Beatriz De Luis
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Explore the profile of Beatriz De Luis including associated specialties, affiliations and a list of published articles.
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12
Citations
115
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Recent Articles
1.
Santamaria A, Perez S, De Luis B, Orive A, Feijoo R, Etxebarria J
Eye (Lond)
. 2022 Nov;
37(10):2101-2108.
PMID: 36371603
Objectives: To describe the epidemiologic and clinical characteristics of open globe injuries (OGIs) treated in a tertiary hospital and analyse predictors of visual outcome. Methods: This retrospective observational study included...
2.
De Luis B, Morella-Aucejo A, Llopis-Lorente A, Martinez-Latorre J, Sancenon F, Lopez C, et al.
Nano Lett
. 2022 Feb;
22(5):1836-1844.
PMID: 35171622
The engineering of chemical communication at the micro/nanoscale is a key emergent topic in micro/nanotechnology, synthetic biology, and related areas. However, the field is still in its infancy; previous advances,...
3.
Jimenez-Falcao S, De Luis B, Garcia-Fernandez A, Llopis-Lorente A, Diez P, Sanchez A, et al.
ACS Appl Bio Mater
. 2022 Jan;
2(8):3321-3328.
PMID: 35030774
Here we describe the construction of an integrated and pH-sensitive nanomachine with layer-by-layer supramolecular design and enzymatic control for on-command delivery. The nanodevice comprises a first layer of β-cyclodextrin-coated gold...
4.
De Luis B, Morella-Aucejo A, Llopis-Lorente A, Godoy-Reyes T, Villalonga R, Aznar E, et al.
Chem Sci
. 2021 Jun;
12(4):1551-1559.
PMID: 34163918
In nature, coordinated communication between different entities enables a group to accomplish sophisticated functionalities that go beyond those carried out by individual agents. The possibility of programming and developing coordinated...
5.
De Luis B, Llopis-Lorente A, Sancenon F, Martinez-Manez R
Chem Soc Rev
. 2021 Jun;
50(16):8829-8856.
PMID: 34109333
Chemical communication, based on the exchange of molecules as messengers, allows different entities to share information, cooperate and orchestrate collective behaviors. In recent years, the development of strategies of chemical...
6.
De Luis B, Garcia-Fernandez A, Llopis-Lorente A, Villalonga R, Sancenon F, Martinez-Manez R
Chem Commun (Camb)
. 2020 Jul;
56(69):9974-9977.
PMID: 32720668
A biocomputing strategy implemented in hybrid nanocarriers for controlled cargo delivery is described. The nanodevice consists of enzyme-functionalized Janus Au-mesoporous silica nanoparticles, which behave as an electronic demultiplexer (DEMUX). The...
7.
Llopis-Lorente A, De Luis B, Garcia-Fernandez A, Diez P, Sanchez A, Marcos M, et al.
J Mater Chem B
. 2020 Apr;
5(33):6734-6739.
PMID: 32264324
We report a delivery system based on Au-mesoporous silica (MS) nanoparticles functionalized with acetylcholinesterase on the Au face as a control unit and with disulfide-containing oligo(ethylene glycol) chains on the...
8.
De Luis B, Llopis-Lorente A, Rincon P, Gadea J, Sancenon F, Aznar E, et al.
Angew Chem Int Ed Engl
. 2019 Aug;
58(42):14986-14990.
PMID: 31424153
The construction of communication models at the micro-/nanoscale involving abiotic nanodevices and living organisms has the potential to open a wide range of applications in biomedical and communication technologies. However,...
9.
Jimenez-Falcao S, Joga N, Garcia-Fernandez A, Llopis Lorente A, Torres D, De Luis B, et al.
J Mater Chem B
. 2019 Aug;
7(30):4669-4676.
PMID: 31364688
We report herein the assembly of an integrated nanodevice with bi-enzymatic cascade control for on-command cargo release. This nanocarrier is based on Au-mesoporous silica Janus nanoparticles capped at the mesoporous...
10.
Llopis-Lorente A, De Luis B, Garcia-Fernandez A, Jimenez-Falcao S, Orzaez M, Sancenon F, et al.
ACS Appl Mater Interfaces
. 2018 Jul;
10(31):26494-26500.
PMID: 30016064
Here, we present the design of smart nanodevices capable of reading molecular information from the environment and acting accordingly by processing Boolean logic tasks. As proof of concept, we prepared...