References
1. Dubacheva GV, Araya-Callis C, Geert
Volbeda A, Fairhead M, Code ´e J,
Howarth M, Richter RP (2017) Controlling
multivalent binding through surface chemistry:
model study on streptavidin. J Am Chem Soc
139:4157–4167. https://doi.org/10.1021/
jacs.7b00540
2. Sumino A, Dewa T, Takeuchi T, Sugiura R,
Sasaki N, Misawa N, Tero R, Urisu T, Gardiner
AT, Cogdell RJ, Hashimoto H, Nango M
(2011) Construction and structural analysis of
tethered lipid bilayer containing photosynthetic antenna proteins for functional analysis.
Biomacromolecules 12:2850–2858. https://
doi.org/10.1021/bm200585y
3. Forbes S, McBain AJ, Felton-Smith S, Jowitt
TA, Birchenough HL, Dobson CB (2013)
Comparative surface antimicrobial properties
of synthetic biocides and novel human apolipoprotein E derived antimicrobial peptides. Biomaterials 34:5453–5464. https://doi.org/10.
1016/j.biomaterials.2013.03.087
4. Beutel O, Roder F, Birkholz O, Rickert C,
Steinhoff HJ, Grzybek M, Coskun €
U, Piehler
J (2015) Two-dimensional trap for ultrasensitive quantification of transient protein interactions. ACS Nano 9:9783–9791. https://doi.
org/10.1021/acsnano.5b02696
5. Mele ´ndrez D, Jowitt T, Iliut M, Verre AF,
Goodwin S, Vijayaraghavan A (2018) Adsorption and binding dynamics of graphenesupported phospholipid membranes using the
QCM-D
technique.
Nanoscale
10:2555–2567.
https://doi.org/10.1039/
c7nr05639g
6. Barbosa JN, Martins MCL, Freitas SC, Gonc ¸alves IC, A ´ guas AP, Barbosa MA (2010)
Adhesion of human leukocytes on mixtures of
hydroxyl- and methyl-terminated self-assembled monolayers: effect of blood protein
adsorption. J Biomed Mater Res A 93:12–19.
https://doi.org/10.1002/jbm.a.32480
7. Ballav N, Terfort A, Zharnikov M (2009) Fabrication of mixed self-assembled monolayers
designed for avidin immobilization by irradiation promoted exchange reaction. Langmuir
25:9189–9196.
https://doi.org/10.1021/
la9007476
8. Budvytyte R, Mickevicius M, Vanderah DJ,
Heinrich F, Valincius G (2013) Modification
of tethered bilayers by phospholipid exchange
with vesicles. Langmuir 29:4320–4327.
https://doi.org/10.1021/la304613a
9. Budvytyte R, Valincius G, Niaura G, Voiciuk V,
Mickevicius M, Chapman H, Goh HZ,
Shekhar P, Heinrich F, Shenoy S, Lo ¨sche M,
Vanderah DJ (2013) Structure and properties
of tethered bilayer lipid membranes with unsaturated
anchor
molecules.
Langmuir
29:8645–8656.
https://doi.org/10.1021/
la401132c
10. Albrecht T (2011) Nanobiotechnology: a new
look for nanopore sensing. Nat Nanotechnol
6:195–196. https://doi.org/10.1038/nnano.
2011.52
11. Yusko EC, Johnson JM, Majd S, Prangkio P,
Rollings RC, Li J, Yang J, Mayer M (2011)
Controlling protein translocation through
nanopores with bio-inspired fluid walls. Nat
Nanotechnol 6:253–260. https://doi.org/10.
1038/nnano.2011.12
12. Hall K, Lee TH, Mechler AI, Swann MJ, Aguilar MI (2014) Real-time measurement of membrane conformational states induced by
antimicrobial peptides: balance between recovery and lysis. Sci Rep 4:1–9. https://doi.org/
10.1038/srep05479
13. Hirst DJ, Lee TH, Swann MJ, Aguilar MI
(2013) Combined mass and structural kinetic
analysis of multistate antimicrobial peptidemembrane
interactions.
Anal
Chem
85:9296–9304.
https://doi.org/10.1021/
ac402148v
14. Huang CJ, Cho NJ, Hsu CJ, Tseng PY, Frank
CW, Chang YC (2010) Type i collagenfunctionalized supported lipid bilayer as a cell
culture
platform.
Biomacromolecules
11:1231–1240.
https://doi.org/10.1021/
bm901445r
15. Dixon MC (2008) Quartz crystal microbalance
with dissipation monitoring: enabling real-time
characterization of biological materials and
their interactions. J Biomol Tech 19:151–158
16. Reviakine I, Johannsmann D, Richter RP
(2011) Hearing what you cannot see and visualizing what you hear: interpreting quartz crystal microbalance data from solvated interfaces.
Anal Chem 83:8838–8848. https://doi.org/
10.1021/ac201778h
17. Richter RP, Brisson AR (2005) Following the
formation of supported lipid bilayers on mica: a
study combining AFM, QCM-D, and ellipsometry. Biophys J 88:3422–3433. https://doi.
org/10.1529/biophysj.104.053728
18. Richter RP, Be ´rat R, Brisson AR (2006) Formation of solid-supported lipid bilayers: an
integrated view. Langmuir 22:3497–3505.
https://doi.org/10.1021/la052687c
19. Reimhult E, Z€ ach M, Ho ¨o ¨k F, Kasemo B
(2006) A multitechnique study of liposome
adsorption on Au and lipid bilayer formation
196
Holly L. Birchenough and Thomas A. Jowitt
1. Dubacheva GV, Araya-Callis C, Geert
Volbeda A, Fairhead M, Code ´e J,
Howarth M, Richter RP (2017) Controlling
multivalent binding through surface chemistry:
model study on streptavidin. J Am Chem Soc
139:4157–4167. https://doi.org/10.1021/
jacs.7b00540
2. Sumino A, Dewa T, Takeuchi T, Sugiura R,
Sasaki N, Misawa N, Tero R, Urisu T, Gardiner
AT, Cogdell RJ, Hashimoto H, Nango M
(2011) Construction and structural analysis of
tethered lipid bilayer containing photosynthetic antenna proteins for functional analysis.
Biomacromolecules 12:2850–2858. https://
doi.org/10.1021/bm200585y
3. Forbes S, McBain AJ, Felton-Smith S, Jowitt
TA, Birchenough HL, Dobson CB (2013)
Comparative surface antimicrobial properties
of synthetic biocides and novel human apolipoprotein E derived antimicrobial peptides. Biomaterials 34:5453–5464. https://doi.org/10.
1016/j.biomaterials.2013.03.087
4. Beutel O, Roder F, Birkholz O, Rickert C,
Steinhoff HJ, Grzybek M, Coskun €
U, Piehler
J (2015) Two-dimensional trap for ultrasensitive quantification of transient protein interactions. ACS Nano 9:9783–9791. https://doi.
org/10.1021/acsnano.5b02696
5. Mele ´ndrez D, Jowitt T, Iliut M, Verre AF,
Goodwin S, Vijayaraghavan A (2018) Adsorption and binding dynamics of graphenesupported phospholipid membranes using the
QCM-D
technique.
Nanoscale
10:2555–2567.
https://doi.org/10.1039/
c7nr05639g
6. Barbosa JN, Martins MCL, Freitas SC, Gonc ¸alves IC, A ´ guas AP, Barbosa MA (2010)
Adhesion of human leukocytes on mixtures of
hydroxyl- and methyl-terminated self-assembled monolayers: effect of blood protein
adsorption. J Biomed Mater Res A 93:12–19.
https://doi.org/10.1002/jbm.a.32480
7. Ballav N, Terfort A, Zharnikov M (2009) Fabrication of mixed self-assembled monolayers
designed for avidin immobilization by irradiation promoted exchange reaction. Langmuir
25:9189–9196.
https://doi.org/10.1021/
la9007476
8. Budvytyte R, Mickevicius M, Vanderah DJ,
Heinrich F, Valincius G (2013) Modification
of tethered bilayers by phospholipid exchange
with vesicles. Langmuir 29:4320–4327.
https://doi.org/10.1021/la304613a
9. Budvytyte R, Valincius G, Niaura G, Voiciuk V,
Mickevicius M, Chapman H, Goh HZ,
Shekhar P, Heinrich F, Shenoy S, Lo ¨sche M,
Vanderah DJ (2013) Structure and properties
of tethered bilayer lipid membranes with unsaturated
anchor
molecules.
Langmuir
29:8645–8656.
https://doi.org/10.1021/
la401132c
10. Albrecht T (2011) Nanobiotechnology: a new
look for nanopore sensing. Nat Nanotechnol
6:195–196. https://doi.org/10.1038/nnano.
2011.52
11. Yusko EC, Johnson JM, Majd S, Prangkio P,
Rollings RC, Li J, Yang J, Mayer M (2011)
Controlling protein translocation through
nanopores with bio-inspired fluid walls. Nat
Nanotechnol 6:253–260. https://doi.org/10.
1038/nnano.2011.12
12. Hall K, Lee TH, Mechler AI, Swann MJ, Aguilar MI (2014) Real-time measurement of membrane conformational states induced by
antimicrobial peptides: balance between recovery and lysis. Sci Rep 4:1–9. https://doi.org/
10.1038/srep05479
13. Hirst DJ, Lee TH, Swann MJ, Aguilar MI
(2013) Combined mass and structural kinetic
analysis of multistate antimicrobial peptidemembrane
interactions.
Anal
Chem
85:9296–9304.
https://doi.org/10.1021/
ac402148v
14. Huang CJ, Cho NJ, Hsu CJ, Tseng PY, Frank
CW, Chang YC (2010) Type i collagenfunctionalized supported lipid bilayer as a cell
culture
platform.
Biomacromolecules
11:1231–1240.
https://doi.org/10.1021/
bm901445r
15. Dixon MC (2008) Quartz crystal microbalance
with dissipation monitoring: enabling real-time
characterization of biological materials and
their interactions. J Biomol Tech 19:151–158
16. Reviakine I, Johannsmann D, Richter RP
(2011) Hearing what you cannot see and visualizing what you hear: interpreting quartz crystal microbalance data from solvated interfaces.
Anal Chem 83:8838–8848. https://doi.org/
10.1021/ac201778h
17. Richter RP, Brisson AR (2005) Following the
formation of supported lipid bilayers on mica: a
study combining AFM, QCM-D, and ellipsometry. Biophys J 88:3422–3433. https://doi.
org/10.1529/biophysj.104.053728
18. Richter RP, Be ´rat R, Brisson AR (2006) Formation of solid-supported lipid bilayers: an
integrated view. Langmuir 22:3497–3505.
https://doi.org/10.1021/la052687c
19. Reimhult E, Z€ ach M, Ho ¨o ¨k F, Kasemo B
(2006) A multitechnique study of liposome
adsorption on Au and lipid bilayer formation
196
Holly L. Birchenough and Thomas A. Jowitt
