS-DCA nanoparticles loaded with DOX could easily enter into MCF-7 cells, as observed by a confocal microscope. As a result, DOX-loaded HT-CS-DCA nanoparticles demonstrated a significant inhibition activity on MCF-7 growth without obvious cellular toxicity in comparison with blank nanoparticles. Therefore, the anticancer efficacy of these cationic HT-CS-DCA nanoparticles showed great promise for the delivery of DOX in cancer therapy.


Author(s):  
Rabia Aqeel ◽  
Nidhi Srivastava ◽  
Poonam Kushwaha

Background: In the recent years, Micelles represent a promising carrier for the treatment and diagnosis of cancer. Architecturally, micelles are self-assembled nanosized colloidal aggregates prepared from amphiphilic surfactant with a hydrophobic core and hydrophilic shell. Such composition making them a potential carrier for delivery of hydrophobic anticancer drugs with in their core. Description: Micelles have received increasing interest as an enhanced permeability and retention (EPR) targeted drug delivery systems for cancer treatment. Micelles can be modified to contribute various attractive properties for instance active targeting, stimuli-responsiveness. They have also proven their ability in drug targeting to tumor tissue, enhanced drug accumulation, drug stabilization, tissue penetration, prolong circulation, in vivo biocompatibility, biodegradability and, reduced side effects. Micelles have displayed vital role in multidrug delivery for cancer therapy. Results and Discussion : The aim of the present review is to provide an overview on the status of micellar nanoformulations for anticancer agents, including their pre-clinical and clinical researches. Emphasis is placed on presenting the newer strategies to enhance the therapeutic efficacy of anticancer drug at target site. The type of co-polymers used and methods for the preparation of micelles are also highlighted in the paper.


2020 ◽  
Vol 112 ◽  
pp. 110920 ◽  
Author(s):  
Andreia Almeida ◽  
Marco Araújo ◽  
Ramon Novoa-Carballal ◽  
Fernanda Andrade ◽  
Hugo Gonçalves ◽  
...  

Biomolecules ◽  
2020 ◽  
Vol 10 (7) ◽  
pp. 970 ◽  
Author(s):  
Yen-Ho Lai ◽  
Chih-Sheng Chiang ◽  
Chin-Hao Hsu ◽  
Hung-Wei Cheng ◽  
San-Yuan Chen

Fucoidan, a natural sulfated polysaccharide, which can activate the immune response and lessen adverse effects, is expected to be an adjuvant agent in combination with chemotherapy. Using natural hydrophilic anticancer polysaccharides to simultaneously encapsulate hydrophobic anticancer drugs is feasible, and a reduced side effect can be achieved to amplify the therapeutic efficacy. In this study, a novel type of fucoidan-PLGA nanocarrier (FPN-DTX) was developed for the encapsulation of the hydrophobic anticancer drug, docetaxel (DTX), as a drug delivery system. From the comparison between FPN-DTX and the PLGA particles without fucoidan (PLGA-DTX), FPNs–DTX with fucoidan were highly stable with smaller sizes and dispersed well without aggregations in an aqueous environment. The drug loading and release can be further modified by modulating relative ratios of Fucoidan (Fu) to PLGA. The (FPN 3-DTX) nanoparticles with a 10:3 ratio of Fu:PLGA displayed uniform particle size with higher encapsulation efficiency than PLGA NPs and sustained drug release ability. The biocompatible fucoidan-PLGA nanoparticles displayed low cytotoxicity without drug loading after incubation with MDA-MB-231 triple-negative breast cancer cells. Despite lower cellular uptake than that of PLGA-DTX due to a higher degree of negative zeta potential and hydrophilicity, FPN 3-DTX effectively exerted better anticancer ability, so FPN 3-DTX can serve as a competent drug delivery system.


ChemMedChem ◽  
2018 ◽  
Vol 13 (22) ◽  
pp. 2427-2436 ◽  
Author(s):  
Aditi Panja ◽  
Sujoy Das ◽  
Atanu Chakraborty ◽  
Priyadarshi Chakraborty ◽  
Suman Pal ◽  
...  

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