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Enhancement of Anti-Tumoral Properties of Paclitaxel Nano-Crystals by Conjugation of Folic Acid to Pluronic F127: Formulation Optimization, In Vitro and In Vivo Study
A brand-new nano-crystal (NC) version of the hydrophobic drug Paclitaxel (PT) were formulated for cancer treatment. A stable NC formulation for the administration of PT was created using the triblock co-polymer Pluronic F127. To achieve maximum entrapment effectiveness and minimal particle size, the...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696646/ https://www.ncbi.nlm.nih.gov/pubmed/36432014 http://dx.doi.org/10.3390/molecules27227914 |
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author | Sreeharsha, Nagaraja Prasanthi, Samathoti Mahalakshmi, Satyavarapu Veera Venkata Naga Satya Goudanavar, Prakash S. Naveen, Nimbagal Raghavendra Gowthami, Buduru Fattepur, Santosh Meravanige, Girish Asdaq, Syed Mohammed Basheeruddin Anwer, Md. Khalid Aldhubiab, Bandar Islam, Mohammed Monirul Habeebuddin, Mohammed Telsang, Mallikarjun Gharsan, Mazen Al Haroun, Michelyne |
author_facet | Sreeharsha, Nagaraja Prasanthi, Samathoti Mahalakshmi, Satyavarapu Veera Venkata Naga Satya Goudanavar, Prakash S. Naveen, Nimbagal Raghavendra Gowthami, Buduru Fattepur, Santosh Meravanige, Girish Asdaq, Syed Mohammed Basheeruddin Anwer, Md. Khalid Aldhubiab, Bandar Islam, Mohammed Monirul Habeebuddin, Mohammed Telsang, Mallikarjun Gharsan, Mazen Al Haroun, Michelyne |
author_sort | Sreeharsha, Nagaraja |
collection | PubMed |
description | A brand-new nano-crystal (NC) version of the hydrophobic drug Paclitaxel (PT) were formulated for cancer treatment. A stable NC formulation for the administration of PT was created using the triblock co-polymer Pluronic F127. To achieve maximum entrapment effectiveness and minimal particle size, the formulation was improved using the central composite design by considering agitation speed and vacuum pressure at five levels (coded as +1.414, +1, 0, −1, and −1.414). According to the Design Expert software’s predictions, 13 runs were created and evaluated for the chosen responses. The formulation prepared with an agitation speed of 1260 RPM and a vacuum pressure of 77.53 mbar can meet the requirements of the ideal formulation in order to achieve 142.56 nm of PS and 75.18% EE, according to the level of desirability (D = 0.959). Folic acid was conjugated to Pluronic F127 to create folate receptor-targeted NC. The drug release profile of the nano-crystals in vitro demonstrated sustained release over an extended period. Folate receptor (FR)-targeted NC (O-PT-NC-Folate) has also been prepared by conjugating folic acid to Pluronic F127. MTT test is used to validate the targeting efficacy on the FR-positive human oral cancer cell line (KB). At pharmacologically relevant concentrations, the PT nano-crystal formulation did not cause hemolysis. Compared to non-targeted NC of PT, the O-PT-NC-Folate showed a comparable but more sustained anti-cancer effect, according to an in vivo anti-tumor investigation in NCI/ADR-RES cell lines. The remarkable anti-tumor effectiveness, minimal toxicity, and simplicity of scale-up manufacturing of the NC formulations indicate their potential for clinical development. Other hydrophobic medications that are formulated into nano-systems for improved therapy may benefit from the formulation approach. |
format | Online Article Text |
id | pubmed-9696646 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-96966462022-11-26 Enhancement of Anti-Tumoral Properties of Paclitaxel Nano-Crystals by Conjugation of Folic Acid to Pluronic F127: Formulation Optimization, In Vitro and In Vivo Study Sreeharsha, Nagaraja Prasanthi, Samathoti Mahalakshmi, Satyavarapu Veera Venkata Naga Satya Goudanavar, Prakash S. Naveen, Nimbagal Raghavendra Gowthami, Buduru Fattepur, Santosh Meravanige, Girish Asdaq, Syed Mohammed Basheeruddin Anwer, Md. Khalid Aldhubiab, Bandar Islam, Mohammed Monirul Habeebuddin, Mohammed Telsang, Mallikarjun Gharsan, Mazen Al Haroun, Michelyne Molecules Article A brand-new nano-crystal (NC) version of the hydrophobic drug Paclitaxel (PT) were formulated for cancer treatment. A stable NC formulation for the administration of PT was created using the triblock co-polymer Pluronic F127. To achieve maximum entrapment effectiveness and minimal particle size, the formulation was improved using the central composite design by considering agitation speed and vacuum pressure at five levels (coded as +1.414, +1, 0, −1, and −1.414). According to the Design Expert software’s predictions, 13 runs were created and evaluated for the chosen responses. The formulation prepared with an agitation speed of 1260 RPM and a vacuum pressure of 77.53 mbar can meet the requirements of the ideal formulation in order to achieve 142.56 nm of PS and 75.18% EE, according to the level of desirability (D = 0.959). Folic acid was conjugated to Pluronic F127 to create folate receptor-targeted NC. The drug release profile of the nano-crystals in vitro demonstrated sustained release over an extended period. Folate receptor (FR)-targeted NC (O-PT-NC-Folate) has also been prepared by conjugating folic acid to Pluronic F127. MTT test is used to validate the targeting efficacy on the FR-positive human oral cancer cell line (KB). At pharmacologically relevant concentrations, the PT nano-crystal formulation did not cause hemolysis. Compared to non-targeted NC of PT, the O-PT-NC-Folate showed a comparable but more sustained anti-cancer effect, according to an in vivo anti-tumor investigation in NCI/ADR-RES cell lines. The remarkable anti-tumor effectiveness, minimal toxicity, and simplicity of scale-up manufacturing of the NC formulations indicate their potential for clinical development. Other hydrophobic medications that are formulated into nano-systems for improved therapy may benefit from the formulation approach. MDPI 2022-11-16 /pmc/articles/PMC9696646/ /pubmed/36432014 http://dx.doi.org/10.3390/molecules27227914 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Sreeharsha, Nagaraja Prasanthi, Samathoti Mahalakshmi, Satyavarapu Veera Venkata Naga Satya Goudanavar, Prakash S. Naveen, Nimbagal Raghavendra Gowthami, Buduru Fattepur, Santosh Meravanige, Girish Asdaq, Syed Mohammed Basheeruddin Anwer, Md. Khalid Aldhubiab, Bandar Islam, Mohammed Monirul Habeebuddin, Mohammed Telsang, Mallikarjun Gharsan, Mazen Al Haroun, Michelyne Enhancement of Anti-Tumoral Properties of Paclitaxel Nano-Crystals by Conjugation of Folic Acid to Pluronic F127: Formulation Optimization, In Vitro and In Vivo Study |
title | Enhancement of Anti-Tumoral Properties of Paclitaxel Nano-Crystals by Conjugation of Folic Acid to Pluronic F127: Formulation Optimization, In Vitro and In Vivo Study |
title_full | Enhancement of Anti-Tumoral Properties of Paclitaxel Nano-Crystals by Conjugation of Folic Acid to Pluronic F127: Formulation Optimization, In Vitro and In Vivo Study |
title_fullStr | Enhancement of Anti-Tumoral Properties of Paclitaxel Nano-Crystals by Conjugation of Folic Acid to Pluronic F127: Formulation Optimization, In Vitro and In Vivo Study |
title_full_unstemmed | Enhancement of Anti-Tumoral Properties of Paclitaxel Nano-Crystals by Conjugation of Folic Acid to Pluronic F127: Formulation Optimization, In Vitro and In Vivo Study |
title_short | Enhancement of Anti-Tumoral Properties of Paclitaxel Nano-Crystals by Conjugation of Folic Acid to Pluronic F127: Formulation Optimization, In Vitro and In Vivo Study |
title_sort | enhancement of anti-tumoral properties of paclitaxel nano-crystals by conjugation of folic acid to pluronic f127: formulation optimization, in vitro and in vivo study |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696646/ https://www.ncbi.nlm.nih.gov/pubmed/36432014 http://dx.doi.org/10.3390/molecules27227914 |
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