Recent Progress with Functional Biosupramolecular Systems
Author(s) -
David Alonso Doval,
Jetsuda Areephong,
EunKyoung Bang,
Leonardo Bertone,
Pierre Charbonnaz,
Andréa Fin,
NaiTi Lin,
Marco Lista,
Stefan Matile,
Javier Montenegro,
Edvinas Orentas,
Naomi Sakai,
DuyHien Tran,
Andreas Vargas Jentzsch
Publication year - 2011
Publication title -
langmuir
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.042
H-Index - 333
eISSN - 1520-5827
pISSN - 0743-7463
DOI - 10.1021/la200593p
Subject(s) - biosensor , chemistry , nanotechnology , lipid bilayer , supramolecular chemistry , ion channel , membrane , biophysics , materials science , molecule , biology , biochemistry , organic chemistry , receptor
The objective of this account is to summarize our recent progress with functional biosupramolecular systems concisely. The functions covered are artificial photosynthesis, anion transport, and sensing in lipid bilayer membranes. With artificial photosynthesis, the current emphasis is on the construction of ordered and oriented architectures on solid surfaces. Recent examples include the zipper assembly of photosystems with supramolecular n/p-heterojunctions and oriented antiparallel redox gradients. Current transport systems in lipid bilayers reveal new interactions at work. Examples include anion-macrodipole or anion-π interactions. Current attention with membrane-based sensing systems shifts from biosensor approaches with enzymatic signal generation to aptamers (i.e., the DNA version of immunosensing) and differential sensing with dynamic polyion-counterion transporters. The functional diversity accessible with biosupramolecular systems is highlighted, as is the critical importance of cross-fertilization at intertopical convergence zones.
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