Literature DB >> 25574376

Nanodelivery of Parthenolide Using Functionalized Nanographene Enhances its Anticancer Activity.

A Karmakar1, Y Xu1, T Mustafa1, G Kannarpady1, S M Bratton2, A Radominska-Pandya2, P A Crooks2, A S Biris1.   

Abstract

Advances in anticancer chemotherapy have been hindered by the lack of biocompatibility of new prospective drugs. One significant challenge concerns water insolubility, which compromises the bioavailability of the drugs leading to increased dosage and higher systemic toxicity. To overcome these problems, nanodelivery has been established as a promising approach for increasing the efficacy and lowering the required dosage of chemotherapeutics. The naturally derived compound, parthenolide (PTL), is known for its anti-inflammatory and anticancer activity, but its poor water solubility limits its clinical value. In the present study, we have used carboxyl-functionalized nanographene (fGn) delivery to overcome the extreme hydrophobicity of this drug. A water-soluble PTL analog, dimethylamino parthenolide (DMAPT), was also examined for comparison with the anticancer efficacy of our PTL-fGn complex. Delivery by fGn was found to increase the anticancer/apoptotic effects of PTL (but not DMAPT) when delivered to the human pancreatic cancer cell line, Panc-1. The IC50 value for PTL decreased from 39 µM to 9.5 µM when delivered as a mixture with fGn. The IC50 of DMAPT did not decrease when delivered as DMAPT-fGn and was significantly higher than that for PTL-fGn. There were significant increases in ROS formation and in mitochondrial membrane disruption in Panc-1 cells after PTL-fGn treatment as compared to PTL treatment, alone. Increases in toxicity were also seen with apoptosis detection assays using flow cytometry, ethidium bromide/acridine orange/DAPI staining, and TUNEL. Thus, fGn delivery was successfully used to overcome the poor water solubility of PTL, providing a strategy for improving the effectiveness of this anticancer agent.

Entities:  

Year:  2015        PMID: 25574376      PMCID: PMC4283950          DOI: 10.1039/c4ra10871j

Source DB:  PubMed          Journal:  RSC Adv        ISSN: 2046-2069            Impact factor:   3.361


  47 in total

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Journal:  J Biomed Opt       Date:  2013-05       Impact factor: 3.170

3.  Stat3 and NF-kappaB activation prevents apoptosis in pancreatic carcinogenesis.

Authors:  Florian R Greten; Christoph K Weber; Tim F Greten; Günter Schneider; Martin Wagner; Guido Adler; Roland M Schmid
Journal:  Gastroenterology       Date:  2002-12       Impact factor: 22.682

4.  Susceptibility of cholangiocarcinoma cells to parthenolide-induced apoptosis.

Authors:  Jong-Hyun Kim; Lan Liu; Seung-Ok Lee; Yong-Tae Kim; Kyung-Ran You; Dae-Ghon Kim
Journal:  Cancer Res       Date:  2005-07-15       Impact factor: 12.701

5.  A water soluble parthenolide analog suppresses in vivo tumor growth of two tobacco-associated cancers, lung and bladder cancer, by targeting NF-κB and generating reactive oxygen species.

Authors:  Rajasubramaniam Shanmugam; Praveen Kusumanchi; Hitesh Appaiah; Liang Cheng; Peter Crooks; Sundar Neelakantan; Tyler Peat; James Klaunig; William Matthews; Harikrishna Nakshatri; Christopher J Sweeney
Journal:  Int J Cancer       Date:  2011-05-15       Impact factor: 7.396

6.  Suppressed NF-kappaB and sustained JNK activation contribute to the sensitization effect of parthenolide to TNF-alpha-induced apoptosis in human cancer cells.

Authors:  Siyuan Zhang; Zhong-Ning Lin; Cheng-Feng Yang; Xianglin Shi; Choon-Nam Ong; Han-Ming Shen
Journal:  Carcinogenesis       Date:  2004-07-15       Impact factor: 4.944

Review 7.  Drug delivery and transport to solid tumors.

Authors:  Seong Hoon Jang; M Guillaume Wientjes; Dan Lu; Jessie L S Au
Journal:  Pharm Res       Date:  2003-09       Impact factor: 4.200

Review 8.  Pancreatic cancer today.

Authors:  Michael C Safioleas; Konstantinos G Moulakakis
Journal:  Hepatogastroenterology       Date:  2004 May-Jun

9.  Preparation and characterization of graphene oxide paper.

Authors:  Dmitriy A Dikin; Sasha Stankovich; Eric J Zimney; Richard D Piner; Geoffrey H B Dommett; Guennadi Evmenenko; SonBinh T Nguyen; Rodney S Ruoff
Journal:  Nature       Date:  2007-07-26       Impact factor: 49.962

10.  Oxidative stress-mediated apoptosis. The anticancer effect of the sesquiterpene lactone parthenolide.

Authors:  Jing Wen; Kyung-Ran You; So-Youn Lee; Chang-Ho Song; Dae-Ghon Kim
Journal:  J Biol Chem       Date:  2002-07-31       Impact factor: 5.157

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  5 in total

Review 1.  Parthenolide and Its Soluble Analogues: Multitasking Compounds with Antitumor Properties.

Authors:  Daniela Carlisi; Marianna Lauricella; Antonella D'Anneo; Anna De Blasio; Adriana Celesia; Giovanni Pratelli; Antonietta Notaro; Giuseppe Calvaruso; Michela Giuliano; Sonia Emanuele
Journal:  Biomedicines       Date:  2022-02-21

Review 2.  Plant-Derived Natural Products in Cancer Research: Extraction, Mechanism of Action, and Drug Formulation.

Authors:  Wamidh H Talib; Izzeddin Alsalahat; Safa Daoud; Reem Fawaz Abutayeh; Asma Ismail Mahmod
Journal:  Molecules       Date:  2020-11-14       Impact factor: 4.411

3.  Graphene-based 2D constructs for enhanced fibroblast support.

Authors:  Ingrid Safina; Shawn E Bourdo; Karrer M Algazali; Ganesh Kannarpady; Fumiya Watanabe; Kieng Bao Vang; Alexandru S Biris
Journal:  PLoS One       Date:  2020-05-18       Impact factor: 3.240

Review 4.  The Emerging Potential of Parthenolide Nanoformulations in Tumor Therapy.

Authors:  Tao An; Huanhuan Yin; Yanting Lu; Feng Liu
Journal:  Drug Des Devel Ther       Date:  2022-04-29       Impact factor: 4.319

5.  Derivatisation of parthenolide to address chemoresistant chronic lymphocytic leukaemia.

Authors:  Xingjian Li; Daniel T Payne; Badarinath Ampolu; Nicholas Bland; Jane T Brown; Mark J Dutton; Catherine A Fitton; Abigail Gulliver; Lee Hale; Daniel Hamza; Geraint Jones; Rebecca Lane; Andrew G Leach; Louise Male; Elena G Merisor; Michael J Morton; Alex S Quy; Ruth Roberts; Rosanna Scarll; Timothy Schulz-Utermoehl; Tatjana Stankovic; Brett Stevenson; John S Fossey; Angelo Agathanggelou
Journal:  Medchemcomm       Date:  2019-08-01       Impact factor: 3.597

  5 in total

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