AI Article Synopsis

  • Anticancer theranostic nanocarriers, particularly semiconductor quantum dots (QDs), show promise in improving drug evaluation effectiveness.
  • Researchers synthesized bright CdZnSeS QDs with high quantum yield and integrated them into gallic acid/alginate matrices for enhanced stability in water.
  • In vitro studies demonstrated significant reductions in half-maximal inhibitory concentrations (IC50) for loaded drugs (betulinic acid and ceranib-2), indicating improved efficacy against HL-60 leukemia and PC-3 prostate cancer cells compared to the drugs used alone.

Article Abstract

Anticancer theranostic nanocarriers have the potential to enhance the efficacy of pharmaceutical evaluation of drugs. Semiconductor nanocrystals, also known as quantum dots (QDs), are particularly promising components of drug carrier systems due to their small sizes and robust photoluminescence properties. Herein, bright CdZnSeS quantum dots were synthesized in a single step via the hot injection method. The particles have a quasi-core/shell structure as evident from the high quantum yield (85 %), which decreased to 41 % after water solubilization. These water solubilized QDs were encapsulated into gallic acid / alginate (GA-Alg) matrices to fabricate imaging QDs@mod-PAA/GA-Alg particles with enhanced stability in aqueous media. Cell viability assessments demonstrated that these nanocarriers exhibited viability ranging from 63 % to 83 % across all tested cell lines. Furthermore, the QDs@mod-PAA/GA-Alg particles were loaded with betulinic acid (BA) and ceranib-2 (C2) for in vitro drug release studies against HL-60 leukemia and PC-3 prostate cancer cells. The BA loaded QDs@mod-PAA/GA-Alg had a half-maximal inhibitory concentration (IC) of 8.76 μg/mL against HL-60 leukemia cells, which is 3-fold lower than that of free BA (IC = 26.55 μg/mL). Similar enhancements were observed with nanocarriers loaded with C2 and simultaneously with both BA and C2. Additionally, BA:C2 loaded QDs@mod-PAA/GA-Alg nanocarriers displayed a similar enhancement (IC50 = 3.37 μg/mL compared against IC50 = 11.68 μg/mL for free BA:C2). The C2 loaded QDs@mod-PAA/GA-Alg nanocarriers had an IC50 = 2.24 μg/mL against HL-60 cells. C2 and BA loaded QDs@mod-PAA/GA-Alg NCr had IC50 values of 7.37 μg/mL and 24.55 μg/mL against PC-3 cells, respectively.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jcis.2024.07.075DOI Listing

Publication Analysis

Top Keywords

loaded qds@mod-paa/ga-alg
16
cancer cells
8
quantum dots
8
qds@mod-paa/ga-alg particles
8
hl-60 leukemia
8
cells loaded
8
bac2 loaded
8
qds@mod-paa/ga-alg nanocarriers
8
qds@mod-paa/ga-alg
6
loaded
6

Similar Publications

Article Synopsis
  • Anticancer theranostic nanocarriers, particularly semiconductor quantum dots (QDs), show promise in improving drug evaluation effectiveness.
  • Researchers synthesized bright CdZnSeS QDs with high quantum yield and integrated them into gallic acid/alginate matrices for enhanced stability in water.
  • In vitro studies demonstrated significant reductions in half-maximal inhibitory concentrations (IC50) for loaded drugs (betulinic acid and ceranib-2), indicating improved efficacy against HL-60 leukemia and PC-3 prostate cancer cells compared to the drugs used alone.
View Article and Find Full Text PDF

A conveniently synthesized Pt (IV) conjugated alginate nanoparticle with ligand self-shielded property for targeting treatment of hepatic carcinoma.

Nanomedicine

January 2019

Key Laboratory of Functional Polymer Materials of the Ministry of Education, Institute of Polymer Chemistry, College of Chemistry, Nankai University, Tianjin, PR China; Collaborative Innovation Center of Chemical Science and Engineering, Nankai University, Tianjin, PR China. Electronic address:

The clinical translation remains a major challenge for platinum drug loaded nanoparticle due to the complexity of composition and preparation. Here we employed only three ingredients to prepare Pt (IV) prodrug-loaded ligand-induced self-assembled nanoparticles (GA-ALG@Pt NPs) via facile one-pot route for liver tumor treatment. GA-ALG@Pt NPs were found equipped with intelligently ligand self-shielded property in which the internal GA could be induced to expose by initial cellular recognition, resulting in strengthened cellular uptake (20%-30%) and prolonged blood circulation time (3.

View Article and Find Full Text PDF

Doxorubicin-loaded glycyrrhetinic acid-modified alginate nanoparticles for liver tumor chemotherapy.

Biomaterials

March 2012

Key Laboratory of Functional Polymer Materials, Ministry of Education, Institute of Polymer Chemistry, Nankai University, Tianjin 300071, PR China.

Doxorubicin (DOX)-loaded glycyrrhetinic acid (GA)-modified alginate (ALG) nanoparticles (DOX/GA-ALG NPs) were prepared for targeting therapy of liver cancer. This study focused on the biodistribution of DOX/GA-ALG NPs in Kunming mice as well as their antitumor activity against liver tumors in situ and side effects. The biodistribution data showed that the concentration of DOX in the liver reached 67.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!