| 1 | Stem Cell-Derived Extracellular Vesicle-Bearing Injectable Hydrogel for Collagen Generation in Dermis | 8.0 | 11 | Citations (PDF) |
| 2 | Recent strategies to develop pH-sensitive injectable hydrogels | 5.7 | 54 | Citations (PDF) |
| 3 | Injectable hydrogel imbibed with camptothecin-loaded mesoporous silica nanoparticles as an implantable sustained delivery depot for cancer therapy | 9.9 | 34 | Citations (PDF) |
| 4 | Highly Prolonged Release of the Cancer Vaccine and Immunomodulator via a Two-Layer Biodegradable Microneedle for Prophylactic Treatment of Metastatic Cancer | 5.1 | 21 | Citations (PDF) |
| 5 | Injectable Hydrogel Based on Protein-Polyester Microporous Network as an Implantable Niche for Active Cell Recruitment | 4.9 | 24 | Citations (PDF) |
| 6 | A pH-activated charge convertible quantum dot as a novel nanocarrier for targeted protein delivery and real-time cancer cell imaging | 5.8 | 11 | Citations (PDF) |
| 7 | Advances in biodegradable and injectable hydrogels for biomedical applications | 11.0 | 240 | Citations (PDF) |
| 8 | Development of pH-Responsive Polymer Coating as an Alternative to Enzyme-Based Stem Cell Dissociation for Cell Therapy | 2.8 | 4 | Citations (PDF) |
| 9 | Alternative method for trypsin-based cell dissociation using poly (amino ester) coating and pH 6.0 PBS | 2.3 | 2 | Citations (PDF) |
| 10 | Sulfonamide functionalized amino acid‐based pH‐ and temperature‐sensitive biodegradable injectable hydrogels: Synthesis, physicochemical characterization and in vivo degradation kinetics | 2.7 | 9 | Citations (PDF) |
| 11 | Therapeutic effects of boronate ester cross-linked injectable hydrogels for the treatment of hepatocellular carcinoma | 5.7 | 24 | Citations (PDF) |
| 12 | Functionalization of Magnetic Nanoparticles with Organic Ligands toward Biomedical Applications | 4.1 | 28 | Citations (PDF) |
| 13 | Development of bioresorbable smart injectable hydrogels based on thermo-responsive copolymer integrated bovine serum albumin bioconjugates for accelerated healing of excisional wounds | 5.8 | 38 | Citations (PDF) |
| 14 | Optimizing Active Tumor Targeting Biocompatible Polymers for Efficient Systemic Delivery of Adenovirus | 4.6 | 6 | Citations (PDF) |
| 15 | CD44-Targeted and Enzyme-Responsive Photo-Cross-Linked Nanogels with Enhanced Stability for In Vivo Protein Delivery | 5.1 | 40 | Citations (PDF) |
| 16 | Temperature and pH-responsive in situ hydrogels of gelatin derivatives to prevent the reoccurrence of brain tumor | 6.6 | 39 | Citations (PDF) |
| 17 | Degradation-regulated architecture of injectable smart hydrogels enhances humoral immune response and potentiates antitumor activity in human lung carcinoma | 12.1 | 107 | Citations (PDF) |
| 18 | pH-Sensitive Polymeric Micelles as the Methotrexate Carrier for Targeting Rheumatoid Arthritis | 2.8 | 10 | Citations (PDF) |
| 19 | Modularly engineered alginate bioconjugate hydrogel as biocompatible injectable scaffold for in situ biomineralization | 12.1 | 68 | Citations (PDF) |
| 20 | Enzyme free cell detachment using pH-responsive poly(amino ester) for tissue regeneration | 5.8 | 15 | Citations (PDF) |
| 21 | Dual activatable self-assembled nanotheranostics for bioimaging and photodynamic therapy | 11.0 | 20 | Citations (PDF) |
| 22 | Recent Advances of pH‐Induced Charge‐Convertible Polymer‐Mediated Inorganic Nanoparticles for Biomedical Applications | 4.1 | 35 | Citations (PDF) |
| 23 | Albumin affibody-outfitted injectable gel enabling extended release of urate oxidase-albumin conjugates for hyperuricemia treatment | 11.0 | 26 | Citations (PDF) |
| 24 | Intracellular delivery of cytochrome C using hypoxia-responsive polypeptide micelles for efficient cancer therapy | 5.8 | 33 | Citations (PDF) |
| 25 | Highly potent intradermal vaccination by an array of dissolving microneedle polypeptide cocktails for cancer immunotherapy | 5.5 | 76 | Citations (PDF) |
| 26 | Microporous Organic Nanoparticles Anchoring CeO2 Materials: Reduced Toxicity and Efficient Reactive Oxygen Species‐Scavenging for Regenerative Wound Healing | 2.5 | 16 | Citations (PDF) |
| 27 | A novel injectable pH–temperature sensitive hydrogel containing chitosan–insulin electrosprayed nanosphere composite for an insulin delivery system in type I diabetes treatment | 5.7 | 37 | Citations (PDF) |
| 28 | Multifunctional hyaluronic acid-mediated quantum dots for targeted intracellular protein delivery and real-time fluorescence imaging | 12.1 | 43 | Citations (PDF) |
| 29 | Physically crosslinked injectable hydrogels for long-term delivery of oncolytic adenoviruses for cancer treatment | 5.7 | 47 | Citations (PDF) |
| 30 | Green preparation of pH-responsive and dual targeting hyaluronic acid nanogels for efficient protein delivery | 5.9 | 28 | Citations (PDF) |
| 31 | Tunable Engineering of Heparinized Injectable Hydrogels for Affinity‐Based Sustained Delivery of Bioactive Factors | 4.1 | 13 | Citations (PDF) |
| 32 | Tumor acidity and CD44 dual targeting hyaluronic acid-coated gold nanorods for combined chemo- and photothermal cancer therapy | 12.1 | 61 | Citations (PDF) |
| 33 | Charge-convertible polymers for improved tumor targeting and enhanced therapy | 12.1 | 72 | Citations (PDF) |
| 34 | Effective systemic siRNA delivery using dual-layer protected long-circulating nanohydrogel containing an inorganic core | 5.7 | 5 | Citations (PDF) |
| 35 | Development of an Injectable Tissue Adhesive Hybrid Hydrogel for Growth Factor-Free Tissue Integration in Advanced Wound Regeneration | 4.7 | 30 | Citations (PDF) |
| 36 | Smart pH-Responsive Nanocube-Controlled Delivery of DNA Vaccine and Chemotherapeutic Drugs for Chemoimmunotherapy | 8.0 | 19 | Citations (PDF) |
| 37 | Hierarchical tumor acidity-responsive self-assembled magnetic nanotheranostics for bimodal bioimaging and photodynamic therapy | 11.0 | 53 | Citations (PDF) |
| 38 | Bioresorbable pH- and temperature-responsive injectable hydrogels-incorporating electrosprayed particles for the sustained release of insulin | 7.1 | 39 | Citations (PDF) |
| 39 | Smart injectable biogels based on hyaluronic acid bioconjugates finely substituted with poly(β-amino ester urethane) for cancer therapy | 5.7 | 30 | Citations (PDF) |
| 40 | Hyaluronic acid decorated pH- and temperature-induced injectable bioconjugates for sustained delivery of bioactive factors and highly efficient wound regeneration | 2.4 | 15 | Citations (PDF) |
| 41 | Simultaneous delivery of DNA vaccine and hydrophobic adjuvant using reducible polyethylenimine-functionalized graphene oxide for activation of dendritic cells | 5.8 | 22 | Citations (PDF) |
| 42 | Triple-, Double-, and Single-Shelled Hollow Spheres of Sulfonated Microporous Organic Network as Drug Delivery Materials | 6.7 | 62 | Citations (PDF) |
| 43 | Amino acid functionalized pH- and temperature-sensitive biodegradable injectable hydrogels: synthesis, physicochemical characterization and in vivo degradation kinetics | 3.3 | 2 | Citations (PDF) |
| 44 | Modularly engineered injectable hybrid hydrogels based on protein-polymer network as potent immunologic adjuvant in vivo | 12.1 | 66 | Citations (PDF) |
| 45 | One-Step Preparation of pH-Responsive Polymeric Nanogels as Intelligent Drug Delivery Systems for Tumor Therapy | 5.1 | 86 | Citations (PDF) |
| 46 | Highly stable, rapid colorimetric detection of carbaryl pesticides by azo coupling reaction with chemical pre-treatment | 7.6 | 48 | Citations (PDF) |
| 47 | A pH- and temperature-responsive bioresorbable injectable hydrogel based on polypeptide block copolymers for the sustained delivery of proteins in vivo | 5.7 | 58 | Citations (PDF) |
| 48 | Folate decorated hollow spheres of microporous organic networks as drug delivery materials | 3.4 | 61 | Citations (PDF) |
| 49 | Microneedle arrays coated with charge reversal pH-sensitive copolymers improve antigen presenting cells-homing DNA vaccine delivery and immune responses | 11.0 | 115 | Citations (PDF) |
| 50 | Smart vaccine delivery based on microneedle arrays decorated with ultra-pH-responsive copolymers for cancer immunotherapy | 12.1 | 187 | Citations (PDF) |
| 51 | Multifunctional and Stimuli‐Responsive Magnetic Nanoparticle‐Based Delivery Systems for Biomedical Applications | 2.2 | 90 | Citations (PDF) |
| 52 | Self-assembled PEGylated albumin nanoparticles (SPAN) as a platform for cancer chemotherapy and imaging | 7.5 | 41 | Citations (PDF) |
| 53 | Bioinspired pH- and Temperature-Responsive Injectable Adhesive Hydrogels with Polyplexes Promotes Skin Wound Healing | 5.1 | 115 | Citations (PDF) |
| 54 | Ultrasmall gold nanosatellite-bearing transformable hybrid nanoparticles for deep tumor penetration | 9.3 | 26 | Citations (PDF) |
| 55 | Enhanced Cancer Vaccination by In Situ Nanomicelle-Generating Dissolving Microneedles | 15.3 | 164 | Citations (PDF) |
| 56 | Polymer ligand-assisted fabrication of multifunctional and redox-responsive self-assembled magnetic nanoclusters for bimodal imaging and cancer treatment | 5.5 | 15 | Citations (PDF) |
| 57 | Polyamide-based pH and temperature-responsive hydrogels: Synthesis and physicochemical characterization | 2.5 | 13 | Citations (PDF) |
| 58 | AgNP and rhEGF-incorporating synergistic polyurethane foam as a dressing material for scar-free healing of diabetic wounds | 4.4 | 51 | Citations (PDF) |
| 59 | Bioengineered robust hybrid hydrogels enrich the stability and efficacy of biological drugs | 11.0 | 46 | Citations (PDF) |
| 60 | Xenotransplantation of layer-by-layer encapsulated non-human primate islets with a specified immunosuppressive drug protocol | 11.0 | 39 | Citations (PDF) |
| 61 | CdSe@ZnS/ZnS quantum dots loaded in polymeric micelles as a pH-triggerable targeting fluorescence imaging probe for detecting cerebral ischemic area | 5.3 | 32 | Citations (PDF) |
| 62 | Chitosan-based composite hydrogels for biomedical applications | 2.8 | 84 | Citations (PDF) |
| 63 | Multifunctional and Redox-Responsive Self-Assembled Magnetic Nanovectors for Protein Delivery and Dual-Modal Imaging | 8.0 | 55 | Citations (PDF) |
| 64 | Bioresorbable polypeptide-based comb-polymers efficiently improves the stability and pharmacokinetics of proteins in vivo | 5.7 | 52 | Citations (PDF) |
| 65 | Temperature and pH-sensitive injectable hydrogels based on poly(sulfamethazine carbonate urethane) for sustained delivery of cationic proteins | 4.1 | 44 | Citations (PDF) |
| 66 | Engineering highly swellable dual-responsive protein-based injectable hydrogels: the effects of molecular structure and composition in vivo | 5.7 | 25 | Citations (PDF) |
| 67 | Colloidal Mesoporous Silica Nanoparticles as Strong Adhesives for Hydrogels and Biological Tissues | 8.0 | 78 | Citations (PDF) |
| 68 | Injectable hydrogel-incorporated cancer cell-specific cisplatin releasing nanogels for targeted drug delivery | 5.5 | 77 | Citations (PDF) |
| 69 | Injectable hydrogels for sustained release of therapeutic agents | 11.0 | 242 | Citations (PDF) |
| 70 | Inverse Photonic Glasses by Packing Bidisperse Hollow Microspheres with Uniform Cores | 8.0 | 61 | Citations (PDF) |
| 71 | Multifunctional Polymer Ligand Interface CdZnSeS/ZnS Quantum Dot/Cy3-Labeled Protein Pairs as Sensitive FRET Sensors | 8.0 | 45 | Citations (PDF) |
| 72 | Polymer-Based and pH-Sensitive Nanobiosensors for Imaging and Therapy of Acidic Pathological Areas | 3.7 | 20 | Citations (PDF) |
| 73 | Sulfamethazine-based pH-sensitive hydrogels with potential application for transcatheter arterial chemoembolization therapy | 9.3 | 72 | Citations (PDF) |
| 74 | Pancreatic cancer therapy using an injectable nanobiohybrid hydrogel | 4.4 | 58 | Citations (PDF) |
| 75 | A novel sulfamethazine-based pH-sensitive copolymer for injectable radiopaque embolic hydrogels with potential application in hepatocellular carcinoma therapy | 3.9 | 31 | Citations (PDF) |
| 76 | Long-Circulating Au-TiO2Nanocomposite as a Sonosensitizer for ROS-Mediated Eradication of Cancer | 8.7 | 397 | Citations (PDF) |
| 77 | pH-Sensitive sulfamethazine-based hydrogels as potential embolic agents for transcatheter vascular embolization | 5.5 | 44 | Citations (PDF) |
| 78 | Binding interactions between lysozyme and injectable hydrogels derived from albumin-pH/thermo responsive poly(amino urethane) conjugates in aqueous solution | 5.3 | 3 | Citations (PDF) |
| 79 | Stimuli‐Sensitive Injectable Hydrogels Based on Polysaccharides and Their Biomedical Applications | 4.1 | 172 | Citations (PDF) |
| 80 | Gold-Nanoclustered Hyaluronan Nano-Assemblies for Photothermally Maneuvered Photodynamic Tumor Ablation | 15.3 | 106 | Citations (PDF) |
| 81 | Poly(amino carbonate urethane)-based biodegradable, temperature and pH-sensitive injectable hydrogels for sustained human growth hormone delivery | 3.4 | 71 | Citations (PDF) |
| 82 | Intraarterial gelation of injectable cationic pH/temperature-sensitive radiopaque embolic hydrogels in a rabbit hepatic tumor model and their potential application for liver cancer treatment | 4.4 | 25 | Citations (PDF) |
| 83 | Nanoparticles based on quantum dots and a luminol derivative: implications for in vivo imaging of hydrogen peroxide by chemiluminescence resonance energy transfer | 3.4 | 80 | Citations (PDF) |
| 84 | Construction of redox/pH dual stimuli-responsive PEGylated polymeric micelles for intracellular doxorubicin delivery in liver cancer | 3.9 | 62 | Citations (PDF) |
| 85 | pH-Responsive biodegradable polymeric micelles with anchors to interface magnetic nanoparticles for MR imaging in detection of cerebral ischemic area | 5.0 | 72 | Citations (PDF) |
| 86 | Poly(ethylene glycol)-b-poly(lysine) copolymer bearing nitroaromatics for hypoxia-sensitive drug delivery | 9.3 | 90 | Citations (PDF) |
| 87 | Stimuli-responsive polymersomes for cancer therapy | 5.7 | 132 | Citations (PDF) |
| 88 | Redox- and pH-Sensitive Polymeric Micelles Based on Poly(β-amino ester)-Grafted Disulfide Methylene Oxide Poly(ethylene glycol) for Anticancer Drug Delivery | 5.0 | 90 | Citations (PDF) |
| 89 | Enhancing neurogenesis and angiogenesis with target delivery of stromal cell derived factor-1α using a dual ionic pH-sensitive copolymer | 12.1 | 102 | Citations (PDF) |
| 90 | Nanostructure controlled sustained delivery of human growth hormone using injectable, biodegradable, pH/temperature responsive nanobiohybrid hydrogel | 5.0 | 58 | Citations (PDF) |
| 91 | Bioreducible core-crosslinked hyaluronic acid micelle for targeted cancer therapy | 11.0 | 104 | Citations (PDF) |
| 92 | Tuning Surface Charge and PEGylation of Biocompatible Polymers for Efficient Delivery of Nucleic Acid or Adenoviral Vector | 3.8 | 19 | Citations (PDF) |
| 93 | Injectable polymeric hydrogels for the delivery of therapeutic agents: A review | 5.9 | 222 | Citations (PDF) |
| 94 | Gold-installed biostable nanocomplexes for tumor-targeted siRNA delivery in vivo | 3.4 | 16 | Citations (PDF) |
| 95 | Preclinical investigation for developing injectable fiducial markers using a mixture of BaSO4 and biodegradable polymer for proton therapy | 3.1 | 9 | Citations (PDF) |
| 96 | Heparin-based temperature-sensitive injectable hydrogels for protein delivery | 5.5 | 67 | Citations (PDF) |
| 97 | Polyurethane foam containing rhEGF as a dressing material for healing diabetic wounds: Synthesis, characterization, in vitro and in vivo studies | 5.3 | 70 | Citations (PDF) |
| 98 | Evaluation of AgHAP-containing polyurethane foam dressing for wound healing: synthesis, characterization, in vitro and in vivo studies | 5.5 | 63 | Citations (PDF) |
| 99 | Clinical Outcomes of Semiconstrained Total Elbow Arthroplasty in Patients Who Were Forty Years of Age or Younger | 3.3 | 30 | Citations (PDF) |
| 100 | Injectable hydrogels based on poly(amino urethane) conjugated bovine serum albumin | 2.5 | 11 | Citations (PDF) |
| 101 | Hypoxia-responsive polymeric nanoparticles for tumor-targeted drug delivery | 12.1 | 341 | Citations (PDF) |
| 102 | Biostable and bioreducible polymersomes for intracellular delivery of doxorubicin | 3.9 | 27 | Citations (PDF) |
| 103 | Bioreducible Carboxymethyl Dextran Nanoparticles for Tumor‐Targeted Drug Delivery | 8.8 | 108 | Citations (PDF) |
| 104 | Target-specific delivery of siRNA by stabilized calcium phosphate nanoparticles using dopa–hyaluronic acid conjugate | 11.0 | 122 | Citations (PDF) |
| 105 | In situ gelling pH- and temperature-sensitive biodegradable block copolymer hydrogels for drug delivery | 11.0 | 314 | Citations (PDF) |
| 106 | Polyplex-releasing microneedles for enhanced cutaneous delivery of DNA vaccine | 11.0 | 88 | Citations (PDF) |
| 107 | A stress-responsive Escherichia coli protein, CysQ is a highly effective solubility enhancer for aggregation-prone heterologous proteins | 1.2 | 4 | Citations (PDF) |
| 108 | Synthesis of Mycoplasma arginine deiminase in E. coli using stress-responsive proteins | 3.6 | 12 | Citations (PDF) |
| 109 | Signal enhancement strategy for a micro-arrayed polydiacetylene (PDA) immunosensor using enzyme-catalyzed precipitation | 9.6 | 22 | Citations (PDF) |
| 110 | Reaction kinetics for the synthesis of oligomeric poly(lactic acid) | 2.8 | 19 | Citations (PDF) |
| 111 | A Biodegradable Polymersome with pH-Tuning On-Off Membrane Based on Poly(β-amino ester) for Drug Delivery | 4.0 | 17 | Citations (PDF) |
| 112 | pH-sensitive polymeric micelles based on amphiphilic polypeptide as smart drug carriers | 2.3 | 22 | Citations (PDF) |
| 113 | Bioreducible hyaluronic acid conjugates as siRNA carrier for tumor targeting | 11.0 | 66 | Citations (PDF) |
| 114 | pH-triggered unimer/vesicle-transformable and biodegradable polymersomes based on PEG-b-PCL–grafted poly(β-amino ester) for anti-cancer drug delivery | 4.1 | 30 | Citations (PDF) |
| 115 | Environmental pH-sensitive polymeric micelles for cancer diagnosis and targeted therapy | 11.0 | 189 | Citations (PDF) |
| 116 | Stimulus‐Sensitive Polymeric Nanoparticles and Their Applications as Drug and Gene Carriers | 8.8 | 145 | Citations (PDF) |
| 117 | Therapeutic efficacy of a systemically delivered oncolytic adenovirus – Biodegradable polymer complex | 12.1 | 44 | Citations (PDF) |
| 118 | Albumin-Conjugated pH/Thermo Responsive Poly(amino urethane) Multiblock Copolymer as an Injectable Hydrogel for Protein Delivery | 4.0 | 25 | Citations (PDF) |
| 119 | Synthesis, Characteristics and Potential Application of Poly(β-Amino Ester Urethane)-Based Multiblock Co-Polymers as an Injectable, Biodegradable and pH/Temperature-Sensitive Hydrogel System | 3.4 | 28 | Citations (PDF) |
| 120 | Dually cationic and anionic pH/temperature-sensitive injectable hydrogels and potential application as a protein carrier | 3.4 | 38 | Citations (PDF) |
| 121 | Bioreducible polymersomes for intracellular dual-drug delivery | 7.3 | 89 | Citations (PDF) |
| 122 | The use of pH-sensitive positively charged polymeric micelles for protein delivery | 12.1 | 108 | Citations (PDF) |
| 123 | Synthesis and characterization of poly(amino urea urethane)-based block copolymer and its potential application as injectable pH/temperature-sensitive hydrogel for protein carrier | 4.1 | 27 | Citations (PDF) |
| 124 | Controlling the properties of poly(amino ester urethane)–poly(ethylene glycol)–poly(amino ester urethane) triblock copolymer pH/temperature-sensitive hydrogel | 2.1 | 22 | Citations (PDF) |
| 125 | Synthesis and evaluation of biotin-conjugated pH-responsive polymeric micelles as drug carriers | 4.8 | 81 | Citations (PDF) |
| 126 | Synthesis and characterization of pH-Responsive Poly(2-hydroxyethyl aspartamide)-g-Poly(β-amino ester) graft copolymer micelles as potential drug carriers | 2.8 | 3 | Citations (PDF) |
| 127 | Controlled release of human growth hormone from a biodegradable pH/temperature-sensitive hydrogel system | 2.6 | 61 | Citations (PDF) |
| 128 | Biodegradable oligo(amidoamine/β-amino ester) hydrogels for controlled insulin delivery | 2.6 | 45 | Citations (PDF) |
| 129 | Sustained delivery of doxorubicin using biodegradable pH/temperature-sensitive poly(ethylene glycol)-poly(β-amino ester urethane) multiblock copolymer hydrogels | 2.6 | 76 | Citations (PDF) |
| 130 | pH-responsive polymeric micelle based on PEG-poly(β-amino ester)/(amido amine) as intelligent vehicle for magnetic resonance imaging in detection of cerebral ischemic area | 11.0 | 118 | Citations (PDF) |
| 131 | pH‐Sensitive Pentablock Copolymer Nanocapsules as Nontoxic and Efficient Gene Carriers | 4.0 | 10 | Citations (PDF) |
| 132 | Evaluation of pH‐Sensitive Poly(β‐amino ester)‐graft‐poly(ethylene glycol) and its Usefulness as a pH‐Sensor and Protein Carrier | 4.0 | 12 | Citations (PDF) |
| 133 | Enzyme-mediated cross-linking of Pluronic copolymer micelles for injectable and in situ forming hydrogels | 9.3 | 77 | Citations (PDF) |
| 134 | Biodegradable pH/temperature-sensitive oligo(β-amino ester urethane) hydrogels for controlled release of doxorubicin | 9.3 | 61 | Citations (PDF) |
| 135 | Synthesis and characterization of an amphiphilic graft polymer and its potential as a pH-sensitive drug carrier | 4.1 | 31 | Citations (PDF) |
| 136 | Controlling the degradation of pH/temperature-sensitive injectable hydrogels based on poly(β-amino ester) | 2.8 | 30 | Citations (PDF) |
| 137 | Bioadhesive PAA-PEG-PAA triblock copolymer hydrogels for drug delivery in oral cavity | 2.8 | 30 | Citations (PDF) |
| 138 | Picolyamine based pH/temperature sensitive hydrogels | 2.8 | 14 | Citations (PDF) |
| 139 | Biodegradable pH- and temperature-sensitive multiblock copolymer hydrogels based on poly(amino-ester urethane)s | 2.8 | 27 | Citations (PDF) |
| 140 | pH- and temperature-sensitive PCL-grafted poly(β-amino ester)-poly(ethylene glycol)-poly(β-amino ester) copolymer hydrogels | 2.8 | 15 | Citations (PDF) |
| 141 | The fatty acid conjugated exendin-4 analogs for type 2 antidiabetic therapeutics | 11.0 | 76 | Citations (PDF) |
| 142 | Tumoral acidic pH-responsive MPEG-poly(β-amino ester) polymeric micelles for cancer targeting therapy | 11.0 | 283 | Citations (PDF) |
| 143 | In vitro degradability and stability of hydrophobically modified pH‐sensitive micelles using MPEG‐grafted poly(β‐amino ester) for efficient encapsulation of paclitaxel | 2.7 | 13 | Citations (PDF) |
| 144 | pH/temperature-sensitive 4-arm poly(ethylene glycol)-poly(amino urethane) copolymer hydrogels | 4.1 | 36 | Citations (PDF) |
| 145 | pH‐Sensitive Nanoflash for Tumoral Acidic pH Imaging in Live AnimalsSmall, 2010, 6, 2539-2544 | 11.5 | 53 | Citations (PDF) |
| 146 | Magnetite‐Nanoparticle‐Encapsulated pH‐Responsive Polymeric Micelle as an MRI Probe for Detecting Acidic Pathologic AreasSmall, 2010, 6, 1201-1204 | 11.5 | 99 | Citations (PDF) |
| 147 | Tumor-Targeting Peptide Conjugated pH-Responsive Micelles as a Potential Drug Carrier for Cancer Therapy | 3.8 | 226 | Citations (PDF) |
| 148 | Biodegradable and pH-sensitive polymersome with tuning permeable membrane for drug delivery carrier | 3.4 | 81 | Citations (PDF) |
| 149 | In vivo tumor diagnosis and photodynamic therapy via tumoral pH-responsive polymeric micelles | 3.4 | 181 | Citations (PDF) |
| 150 | An acidic pH-triggered polymeric micelle for dual-modality MR and optical imaging | 7.3 | 41 | Citations (PDF) |
| 151 | Oligo(amidoamine)s hydrogels with tunable gel properties | 3.4 | 32 | Citations (PDF) |
| 152 | Biodegradable star-shaped poly(ethylene glycol)-poly(β-amino ester) cationic pH/temperature-sensitive copolymer hydrogels | 2.1 | 31 | Citations (PDF) |
| 153 | Controlled release of insulin from pH/temperature-sensitive injectable pentablock copolymer hydrogel | 11.0 | 147 | Citations (PDF) |
| 154 | Antitumor activity of EGFR targeted pH-sensitive immunoliposomes encapsulating gemcitabine in A549 xenograft nude mice | 11.0 | 147 | Citations (PDF) |
| 155 | Formation of poly(ethylene glycol)-poly(ε-caprolactone) Nanoparticles via Nanoprecipitation | 2.8 | 26 | Citations (PDF) |
| 156 | Evaluation of the anti-tumor effects of paclitaxel-encapsulated pH-sensitive micelles | 2.8 | 13 | Citations (PDF) |
| 157 | Synthesis and characterization of poly(l-glutamic acid)-block-poly(l-phenylalanine) | 4.1 | 35 | Citations (PDF) |
| 158 | Molecular design of novel pH/temperature-sensitive hydrogels | 4.1 | 48 | Citations (PDF) |
| 159 | pH-sensitive and bioadhesive poly(β-amino ester)–poly(ethylene glycol)–poly(β-amino ester) triblock copolymer hydrogels with potential for drug delivery in oral mucosal surfaces | 4.1 | 71 | Citations (PDF) |
| 160 | Injectable
In Situ
–Forming pH/Thermo-Sensitive Hydrogel for Bone Tissue Engineering | 2.7 | 133 | Citations (PDF) |
| 161 | Injectable Poly(amidoamine)-poly(ethylene glycol)-poly(amidoamine) Triblock Copolymer Hydrogel with Dual Sensitivities: pH and Temperature | 5.1 | 73 | Citations (PDF) |
| 162 | Micelle formation and sol–gel transition behavior of comb‐like amphiphilic poly((PLGA‐b‐PEG)MA) copolymers | 2.3 | 18 | Citations (PDF) |
| 163 | RAFT synthesis of amphiphilic (A‐ran‐B)‐b‐C diblock copolymers with tunable pH‐sensitivity | 2.3 | 27 | Citations (PDF) |
| 164 | Lower critical solution temperature behavior of amphiphilic copolymers based on polyaspartamide derivatives | 2.7 | 10 | Citations (PDF) |
| 165 | In situ gelling aqueous solutions of pH- and temperature-sensitive poly(ester amino urethane)s | 4.1 | 46 | Citations (PDF) |
| 166 | Surface modification of poly(l-lactide) electrospun fibers with nanocrystal hydroxyapatite for engineered scaffold applications | 5.8 | 50 | Citations (PDF) |
| 167 | pH- and temperature-sensitive multiblock copolymer hydrogels composed of poly(ethylene glycol) and poly(amino urethane) | 4.1 | 84 | Citations (PDF) |
| 168 | In situ gelling stimuli-sensitive block copolymer hydrogels for drug delivery | 11.0 | 816 | Citations (PDF) |
| 169 | Preparation and properties of modified PHEMA hydrogel with sulfonated PEG graft | 2.7 | 18 | Citations (PDF) |
| 170 | pH- and temperature-sensitive, injectable, biodegradable block copolymer hydrogels as carriers for paclitaxel | 4.8 | 128 | Citations (PDF) |
| 171 | Controlled protein release from electrospun biodegradable fiber mesh composed of poly(ɛ-caprolactone) and poly(ethylene oxide) | 4.8 | 178 | Citations (PDF) |
| 172 | Synthesis and pH-dependent micellization of 2-(diisopropylamino)ethyl methacrylate based amphiphilic diblock copolymers via RAFT polymerization | 4.1 | 56 | Citations (PDF) |
| 173 | Tumoral acidic extracellular pH targeting of pH-responsive MPEG-poly(β-amino ester) block copolymer micelles for cancer therapy | 11.0 | 294 | Citations (PDF) |
| 174 | Synthesis and characterization of MPEG-b-PDPA amphiphilic block copolymer via atom transfer radical polymerization and its pH-dependent micellar behavior | 2.8 | 23 | Citations (PDF) |
| 175 | pH-sensitivity control of PEG-poly(β-amino ester) block copolymer micelle | 2.8 | 44 | Citations (PDF) |
| 176 | Synthesis and characterization of pH/temperature-sensitive block copolymers via atom transfer radical polymerization | 4.1 | 45 | Citations (PDF) |
| 177 | In vitro Release and in vivo Anti-tumor Efficacy of Doxorubicin from Biodegradable Temperature-sensitive Star-shaped PLGA-PEG Block Copolymer Hydrogel | 2.5 | 35 | Citations (PDF) |
| 178 | Biodegradability and biocompatibility of a pH- and thermo-sensitive hydrogel formed from a sulfonamide-modified poly(ε-caprolactone-co-lactide)–poly(ethylene glycol)–poly(ε-caprolactone-co-lactide) block copolymer | 12.1 | 139 | Citations (PDF) |
| 179 | Sulfonamide-Based pH- and Temperature-Sensitive Biodegradable Block Copolymer Hydrogels | 5.1 | 120 | Citations (PDF) |
| 180 | Synthesis of lactide from oligomeric PLA: Effects of temperature, pressure, and catalyst | 2.8 | 97 | Citations (PDF) |
| 181 | pH/temperature sensitive poly(ethylene glycol)-based biodegradable polyester block copolymer hydrogels | 4.1 | 60 | Citations (PDF) |
| 182 | Gas foamed open porous biodegradable polymeric microspheres | 12.1 | 331 | Citations (PDF) |
| 183 | Novel pH Sensitive Block Copolymer Micelles for Solvent Free Drug Loading | 4.0 | 68 | Citations (PDF) |
| 184 | pH-Responsive PEG-Poly(β-amino ester) Block Copolymer Micelles with a Sharp Transition | 4.1 | 99 | Citations (PDF) |
| 185 | Radiosensitization of tumor cells by modulation of ATM kinase | 2.2 | 17 | Citations (PDF) |
| 186 | pH-induced micellization of biodegradable block copolymers containing sulfamethazine | 2.8 | 7 | Citations (PDF) |
| 187 | Synthesis and pH-Dependent micellization of a novel block copolymer containing s-Triazine linkage | 2.8 | 2 | Citations (PDF) |
| 188 | Synthesis and pH-dependent micellization of sulfonamide-modified diblock copolymer | 2.8 | 5 | Citations (PDF) |
| 189 | Modulation of poly(β-amino ester) pH-sensitive polymers by molecular weight control | 2.8 | 42 | Citations (PDF) |
| 190 | Electrospun dual-porosity structure and biodegradation morphology of Montmorillonite reinforced PLLA nanocomposite scaffolds | 12.1 | 285 | Citations (PDF) |
| 191 | A facile preparation of highly interconnected macroporous PLGA scaffolds by liquid–liquid phase separation II | 4.1 | 51 | Citations (PDF) |
| 192 | Novel Injectable pH and Temperature Sensitive Block Copolymer Hydrogel | 5.1 | 233 | Citations (PDF) |
| 193 | Immobilization of cell adhesive RGD peptide onto the surface of highly porous biodegradable polymer scaffolds fabricated by a gas foaming/salt leaching method | 12.1 | 133 | Citations (PDF) |
| 194 | Effect of PEG–PLLA diblock copolymer on macroporous PLLA scaffolds by thermally induced phase separation | 12.1 | 144 | Citations (PDF) |
| 195 | Photo-crosslinkable, thermo-sensitive and biodegradable Pluronic hydrogels for sustained release of protein | 3.4 | 58 | Citations (PDF) |
| 196 | pH- and temperature-sensitive bifunctional hydrogels ofN-isopropylacrylamide and sulfadimethoxine monomer | 2.8 | 11 | Citations (PDF) |
| 197 | Characterization of poly(ethylene oxide)-b-poly(L-lactide) block copolymer by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry | 2.8 | 15 | Citations (PDF) |
| 198 | Thermal and mechanical characteristics of poly(l-lactic acid) nanocomposite scaffold | 12.1 | 258 | Citations (PDF) |
| 199 | A facile preparation of highly interconnected macroporous poly(d,l-lactic acid-co-glycolic acid) (PLGA) scaffolds by liquid–liquid phase separation of a PLGA–dioxane–water ternary system | 4.1 | 114 | Citations (PDF) |
| 200 | HIGHLY TRANSPARENT AND THERMALLY STABLE PHOTOREACTIVE POLYMER | 1.2 | 2 | Citations (PDF) |
| 201 | Poly(D,L-lactic acid-co-glycolic acid)-b-poly(ethylene glycol)-b-poly (D,L-lactic acid-co-glycolic acid) triblock copolymer and thermoreversible phase transition in water | 3.4 | 151 | Citations (PDF) |
| 202 | Thermoresponsive phase transitions of PLA-block-PEO-block-PLA triblock stereo-copolymers in aqueous solution | 2.8 | 34 | Citations (PDF) |
| 203 | A novel thermosensitive soluble polypyrrole composite | 4.5 | 10 | Citations (PDF) |
| 204 | Drug-releasing kinetics of MPEG/PLLA block copolymer micelles with different PLLA block lengths | 2.7 | 21 | Citations (PDF) |
| 205 | Preparation of a Macroporous Poly(L-lactide) Scaffold by Liquid-Liquid Phase Separation of a PLLA/1,4-Dioxane/Water Ternary System in the Presence of NaCl | 4.1 | 31 | Citations (PDF) |
| 206 | Thermoreversible gelation of biodegradable poly(ε-caprolactone) and poly(ethylene glycol) multiblock copolymers in aqueous solutions | 11.0 | 126 | Citations (PDF) |
| 207 | A novel conducting soluble polypyrrole composite with a polymeric co-dopant | 4.5 | 50 | Citations (PDF) |
| 208 | Electroactive and temperature-sensitive hydrogel composites | 2.7 | 13 | Citations (PDF) |
| 209 | Thermoreversible gelation of poly(ethylene oxide) biodegradable polyester block copolymers | 2.3 | 124 | Citations (PDF) |
| 210 | Thermoreversible gelation of poly(ethylene oxide) biodegradable polyester block copolymers. II | 2.3 | 78 | Citations (PDF) |
| 211 | Polypyrrole/thermally sensitive polyelectrolyte composite (I) | 4.5 | 14 | Citations (PDF) |
| 212 | The Effect of Functional Group Content on Poly(ethylene terephthalate)/High Density Polyethylene Blends Compatibilized with Poly(ethylene-co-acrylic acid) | 2.5 | 15 | Citations (PDF) |
| 213 | Biodegradable block copolymers as injectable drug-delivery systems | 37.9 | 1,946 | Citations (PDF) |
| 214 | Gas permeation behavior of PS/PPO blends | 8.4 | 23 | Citations (PDF) |
| 215 | Drug releasing characteristics of thermo- and pH-sensitive interpenetrating polymer networks based on poly (N-isopropylacrylamide) | 2.7 | 77 | Citations (PDF) |
| 216 | Structure development via reaction-induced phase separation in tetrafunctional epoxy/polysulfone blends | 2.7 | 40 | Citations (PDF) |
| 217 | Thermal stability and compatibility of epoxy/polycarbonate and epoxy/tetramethyl polycarbonate blends | 2.7 | 11 | Citations (PDF) |
| 218 | Small-angle x-ray scattering and pulsed NMR studies of polyurethane interpenetrating polymer networks | 5.0 | 16 | Citations (PDF) |
| 219 | Miscibility in Copolymer Blends of Poly(vinyl chloride-co-vinyl acetate) and Poly(methyl-co-hexyl acrylate). | 2.5 | 2 | Citations (PDF) |
| 220 | Gas transport in polyurethane-polystyrene interpenetrating polymer network membranes. II. Effect of crosslinked state and annealing | 8.4 | 21 | Citations (PDF) |
| 221 | Polyurethane–polystyrene interpenetrating polymer networks synthesized at low temperature: Effect of crosslinking level | 2.7 | 14 | Citations (PDF) |
| 222 | Gas transport in polyurethane–polystyrene interpenetrating polymer network membranes | 3.3 | 9 | Citations (PDF) |
| 223 | Preparation of transparent conducting acrylic composite and its electrical properties | 2.7 | 7 | Citations (PDF) |
| 224 | Miscibility of Polybenzimidazole/Polyimidesulfone and Related Copolymers Blends | 2.5 | 23 | Citations (PDF) |
| 225 | Polyurethane-polystyrene interpenetrating polymer networks: effect of photopolymerization temperature | 5.0 | 26 | Citations (PDF) |
| 226 | Polyurethane interpenetrating polymer networks (IPN's) synthesized under high pressure. 4. Compositional variation of polyurethane-polystyrene IPN's and linear blends | 5.0 | 43 | Citations (PDF) |
| 227 | Polyurethane interpenetrating polymer networks (IPN's) synthesized under high pressure. 3. Morphology and Tg behavior of polyurethane-polystyrene semi-IPN's and linear blends | 5.0 | 21 | Citations (PDF) |
| 228 | Polyurethane Interpenetrating Polymer-Networks (IPN's) synthesized under high pressure. 2. Morphology and Tg behavior of polyurethane-polystyrene IPN's | 5.0 | 34 | Citations (PDF) |
| 229 | Polyurethane interpenetrating polymer networks (IPN's) synthesized under high pressure. 1. Morphology and Tg behavior of polyurethane-poly(methyl methacrylate) IPN's | 5.0 | 42 | Citations (PDF) |
| 230 | Recent developments and prospects of inorganic nanozymes for biomedical applications | 5.7 | 4 | Citations (PDF) |
| 231 | Injectable hydrogels incorporating cell-derived nanocarriers for tumor therapy and regenerative medicine | 11.0 | 0 | Citations (PDF) |