Controlling the Reversible Assembly of Liposomes through a Multistimuli Responsive Anchored DNA.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 27367802.
- Also identified by DOI 10.1021/acs.nanolett.6b01618 and PMC identifier 4956241.
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Abstract
We present a novel approach to reversibly control the assembly of liposomes through an anchored multistimuli responsive DNA oligonucleotide decorated with an azobenzene moiety (AZO-ON1). We show that liposomes assembly can be simultaneously controlled by three external stimuli: light, Mg(2+), and temperature. (i) Light alters the interaction of AZO-ON1 with liposomes, which influences DNA coating and consequently liposomes assembly. (ii) Mg(2+) induces the assembly, hence variation in its concentration enables for reversibility. (iii) Double-stranded AZO-ON1 is more efficient than single-stranded AZO-ON1 in triggering the assembly of liposomes and temperature has been used for controllable assembly through DNA thermal denaturation. Our multiresponsive AZO-ON1 represents a unique example in which multiple stimuli can be simultaneously applied to regulate the reversible assembly of liposomes.
Medical subject headings
- DNA
- Liposomes
- Oligonucleotides