Cargando…

A Nanoscale Shape-Discovery Framework Supporting Systematic Investigations of Shape-Dependent Biological Effects and Immunomodulation

[Image: see text] Since it is now possible to make, in a controlled fashion, an almost unlimited variety of nanostructure shapes, it is of increasing interest to understand the forms of biological control that nanoscale shape allows. However, a priori rational investigation of such a vast universe o...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Wei, Lopez, Hender, Boselli, Luca, Bigini, Paolo, Perez-Potti, André, Xie, Zengchun, Castagnola, Valentina, Cai, Qi, Silveira, Camila P., de Araujo, Joao M., Talamini, Laura, Panini, Nicolò, Ristagno, Giuseppe, Violatto, Martina B., Devineau, Stéphanie, Monopoli, Marco P., Salmona, Mario, Giannone, Valeria A., Lara, Sandra, Dawson, Kenneth A., Yan, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8793145/
https://www.ncbi.nlm.nih.gov/pubmed/34958549
http://dx.doi.org/10.1021/acsnano.1c10074
_version_ 1784640532579876864
author Zhang, Wei
Lopez, Hender
Boselli, Luca
Bigini, Paolo
Perez-Potti, André
Xie, Zengchun
Castagnola, Valentina
Cai, Qi
Silveira, Camila P.
de Araujo, Joao M.
Talamini, Laura
Panini, Nicolò
Ristagno, Giuseppe
Violatto, Martina B.
Devineau, Stéphanie
Monopoli, Marco P.
Salmona, Mario
Giannone, Valeria A.
Lara, Sandra
Dawson, Kenneth A.
Yan, Yan
author_facet Zhang, Wei
Lopez, Hender
Boselli, Luca
Bigini, Paolo
Perez-Potti, André
Xie, Zengchun
Castagnola, Valentina
Cai, Qi
Silveira, Camila P.
de Araujo, Joao M.
Talamini, Laura
Panini, Nicolò
Ristagno, Giuseppe
Violatto, Martina B.
Devineau, Stéphanie
Monopoli, Marco P.
Salmona, Mario
Giannone, Valeria A.
Lara, Sandra
Dawson, Kenneth A.
Yan, Yan
author_sort Zhang, Wei
collection PubMed
description [Image: see text] Since it is now possible to make, in a controlled fashion, an almost unlimited variety of nanostructure shapes, it is of increasing interest to understand the forms of biological control that nanoscale shape allows. However, a priori rational investigation of such a vast universe of shapes appears to present intractable fundamental and practical challenges. This has limited the useful systematic investigation of their biological interactions and the development of innovative nanoscale shape-dependent therapies. Here, we introduce a concept of biologically relevant inductive nanoscale shape discovery and evaluation that is ideally suited to, and will ultimately become, a vehicle for machine learning discovery. Combining the reproducibility and tunability of microfluidic flow nanochemistry syntheses, quantitative computational shape analysis, and iterative feedback from biological responses in vitro and in vivo, we show that these challenges can be mastered, allowing shape biology to be explored within accepted scientific and biomedical research paradigms. Early applications identify significant forms of shape-induced biological and adjuvant-like immunological control.
format Online
Article
Text
id pubmed-8793145
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-87931452022-01-28 A Nanoscale Shape-Discovery Framework Supporting Systematic Investigations of Shape-Dependent Biological Effects and Immunomodulation Zhang, Wei Lopez, Hender Boselli, Luca Bigini, Paolo Perez-Potti, André Xie, Zengchun Castagnola, Valentina Cai, Qi Silveira, Camila P. de Araujo, Joao M. Talamini, Laura Panini, Nicolò Ristagno, Giuseppe Violatto, Martina B. Devineau, Stéphanie Monopoli, Marco P. Salmona, Mario Giannone, Valeria A. Lara, Sandra Dawson, Kenneth A. Yan, Yan ACS Nano [Image: see text] Since it is now possible to make, in a controlled fashion, an almost unlimited variety of nanostructure shapes, it is of increasing interest to understand the forms of biological control that nanoscale shape allows. However, a priori rational investigation of such a vast universe of shapes appears to present intractable fundamental and practical challenges. This has limited the useful systematic investigation of their biological interactions and the development of innovative nanoscale shape-dependent therapies. Here, we introduce a concept of biologically relevant inductive nanoscale shape discovery and evaluation that is ideally suited to, and will ultimately become, a vehicle for machine learning discovery. Combining the reproducibility and tunability of microfluidic flow nanochemistry syntheses, quantitative computational shape analysis, and iterative feedback from biological responses in vitro and in vivo, we show that these challenges can be mastered, allowing shape biology to be explored within accepted scientific and biomedical research paradigms. Early applications identify significant forms of shape-induced biological and adjuvant-like immunological control. American Chemical Society 2021-12-27 2022-01-25 /pmc/articles/PMC8793145/ /pubmed/34958549 http://dx.doi.org/10.1021/acsnano.1c10074 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Zhang, Wei
Lopez, Hender
Boselli, Luca
Bigini, Paolo
Perez-Potti, André
Xie, Zengchun
Castagnola, Valentina
Cai, Qi
Silveira, Camila P.
de Araujo, Joao M.
Talamini, Laura
Panini, Nicolò
Ristagno, Giuseppe
Violatto, Martina B.
Devineau, Stéphanie
Monopoli, Marco P.
Salmona, Mario
Giannone, Valeria A.
Lara, Sandra
Dawson, Kenneth A.
Yan, Yan
A Nanoscale Shape-Discovery Framework Supporting Systematic Investigations of Shape-Dependent Biological Effects and Immunomodulation
title A Nanoscale Shape-Discovery Framework Supporting Systematic Investigations of Shape-Dependent Biological Effects and Immunomodulation
title_full A Nanoscale Shape-Discovery Framework Supporting Systematic Investigations of Shape-Dependent Biological Effects and Immunomodulation
title_fullStr A Nanoscale Shape-Discovery Framework Supporting Systematic Investigations of Shape-Dependent Biological Effects and Immunomodulation
title_full_unstemmed A Nanoscale Shape-Discovery Framework Supporting Systematic Investigations of Shape-Dependent Biological Effects and Immunomodulation
title_short A Nanoscale Shape-Discovery Framework Supporting Systematic Investigations of Shape-Dependent Biological Effects and Immunomodulation
title_sort a nanoscale shape-discovery framework supporting systematic investigations of shape-dependent biological effects and immunomodulation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8793145/
https://www.ncbi.nlm.nih.gov/pubmed/34958549
http://dx.doi.org/10.1021/acsnano.1c10074
work_keys_str_mv AT zhangwei ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT lopezhender ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT boselliluca ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT biginipaolo ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT perezpottiandre ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT xiezengchun ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT castagnolavalentina ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT caiqi ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT silveiracamilap ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT dearaujojoaom ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT talaminilaura ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT panininicolo ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT ristagnogiuseppe ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT violattomartinab ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT devineaustephanie ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT monopolimarcop ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT salmonamario ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT giannonevaleriaa ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT larasandra ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT dawsonkennetha ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation
AT yanyan ananoscaleshapediscoveryframeworksupportingsystematicinvestigationsofshapedependentbiologicaleffectsandimmunomodulation