Polylactic acid (PLA) controlled delivery carriers for biomedical applications.
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Henry Brem | Betty Tyler | A. Mangraviti | David M. Gullotti | H. Brem | B. Tyler | T. Utsuki | David Gullotti | Antonella Mangraviti | Tadanobu Utsuki | David Gullotti | Antonella Mangraviti
[1] C. Lee,et al. A biomechanical comparison of all-inside meniscus repair techniques. , 2009, The Journal of surgical research.
[2] A. Vila,et al. PEG-PLA nanoparticles as carriers for nasal vaccine delivery. , 2004, Journal of aerosol medicine : the official journal of the International Society for Aerosols in Medicine.
[3] Jie Pan,et al. Targeting and imaging cancer cells by folate-decorated, quantum dots (QDs)- loaded nanoparticles of biodegradable polymers. , 2009, Biomaterials.
[4] A. Mitra,et al. Recent advances in protein and Peptide drug delivery: a special emphasis on polymeric nanoparticles. , 2014, Protein and peptide letters.
[5] Derek H. Jones. Semipermanent and permanent injectable fillers. , 2009, Dermatologic clinics.
[6] Mark D. Miller,et al. All-Inside Meniscal Repair , 2009, Sports health.
[7] F. Hyder,et al. Imaging the delivery of brain-penetrating PLGA nanoparticles in the brain using magnetic resonance , 2015, Journal of Neuro-Oncology.
[8] Ryan F. Donnelly,et al. Microneedle/nanoencapsulation-mediated transdermal delivery: Mechanistic insights , 2014, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[9] J. Parel,et al. Axonal regeneration into Schwann cell grafts within resorbable poly(alpha-hydroxyacid) guidance channels in the adult rat spinal cord. , 2001, Biomaterials.
[10] So-Jung Gwak,et al. Skin regeneration using keratinocytes and dermal fibroblasts cultured on biodegradable microspherical polymer scaffolds. , 2005, Journal of biomedical materials research. Part B, Applied biomaterials.
[11] A. C. Vieira,et al. Development of ligament tissue biodegradable devices: a review. , 2009, Journal of biomechanics.
[12] M. Skrifvars,et al. Natural fibres as reinforcement in polylactic acid (PLA) composites , 2003 .
[13] Sung-Bae Kim,et al. Multicenter phase II trial of Genexol-PM, a Cremophor-free, polymeric micelle formulation of paclitaxel, in patients with metastatic breast cancer , 2008, Breast Cancer Research and Treatment.
[14] Guanghui Ma,et al. Microencapsulation of protein drugs for drug delivery: strategy, preparation, and applications. , 2014, Journal of controlled release : official journal of the Controlled Release Society.
[15] J. Leroux,et al. Poly(N-vinylpyrrolidone)-block-poly(D,L-lactide) as a new polymeric solubilizer for hydrophobic anticancer drugs: in vitro and in vivo evaluation. , 2004, Journal of controlled release : official journal of the Controlled Release Society.
[16] K. Takaoka,et al. Repair of a proximal femoral bone defect in dogs using a porous surfaced prosthesis in combination with recombinant BMP-2 and a synthetic polymer carrier. , 2003, Biomaterials.
[17] Long-Term Effects of Novel Combination Coating Anti-CD34 Antibody Applied on Sirolimus-Eluting Stents. , 2015, Journal of interventional cardiology.
[18] S. Schwendeman,et al. Injectable controlled release depots for large molecules. , 2014, Journal of controlled release : official journal of the Controlled Release Society.
[19] C. Yang,et al. The role of Gliadel wafers in the treatment of newly diagnosed GBM: a meta-analysis , 2015, Drug design, development and therapy.
[20] A. Fernandez-Fernandez,et al. Simultaneous Delivery of Chemotherapeutic and Thermal-Optical Agents to Cancer Cells by a Polymeric (PLGA) Nanocarrier: An In Vitro Study , 2010, Pharmaceutical Research.
[21] H. E. El Gazaerly,et al. Clinical and radiographic evaluation of copolymerized Polylactic/polyglycolic acids as a bone filler in combination with a cellular dermal matrix graft around immediate implants. , 2014, International journal of health sciences.
[22] Suwan N Jayasinghe,et al. Cell electrospinning: a novel tool for functionalising fibres, scaffolds and membranes with living cells and other advanced materials for regenerative biology and medicine. , 2013, The Analyst.
[23] R. Narang,et al. Nanomedicines for dental applications-scope and future perspective , 2015, International journal of pharmaceutical investigation.
[24] J. Mestecky,et al. Biodegradable block copolymers for delivery of proteins and water-insoluble drugs. , 2001, Journal of controlled release : official journal of the Controlled Release Society.
[25] Douglas A Christensen,et al. Drug-loaded nano/microbubbles for combining ultrasonography and targeted chemotherapy. , 2008, Ultrasonics.
[26] Y. Shomura,et al. Composite material stent comprising metallic wire and polylactic acid fibers, and its mechanical strength and retrievability , 2009, Acta Radiologica.
[27] Sha Huang,et al. Bioengineered skin substitutes: key elements and novel design for biomedical applications , 2013, International wound journal.
[28] S. MacNeil,et al. Development of a one-step approach for the reconstruction of full thickness skin defects using minced split thickness skin grafts and biodegradable synthetic scaffolds as a dermal substitute. , 2014, Burns : journal of the International Society for Burn Injuries.
[29] Liang Wang,et al. Effects of canine myoblasts expressing human cartilage‑derived morphogenetic protein‑2 on the repair of meniscal fibrocartilage injury. , 2014, Molecular medicine reports.
[30] Ho-Chul Shin,et al. Pharmacokinetic study of 3-in-1 poly(ethylene glycol)-block-poly(D, L-lactic acid) micelles carrying paclitaxel, 17-allylamino-17-demethoxygeldanamycin, and rapamycin. , 2012, Journal of controlled release : official journal of the Controlled Release Society.
[31] D. Irvine,et al. Vaccine delivery with microneedle skin patches in nonhuman primates , 2013, Nature Biotechnology.
[32] S. Mackinnon,et al. The Role of Conduits in Nerve Repair: A Review , 1996, Reviews in the neurosciences.
[33] K. Dawkins,et al. Comparison of the SYNERGY with the PROMUS (XIENCE V) and bare metal and polymer-only Element control stents in porcine coronary arteries. , 2012, EuroIntervention : journal of EuroPCR in collaboration with the Working Group on Interventional Cardiology of the European Society of Cardiology.
[34] C. M. Agrawal,et al. Orthopaedic applications for PLA-PGA biodegradable polymers. , 1998, Arthroscopy : the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association.
[35] Jin Xie,et al. Nanoparticle-based theranostic agents. , 2010, Advanced drug delivery reviews.
[36] Baorui Liu,et al. Novel thermosensitive polymeric micelles for docetaxel delivery. , 2007, Journal of biomedical materials research. Part A.
[37] Xinyi Chen,et al. Adding Vitamin E-TPGS to the Formulation of Genexol-PM: Specially Mixed Micelles Improve Drug-Loading Ability and Cytotoxicity against Multidrug-Resistant Tumors Significantly , 2015, PloS one.
[38] Ke Yang,et al. Biodegradable Materials for Bone Repairs: A Review , 2013 .
[39] G. Stone,et al. Clinical outcomes with bioabsorbable polymer- versus durable polymer-based drug-eluting and bare-metal stents: evidence from a comprehensive network meta-analysis. , 2014, Journal of the American College of Cardiology.
[40] Alicia Fernandez-Fernandez,et al. Theranostic Applications of Nanomaterials in Cancer: Drug Delivery, Image-Guided Therapy, and Multifunctional Platforms , 2011, Applied biochemistry and biotechnology.
[41] P. Couvreur,et al. Nanotechnology: Intelligent Design to Treat Complex Disease , 2006, Pharmaceutical Research.
[42] L. Lysakova,et al. Long‐term safety and efficacy of poly‐L‐lactic acid in the treatment of HIV‐related facial lipoatrophy , 2006, HIV medicine.
[43] Ho-Chul Shin,et al. Antitumor Activity of Triolimus: A Novel Multidrug-Loaded Micelle Containing Paclitaxel, Rapamycin, and 17-AAG , 2012, Molecular Cancer Therapeutics.
[44] J. Friedman,et al. Fabrication of biodegradable PEG–PLA nanospheres for solubility, stabilization, and delivery of curcumin , 2017, Artificial Cells Nanomedicine and Biotechnology.
[45] R. Langer,et al. Light-induced shape-memory polymers , 2005, Nature.
[46] S. MacNeil,et al. Application of Tissue Engineering to Pelvic Organ Prolapse and Stress Urinary Incontinence , 2015, Lower urinary tract symptoms.
[47] Giovanna Iezzi,et al. Ridge preservation following tooth extraction using a polylactide and polyglycolide sponge as space filler: a clinical and histological study in humans. , 2003, Clinical oral implants research.
[48] C. Eberhart,et al. Combination of paclitaxel thermal gel depot with temozolomide and radiotherapy significantly prolongs survival in an experimental rodent glioma model , 2013, Journal of Neuro-Oncology.
[49] D. Coons,et al. Midterm results of meniscal repair using the BioStinger meniscal repair device. , 2006, Arthroscopy : the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association.
[50] A. Ekeland,et al. All-inside suture device is superior to meniscal arrows in meniscal repair: a prospective randomized multicenter clinical trial with 2-year follow-up , 2014, Knee Surgery, Sports Traumatology, Arthroscopy.
[51] D. Moore,et al. Resorbable fillers reduce stress risers from empty screw holes. , 2007, The Journal of trauma.
[52] D. Therriault,et al. Three-dimensional printing of freeform helical microstructures: a review. , 2014, Nanoscale.
[53] Yong-Kyu Yoon,et al. Polymer particle-based micromolding to fabricate novel microstructures , 2007, Biomedical microdevices.
[54] Donald E. Chickering,et al. Biologically erodable microspheres as potential oral drug delivery systems , 1997, Nature.
[55] J. Fajadet,et al. Primary endpoint results of the EVOLVE trial: a randomized evaluation of a novel bioabsorbable polymer-coated, everolimus-eluting coronary stent. , 2012, Journal of the American College of Cardiology.
[56] Robert Langer,et al. Preclinical Development and Clinical Translation of a PSMA-Targeted Docetaxel Nanoparticle with a Differentiated Pharmacological Profile , 2012, Science Translational Medicine.
[57] W. Saltzman,et al. Pharmacokinetics of interstitial delivery of carmustine, 4-hydroperoxycyclophosphamide, and paclitaxel from a biodegradable polymer implant in the monkey brain. , 1998, Cancer research.
[58] Xiaoyang Xu,et al. Cancer Nanomedicine: From Targeted Delivery to Combination Therapy , 2015, Trends in molecular medicine.
[59] A. Boddy,et al. A Phase I clinical study of cisplatin-incorporated polymeric micelles (NC-6004) in patients with solid tumours , 2011, British Journal of Cancer.
[60] M. Schilling,et al. Antibacterial [corrected] coating of abdominal closure sutures and wound infection. , 2009, Surgery.
[61] H. Redl,et al. A comparison of Progrip® and Adhesix® self-adhering hernia meshes in an onlay model in the rat , 2014, Hernia.
[62] M. Shive,et al. Biodegradation and biocompatibility of PLA and PLGA microspheres , 1997 .
[63] M. Frounchi,et al. Magnetic nanoparticles-loaded PLA/PEG microspheres as drug carriers. , 2015, Journal of biomedical materials research. Part A.
[64] S. Hackbarth,et al. Investigation of Polylactic Acid (PLA) Nanoparticles as Drug Delivery Systems for Local Dermatotherapy , 2009, Pharmaceutical Research.
[65] F. Senatov,et al. Mechanical properties and shape memory effect of 3D-printed PLA-based porous scaffolds. , 2016, Journal of the mechanical behavior of biomedical materials.
[66] Xue-Qing Zhang,et al. Interactions of nanomaterials and biological systems: Implications to personalized nanomedicine. , 2012, Advanced drug delivery reviews.
[67] Li Shen,et al. The effect of a layer-by-layer chitosan-heparin coating on the endothelialization and coagulation properties of a coronary stent system. , 2009, Biomaterials.
[68] W. Liu,et al. Repair of Achilles tendon defect with autologous ASCs engineered tendon in a rabbit model. , 2014, Biomaterials.
[69] R. Pellitteri,et al. Nose-to-brain delivery: evaluation of polymeric nanoparticles on olfactory ensheathing cells uptake. , 2014, Journal of pharmaceutical sciences.
[70] A. Elaissari,et al. Biodegradable Polymer Based Nanoparticles: Dermal and Transdermal Drug Delivery , 2014 .
[71] Jean Coudane,et al. Aliphatic polyesters for medical imaging and theranostic applications. , 2015, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[72] D. Ho,et al. A systematic review of filler agents for aesthetic treatment of HIV facial lipoatrophy (FLA). , 2015, Journal of the American Academy of Dermatology.
[73] C. Tonda-Turo,et al. Polymeric membranes for guided bone regeneration , 2011, Biotechnology journal.
[74] R. Thorne,et al. Intranasal delivery of biologics to the central nervous system. , 2012, Advanced drug delivery reviews.
[75] F. Gao,et al. Novel nanocomposite of nano fe(3)o(4) and polylactide nanofibers for application in drug uptake and induction of cell death of leukemia cancer cells. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[76] J.-L. Chen,et al. In vivo and in vitro characteristics for insulin-loaded PLA microparticles prepared by w/o/w solvent evaporation method with electrolytes in the continuous phase , 2004, Journal of Microencapsulation.
[77] Zohaib Khurshid,et al. Biodegradable Materials for Bone Repair and Tissue Engineering Applications , 2015, Materials.
[78] A. Olivi,et al. Biodegradable polymers for controlled delivery of chemotherapy with and without radiation therapy in the monkey brain. , 1994, Journal of neurosurgery.
[79] Xuejun Peng,et al. Permeable guidance channels containing microfilament scaffolds enhance axon growth and maturation. , 2005, Journal of biomedical materials research. Part A.
[80] T. Noji,et al. Triclosan-coated sutures reduce the incidence of wound infections and the costs after colorectal surgery: a randomized controlled trial. , 2013, Surgery.
[81] Indu Bala,et al. PLGA nanoparticles in drug delivery: the state of the art. , 2004, Critical reviews in therapeutic drug carrier systems.
[82] P. Tejedor,et al. Early healing assessment with optical coherence tomography of everolimus‐eluting stents with bioabsorbable polymer (synergy™) at 3 and 6 months after implantation , 2016, Catheterization and cardiovascular interventions : official journal of the Society for Cardiac Angiography & Interventions.
[83] C. Haldar,et al. Therapeutic efficacy and toxicity of tamoxifen loaded PLA nanoparticles for breast cancer. , 2015, International journal of biological macromolecules.
[84] S. Piantadosi,et al. Placebo-controlled trial of safety and efficacy of intraoperative controlled delivery by biodegradable polymers of chemotherapy for recurrent gliomas , 1995, The Lancet.
[85] K. T. Householder,et al. Intravenous delivery of camptothecin-loaded PLGA nanoparticles for the treatment of intracranial glioma. , 2015, International journal of pharmaceutics.
[86] Quanyin Hu,et al. PEG-PLA nanoparticles modified with APTEDB peptide for enhanced anti-angiogenic and anti-glioma therapy. , 2014, Biomaterials.
[87] Xiangrong Song,et al. Reversion of multidrug resistance by co-encapsulation of vincristine and verapamil in PLGA nanoparticles. , 2009, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[88] B. le Roux,et al. Resection of tumors of the chest wall. , 1983, Current problems in surgery.
[89] Mark E. Davis,et al. Nanoparticle therapeutics: an emerging treatment modality for cancer , 2008, Nature Reviews Drug Discovery.
[90] S. MacNeil,et al. Developing Repair Materials for Stress Urinary Incontinence to Withstand Dynamic Distension , 2016, PloS one.
[91] Pamela Leal,et al. Cytotoxic Effect of Double Emulsion (W/O/W) CuSO4 Loaded PLA Nanoparticles on MKN-45 Gastric Adenocarcinoma Cell Line , 2014 .
[92] B. Pettmann,et al. Repair of the injured spinal cord by implantation of a synthetic degradable block copolymer in rat. , 2014, Biomaterials.
[93] C. Rudd,et al. Bioresorbable composite screws manufactured via forging process: pull-out, shear, flexural and degradation characteristics. , 2013, Journal of the mechanical behavior of biomedical materials.
[94] B. Mukherjee,et al. Preparation and characterization of Tamoxifen citrate loaded nanoparticles for breast cancer therapy , 2014, International journal of nanomedicine.
[95] Regina Luttge,et al. Microneedle-based drug and vaccine delivery via nanoporous microneedle arrays , 2015, Drug Delivery and Translational Research.
[96] J. Devoisselle,et al. Site‐specific methylene blue delivery to pilosebaceous structures using highly porous nylon microspheres: An experimental evaluation , 2003, Lasers in surgery and medicine.
[97] W. Yi,et al. Effects of sequentially released BMP-2 and BMP-7 from PELA microcapsule-based scaffolds on the bone regeneration. , 2015, American journal of translational research.
[98] R. Suuronen. Biodegradable fracture-fixation devices in maxillofacial surgery , 1993 .
[99] Eva Roblegg,et al. Mucus as barrier for drug delivery by nanoparticles. , 2014, Journal of nanoscience and nanotechnology.
[100] W. Frey,et al. Intranasal delivery to the central nervous system: mechanisms and experimental considerations. , 2010, Journal of pharmaceutical sciences.
[101] E. Cho,et al. A phase II trial of Cremorphor EL-free paclitaxel (Genexol-PM) and gemcitabine in patients with advanced non-small cell lung cancer , 2014, Cancer Chemotherapy and Pharmacology.
[102] S. Sakthivel,et al. Optimization and charaterization of repaglinide biodegradable polymeric nanoparticle loaded transdermal patchs: in vitro and in vivo studies. , 2013, Colloids and surfaces. B, Biointerfaces.
[103] R. Tamargo,et al. Interstitial chemotherapy of the 9L gliosarcoma: controlled release polymers for drug delivery in the brain. , 1993, Cancer research.
[104] Shih-Fang Huang,et al. Fully embeddable chitosan microneedles as a sustained release depot for intradermal vaccination. , 2013, Biomaterials.
[105] S. Talegaonkar,et al. Topotecan-tamoxifen duple PLGA polymeric nanoparticles: investigation of in vitro, in vivo and cellular uptake potential. , 2014, International journal of pharmaceutics.
[106] Claus-Michael Lehr,et al. Nanoparticles--an efficient carrier for drug delivery into the hair follicles. , 2007, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[107] Manfred Westphal,et al. A phase 3 trial of local chemotherapy with biodegradable carmustine (BCNU) wafers (Gliadel wafers) in patients with primary malignant glioma. , 2003, Neuro-oncology.
[108] S. Piantadosi,et al. Optimizing interstitial delivery of BCNU from controlled release polymers for the treatment of brain tumors , 1997, Cancer Chemotherapy and Pharmacology.
[109] J. Nyland,et al. Biomechanical Comparison of the FasT-Fix Meniscal Repair Suture System with Vertical Mattress Sutures and Meniscus Arrows , 2003, The American journal of sports medicine.
[110] Jayanth Panyam,et al. Biodegradable nanoparticles for drug and gene delivery to cells and tissue. , 2003, Advanced drug delivery reviews.
[111] S. Force,et al. Chest wall reconstruction using biomaterials. , 2013, The Annals of thoracic surgery.
[112] R. Athawale,et al. Poly lactic acid (PLA) nanoparticles sustain the cytotoxic action of temozolomide in C6 Glioma cells , 2013 .
[113] Qiang Zhang,et al. A folate modified pH sensitive targeted polymeric micelle alleviated systemic toxicity of doxorubicin (DOX) in multi-drug resistant tumor bearing mice. , 2015, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[114] R. Langer,et al. Seeding neural stem cells on scaffolds of PGA, PLA, and their copolymers. , 2002, Methods in molecular biology.
[115] Jung-Hwan Park,et al. Biodegradable polymer microneedles: fabrication, mechanics and transdermal drug delivery. , 2005, Journal of controlled release : official journal of the Controlled Release Society.
[116] R. A. Jain,et al. The manufacturing techniques of various drug loaded biodegradable poly(lactide-co-glycolide) (PLGA) devices. , 2000, Biomaterials.
[117] Y. Matsumoto,et al. Micellization of cisplatin (NC-6004) reduces its ototoxicity in guinea pigs. , 2012, Journal of controlled release : official journal of the Controlled Release Society.
[118] D. Therriault,et al. Solvent-cast three-dimensional printing of multifunctional microsystems. , 2013, Small.
[119] Charles Tator,et al. Bioengineered strategies for spinal cord repair. , 2006, Journal of neurotrauma.
[120] John A Ormiston,et al. Bioabsorbable coronary stents. , 2009, Circulation. Cardiovascular interventions.
[121] J. Nemunaitis,et al. Phase 1 study of escalating-dose OncoGel® (ReGel®/paclitaxel) depot injection, a controlled-release formulation of paclitaxel, for local management of superficial solid tumor lesions , 2007, Anti-cancer drugs.
[122] Jan E Schnitzer,et al. Overcoming in vivo barriers to targeted nanodelivery. , 2011, Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology.
[123] M. Oudega,et al. Freeze-dried poly(D,L-lactic acid) macroporous guidance scaffolds impregnated with brain-derived neurotrophic factor in the transected adult rat thoracic spinal cord. , 2004, Biomaterials.
[124] G. Kwon,et al. Thermosensitive poly-(d,l-lactide-co-glycolide)-block-poly(ethylene glycol)-block-poly-(d,l-lactide-co-glycolide) hydrogels for multi-drug delivery , 2014, Journal of drug targeting.
[125] Chunmao Han,et al. Three types of dermal grafts in rats: the importance of mechanical property and structural design , 2013, Biomedical engineering online.
[126] S. Saito,et al. Efficacy and Safety of a Novel Bioabsorbable Polymer-Coated, Everolimus-Eluting Coronary Stent: The EVOLVE II Randomized Trial , 2015, Circulation. Cardiovascular interventions.
[127] Lin Yu,et al. Thermogelling polymer-platinum(IV) conjugates for long-term delivery of cisplatin. , 2015, Biomacromolecules.
[128] M. Michaelis,et al. Bovine seminal ribonuclease attached to nanoparticles made of polylactic acid kills leukemia and lymphoma cell lines in vitro , 2000, Anti-cancer drugs.
[129] G. Zhai,et al. Development of RGD-Functionalized PEG-PLA Micelles for Delivery of Curcumin. , 2015, Journal of Biomedical Nanotechnology.
[130] K. Dawkins,et al. The SYNERGY biodegradable polymer everolimus eluting coronary stent: Porcine vascular compatibility and polymer safety study , 2015, Catheterization and cardiovascular interventions : official journal of the Society for Cardiac Angiography & Interventions.
[131] Kun Fang,et al. Antigen-Specific Killer Polylactic-Co-Glycolic Acid (PLGA) Microspheres Can Prolong Alloskin Graft Survival in a Murine Model , 2015, Immunological investigations.
[132] Benjamin M Wu,et al. Recent advances in 3D printing of biomaterials , 2015, Journal of Biological Engineering.
[133] C. Bonnard,et al. Results with all-inside meniscal suture in pediatrics. , 2016, Orthopaedics & traumatology, surgery & research : OTSR.
[134] V. Adam,et al. Efficacy of antimicrobial triclosan-coated polyglactin 910 (Vicryl* Plus) suture for closure of the abdominal wall after colorectal surgery. , 2011, Collegium antropologicum.
[135] B. Verrier,et al. Poly(lactic acid) and poly(lactic-co-glycolic acid) particles as versatile carrier platforms for vaccine delivery. , 2014, Nanomedicine.
[136] D. D’Lima,et al. Meniscus tissue engineering using a novel combination of electrospun scaffolds and human meniscus cells embedded within an extracellular matrix hydrogel , 2015, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[137] J. Delee,et al. Fixation of Osteochondritis Dissecans Lesions Using Poly(l-lactic Acid)/ Poly(glycolic Acid) Copolymer Bioabsorbable Screws , 2005, The American journal of sports medicine.
[138] G. Kwon,et al. PEG-b-PLA micelles and PLGA-b-PEG-b-PLGA sol-gels for drug delivery. , 2016, Journal of controlled release : official journal of the Controlled Release Society.
[139] N. K. Jain,et al. Long circulating PEGylated poly(d,l-lactide-co-glycolide) nanoparticulate delivery of Docetaxel to solid tumors , 2008 .
[140] T. Ryken,et al. Survival outcomes and safety of carmustine wafers in the treatment of high-grade gliomas: a meta-analysis , 2015, Journal of Neuro-Oncology.
[141] Glen J Weiss,et al. Phase I Study of PSMA-Targeted Docetaxel-Containing Nanoparticle BIND-014 in Patients with Advanced Solid Tumors , 2016, Clinical Cancer Research.
[142] Demonstrating the Influence of Water on Shape-Memory Polymer Networks Based on Poly[(Rac-Lactide)-Co-Glycolide] Segments in Vitro , 2011, The International journal of artificial organs.
[143] Ross R. Muth,et al. Biodegradable polymers for use in surgery—polyglycolic/poly(actic acid) homo- and copolymers: 1 , 1979 .
[144] R. Marchessault,et al. Polyester-based micelles and nanoparticles for the parenteral delivery of taxanes. , 2010, Journal of controlled release : official journal of the Controlled Release Society.
[145] J. Rossmann,et al. Ridge Preservation for Implant Therapy: a Review of the Literature , 2014, The open dentistry journal.
[146] Robert Langer,et al. Functional recovery following traumatic spinal cord injury mediated by a unique polymer scaffold seeded with neural stem cells , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[147] A. C. Vieira,et al. Damage-induced hydrolyses modelling of biodegradable polymers for tendons and ligaments repair. , 2015, Journal of biomechanics.
[148] C. Kao,et al. Poly(dopamine) coating of 3D printed poly(lactic acid) scaffolds for bone tissue engineering. , 2015, Materials science & engineering. C, Materials for biological applications.
[149] Gert Storm,et al. Polymeric Micelles in Anticancer Therapy: Targeting, Imaging and Triggered Release , 2010, Pharmaceutical Research.
[150] A. Lendlein,et al. Evaluation of a degradable shape-memory polymer network as matrix for controlled drug release. , 2009, Journal of controlled release : official journal of the Controlled Release Society.
[151] A. M. Reed,et al. Biodegradable polymers for use in surgery — poly(glycolic)/poly(Iactic acid) homo and copolymers: 2. In vitro degradation , 1981 .
[152] Feng Min,et al. Micelle-like nanoparticles of star-branched PEO-PLA copolymers as chemotherapeutic carrier. , 2005, Journal of controlled release : official journal of the Controlled Release Society.
[153] G. Sachdeva,et al. Long circulating PEGylated PLGA nanoparticles of cytarabine for targeting leukemia , 2011, Journal of microencapsulation.