Dissipative Particle Dynamics Approaches to Modeling …
95
24. Lu Y et al (2018) Strategies to improve micelle stability for drug delivery. Nano Res
11(10):4985–4998
25. Qiao SL, Wang H (2018) Temperature-responsive polymers: synthesis, properties, and
biomedical applications. Nano Res 11(10):5400–5423
26. Flory PJ (1941) Thermodynamics of high polymer solutions. J Chem Phys 9(8):660–661
27. Huggins ML (1941) Solutions of long chain compounds. J Chem Phys 9(5):440–440
28. Dormidontova EE (1999) Micellization kinetics in block copolymer solutions: scaling model.
Macromolecules 32(22):7630–7644
29. Kuni FM et al (2005) Kinetics of aggregation in micellar solutions. Russ J Phys Chem
79(6):833–853
30. Nyrkova IA, Semenov AN (2005) On the theory of micellization kinetics. Macromol Theory
Simul 14(9):569–585
31. Pool R, Bolhuis PG (2006) Prediction of an autocatalytic replication mechanism for micelle
formation. Phys Rev Lett 97(1)
32. Douglas JF, Dudowicz J, Freed KF (2008) Lattice model of equilibrium polymerization. VII.
Understanding the role of “cooperativity” in self-assembly. J Chem Phys 128(22)
33. Nguyen R et al (2009) Dynamic combinatorial evolution within self-replicating supramolecular assemblies. Angew Chem Int Ed 48(6):1093–1096
34. Aydin F et al (2016) Self-assembly and critical aggregation concentration measurements of
ABA triblock copolymers with varying b block types: model development, prediction, and
validation. J Phys Chem B 120(15):3666–3676
35. Letchford K, Burt H (2007) A review of the formation and classification of amphiphilic
block copolymer nanoparticulate structures: micelles, nanospheres, nanocapsules and polymersomes. Eur J Pharm Biopharm 65(3):259–269
36. Sheihet L et al (2007) Effect of tyrosine-derived triblock copolymer compositions on
nanosphere self-assembly and drug delivery. Biomacromol 8(3):998–1003
37. Borisov OV, Zhulina EB (2003) Morphology of micelles formed by diblock copolymer with
a polvelectrolyte block. Macromolecules 36(26):10029–10036
38. Borisov OV et al (2011) Self-assembled structures of amphiphilic ionic block copolymers:
theory, self-consistent field modeling and experiment. Self Org Nanostruct Amphiphilic Block
Copolym I(241):57–129
39. Wang XJ et al (2012) Morphologies of block copolymers composed of charged and neutral
blocks. Soft Matter 8(11):3036–3052
40. Kwon G et al (1994) Enhanced tumor accumulation and prolonged circulation times of
micelle-forming poly(ethylene oxide-aspartate) block copolymer-adriamycin conjugates. J
Control Release 29(1–2):17–23
41. Kataoka K, Harada A, Nagasaki Y (2001) Block copolymer micelles for drug delivery: design,
characterization and biological significance. Adv Drug Deliv Rev 47(1):113–131
42. Kabanov AV, Batrakova EV, Alakhov VY (2002) Pluronic (R) block copolymers as novel
polymer therapeutics for drug and gene delivery. J Control Release 82(2–3):189–212
43. Rouse PE (1953) A theory of the linear viscoelastic properties of dilute solutions of coiling
polymers. J Chem Phys 21(7):1272–1280
44. Rodrigues K, Mattice WL (1991) Simulation of the steric stabilization of polymer colloids
by diblock copolymers. J Chem Phys 94(1):761–766
45. Marrink SJ, Tieleman DP, Mark AE (2000) Molecular dynamics simulation of the kinetics of
spontaneous micelle formation. J Phys Chem B 104(51):12165–12173
46. Spenley NA (2000) Scaling laws for polymers in dissipative particle dynamics. Europhys Lett
49(4):534–540
47. Kapila V et al (2002) Effect of long-range and steric hydrophilic interactions on micellization
of surfactant solutions: a Monte Carlo study in 2-D. Langmuir 18(9):3728–3736
48. Mohan G, Kopelevich DI (2008) A multiscale model for kinetics of formation and
disintegration of spherical micelles. J Chem Phys 128(4)
49. Riess G (2003) Micellization of block copolymers. Prog Polym Sci 28(7):1107–1170
95
24. Lu Y et al (2018) Strategies to improve micelle stability for drug delivery. Nano Res
11(10):4985–4998
25. Qiao SL, Wang H (2018) Temperature-responsive polymers: synthesis, properties, and
biomedical applications. Nano Res 11(10):5400–5423
26. Flory PJ (1941) Thermodynamics of high polymer solutions. J Chem Phys 9(8):660–661
27. Huggins ML (1941) Solutions of long chain compounds. J Chem Phys 9(5):440–440
28. Dormidontova EE (1999) Micellization kinetics in block copolymer solutions: scaling model.
Macromolecules 32(22):7630–7644
29. Kuni FM et al (2005) Kinetics of aggregation in micellar solutions. Russ J Phys Chem
79(6):833–853
30. Nyrkova IA, Semenov AN (2005) On the theory of micellization kinetics. Macromol Theory
Simul 14(9):569–585
31. Pool R, Bolhuis PG (2006) Prediction of an autocatalytic replication mechanism for micelle
formation. Phys Rev Lett 97(1)
32. Douglas JF, Dudowicz J, Freed KF (2008) Lattice model of equilibrium polymerization. VII.
Understanding the role of “cooperativity” in self-assembly. J Chem Phys 128(22)
33. Nguyen R et al (2009) Dynamic combinatorial evolution within self-replicating supramolecular assemblies. Angew Chem Int Ed 48(6):1093–1096
34. Aydin F et al (2016) Self-assembly and critical aggregation concentration measurements of
ABA triblock copolymers with varying b block types: model development, prediction, and
validation. J Phys Chem B 120(15):3666–3676
35. Letchford K, Burt H (2007) A review of the formation and classification of amphiphilic
block copolymer nanoparticulate structures: micelles, nanospheres, nanocapsules and polymersomes. Eur J Pharm Biopharm 65(3):259–269
36. Sheihet L et al (2007) Effect of tyrosine-derived triblock copolymer compositions on
nanosphere self-assembly and drug delivery. Biomacromol 8(3):998–1003
37. Borisov OV, Zhulina EB (2003) Morphology of micelles formed by diblock copolymer with
a polvelectrolyte block. Macromolecules 36(26):10029–10036
38. Borisov OV et al (2011) Self-assembled structures of amphiphilic ionic block copolymers:
theory, self-consistent field modeling and experiment. Self Org Nanostruct Amphiphilic Block
Copolym I(241):57–129
39. Wang XJ et al (2012) Morphologies of block copolymers composed of charged and neutral
blocks. Soft Matter 8(11):3036–3052
40. Kwon G et al (1994) Enhanced tumor accumulation and prolonged circulation times of
micelle-forming poly(ethylene oxide-aspartate) block copolymer-adriamycin conjugates. J
Control Release 29(1–2):17–23
41. Kataoka K, Harada A, Nagasaki Y (2001) Block copolymer micelles for drug delivery: design,
characterization and biological significance. Adv Drug Deliv Rev 47(1):113–131
42. Kabanov AV, Batrakova EV, Alakhov VY (2002) Pluronic (R) block copolymers as novel
polymer therapeutics for drug and gene delivery. J Control Release 82(2–3):189–212
43. Rouse PE (1953) A theory of the linear viscoelastic properties of dilute solutions of coiling
polymers. J Chem Phys 21(7):1272–1280
44. Rodrigues K, Mattice WL (1991) Simulation of the steric stabilization of polymer colloids
by diblock copolymers. J Chem Phys 94(1):761–766
45. Marrink SJ, Tieleman DP, Mark AE (2000) Molecular dynamics simulation of the kinetics of
spontaneous micelle formation. J Phys Chem B 104(51):12165–12173
46. Spenley NA (2000) Scaling laws for polymers in dissipative particle dynamics. Europhys Lett
49(4):534–540
47. Kapila V et al (2002) Effect of long-range and steric hydrophilic interactions on micellization
of surfactant solutions: a Monte Carlo study in 2-D. Langmuir 18(9):3728–3736
48. Mohan G, Kopelevich DI (2008) A multiscale model for kinetics of formation and
disintegration of spherical micelles. J Chem Phys 128(4)
49. Riess G (2003) Micellization of block copolymers. Prog Polym Sci 28(7):1107–1170
