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	ns13:caption	"Fig. 4 Combinations of different spacers, lipids and other modifications can be used to optimise the functionality of the function group on the FSL construct.\nIn all diagrams, the same functional group is represented by the sunflower head.\nThe first four examples show monomeric presentation of F, with the first example representing the short 1.9nm  spacer . The second and fourth with the longer stalks  representing the CMG2 7.2nm spacer and CMG4 11.5nm spacers respectively. The second and third constructs have the same spacers, but the lipid tail of the third construct is cholesterol, rather than DOPE.\nThe last three examples all based on CMG2 spacers , with a DOPE lipid tail  are multimeric presentations of F. The first of these is a simple duplication of the F group, while the following has an additional spacer between the F groups. The final construct is a cluster presentation."@en ,
		"Fig. 5c Hydrophilic surface FSL coating. The hydrophobic lipid tail of an FSL construct will not interact directly with hydrophilic surfaces. Instead, due to the amphiphilic nature of the FSL, the construct will spontaneously form into a bilayer. The surface of the bilayer will be hydrophilic, allowing it to interact and anchor the FSLs to the hydrophilic surface."@en ,
		"Fig. 6a A plasma membrane modified with FSL constructs , creating a kodecyte membrane."@en ,
		"Fig. 6b FSL constructs  inserted via their lipid tail  into a liposome. The spacer of the FSL  hold the functional group of the FSL  away from the surface."@en ,
		"Fig. 5a Schematic cross-sectional slice of FSL micelles. FSL construct by nature of its composition in possessing both hydrophobic and hydrophilic regions is amphiphilic . This characteristic determines the way in which the construct will interact with surfaces. When present in a solution they may form simple micelles or adopt more complex bilayer structures"@en ,
		"Fig. 5b Hydrophobic surface FSL coating. The hydrophobic lipid tail of an FSL construct will interact and anchor FSL constructs directly onto hydrophobic surfaces."@en ,
		"Fig. 3 Diagram comparing the presentation of antigens in immunoassays between a typical direct attachment and in a function-spacer-lipid .\nUpper image shows the antigen  presented in a variety of formats directly on a solid surface. The construct attaches randomly to the solid surface.\nLower image shows the same antigen  presented in optimal orientation as an FSL construct with a spacer  holding it away from the solid surface. The lipid tail  causes the construct to attach to the solid surface."@en ;
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