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2016 | OriginalPaper | Chapter

Self-Assembling Nanoparticles of Amphiphilic Polymers for In Vitro and In Vivo FRET Imaging

Authors : Jaume Garcia-Amorós, Sicheng Tang, Yang Zhang, Ek Raj Thapaliya, Françisco M. Raymo

Published in: Light-Responsive Nanostructured Systems for Applications in Nanomedicine

Publisher: Springer International Publishing

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Abstract

Self-assembling nanoparticles of amphiphilic polymers are viable delivery vehicles for transporting hydrophobic molecules across hydrophilic media. Noncovalent contacts between the hydrophobic domains of their macromolecular components are responsible for their formation and for providing a nonpolar environment for the encapsulated guests. However, such interactions are reversible and, as a result, these supramolecular hosts can dissociate into their constituents amphiphiles to release the encapsulated cargo. Operating principles to probe the integrity of the nanocarriers and the dynamic exchange of their components are, therefore, essential to monitor the fate of these supramolecular assemblies in biological media. The co-encapsulation of complementary chromophores within their nonpolar interior offers the opportunity to assess their stability on the basis of energy transfer and fluorescence measurements. Indeed, the exchange of excitation energy between the entrapped chromophores can only occur if the nanoparticles retain their integrity to maintain donors and acceptors in close proximity. In fact, energy-transfer schemes are becoming invaluable protocols to elucidate the transport properties of these fascinating supramolecular constructs in a diversity of biological preparations and can facilitate the identification of strategies to deliver contrast agents and/or drugs to target locations in living organisms for potential diagnostic and/or therapeutic applications.

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Literature
2.
go back to reference Winsor PA (1954) Solvent properties of amphiphilic compounds. Butterworths, London Winsor PA (1954) Solvent properties of amphiphilic compounds. Butterworths, London
3.
go back to reference Nagarajan R (2011) Amphiphilic surfactants and amphiphilic polymers: principles of molecular assembly. In: Amphiphiles: molecular assembly and applications, ACS symposium series. American Chemical Society, Washington, DC, pp 1–22, Ch. 1CrossRef Nagarajan R (2011) Amphiphilic surfactants and amphiphilic polymers: principles of molecular assembly. In: Amphiphiles: molecular assembly and applications, ACS symposium series. American Chemical Society, Washington, DC, pp 1–22, Ch. 1CrossRef
4.
go back to reference Alexandridis P, Lindman B (2000) Amphiphilic block copolymers: self-assembly and applications. Elsevier, Amsterdam Alexandridis P, Lindman B (2000) Amphiphilic block copolymers: self-assembly and applications. Elsevier, Amsterdam
5.
go back to reference McCormick CL (2000) Stimuli-responsive water soluble and amphiphilic polymers, ACS symposium series. American Chemical Society, Washington, DCCrossRef McCormick CL (2000) Stimuli-responsive water soluble and amphiphilic polymers, ACS symposium series. American Chemical Society, Washington, DCCrossRef
6.
go back to reference Müller AHE, Borisov O (2011) Self-organized nanostructures of amphiphilic block copolymers I. Springer, Berlin Müller AHE, Borisov O (2011) Self-organized nanostructures of amphiphilic block copolymers I. Springer, Berlin
7.
go back to reference Müller AHE, Borisov O (2011) Self-organized nanostructures of amphiphilic block copolymers II. Springer, New York Müller AHE, Borisov O (2011) Self-organized nanostructures of amphiphilic block copolymers II. Springer, New York
8.
go back to reference Hamley IW (2000) Introduction to soft matter: polymers, colloids, amphiphiles, and liquid crystals. Wiley, New York Hamley IW (2000) Introduction to soft matter: polymers, colloids, amphiphiles, and liquid crystals. Wiley, New York
9.
go back to reference Holmberg K, Jonsson B, Kronberg B, Lindman B (2002) Surfactants and polymers in aqueous solution. Wiley, ChichesterCrossRef Holmberg K, Jonsson B, Kronberg B, Lindman B (2002) Surfactants and polymers in aqueous solution. Wiley, ChichesterCrossRef
10.
go back to reference Yamashita H, Oosawa M (1995) Patent 7309714 A2 951128, Kanebo Ltd., Japan Yamashita H, Oosawa M (1995) Patent 7309714 A2 951128, Kanebo Ltd., Japan
11.
go back to reference O’Lenick AJ Jr (1995) US Patent 5475125 A 951212, Siltech Inc. O’Lenick AJ Jr (1995) US Patent 5475125 A 951212, Siltech Inc.
12.
go back to reference Dupuis C (1995) Patent 684041 A1 951129, Oreal S.A., Europ Dupuis C (1995) Patent 684041 A1 951129, Oreal S.A., Europ
13.
go back to reference Sakuta K (1995) Patent 7304627 A2 951121, Shinetsu Chem. Ind. Co., Japan Sakuta K (1995) Patent 7304627 A2 951121, Shinetsu Chem. Ind. Co., Japan
14.
go back to reference Mohammed RA, Bailey AI, Luckham PF, Taylor SE (1994) Colloids Surf A Physicochem Eng Asp 83:261–271CrossRef Mohammed RA, Bailey AI, Luckham PF, Taylor SE (1994) Colloids Surf A Physicochem Eng Asp 83:261–271CrossRef
15.
go back to reference Amaravathi M, Pandey BP (1991) Res Ind 36:169 Amaravathi M, Pandey BP (1991) Res Ind 36:169
16.
go back to reference Blease TG, Evans JG, Hughes L, Loll P (1993) In: Garrett P (ed) Defoaming, vol 45, Surfactant science series. Marcel Dekker, New York, p 299 Blease TG, Evans JG, Hughes L, Loll P (1993) In: Garrett P (ed) Defoaming, vol 45, Surfactant science series. Marcel Dekker, New York, p 299
17.
go back to reference Schmidt DL (1996) In: Prudhomme RK, Khan SA (eds) Foams, vol 57, Surfactant science series. Marcel Dekker, New York, p 287 Schmidt DL (1996) In: Prudhomme RK, Khan SA (eds) Foams, vol 57, Surfactant science series. Marcel Dekker, New York, p 287
18.
19.
20.
go back to reference Kataoka K, Kwon GS, Yokoyama M, Okano T, Sakurai YJ (1993) Control Release 24:119–132CrossRef Kataoka K, Kwon GS, Yokoyama M, Okano T, Sakurai YJ (1993) Control Release 24:119–132CrossRef
23.
26.
go back to reference Park JH, Lee S, Kim JH, Park K, Kim K, Kwon IC (2008) Prog Polym Sci 33:113–137CrossRef Park JH, Lee S, Kim JH, Park K, Kim K, Kwon IC (2008) Prog Polym Sci 33:113–137CrossRef
27.
go back to reference Kim S, Shi Y, Kim JY, Park K, Cheng J-X (2010) Expert Opin Drug Deliv 7:49–62CrossRef Kim S, Shi Y, Kim JY, Park K, Cheng J-X (2010) Expert Opin Drug Deliv 7:49–62CrossRef
28.
go back to reference Chacko RT, Ventura J, Zhuang J, Thayumanavan S (2012) Adv Drug Deliv Rev 64:836–851CrossRef Chacko RT, Ventura J, Zhuang J, Thayumanavan S (2012) Adv Drug Deliv Rev 64:836–851CrossRef
31.
go back to reference Lalatsa A, Schatzlein AG, Mazza M, Thi BHL, Uchegbu IFJ (2012) Control Release 161:523–536CrossRef Lalatsa A, Schatzlein AG, Mazza M, Thi BHL, Uchegbu IFJ (2012) Control Release 161:523–536CrossRef
32.
go back to reference Nicolas J, Mura S, Brambilla D, Mackiewicz N, Couvreur P (2013) Chem Soc Rev 42:1147–1235CrossRef Nicolas J, Mura S, Brambilla D, Mackiewicz N, Couvreur P (2013) Chem Soc Rev 42:1147–1235CrossRef
36.
37.
39.
go back to reference Wei T, Chen C, Liu J, Liu C, Posocco P, Liu X, Chengk Q, Huo S, Liang Z, Fermeglia M, Pricl S, Liang X-J, Rocchi P, Peng L (2015) Proc Natl Acad Sci 112:2978–2983CrossRef Wei T, Chen C, Liu J, Liu C, Posocco P, Liu X, Chengk Q, Huo S, Liang Z, Fermeglia M, Pricl S, Liang X-J, Rocchi P, Peng L (2015) Proc Natl Acad Sci 112:2978–2983CrossRef
42.
go back to reference Zhuang J, Gordon MR, Ventura J, Li L, Thayumanavan S (2013) Chem Soc Rev 42:7421–7435CrossRef Zhuang J, Gordon MR, Ventura J, Li L, Thayumanavan S (2013) Chem Soc Rev 42:7421–7435CrossRef
44.
46.
go back to reference Yildiz I, Impellizzeri S, Deniz E, McCaughan B, Callan JF, Raymo FM (2011) J Am Chem Soc 133:871–879CrossRef Yildiz I, Impellizzeri S, Deniz E, McCaughan B, Callan JF, Raymo FM (2011) J Am Chem Soc 133:871–879CrossRef
48.
go back to reference Muhlebach A, Gaynor SG, Matyjaszewski K (1998) Macromolecules 31:6046–6052CrossRef Muhlebach A, Gaynor SG, Matyjaszewski K (1998) Macromolecules 31:6046–6052CrossRef
49.
go back to reference Rikkou MD, Kolokasi M, Matyjaszewski K, Patrickios CS (2010) J Polym Sci A 48:1878–1886CrossRef Rikkou MD, Kolokasi M, Matyjaszewski K, Patrickios CS (2010) J Polym Sci A 48:1878–1886CrossRef
50.
go back to reference Rikkou-Kalourkoti M, Loizou E, Porcar L, Matyjaszewski K, Patrickios CS (2012) Polym Chem 3:105–116CrossRef Rikkou-Kalourkoti M, Loizou E, Porcar L, Matyjaszewski K, Patrickios CS (2012) Polym Chem 3:105–116CrossRef
51.
52.
go back to reference York AW, Kirkland SE, McCormick CL (2008) Adv Drug Deliv Rev 60:1018–1036CrossRef York AW, Kirkland SE, McCormick CL (2008) Adv Drug Deliv Rev 60:1018–1036CrossRef
53.
go back to reference Huang Z, Zhang X, Zhang X, Fu C, Wang K, Yuan J, Tao L, Wei Y (2015) Polym Chem 6:607–612CrossRef Huang Z, Zhang X, Zhang X, Fu C, Wang K, Yuan J, Tao L, Wei Y (2015) Polym Chem 6:607–612CrossRef
54.
56.
go back to reference Rikkou-Kalourkoti M, Elladiou M, Patrickios CS (2015) J Polym Sci 53:1310–1319CrossRef Rikkou-Kalourkoti M, Elladiou M, Patrickios CS (2015) J Polym Sci 53:1310–1319CrossRef
57.
go back to reference Fu J, Cheng Z, Zhou N, Zhu J, Zhang W, Zhu X (2009) e-Polymers 18:1–11 Fu J, Cheng Z, Zhou N, Zhu J, Zhang W, Zhu X (2009) e-Polymers 18:1–11
58.
61.
64.
70.
go back to reference Dukhin SS, Kretzchmar G, Miller B (1995) Dynamics of adsorption at liquid interfaces. Elsevier, Amsterdam Dukhin SS, Kretzchmar G, Miller B (1995) Dynamics of adsorption at liquid interfaces. Elsevier, Amsterdam
71.
go back to reference van Oss CJ (2006) Interfacial forces in aqueous media, 2nd edn. CRC/Taylor & Francis, Boca Raton van Oss CJ (2006) Interfacial forces in aqueous media, 2nd edn. CRC/Taylor & Francis, Boca Raton
72.
go back to reference Gray GW (1998) Handbook of liquid crystals. Wiley, Weinheim Gray GW (1998) Handbook of liquid crystals. Wiley, Weinheim
73.
go back to reference Figueiredo Neto AM, Salinas SRA (2005) The physics of lyotropic liquid crystals: phase transitions and structural properties. Oxford University Press, OxfordCrossRef Figueiredo Neto AM, Salinas SRA (2005) The physics of lyotropic liquid crystals: phase transitions and structural properties. Oxford University Press, OxfordCrossRef
74.
go back to reference Garti N, Somasundaran P, Mezzenga R (2012) Self-assembled supramolecular architectures: lyotropic liquid crystals. Wiley, WeinheimCrossRef Garti N, Somasundaran P, Mezzenga R (2012) Self-assembled supramolecular architectures: lyotropic liquid crystals. Wiley, WeinheimCrossRef
75.
go back to reference Gelbart WM, Ben-Shaul A, Roux D (1994) Micelles, membranes, microemulsions, and monolayers. Springer, New YorkCrossRef Gelbart WM, Ben-Shaul A, Roux D (1994) Micelles, membranes, microemulsions, and monolayers. Springer, New YorkCrossRef
76.
go back to reference Hamley IW (2007) Introduction to soft matter: synthetic and biological self-assembling materials. Wiley, ChichesterCrossRef Hamley IW (2007) Introduction to soft matter: synthetic and biological self-assembling materials. Wiley, ChichesterCrossRef
79.
go back to reference Zvelindovsky AV (2007) Nanostructured soft matter: experiment, theory, simulation and perspectives. Springer, DordrechtCrossRef Zvelindovsky AV (2007) Nanostructured soft matter: experiment, theory, simulation and perspectives. Springer, DordrechtCrossRef
80.
go back to reference Torchilin V, Amiji MM (2010) Handbook of materials for nanomedicine. Pan Stanford, Singapore Torchilin V, Amiji MM (2010) Handbook of materials for nanomedicine. Pan Stanford, Singapore
82.
go back to reference Al-Soufi W, Piñeiro L, Novo M (2012) J Colloid Interface Sci 370:102–110CrossRef Al-Soufi W, Piñeiro L, Novo M (2012) J Colloid Interface Sci 370:102–110CrossRef
83.
84.
85.
go back to reference Prazeres TJV, Beija M, Fernandes FV, Marcelino PGA, Farinha JPS, Martinho JMG (2012) Inorg Chim Acta 381:181–187CrossRef Prazeres TJV, Beija M, Fernandes FV, Marcelino PGA, Farinha JPS, Martinho JMG (2012) Inorg Chim Acta 381:181–187CrossRef
86.
go back to reference Fendler JH (1982) Membrane mimetic chemistry. Wiley, New York, pp 6–47 Fendler JH (1982) Membrane mimetic chemistry. Wiley, New York, pp 6–47
87.
go back to reference Berthod A, Garcia-Alvarez-Coque C (eds) (2000) Micellar liquid chromatography, vol 83, Chromatography series. Dekker, New York, pp 503–525 Berthod A, Garcia-Alvarez-Coque C (eds) (2000) Micellar liquid chromatography, vol 83, Chromatography series. Dekker, New York, pp 503–525
88.
go back to reference Van Os NM, Haak JR, Rupert LAM (1993) Physico-chemical properties of selected anionic, cationic and nonionic surfactants. Elsevier, Amsterdam Van Os NM, Haak JR, Rupert LAM (1993) Physico-chemical properties of selected anionic, cationic and nonionic surfactants. Elsevier, Amsterdam
89.
go back to reference Hinze WL, Armstrong DW (eds) (1987) Ordered media in chemical separations, vol 342, ACS symposium series. American Chemical Society, Washington, DC, pp 2–82CrossRef Hinze WL, Armstrong DW (eds) (1987) Ordered media in chemical separations, vol 342, ACS symposium series. American Chemical Society, Washington, DC, pp 2–82CrossRef
91.
92.
go back to reference Ananthapadmanabhan KP, Goddard ED, Turro NJ, Kuo PL (1985) Langmuir 1:352–355CrossRef Ananthapadmanabhan KP, Goddard ED, Turro NJ, Kuo PL (1985) Langmuir 1:352–355CrossRef
93.
go back to reference Aguilar J, Carpena P, Molina-Bolívar JA, Carnero Ruiz C (2003) J Colloid Surf Sci 258:116–122CrossRef Aguilar J, Carpena P, Molina-Bolívar JA, Carnero Ruiz C (2003) J Colloid Surf Sci 258:116–122CrossRef
94.
go back to reference Bhaisare ML, Pandey S, Khan MS, Talib A, Wu H-F (2015) Talanta 132:572–578CrossRef Bhaisare ML, Pandey S, Khan MS, Talib A, Wu H-F (2015) Talanta 132:572–578CrossRef
95.
go back to reference Swaminathan S, Fowley C, McCaughan B, Cusido J, Callan JF, Raymo FM (2014) J Am Chem Soc 136:7907–7913CrossRef Swaminathan S, Fowley C, McCaughan B, Cusido J, Callan JF, Raymo FM (2014) J Am Chem Soc 136:7907–7913CrossRef
96.
go back to reference Mukherjee I, Moulik SP, Rakshit AK (2013) J Colloid Interface Sci 394:329–336CrossRef Mukherjee I, Moulik SP, Rakshit AK (2013) J Colloid Interface Sci 394:329–336CrossRef
98.
go back to reference Castro MJL, Ritacco H, Kovensky J, Fernández-Cirelli A (2001) J Chem Educ 78:347–348CrossRef Castro MJL, Ritacco H, Kovensky J, Fernández-Cirelli A (2001) J Chem Educ 78:347–348CrossRef
99.
go back to reference Berne BJ, Pecora R (2000) Dynamic light scattering: with applications to chemistry, biology, and physics. Courier Dover, Mineola Berne BJ, Pecora R (2000) Dynamic light scattering: with applications to chemistry, biology, and physics. Courier Dover, Mineola
100.
go back to reference Pecora R (1985) Dynamic light scattering: applications of photon correlation spectroscopy. Plenum, New YorkCrossRef Pecora R (1985) Dynamic light scattering: applications of photon correlation spectroscopy. Plenum, New YorkCrossRef
101.
go back to reference Meurant G (1990) Introduction to dynamic light scattering by macromolecules. Academic, London Meurant G (1990) Introduction to dynamic light scattering by macromolecules. Academic, London
102.
go back to reference Jonasz M, Fournier GR (2007) Light scattering by particles in water: theoretical and experimental foundations. Elsevier, San Diego Jonasz M, Fournier GR (2007) Light scattering by particles in water: theoretical and experimental foundations. Elsevier, San Diego
103.
go back to reference Zetasizer Nano Series User Manual (2004) Man0317, Issue 1.1, © Malvern Instruments Ltd., Malvern, Feb 2004 Zetasizer Nano Series User Manual (2004) Man0317, Issue 1.1, © Malvern Instruments Ltd., Malvern, Feb 2004
106.
go back to reference Förster T (1949) Z Naturforsch A 4:321–327 Förster T (1949) Z Naturforsch A 4:321–327
107.
go back to reference Förster T (1951) Fluoreszenz Organischer Verbindungen. Vandenhoeck & Ruprecht, Gottingen Förster T (1951) Fluoreszenz Organischer Verbindungen. Vandenhoeck & Ruprecht, Gottingen
110.
go back to reference Van Der Meer BV, Coker G III, Simon Chen S-Y (1994) Resonance energy transfer: theory and data. Wiley, New York Van Der Meer BV, Coker G III, Simon Chen S-Y (1994) Resonance energy transfer: theory and data. Wiley, New York
111.
go back to reference Braslavsky SE, Fron E, Rodríguez HB, San Roman E, Scholes GD, Schweitzer G, Valeur B, Wirz J (2008) Photochem Photobiol Sci 7:1444–1448CrossRef Braslavsky SE, Fron E, Rodríguez HB, San Roman E, Scholes GD, Schweitzer G, Valeur B, Wirz J (2008) Photochem Photobiol Sci 7:1444–1448CrossRef
112.
113.
go back to reference Gravier J, Navarro FP, Delmas T, Mittler F, Couffin AC, Vinet F, Texier I (2011) J Biomed Opt 16:096013CrossRef Gravier J, Navarro FP, Delmas T, Mittler F, Couffin AC, Vinet F, Texier I (2011) J Biomed Opt 16:096013CrossRef
114.
go back to reference Navarro FP, Mittler F, Berger M, Josserand V, Gravier J, Vinet F, Texier I (2012) J Biomed Nanotechnol 8:594–604CrossRef Navarro FP, Mittler F, Berger M, Josserand V, Gravier J, Vinet F, Texier I (2012) J Biomed Nanotechnol 8:594–604CrossRef
115.
go back to reference Navarro FP, Berger M, Guillermet S, Josserand V, Guyon L, Neumann E, Vinet F, Texier I (2012) J Biomed Nanotechnol 8:730–774CrossRef Navarro FP, Berger M, Guillermet S, Josserand V, Guyon L, Neumann E, Vinet F, Texier I (2012) J Biomed Nanotechnol 8:730–774CrossRef
116.
go back to reference Navarro FP, Creusat G, Frochot C, Moussaron A, Verhille M, Vanderesse R, Thomann J-S, Boisseau P, Texier I, Couffin A-C, Barberi-Heyob M (2014) J Photochem Photobiol B Biol 130:161–169CrossRef Navarro FP, Creusat G, Frochot C, Moussaron A, Verhille M, Vanderesse R, Thomann J-S, Boisseau P, Texier I, Couffin A-C, Barberi-Heyob M (2014) J Photochem Photobiol B Biol 130:161–169CrossRef
117.
118.
go back to reference Gravier J, Sancey L, Coll JL, Hirsjärvi S, Benoit JP, Vinet F, Texier I (2011) Proc SPIE 7910:79100W-1–79100W-12CrossRef Gravier J, Sancey L, Coll JL, Hirsjärvi S, Benoit JP, Vinet F, Texier I (2011) Proc SPIE 7910:79100W-1–79100W-12CrossRef
119.
go back to reference Cao T, Munk P, Ramireddy C, Tuzar Z, Webber SE (1991) Macromolecules 24:6300–6305CrossRef Cao T, Munk P, Ramireddy C, Tuzar Z, Webber SE (1991) Macromolecules 24:6300–6305CrossRef
120.
go back to reference Stepanek M, Krijtova K, Prochazka K, Teng Y, Webber SE, Munk P (1998) Acta Polym 49:96–102CrossRef Stepanek M, Krijtova K, Prochazka K, Teng Y, Webber SE, Munk P (1998) Acta Polym 49:96–102CrossRef
121.
go back to reference Hu Y, Kramer MC, Boudreaux CJ, McCormick CL (1995) Macromolecules 28:7100–7106CrossRef Hu Y, Kramer MC, Boudreaux CJ, McCormick CL (1995) Macromolecules 28:7100–7106CrossRef
122.
go back to reference Chen H, Kim S, He W, Wang H, Low PS, Park K, Cheng JX (2008) Langmuir 24:5213–5217CrossRef Chen H, Kim S, He W, Wang H, Low PS, Park K, Cheng JX (2008) Langmuir 24:5213–5217CrossRef
123.
go back to reference Chen HT, Kim SW, Li L, Wang SY, Park K, Cheng JX (2008) Proc Natl Acad Sci U S A 105:6596–6601CrossRef Chen HT, Kim SW, Li L, Wang SY, Park K, Cheng JX (2008) Proc Natl Acad Sci U S A 105:6596–6601CrossRef
125.
go back to reference Jiwpanich S, Ryu JH, Bickerton S, Thayumanavan S (2010) J Am Chem Soc 132:10683–10685CrossRef Jiwpanich S, Ryu JH, Bickerton S, Thayumanavan S (2010) J Am Chem Soc 132:10683–10685CrossRef
126.
go back to reference Ryu JH, Chacko RT, Jiwpanich S, Bickerton S, Babu RP, Thayumanavan S (2010) J Am Chem Soc 132:17227–17235CrossRef Ryu JH, Chacko RT, Jiwpanich S, Bickerton S, Babu RP, Thayumanavan S (2010) J Am Chem Soc 132:17227–17235CrossRef
127.
128.
go back to reference Chen KJ, Chiu YL, Chen YM, Ho YC, Sung HW (2011) Biomaterials 32:2586–2592CrossRef Chen KJ, Chiu YL, Chen YM, Ho YC, Sung HW (2011) Biomaterials 32:2586–2592CrossRef
129.
131.
go back to reference McDonald TO, Martin P, Patterson JP, Smith D, Giardiello M, Marcello M, See V, O’Reilly RK, Owen A, Rannard S (2012) Adv Funct Mater 22:2469–2478CrossRef McDonald TO, Martin P, Patterson JP, Smith D, Giardiello M, Marcello M, See V, O’Reilly RK, Owen A, Rannard S (2012) Adv Funct Mater 22:2469–2478CrossRef
132.
go back to reference Li YP, Budamagunta MS, Luo JT, Xiao WW, Voss JC, Lam KS (2012) ACS Nano 6:9485–9495CrossRef Li YP, Budamagunta MS, Luo JT, Xiao WW, Voss JC, Lam KS (2012) ACS Nano 6:9485–9495CrossRef
133.
go back to reference Li YP, Xiao WW, Xiao K, Berti L, Luo JT, Tseng HP, Fung G, Lam KS (2012) Angew Chem Int Ed 51:2864–2869CrossRef Li YP, Xiao WW, Xiao K, Berti L, Luo JT, Tseng HP, Fung G, Lam KS (2012) Angew Chem Int Ed 51:2864–2869CrossRef
134.
135.
go back to reference Klymchenko AS, Roger E, Anton N, Anton H, Shulov I, Vermot J, Mely Y, Vandamme TF (2012) RSC Adv 2:11876–11886CrossRef Klymchenko AS, Roger E, Anton N, Anton H, Shulov I, Vermot J, Mely Y, Vandamme TF (2012) RSC Adv 2:11876–11886CrossRef
136.
go back to reference Morton SW, Zhao X, Quadir MA, Hammond PT (2014) Biomaterials 35:3489–3496CrossRef Morton SW, Zhao X, Quadir MA, Hammond PT (2014) Biomaterials 35:3489–3496CrossRef
142.
go back to reference Rowan SJ, Cantrill SJ, Cousins GRL, Sanders JKM, Stoddart JF (2002) Angew Chem Int Ed 41:899–958CrossRef Rowan SJ, Cantrill SJ, Cousins GRL, Sanders JKM, Stoddart JF (2002) Angew Chem Int Ed 41:899–958CrossRef
145.
go back to reference Cheeseman JD, Corbett AD, Gleason JL, Kazlauskas RJ (2005) Chem Eur J 11:1708–1716CrossRef Cheeseman JD, Corbett AD, Gleason JL, Kazlauskas RJ (2005) Chem Eur J 11:1708–1716CrossRef
146.
go back to reference Corbett PT, Leclaire J, Vial L, West KR, Wietor J-L, Sanders JKM, Otto S (2006) Chem Rev 106:3652–3711CrossRef Corbett PT, Leclaire J, Vial L, West KR, Wietor J-L, Sanders JKM, Otto S (2006) Chem Rev 106:3652–3711CrossRef
149.
152.
go back to reference Baguley BC, Kerr DJ (2002) Anticancer drug development. Academic, San Diego Baguley BC, Kerr DJ (2002) Anticancer drug development. Academic, San Diego
153.
go back to reference Housman G, Byler S, Heerboth S, Lapinska K, Longacre M, Snyder N, Sarkar S (2014) Cancers 6:1769–1792CrossRef Housman G, Byler S, Heerboth S, Lapinska K, Longacre M, Snyder N, Sarkar S (2014) Cancers 6:1769–1792CrossRef
155.
156.
158.
go back to reference Zhao Y, Ikeda T (2009) Smart light-responsive materials: azobenzene-containing polymers and liquid crystals. Wiley, New JerseyCrossRef Zhao Y, Ikeda T (2009) Smart light-responsive materials: azobenzene-containing polymers and liquid crystals. Wiley, New JerseyCrossRef
159.
go back to reference Crano JC, Guglielmetti R (1999) Organic photochromic and thermochromic compounds. Plenum, New York Crano JC, Guglielmetti R (1999) Organic photochromic and thermochromic compounds. Plenum, New York
160.
go back to reference Horspool WM, Lenci F (2004) Handbook of organic photochemistry and photobiology. CRC, Boca Raton Horspool WM, Lenci F (2004) Handbook of organic photochemistry and photobiology. CRC, Boca Raton
161.
162.
go back to reference Leamon CP (2008) Curr Opin Investig Drugs 9:1277–1286 Leamon CP (2008) Curr Opin Investig Drugs 9:1277–1286
163.
165.
166.
go back to reference Crooke ST (2001) Antisense drug technology: principles, strategies, and applications. Marcel Dekker, New YorkCrossRef Crooke ST (2001) Antisense drug technology: principles, strategies, and applications. Marcel Dekker, New YorkCrossRef
167.
go back to reference Xing Q, Li N, Chen D, Sha W, Jiao Y, Qi X, Xu Q, Lu J (2014) J Mater Chem B 2:1182–1189CrossRef Xing Q, Li N, Chen D, Sha W, Jiao Y, Qi X, Xu Q, Lu J (2014) J Mater Chem B 2:1182–1189CrossRef
Metadata
Title
Self-Assembling Nanoparticles of Amphiphilic Polymers for In Vitro and In Vivo FRET Imaging
Authors
Jaume Garcia-Amorós
Sicheng Tang
Yang Zhang
Ek Raj Thapaliya
Françisco M. Raymo
Copyright Year
2016
DOI
https://doi.org/10.1007/978-3-319-22942-3_2

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