Anisotropic microparticles for differential drug release in nerve block anesthesia

被引:5
作者
Shivakumar, B. S. [1 ]
Gopalakrishnan-Prema, Vignesh [1 ]
Raju, Gayathri [1 ]
Mathew, Sumi E. [1 ]
Katiyar, Neeraj [1 ]
Menon, Deepthy [1 ]
Shankarappa, Sahadev A. [1 ]
机构
[1] Amrita Vishwa Vidyapeetham, Ctr Nanosci & Mol Med, Kochi 682041, Kerala, India
关键词
PLGA MICROSPHERES; SUSTAINED-RELEASE; LOCAL TOXICITY; IN-VIVO; NANOPARTICLES; BUPIVACAINE; DEGRADATION; SHAPE; BIOCOMPATIBILITY; MONODISPERSE;
D O I
10.1039/d0ra08386k
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Microparticle shape, as a tunable design parameter, holds much promise for controlling drug-release kinetics from polymeric microparticulate systems. In this study we hypothesized that the intensity and duration of a local nerve block can be controlled by administration of bupivacaine-loaded stretch-induced anisotropic poly(lactic-co-glycolic acid) microparticles (MPs). MPs of size 27.3 +/- 8.5 mu m were synthesized by single emulsion method and subjected to controlled stretching force. The aspect ratio of the anisotropic-bupivacaine MPs was quantified, and bupivacaine release was measured in vitro. The anisotropic MPs were administered as local nerve block injections in rats, and the intensity and duration of local anesthesia was measured. Bupivacaine-loaded anisotropic MPs used in this study were ellipsoid in shape and exhibited increased surface pores in comparison to spherical MPs. Anisotropic MPs exhibited a higher rate of bupivacaine release in vitro, and showed significantly (P < 0.05) stronger sensory nerve blocking as compared to spherical bupivacaine MPs, even though the duration of the nerve block remained similar. This study demonstrates the utility of stretch-induced anisotropic MPs in controlling drug release profiles from polymeric MPs, under both in vitro and in vivo conditions. We show that shape, as a tunable design parameter, could play an important role in engineering drug-delivery systems.
引用
收藏
页码:4623 / 4630
页数:8
相关论文
共 42 条
[1]   Factors affecting the degradation and drug-release mechanism of poly(lactic acid) and poly[(lactic acid)-co-(glycolic acid)] [J].
Alexis, F .
POLYMER INTERNATIONAL, 2005, 54 (01) :36-46
[2]   MOLECULAR BIOINTERACTIONS OF BIOMEDICAL POLYMERS WITH EXTRACELLULAR EXUDATE AND INFLAMMATORY CELLS AND THEIR EFFECTS ON THE BIOCOMPATIBILITY, IN-VIVO [J].
ALI, SAM ;
DOHERTY, PJ ;
WILLIAMS, DF .
BIOMATERIALS, 1994, 15 (10) :779-785
[3]   Overview on Therapeutic Applications of Microparticulate Drug Delivery Systems [J].
Bale, Swarna ;
Khurana, Amit ;
Reddy, A. Shiva Shankar ;
Singh, Mandip ;
Godugu, Chandraiah .
CRITICAL REVIEWS IN THERAPEUTIC DRUG CARRIER SYSTEMS, 2016, 33 (04) :309-361
[4]   A theoretical model of erosion and macromolecular drug release from biodegrading microspheres [J].
Batycky, RP ;
Hanes, J ;
Langer, R ;
Edwards, DA .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1997, 86 (12) :1464-1477
[5]   Ketoprofen poly(lactide-co-glycolide) physical interaction [J].
Blasi, Paolo ;
Schoubben, Aurelie ;
Giovagnoli, Stefano ;
Perioli, Luana ;
Ricci, Maurizio ;
Rossi, Carlo .
AAPS PHARMSCITECH, 2007, 8 (02)
[6]   Particle shape: A new design parameter for micro- and nanoscale drug delivery carriers [J].
Champion, Julie A. ;
Katare, Yogesh K. ;
Mitragotri, Samir .
JOURNAL OF CONTROLLED RELEASE, 2007, 121 (1-2) :3-9
[7]   Making polymeric micro- and nanoparticles of complex shapes [J].
Champion, Julie A. ;
Katare, Yogesh K. ;
Mitragotri, Samir .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (29) :11901-11904
[8]   Preparation and characterization of fentanyl-loaded PLGA microspheres: in vitro release profiles [J].
Choi, HS ;
Seo, SA ;
Khang, G ;
Rhee, JM ;
Lee, HB .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2002, 234 (1-2) :195-203
[9]   Influence of particle size and shape on their margination and wall-adhesion: implications in drug delivery vehicle design across nano-to-micro scale [J].
Cooley, Michaela ;
Sarode, Apoorva ;
Hoore, Masoud ;
Fedosov, Dmitry A. ;
Mitragotri, Samir ;
Sen Gupta, Anirban .
NANOSCALE, 2018, 10 (32) :15350-15364
[10]   Biocompatibility, biodegradation and excretion of polylactic acid (PLA) in medical implants and theranostic systems [J].
da Silva, Dana ;
Kaduri, Maya ;
Poley, Maria ;
Adir, Omer ;
Krinsky, Nitzan ;
Shainsky-Roitman, Janna ;
Schroeder, Avi .
CHEMICAL ENGINEERING JOURNAL, 2018, 340 :9-14