Literature DB >> 35210772

Investigating the Impact of Optimized Trans-Cinnamic Acid-Loaded PLGA Nanoparticles on Epithelial to Mesenchymal Transition in Breast Cancer.

Noha M Badawi1, Yasmeen M Attia2, Dina M El-Kersh3, Olfat A Hammam4, Maha K A Khalifa5.   

Abstract

PURPOSE: To design and optimize trans-cinnamic acid-loaded PLGA nanoparticles (CIN-PLGA-NPs) and assess its inhibitory effect on epithelial-mesenchymal transition (EMT) in triple-negative breast cancer.
METHODS: The quality by design approach was used to correlate the formulation parameters (PLGA amount and Poloxamer188 concentration) and critical quality attributes (entrapment efficiency percent, particle size and zeta potential). Design of CIN-PLGA-NPs formulations was done based on central composite response surface design and formulated by nanoprecipitation method. In addition, the optimized CIN-PLGA-NPs formulation was further evaluated for morphology using transmission electron microscopy and in vitro dissolution test. The cytotoxicity of CIN-PLGA-NPs optimized formula in comparison to the free trans-cinnamic acid (CIN-Free) was investigated in vitro using MDA-MB-231, triple-negative breast cancer cells, followed by scratch wound assay for evaluating the impact on the migratory potential of MDA-MB-231 cells. In vivo antitumor activity was evaluated using Ehrlich ascites carcinoma solid tumor animal model where tumor volumes were measured at different time points and necrotic/apoptotic indices were estimated in tumor sections. EMT markers, E- and N-cadherin, were assessed in solid tumors as well.
RESULTS: The optimized formulation showed entrapment efficiency of 76.98%, particle size of 186.3 nm with a smooth spherical surface and zeta potential of -28.47 mV indicating its stability. Furthermore, CIN-PLGA-NPs optimized formula released 60.8±1.89% of the total CIN-Free within 24 hours compared to 29±1.25% of the raw CIN-Free indicating improved dissolution rate. The optimized formula showed superior cytotoxicity on MDA-MB-231 cells compared to its free counterpart as well as increased wound closure percentage along with reduced tumor size in mice and increased necrotic and apoptotic indices. Tumor levels of E-cadherin and N-cadherin were indicative of EMT inhibition.
CONCLUSION: Our findings proved the capability of PLGA nanoparticles in loading trans-cinnamic acid in addition to enhancing its antitumor efficacy in triple-negative breast cancer possibly via inhibiting EMT.
© 2022 Badawi et al.

Entities:  

Keywords:  PLGA nanoparticles; breast cancer; epithelial-mesenchymal transition; quality by design; trans-cinnamic acid

Mesh:

Substances:

Year:  2022        PMID: 35210772      PMCID: PMC8863342          DOI: 10.2147/IJN.S345870

Source DB:  PubMed          Journal:  Int J Nanomedicine        ISSN: 1176-9114


  44 in total

1.  TGF-β plays a vital role in triple-negative breast cancer (TNBC) drug-resistance through regulating stemness, EMT and apoptosis.

Authors:  Xiaodan Xu; Lu Zhang; Xiaogang He; Ping Zhang; Caihong Sun; Xiaojun Xu; Yaojuan Lu; Feifei Li
Journal:  Biochem Biophys Res Commun       Date:  2018-05-24       Impact factor: 3.575

2.  Preparation and characterization of surface-modified PLGA-polymeric nanoparticles used to target treatment of intestinal cancer.

Authors:  Niyaz Ahmad; Md Aftab Alam; Rizwan Ahmad; Atta Abbas Naqvi; Farhan Jalees Ahmad
Journal:  Artif Cells Nanomed Biotechnol       Date:  2017-05-14       Impact factor: 5.678

3.  trans-Cinnamic acid, but not p-coumaric acid or methyl cinnamate, induces fibroblast migration through PKA- and p38-MAPK signalling pathways.

Authors:  Fernanda Lima Torres de Aquino; Juliane Pereira da Silva; Jamylle Nunes de Souza Ferro; Vincent Lagente; Emiliano Barreto
Journal:  J Tissue Viability       Date:  2021-05-24       Impact factor: 2.932

4.  Effect of honey and eugenol on Ehrlich ascites and solid carcinoma.

Authors:  Saravana Kumar Jaganathan; Dilip Mondhe; Z A Wani; Harish C Pal; Mahitosh Mandal
Journal:  J Biomed Biotechnol       Date:  2010-03-28

5.  In vivo microdialysis for the evaluation of transfersomes as a novel transdermal delivery vehicle for cinnamic acid.

Authors:  Yong-Tai Zhang; Yue-Ming Xu; Su-Juan Zhang; Ji-Hui Zhao; Zhi Wang; Ding-Qin Xu; Nian-Ping Feng
Journal:  Drug Dev Ind Pharm       Date:  2013-01-25       Impact factor: 3.225

6.  Preparation of sustained release apremilast-loaded PLGA nanoparticles: in vitro characterization and in vivo pharmacokinetic study in rats.

Authors:  Md Khalid Anwer; Muqtader Mohammad; Essam Ezzeldin; Farhat Fatima; Ahmed Alalaiwe; Muzaffar Iqbal
Journal:  Int J Nanomedicine       Date:  2019-03-01

7.  Lysyl oxidase engineered lipid nanovesicles for the treatment of triple negative breast cancer.

Authors:  Ennio Tasciotti; Toni Ibrahim; Alessandro De Vita; Chiara Liverani; Roberto Molinaro; Jonathan O Martinez; Kelly A Hartman; Chiara Spadazzi; Giacomo Miserocchi; Francesca Taraballi; Michael Evangelopoulos; Federica Pieri; Alberto Bongiovanni; Laura Mercatali
Journal:  Sci Rep       Date:  2021-03-03       Impact factor: 4.379

Review 8.  Bioactive nanotherapeutic trends to combat triple negative breast cancer.

Authors:  Pallabita Chowdhury; Upasana Ghosh; Kamalika Samanta; Meena Jaggi; Subhash C Chauhan; Murali M Yallapu
Journal:  Bioact Mater       Date:  2021-03-13

9.  Anti-estrogenic and anti-aromatase activities of citrus peels major compounds in breast cancer.

Authors:  Dina M El-Kersh; Shahira M Ezzat; Maha M Salama; Engy A Mahrous; Yasmeen M Attia; Mahmoud Salama Ahmed; Mohey M Elmazar
Journal:  Sci Rep       Date:  2021-03-29       Impact factor: 4.379

10.  Layer-by-Layer Nanoparticles of Tamoxifen and Resveratrol for Dual Drug Delivery System and Potential Triple-Negative Breast Cancer Treatment.

Authors:  Ali A Al-Jubori; Ghassan M Sulaiman; Amer T Tawfeeq; Hamdoon A Mohammed; Riaz A Khan; Salman A A Mohammed
Journal:  Pharmaceutics       Date:  2021-07-20       Impact factor: 6.321

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