Biopolymers and Their Composites for Drug Delivery: A Brief Review
Corresponding Author
Sreeraj Gopi
R&D Centre, Aurea Biolabs (P) Ltd, Kolenchery, Cochin, 682311 Kerala, India
Chemical Faculty, Gdansk University of Technology, Gdańsk, Poland
International and Inter University Centre for Nanoscience and Nanotechnology, School of Chemical Sciences, Mahatma Gandhi University, Priyadarshini Hills P. O. Kottayam, Kerala, 686560 India
Search for more papers by this authorAugustine Amalraj
R&D Centre, Aurea Biolabs (P) Ltd, Kolenchery, Cochin, 682311 Kerala, India
Search for more papers by this authorNimisha P. Sukumaran
R&D Centre, Aurea Biolabs (P) Ltd, Kolenchery, Cochin, 682311 Kerala, India
Search for more papers by this authorJózef T. Haponiuk
Chemical Faculty, Gdansk University of Technology, Gdańsk, Poland
Search for more papers by this authorSabu Thomas
International and Inter University Centre for Nanoscience and Nanotechnology, School of Chemical Sciences, Mahatma Gandhi University, Priyadarshini Hills P. O. Kottayam, Kerala, 686560 India
Search for more papers by this authorCorresponding Author
Sreeraj Gopi
R&D Centre, Aurea Biolabs (P) Ltd, Kolenchery, Cochin, 682311 Kerala, India
Chemical Faculty, Gdansk University of Technology, Gdańsk, Poland
International and Inter University Centre for Nanoscience and Nanotechnology, School of Chemical Sciences, Mahatma Gandhi University, Priyadarshini Hills P. O. Kottayam, Kerala, 686560 India
Search for more papers by this authorAugustine Amalraj
R&D Centre, Aurea Biolabs (P) Ltd, Kolenchery, Cochin, 682311 Kerala, India
Search for more papers by this authorNimisha P. Sukumaran
R&D Centre, Aurea Biolabs (P) Ltd, Kolenchery, Cochin, 682311 Kerala, India
Search for more papers by this authorJózef T. Haponiuk
Chemical Faculty, Gdansk University of Technology, Gdańsk, Poland
Search for more papers by this authorSabu Thomas
International and Inter University Centre for Nanoscience and Nanotechnology, School of Chemical Sciences, Mahatma Gandhi University, Priyadarshini Hills P. O. Kottayam, Kerala, 686560 India
Search for more papers by this authorAbstract
In recent years, excipient development has become a core area of research in pharmaceutical drug delivery because it influences the formulation development and drug delivery process in various ways. Polymeric drug delivery systems have been of great interest for controlled delivery as they show the great advantage in drug delivery systems because of optimized drug loading and releasing property. Then, the side effects of synthetic polymers far exceed that it leads to some difficulties like they impose dose reduction, treatment delay, or the given therapy is not continuous. With this in mind and together with the need for a protective delivery system for drugs, natural polymeric substances such as biopolymers and their composites are the choice of research as excipient because of their low toxicity, biodegradability, stability, and renewable nature. Furthermore, they have a wide variety of structures, different physiological functions and may provide a variety of biomedical applications, owing to their distinctive properties. The present brief review explores the concept of excipient delivery and the recent advances in both the biopolymers and the methods in the pharmaceutical drug delivery systems.
References
- 1 K. K. Jain, In: Jain K.K. (eds) Humana Press. 2008, 437, 1.
- 2 A. V. Singh, Pharmacol. Online 2011, 1, 666.
- 3 D. Suvakanta, N. M. Padala, N. Lilakanta, C. Prasanta, Acta. Pol. Pharm. [dnlm] 2010, 67, 217.
- 4 S. K. Bardal, J. E. Waechter, D. S. Martin, Applied Pharm. 2011, 17.
- 5
J. D. Spahn,
S. J. Szefler,
Pediatric Respiratory Med. (2nd ed.)
2008, 219.
10.1016/B978-032304048-8.50020-7 Google Scholar
- 6 J. K. Oh, D. I. Lee, J. M. Park, Prog. Polym. Sci. 2009, 34, 1261.
- 7 E. Faezah, S. M. Tasirin, N. Abd Rahman, Agr. Agr. Sci. Procedia. 2014, 2, 113.
- 8 K. G. Tomasz, B. Janusz, Top. Curr. Chem. 2017, 375.
- 9 A. Müller, Z. Ni, N. Hessler, F. Wesarg, F. A. Müller, D. Kralisch, D. Fischer, J. Pharm. Sci. 2013, 102, 579.
- 10 I. Younes, M. Rinaudo, Mar Drugs. 2015, 13, 1133.
- 11 S.-B. Park, L. Eugene, K.-S. Park, Y. K. Joung, D. K. Han, Prog. Polym. Sci. 2017, 68, 77.
- 12 A. Mokhtarzadeh, H. Alibakhshi, M. Yaghoobi, M. Hashemi, M. Hejazi, M. Ramezani, Expert Opin. Biol. Ther. 2016, 16, 771.
- 13 Z. Lu, T.-K. Yeh, M. Tsai, J. L.-S. Au, M. G. Wientjes, Clin. Cancer Res. 2004, 10, 7677.
- 14 S. K. Nitta, K. Numata, Int. J. Mol. Sci. 2013, 14, 1629.
- 15 H. A. Gavlighi, A. S. Meyer, J. D. Mikkelsen, Agro Food Ind. Hi Tech. 2013, 24.
- 16 B. H. Rehm, Nat. Rev. Microbiol. 2010, 8, 578.
- 17 L. Fan, G. Hongyu, Z. Shengqiong, Y. Xiao, H. Wen, Y. Li, H. Feng, M. Nie, Int. J. Biol. Macromol. 2016, 93, 582.
- 18
A.P Zhang,
Z. Zhang,
F.H Shi,
J. X. Ding,
C.S Xiao,
X. Zhuang,
C. He,
L. Chen. X. Chen. Soft Matter.
2013,
7, 2224.
10.1039/c2sm27189c Google Scholar
- 19 A. Palaniraj, V. Jayaraman, Int. J. Food Eng. 2011, 106, 12.
- 20 J. Kim, J. Hwang, H. Kang, J. Choi, Ind. Eng. Chem. Res. 2015, 32, 44.
- 21 S. Atta, S. Khaliq, A. Islam, I. Javeria, T. Jamil, M. M. Athar, M. I. Shafiq, A. Ghaffar, Int. J. Biol. Macromol. 2015, 80, 240.
- 22 O. Pillai, R. Panchagnula, Curr. Opin. Chem. Biol. 2001, 5, 447.
- 23 K. E. Uhrich, S. M. Cannizzaro, R. S. Langer, K. M. Shakesheff, Chem. Rev. 1999, 99, 3181.
- 24 M. P. Ghazaie, M. Ghiaci, M. Ghiaci, Microporous Mesoporous Mate. 2017, 244, 291.
- 25 N. A. Peppas, R. Langer, Science 1994, 263, 1715.
- 26 N. Kamaly, Z. Xiao, P. M. Valencia, A. F. Radovic-Moreno, O. C. Farokhzad, Chem. Soc. Rev. 2012, 41, 2971.
- 27 V. Sanna, P. Nicolino, M. Sechi, Int. J. Nanomed. 2014, 9, 467.
- 28
J. E. Rosen,
S. Yoffe,
A. Meerasa,
M. Verma,
F. X. Gu,
J. Nanomedic Nanotechnol.
2011,
2, 115.
10.4172/2157-7439.1000115 Google Scholar
- 29 A. Jain, D. Thakur, G. Ghoshal, O. P. Katare, U. S. Shivhare, Int. J. Biol. Macromol. 2016, 87, 101.
- 30 K.-I. Shimokawa, K. Saegusa, Y. Wada, F. Ishii, Colloids. Surf. B. 2013, 104, 1.
- 31 R. Cohen, B. Schwartz, I. Peri, E. Shimoni. J. Agric. Food Chem. 2011, 59, 7932.
- 32 S. Wang, Y. Chen, H. Liang, Y. Chen, M. Shi, J. Wu, X. Liu, Z. Li, B. Liu, Q. Yuan, Y. Li, J. Agric. Food Chem. 2015, 63, 8669.
- 33 D. Nwachukwu, Y. Danyuo, J. D. Obayemi, O. S. Odusanya, K. Malatesta, W. O. Soboyejo, Mater. Sci. Eng. C. 2017, 71, 268.
- 34 R. R. Costa, C. A. Custódio, F. J. Arias, J. C. Rodríguez-Cabello, J. F. Mano, Nanomed. Nanotech. Biol. Med. 2013, 9, 895.
- 35 M. Zayed, C. Tourne-Peteilh, M. Ramonda, G. Rethore, P. Weiss, J. Martinez, G. Subra, A Mehdi, JM Devoisselle, P. Legrand, Int. J. Pharm. 2017, 532, 790.
- 36 Z. H. Wu, Q. N. Ping, Y. Wei, J. M. Lai, Acta Pharmacol. Sin. 2004, 25, 966.
- 37 A. G. Grigoras, Nanomed. Nanotech. Biol. Med. 2017, 13, 2425.
- 38 T. Kumeria, H. Mon, M. S. Aw, K. Gulati, A. Santos, H. J. Griesser, D. Losic, Colloids. Surf. B. 2015, 130, 255.
- 39 L. Chronopoulou, M. Massimi, M. F. Giardi, C. Cametti, L. C. Devirgiliis, M. Dentini, C. Palocci, Colloids. Surf. B. 2013, 103, 310.
- 40 M. C. Sergio, L. Seokwon, G. Rodriguez, A. O. Vila, C. G. Krueger, S. Gunasekaran, J. D. Reed, J. Funct. Foods. 2010, 2, 99.
- 41 P. Ramalingam, S. W. Yoo, Y. T. Ko, Food. Res. Int. 2016, 84, 113.
- 42 Y. Chen, B. Z. Chen, Q. L. Wang, X. Jin, X. D. Guo, J. Control Release 2017, https://doi.org/10.1016/j.jconrel.2017.03.383
- 43 J. C. Rodríguez-Cabello, J. Reguera, A. Girotti, F. J. Arias, M. Alonso, Springer, Berlin 2006. pp. 119.
- 44 J. L. Harden, H. Li, ACS Biomater. Sci. Eng. 2017, 3, 658.
- 45 S.R MacEwan, A. Chilkoti, J. Control. Release. 2014, 190, 314.
- 46 Y. Chahibi, Nano. Commun. Netw. 2017, 11, 90.
- 47 R. Panchagnula, C. S. Dey, J. Clin. Pharm. Ther. 1997, 22, 7.
- 48 V. V. Ranade, J. Clin. Pharmacol. 1989, 29, 873.
- 49 J. F. Coelho, P. C. Ferreira, P. Alves, R. Cordeiro, A. C. Fonseca, J. R. Góis, M.H. Gil. EPMA J. 2010, 1, 164.
- 50 V. T. Chuang, U. Kragh-Hansen, M. Otagiri, Pharm. Res. 2002, 19, 569.
- 51 F-S. Bruno, M. Chorilli, Mater. Sci. Eng. C 2017, 77, 1349.
- 52 Y. Kamari, M. Ghiaci, Microporous Mesoporous Mate. 2016, 234, 361.
- 53 R. Chang, J. Yang, S. Ge, M. Zhao, C. Liang, L. Xiong, Q. Sun, Food. Hydrocoll. 2017, 67, 14.
- 54 J. Mašek, D. Lubasová, R. Lukáč, P. Turánek-Knotigová, P. Kulich, J. Plocková, E. Mašková, L. Procházka, S. Koudelka, N. Sasithorn, J. Gombos, E. Bartheldyová, F. Hubatka, M. Raška, A. D. Miller, J. Turánek, J. Control Release 2017, 249, 183.
- 55 V. F. Patel, F. Liu, M. B. Brown, J. Control Release 2011, 153, 106.
- 56 W.-Z. Jiang, Y. Cai, H.-Y. Li, Adv. Powder Technol. 2017, 312, 124.
- 57 A. Lissette, Z.-S. Dionisio, L Peña, M. L. Dias, Carbohydr. Polym. 2017, 168, 32.
- 58 K. Kesavan, G. Nath, J. K. Pandit, Sci. Pharm. 2010, 78, 941.
- 59 W. Siswomihardjo, Advanced Structured Materials, Springer, Cham 2016. pp. 41.
- 60 M. Abd Elgadir, M. S. Uddin, S. Ferdosh, A. Adam, A. J. K. Chowdhury, Md. Z. Islam, J. Food. Drug. Anal. 2015, 23, 619.
- 61 M. Spasojevic, S. Bhujbal, G. Paredes, B. J. Haan, A.J. Schouten. J. Biomed. Mater. Res. A. 2014, 102, 1887.
- 62 A. Lissette, Z.-S. Dionisio, L Peña, Y. Solís, J. A. Ramón, M. L. Dias, Polym. Eng. Sci. 2015, 55, 981.
- 63 T. Kowalczyk, K. Hnatuszko-Konka, A. Gerszberg, A.K. Kononowicz. World. J. Microbiol. Biotechnol. 2014, 30, 2141.
- 64 W. Andreas, U. Müller-Ladner, E. H. K. Stelzer, J. Funk, E. Neumann, G. Stehle, T. Pap, H. Sinn, S. Gay, C. Fiehn, J. Immunol. 2003, 170, 4793.
- 65 J. C. Doughty, J. H. Anderson, N. Willmott, C. S. McArdle, Postgrad. Med. J. 1995, 71, 47.
- 66 H.-P. Lim, B.-T. Tey, E.-S. Chan, J. Control. Release. 2014, 186, 11.
- 67 B. Hatefi, Amsden. J. Control. Release 2002, 80, 9.
- 68 T. A. Sonia, C. P. Sharma, Drug Discov. Today. 2012, 17, 784.
- 69 C.-M. Lehr, J. A. Bouwstra, E. H. Schacht, H. E. Junginger, Int. J. Pharm. 1992, 78, 43.
- 70 K. Maculotti, I. Genta, P. Perugini, M. Imam, A. Bernkop-Schnürch, F. Pavanetto. J. Microencapsul. 2005, 22, 459.
- 71 M. Rekha, C. P. Sharma, J. Control. Release 2009, 135, 144.
- 72 Q. Hou, A. Paul, K. M. Shakesheff, J. Mater. Chem. 2004, 14, 1915.
- 73 S. Y. Lee, G. Tae, J. Control. Release 2007, 119, 313.
- 74 M. George, T. E. Abraham, J. Control. Release 2006, 114, 1.
- 75 S. W. Jeong, Y. H. Kim, Y. H. Bae, Adv. Drug. Deliv. Rev. 2012, 64, 154.
- 76 S. Eskandari, T. Guerin, I. Toth, J. R. Stephenson, Adv. Drug. Deliv. Rev. 2017, 110, 169.
- 77 N. A. Peppas and, Y. Huang, Pharm. Res. 2002, 19, 578.
- 78 D. Arosio, C. Casagrande, Adv. Drug Deliv. Rev. 2016, 97, 111.
- 79 R. S. Saundray, A. Ghosh, V. K. Thakur (Eds), Elsevier, 2018, 335.
- 80 D. M. George, A. M. Grumezescu, C. Bejenaru, L. E. Bejenaru, Int. J. Pharm. 2016, 510, 419.
- 81 D. Cunliffe, A. Kirby, C. Alexander, Adv. Drug Deliv. Rev. 2005, 57, 1836.
- 82 S. Suriyanarayanan, S. Mandal, K. Ramanujam, I. A. Nicholls, Sens. Actuators. B Chem. 2017, 253, 428.
- 83 Y. Petrova, E. G. Bulatova, N. Tanykova, At Lisboa, Portugal 2017.
- 84 G. Vasapollo, R. D. Sole, L. Mergola, M. R. Lazzoi, A. Scardino, S. Scorrano, G. Mele. Int. J. Mol. Sci. 2011, 12, 5908.
- 85 T. N. Edison, R. Atchudan, M. G. Sethuraman, Y. R. Lee, J. Taiwan Inst. Chem. Eng. 2016, 68, 489.
- 86 J. Cui, R. D. Rose, K. Alt, S. Alcantara, B. M. Paterson, K. Liang, M. Hu, J. J. Richardson, Y. Yan, C. M. Jeffery, R. I. Price, K. Peter, C. E. Hagemeyer, P. S. Donnelly, S. J. Kent, F. Caruso, ACS Nano 2015, 9, 1571.
- 87 P. Pathak, V. K. Katiyar, Azonano 2007, 3, https://doi.org/10.2240/azojono0114
- 88 F. Sonvico, C. Dubernet, P. Colombo, P. Couvreur. Curr. Pharm. Des. 2005, 11, 2091.
- 89 J. Chomoucka, J. Drbohlavova, D. Huska, V. Adam, R. Kizek, J. Hubalek, Pharm. Res. 2010, 62, 144.
- 90 K. Hu, X. Huang, Y. Gao, X. Huang, H. Xiao, D. Julian, McClements, Food. Chem. 2015, 182, 275.
- 91 Z. Shariatinia, Z. Zahraee, J. Colloid Interface Sci. 2017, 501, 60.
- 92 H. Luo, Ao. Haiyong, L. Gen, L. Wei, G. Xiong, Y. Zhu, Y. Wan, Curr. Appl. Phys. 2017, 17, 249.
- 93 T. A. Dadkhah, M. Parsamanesh, Mater. Sci. Eng. C 2017, 73, 516.
- 94 G. Franci, A. Falanga, S. Galdiero, L. Palomba, M. Rai, G. Morelli, M. Galdiero, Molecules. 2015, 20, 8856.
- 95 V. Y. Grinberg, V. B. Tolstoguzov. Food. Hydrocol. 1997, 11, 145.
- 96
M. Ping'an,
H. Xiao,
C. Li,
Y. Dai,
Z. Cheng,
Z. Hou,
J. Lin,
Mater. Today.
2015,
18, 554.
10.1016/j.mattod.2015.05.017 Google Scholar
- 97 A. I. Bourbon, A. C. Pinheiro, C. Cunha, M. G. Pereira, R. N. Cerqueira, M. A. Vicente, A.A. Food Hydrocoll. 2015, 48, 292.
- 98 M. Darder, P. Aranda, E. Ruiz-Hitzky, Adv. Mater. 2007, 19, 1309.
- 99 E. Ruiz-Hitzky, P. Aranda, M. Darder, G. Rytwo, J. Mater. Chem. 2010, 20, 9306.
- 100 M. T. Nistor, C. Vasile, A. P. Chiriac, Mater. Sci. Eng. C. 2015, 53, 212.
- 101 H. Luo, H. Ao, G. Li, W. Li, G. Xiong, Y. Zhu, Y. Wan, Curr. Appl. Phys. 2017, 17, 249.
- 102 F. N. Crespilho, F. C. A. Lima, A. B. F. Silva, O. N. Oliveira, Jr., V Zucolotto, Chem. Phys. Lett. 2009, 469, 186.
- 103 P. Pengo, L. Baltzer, L. Pasquato, P. Scrimin, Angew. Chem. Int. Ed. 2007, 46, 400.
- 104
S. L. Zhu,
F. Li,
C. L. Du,
Y. Fu,
Sens. Actuators. B Chem.
2008, 193.
10.1016/j.snb.2008.04.028 Google Scholar
- 105 D. Nykypanchuk, M. M. Maye, D. Lelie, O. Gang, Nat. 2008, 451, 549.
- 106 N. Zohreh, S. H. Hosseini, A. Pourjavadi, Ind. Eng. Chem. Res. 2016, 39, 203.
- 107 H. Xiao, T. Yang, Q. Lin, G. Q. Liu, L. Zhang, F. Yu, Y. Chen. Int. J. Biol. Macromol. 2016, 89, 456.
- 108 Z. Shariatinia, Z. Zahraee, J. Colloid Interface Sci. 2017, 501, 60.
- 109 T. N. Edison, R. Atchudan, M. G. Sethuraman, Y. R. Lee, J. Photochem. Photobiol. 2016, 162, 604.
- 110 T. N. Edison, Y. R. Lee, M. G. Sethuraman, Spectrochimica Acta Part A 2016, 161, 122.
- 111 T. N. Edison, R. Atchudan, C. Kamal, Y. R. Lee, Bioprocess Biosyst. Eng. 2016, 39, 1401.
- 112 A. Mohandas, S. Deepthi, R. Biswas, R. Jayakumar, Bioactive Mater. 2018, 3, 267.
- 113 H. Zhang, T. Yan, S. Xu, S. Feng, D. Huang, M. Fujita, X.-D. Gao, Mater. Sci. Eng. C 2017, 73, 144.
- 114 H Shi, R Magaye, V Castranova, J. Zhao, Part. Fibre Toxicol. 2013, 10, 15.
- 115 A. MaHam, Z. Tang, H. Wu, J. Wang, Y. Lin. Small. 2009, 5, 1706.
- 116 D. Chow, M. L. Nunalee, D. W. Lim, A. J. Simnick, A. Chilkoti. Mater. Sci. Eng. R. Rep. 2008, 62, 125.
- 117 W. Lohcharoenkal, W. Liying, Y. C. Chen, Y. Rojanasakul, Bio. Med Res. Int. 2014, https://doi.org/10.1155/2014/180549
- 118 G. Zhou, X. Jin, P. Zhu, J. Yao, Y. Zhang, L. Teng, R. J. Lee, X. Zhang, W. Hong, Anticancer Res. 2016, 36, 1649.
- 119 S. Sebak, M. Mirzaei, M. Malhotra, A. Kulamarva, S. Prakash, Int. J. Nanomed. 2010, 5, 525.
- 120 M. Foox, M. Zilberman, Expert Opin. Drug Deliv. 2015, 12, 1547.
- 121 E. J. Lee, S. A. Khan, J. K. Park, K. H. Lim, Bioprocess. Biosyst. Eng. 2012, 35, 297.
- 122 A. O. Elzoghby, J. Control. Release. 2013, 172, 1075.
- 123 M. A. Arangoa, G. Ponchel, A. M. Orecchioni, M. J. Renedo, D Duchêne, J. M. Irache, Eur. J. Pharm. Sci. 2000, 11, 333.
- 124 R. A. Leite, D. Soares, R. Silveira, Nádya, Adv Chem Res. 2017, 1.
- 125 C. Duclairoir, A.-M. Orecchioni, P. Depraetere, F. Osterstock, E. Nakache, Int. J. Pharm. 2003, 253, 133.
- 126 T. J. Mirshahi, M. Irache, C. Nicolas Mirshahi, M. Faure, J. P. Gueguen, J. Hecquet, C. Orecchioni, A.M. J. Drug Target 2002, 10, 625.
- 127 J. Huang, Q. Shu, L. Wang, H. Wu, A. Y. W. H. Mao, Biomaterials. 2015, 39, 105.
- 128 G. M. Tavares, T. Croguennec, A. F. Carvalho, S. Bouhallab, Trends. Food. Sci. Technol. 2014, 37, 5.
- 129 A. González, I. Luis, D. Tártara, P. Santiago, Cecilia I. Alvarez Igarzabal, Mater. Sci. Eng. C. 2015, 51, 73.
- 130 C. M. Vaz, L. A. de Graaf, R. L. Reis, A. M. Cunha, Springer, Dordrecht 2002. Vol. 86.
- 131 S. Lee, N. S. A. Alwahab, Z. M. Moazzam, Int. J. Pharm. 2013, 454, 388.
- 132 Z. Shuangling, Z. Huan, L. Yunhong, W. Gaoxu, S. Chao, L. Zhanfeng, F. Yuxiang, C. Xuejun, Carbohydr. Polym. 2017, 168, 282.
- 133 V. Kozlovskaya, J. F. Alexander, Y. Wang, T. Kuncewicz, X. Liu, B. Godin, E. Kharlampieva, ACS Nano. 2014, 8, 5725.
- 134 L. Gao, J. Fei, J. Zhao, W. Cui, Y. Cui, J. Li. Chem. Eur. J. 2012, 18, 3185.
- 135 Y. Ping, J. Guo, H. Ejima, X. Chen, J. J. Richardson, H. Sun, F. Caruso, Small. 2015, 11, 2032.
- 136 D. Uppalapati, B. J. Boyd, S. Garg, J. Travas-Sejdic, D. Svirskis, Biomaterials. 2016, 111, 149.
- 137 J. Dusseault, S. K. Tam, M. Ménard, S. Polizu, G. Jourdan, L. H. Yahia, J. P. Hallé, J. Biomed. Mater. Res. A. 2006, 76, 243.
- 138 H. Betre, W. Liu, M. R. Zalutsky, A. Chilkoti, V. B. Kraus, L. A. Setton, J. Control. Release. 2006, 115, 175.
- 139 P. S. Stayton, A. S. Hoffman, N. Murthy, C. Lackey, C. Cheung, P. Tan, L. A. Klumb, A. Chilkoti, F. S. Wilbur, O. W. Press, J. Control. Release 2000, 65, 203.
- 140 Y. Chen, P. Youn, D. Y. Furgeson, J. Control. Release. 2011, 155, 175.
- 141 W. Leslie, E. Perkins, F. Kratz, D. Raucher, Int. J. Pharm. 2012, 436, 825.
- 142 CA Busatto, H. Labie, V. Lapeyre, R. Auzely-Velty, A. Perro, N. Casis, J Luna, D. A. Estenoz, V. Ravaine, J. Colloid Interface Sci. 2017, 493, 356.
- 143
Leichner,
M. Claudia,
L. Flavia,
B.-S. Andreas,
Int. J. Pharm.
2017,
15, 346.
10.1016/j.ijpharm.2017.08.059 Google Scholar
- 144 S. Bazban-Shotorbani, M. M. Hasani-Sadrabadi, A. Karkhaneh, V. Serpooshan, K. I. Jacob, A. Moshaverinia, M. Mahmoudi, J. Control. Release. 2017, 253, 46.
- 145 CJ Lin, C. H. Kuan, L. W. Wang, H. C. Wu, Y. Chen, C. W. Chang, R. Y. Huang, T. W. Wang, Biomaterials. 2016, 90, 12.
- 146 K. Hemmati, M. Ghaemy, Int. J. Biol. Macromol. 2016, 87, 415.