Cargando…

Cytochrome c: Using Biological Insight toward Engineering an Optimized Anticancer Biodrug

The heme protein cytochrome c (Cyt c) plays pivotal roles in cellular life and death processes. In the respiratory chain of mitochondria, it serves as an electron transfer protein, contributing to the proliferation of healthy cells. In the cell cytoplasm, it activates intrinsic apoptosis to terminat...

Descripción completa

Detalles Bibliográficos
Autores principales: Delinois, Louis J., De León-Vélez, Omar, Vázquez-Medina, Adriana, Vélez-Cabrera, Alondra, Marrero-Sánchez, Amanda, Nieves-Escobar, Christopher, Alfonso-Cano, Daniela, Caraballo-Rodríguez, Delvin, Rodriguez-Ortiz, Jael, Acosta-Mercado, Jemily, Benjamín-Rivera, Josué A., González-González, Kiara, Fernández-Adorno, Kysha, Santiago-Pagán, Lisby, Delgado-Vergara, Rafael, Torres-Ávila, Xaiomy, Maser-Figueroa, Andrea, Grajales-Avilés, Gladimarys, Miranda Méndez, Glorimar I., Santiago-Pagán, Javier, Nieves-Santiago, Miguel, Álvarez-Carrillo, Vanessa, Griebenow, Kai, Tinoco, Arthur D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9380692/
https://www.ncbi.nlm.nih.gov/pubmed/35978717
http://dx.doi.org/10.3390/inorganics9110083
_version_ 1784768928596099072
author Delinois, Louis J.
De León-Vélez, Omar
Vázquez-Medina, Adriana
Vélez-Cabrera, Alondra
Marrero-Sánchez, Amanda
Nieves-Escobar, Christopher
Alfonso-Cano, Daniela
Caraballo-Rodríguez, Delvin
Rodriguez-Ortiz, Jael
Acosta-Mercado, Jemily
Benjamín-Rivera, Josué A.
González-González, Kiara
Fernández-Adorno, Kysha
Santiago-Pagán, Lisby
Delgado-Vergara, Rafael
Torres-Ávila, Xaiomy
Maser-Figueroa, Andrea
Grajales-Avilés, Gladimarys
Miranda Méndez, Glorimar I.
Santiago-Pagán, Javier
Nieves-Santiago, Miguel
Álvarez-Carrillo, Vanessa
Griebenow, Kai
Tinoco, Arthur D.
author_facet Delinois, Louis J.
De León-Vélez, Omar
Vázquez-Medina, Adriana
Vélez-Cabrera, Alondra
Marrero-Sánchez, Amanda
Nieves-Escobar, Christopher
Alfonso-Cano, Daniela
Caraballo-Rodríguez, Delvin
Rodriguez-Ortiz, Jael
Acosta-Mercado, Jemily
Benjamín-Rivera, Josué A.
González-González, Kiara
Fernández-Adorno, Kysha
Santiago-Pagán, Lisby
Delgado-Vergara, Rafael
Torres-Ávila, Xaiomy
Maser-Figueroa, Andrea
Grajales-Avilés, Gladimarys
Miranda Méndez, Glorimar I.
Santiago-Pagán, Javier
Nieves-Santiago, Miguel
Álvarez-Carrillo, Vanessa
Griebenow, Kai
Tinoco, Arthur D.
author_sort Delinois, Louis J.
collection PubMed
description The heme protein cytochrome c (Cyt c) plays pivotal roles in cellular life and death processes. In the respiratory chain of mitochondria, it serves as an electron transfer protein, contributing to the proliferation of healthy cells. In the cell cytoplasm, it activates intrinsic apoptosis to terminate damaged cells. Insight into these mechanisms and the associated physicochemical properties and biomolecular interactions of Cyt c informs on the anticancer therapeutic potential of the protein, especially in its ability to subvert the current limitations of small molecule-based chemotherapy. In this review, we explore the development of Cyt c as an anticancer drug by identifying cancer types that would be receptive to the cytotoxicity of the protein and factors that can be finetuned to enhance its apoptotic potency. To this end, some information is obtained by characterizing known drugs that operate, in part, by triggering Cyt c induced apoptosis. The application of different smart drug delivery systems is surveyed to highlight important features for maintaining Cyt c stability and activity and improving its specificity for cancer cells and high drug payload release while recognizing the continuing limitations. This work serves to elucidate on the optimization of the strategies to translate Cyt c to the clinical market.
format Online
Article
Text
id pubmed-9380692
institution National Center for Biotechnology Information
language English
publishDate 2021
record_format MEDLINE/PubMed
spelling pubmed-93806922022-08-16 Cytochrome c: Using Biological Insight toward Engineering an Optimized Anticancer Biodrug Delinois, Louis J. De León-Vélez, Omar Vázquez-Medina, Adriana Vélez-Cabrera, Alondra Marrero-Sánchez, Amanda Nieves-Escobar, Christopher Alfonso-Cano, Daniela Caraballo-Rodríguez, Delvin Rodriguez-Ortiz, Jael Acosta-Mercado, Jemily Benjamín-Rivera, Josué A. González-González, Kiara Fernández-Adorno, Kysha Santiago-Pagán, Lisby Delgado-Vergara, Rafael Torres-Ávila, Xaiomy Maser-Figueroa, Andrea Grajales-Avilés, Gladimarys Miranda Méndez, Glorimar I. Santiago-Pagán, Javier Nieves-Santiago, Miguel Álvarez-Carrillo, Vanessa Griebenow, Kai Tinoco, Arthur D. Inorganics (Basel) Article The heme protein cytochrome c (Cyt c) plays pivotal roles in cellular life and death processes. In the respiratory chain of mitochondria, it serves as an electron transfer protein, contributing to the proliferation of healthy cells. In the cell cytoplasm, it activates intrinsic apoptosis to terminate damaged cells. Insight into these mechanisms and the associated physicochemical properties and biomolecular interactions of Cyt c informs on the anticancer therapeutic potential of the protein, especially in its ability to subvert the current limitations of small molecule-based chemotherapy. In this review, we explore the development of Cyt c as an anticancer drug by identifying cancer types that would be receptive to the cytotoxicity of the protein and factors that can be finetuned to enhance its apoptotic potency. To this end, some information is obtained by characterizing known drugs that operate, in part, by triggering Cyt c induced apoptosis. The application of different smart drug delivery systems is surveyed to highlight important features for maintaining Cyt c stability and activity and improving its specificity for cancer cells and high drug payload release while recognizing the continuing limitations. This work serves to elucidate on the optimization of the strategies to translate Cyt c to the clinical market. 2021-11 2021-11-16 /pmc/articles/PMC9380692/ /pubmed/35978717 http://dx.doi.org/10.3390/inorganics9110083 Text en https://creativecommons.org/licenses/by/4.0/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
Delinois, Louis J.
De León-Vélez, Omar
Vázquez-Medina, Adriana
Vélez-Cabrera, Alondra
Marrero-Sánchez, Amanda
Nieves-Escobar, Christopher
Alfonso-Cano, Daniela
Caraballo-Rodríguez, Delvin
Rodriguez-Ortiz, Jael
Acosta-Mercado, Jemily
Benjamín-Rivera, Josué A.
González-González, Kiara
Fernández-Adorno, Kysha
Santiago-Pagán, Lisby
Delgado-Vergara, Rafael
Torres-Ávila, Xaiomy
Maser-Figueroa, Andrea
Grajales-Avilés, Gladimarys
Miranda Méndez, Glorimar I.
Santiago-Pagán, Javier
Nieves-Santiago, Miguel
Álvarez-Carrillo, Vanessa
Griebenow, Kai
Tinoco, Arthur D.
Cytochrome c: Using Biological Insight toward Engineering an Optimized Anticancer Biodrug
title Cytochrome c: Using Biological Insight toward Engineering an Optimized Anticancer Biodrug
title_full Cytochrome c: Using Biological Insight toward Engineering an Optimized Anticancer Biodrug
title_fullStr Cytochrome c: Using Biological Insight toward Engineering an Optimized Anticancer Biodrug
title_full_unstemmed Cytochrome c: Using Biological Insight toward Engineering an Optimized Anticancer Biodrug
title_short Cytochrome c: Using Biological Insight toward Engineering an Optimized Anticancer Biodrug
title_sort cytochrome c: using biological insight toward engineering an optimized anticancer biodrug
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9380692/
https://www.ncbi.nlm.nih.gov/pubmed/35978717
http://dx.doi.org/10.3390/inorganics9110083
work_keys_str_mv AT delinoislouisj cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT deleonvelezomar cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT vazquezmedinaadriana cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT velezcabreraalondra cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT marrerosanchezamanda cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT nievesescobarchristopher cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT alfonsocanodaniela cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT caraballorodriguezdelvin cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT rodriguezortizjael cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT acostamercadojemily cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT benjaminriverajosuea cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT gonzalezgonzalezkiara cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT fernandezadornokysha cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT santiagopaganlisby cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT delgadovergararafael cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT torresavilaxaiomy cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT maserfigueroaandrea cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT grajalesavilesgladimarys cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT mirandamendezglorimari cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT santiagopaganjavier cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT nievessantiagomiguel cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT alvarezcarrillovanessa cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT griebenowkai cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug
AT tinocoarthurd cytochromecusingbiologicalinsighttowardengineeringanoptimizedanticancerbiodrug