Literature DB >> 29737910

In Vitro and In Vivo evaluation of a novel folate-targeted theranostic nanoemulsion of docetaxel for imaging and improved anticancer activity against ovarian cancers.

Niravkumar R Patel1, Aleksandr Piroyan1, Srinivas Ganta1, Allison B Morse1, Katie M Candiloro1, April L Solon1, Abbegail H Nack1, Corin A Galati1, Collete Bora1, Marisa A Maglaty2, Shane W O'Brien2, Samuel Litwin2,3, Barbara Davis1, Denise C Connolly2, Timothy P Coleman1.   

Abstract

Ovarian cancer ranks fifth in cancer related deaths for women in USA. The high mortality rate associated with ovarian cancer is due to diagnosis at later stages of disease and the high recurrence rate of 60-80%. Recurrent ovarian cancers are more likely to present as multidrug resistance (MDR) leading to unfavorable response from 2nd and 3rd line chemotherapy. Nanoemulsions (NEs) are emerging as an attractive drug delivery system to overcome MDR challenges. NEs can also minimize exposure of therapeutic cargo to normal tissues potentially reducing side effects. In >80% of ovarian cancers, Folate Receptor-α (FR-α) is expressed at 10- to 100-fold higher levels than on non-pathological tissues. Therefore, folate (FA) is being evaluated as an active targeting moiety for FR-α+ ovarian cancer. To improve therapeutic outcome with reduced toxicity, we developed NMI-500, a FA targeted gadolinium (Gd) annotated NE loaded with docetaxel (DTX). NMI-500 has been developed as theranostic agents as Gd will enable physician to acquire real time pharmacodynamics data on NE + DTX accumulation in target lesions. In present study, characterization for key translational metrics of NMI-500 showed size distribution in range of 120 to 150 nm and zeta potential around -45 mV. Active targeting of FA was evaluated against FR-α+ KB cells and results demonstrated significant improvement in cell association which was surface ligand density dependent. We found that NMI-500 was able to inhibit tumor growth in a spontaneous transgenic ovarian cancer model with improved safety profile and this growth inhibition could be longitudinally followed by MRI. These results indicate NMI-500 warrants advancement to clinical trials.

Entities:  

Keywords:  Ovarian cancer; docetaxel; folate receptor-alpha; folic acid; nanoemulsions; theranostic

Mesh:

Substances:

Year:  2018        PMID: 29737910      PMCID: PMC5989790          DOI: 10.1080/15384047.2017.1395118

Source DB:  PubMed          Journal:  Cancer Biol Ther        ISSN: 1538-4047            Impact factor:   4.742


  38 in total

1.  Synthesis, purification, and tumor cell uptake of 67Ga-deferoxamine--folate, a potential radiopharmaceutical for tumor imaging.

Authors:  S Wang; R J Lee; C J Mathias; M A Green; P S Low
Journal:  Bioconjug Chem       Date:  1996 Jan-Feb       Impact factor: 4.774

2.  EGFR Targeted Theranostic Nanoemulsion for Image-Guided Ovarian Cancer Therapy.

Authors:  Srinivas Ganta; Amit Singh; Praveen Kulkarni; Amanda W Keeler; Aleksandr Piroyan; Rupa R Sawant; Niravkumar R Patel; Barbara Davis; Craig Ferris; Sara O'Neal; William Zamboni; Mansoor M Amiji; Timothy P Coleman
Journal:  Pharm Res       Date:  2015-03-04       Impact factor: 4.200

3.  Folate receptor expression in carcinomas and normal tissues determined by a quantitative radioligand binding assay.

Authors:  Nikki Parker; Mary Jo Turk; Elaine Westrick; Jeffrey D Lewis; Philip S Low; Christopher P Leamon
Journal:  Anal Biochem       Date:  2005-03-15       Impact factor: 3.365

4.  Exploratory study of 99mTc-EC20 imaging for identifying patients with folate receptor-positive solid tumors.

Authors:  Ronald E Fisher; Barry A Siegel; Steven L Edell; Nelson M Oyesiku; David E Morgenstern; Richard A Messmann; Robert J Amato
Journal:  J Nucl Med       Date:  2008-05-15       Impact factor: 10.057

5.  Doxorubicin-loaded polymeric micelle overcomes multidrug resistance of cancer by double-targeting folate receptor and early endosomal pH.

Authors:  Dongin Kim; Eun Seong Lee; Kyung Taek Oh; Zhong Gao Gao; You Han Bae
Journal:  Small       Date:  2008-11       Impact factor: 13.281

6.  In vivo evaluation of doxorubicin-loaded polymeric micelles targeting folate receptors and early endosomal pH in drug-resistant ovarian cancer.

Authors:  Dongin Kim; Zhong Gao Gao; Eun Seong Lee; You Han Bae
Journal:  Mol Pharm       Date:  2009 Sep-Oct       Impact factor: 4.939

7.  High frequency of putative ovarian cancer stem cells with CD44/CK19 coexpression is associated with decreased progression-free intervals in patients with recurrent epithelial ovarian cancer.

Authors:  Ming Liu; Gil Mor; Huan Cheng; Xue Xiang; Pei Hui; Thomas Rutherford; Gang Yin; David L Rimm; Jennie Holmberg; Ayesha Alvero; Dan-Arin Silasi
Journal:  Reprod Sci       Date:  2012-11-20       Impact factor: 3.060

8.  Development of EGFR-targeted nanoemulsion for imaging and novel platinum therapy of ovarian cancer.

Authors:  Srinivas Ganta; Amit Singh; Niravkumar R Patel; Joseph Cacaccio; Yashesh H Rawal; Barbara J Davis; Mansoor M Amiji; Timothy P Coleman
Journal:  Pharm Res       Date:  2014-03-19       Impact factor: 4.200

9.  Magnetic resonance imaging of folic acid-coated magnetite nanoparticles reflects tissue biodistribution of long-acting antiretroviral therapy.

Authors:  Tianyuzi Li; Howard E Gendelman; Gang Zhang; Pavan Puligujja; JoEllyn M McMillan; Tatiana K Bronich; Benson Edagwa; Xin-Ming Liu; Michael D Boska
Journal:  Int J Nanomedicine       Date:  2015-06-03

Review 10.  Profile of farletuzumab and its potential in the treatment of solid tumors.

Authors:  Seiya Sato; Hiroaki Itamochi
Journal:  Onco Targets Ther       Date:  2016-03-07       Impact factor: 4.147

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  4 in total

Review 1.  Thermostability, Tunability, and Tenacity of RNA as Rubbery Anionic Polymeric Materials in Nanotechnology and Nanomedicine-Specific Cancer Targeting with Undetectable Toxicity.

Authors:  Daniel W Binzel; Xin Li; Nicolas Burns; Eshan Khan; Wen-Jui Lee; Li-Ching Chen; Satheesh Ellipilli; Wayne Miles; Yuan Soon Ho; Peixuan Guo
Journal:  Chem Rev       Date:  2021-05-26       Impact factor: 72.087

Review 2.  Emerging nanotechnology-based therapeutics to combat multidrug-resistant cancer.

Authors:  Priya Yadav; Suresh V Ambudkar; N Rajendra Prasad
Journal:  J Nanobiotechnology       Date:  2022-09-24       Impact factor: 9.429

Review 3.  Single- versus Dual-Targeted Nanoparticles with Folic Acid and Biotin for Anticancer Drug Delivery.

Authors:  Magdalena Jurczyk; Katarzyna Jelonek; Monika Musiał-Kulik; Artur Beberok; Dorota Wrześniok; Janusz Kasperczyk
Journal:  Pharmaceutics       Date:  2021-03-03       Impact factor: 6.321

Review 4.  Recent Progress in Lipid Nanoparticles for Cancer Theranostics: Opportunity and Challenges.

Authors:  Sarah I Bukhari; Syed Sarim Imam; Mohammad Zaki Ahmad; Parameswara Rao Vuddanda; Sultan Alshehri; Wael A Mahdi; Javed Ahmad
Journal:  Pharmaceutics       Date:  2021-06-07       Impact factor: 6.321

  4 in total

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