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Biomaterials, ISSN 0142-9612, 2016, Volume 77, pp. 44 - 52
Abstract N-cadherin is considered to be the key factor in directing cell–cell interactions during mesenchymal condensation, which is essential to osteogenesis.... 
Advanced Basic Science | Dentistry | Hyaluronic acid hydrogels | Bio-functionalization of biomaterials | Tissue engineering | Mesenchymal stem cells | MATERIALS SCIENCE, BIOMATERIALS | OSTEOBLAST DIFFERENTIATION | ENGINEERING, BIOMEDICAL | MSC CHONDROGENESIS | MESENCHYMAL STEM-CELLS | HYALURONIC-ACID | IN-VITRO | MEDIATED ADHESIONS | BONE MASS | EXPRESSION | MECHANOTRANSDUCTION | CALVARIA | Hydrogels | Antigens, CD - biosynthesis | Humans | Alkaline Phosphatase - metabolism | Osteocalcin - genetics | Molecular Sequence Data | Hyaluronic Acid - pharmacology | Cadherins - biosynthesis | Peptides - administration & dosage | Mesenchymal Stromal Cells - cytology | Heterografts | Methacrylates - pharmacology | Amino Acid Sequence | Mesenchymal Stromal Cells - drug effects | Hyaluronic Acid - administration & dosage | Osteocalcin - biosynthesis | Collagen Type I - metabolism | Stem Cell Niche | Tissue Engineering - methods | Osteogenesis - drug effects | Cells, Cultured | Methacrylates - administration & dosage | Mesenchymal Stromal Cells - metabolism | Transplantation, Heterotopic | Cadherins - physiology | Cell Adhesion | Peptides - pharmacology | Animals | Core Binding Factor Alpha 1 Subunit - biosynthesis | Mice, Nude | Hyaluronic Acid - analogs & derivatives | Antigens, CD - physiology | Mice | Porosity | Oligopeptides - pharmacology | Core Binding Factor Alpha 1 Subunit - genetics | Mesenchymal Stem Cell Transplantation | Peptides | Hyaluronic acid | Collagen | Stem cells | Biomedical engineering | Biological products | Phosphatases | Mechanical engineering | Surgical implants | Biomedical materials | Biocompatibility | Hydroxyapatite | Gene expression | Adhesion
Journal Article
Nanomedicine: Nanotechnology, Biology, and Medicine, ISSN 1549-9634, 2012, Volume 8, Issue 1, pp. 71 - 80
Abstract The in vivo efficacy of doxorubicin (DOX)-loaded poly(γ-benzyl l -glutamate)- block -hyaluronan (PBLG23 - b -HYA10 )-based polymersomes (PolyDOX) was... 
Internal Medicine | Hyaluronan | Ehrlich ascites tumor (EAT) | Antitumor activity | Doxorubicin | Polymersomes | MEDICINE, RESEARCH & EXPERIMENTAL | BLOCK-COPOLYMERS | SOLID TUMORS | DRUG-DELIVERY | RECEPTOR | NANOSCIENCE & NANOTECHNOLOGY | VASCULAR-PERMEABILITY | CANCER | CARRIERS | PACLITAXEL | LIPOSOMAL DOXORUBICIN | ENDOCYTOSIS HARE | Doxorubicin - blood | Doxorubicin - therapeutic use | Drug Carriers - adverse effects | Hyaluronic Acid - therapeutic use | Nanoparticles - chemistry | Antineoplastic Agents - chemical synthesis | Humans | Drug Carriers - administration & dosage | Polyglutamic Acid - administration & dosage | Antineoplastic Agents - therapeutic use | Antineoplastic Agents - administration & dosage | Nanoparticles - adverse effects | Drug Carriers - chemistry | Polyglutamic Acid - analogs & derivatives | Antineoplastic Agents - adverse effects | Female | Hyaluronic Acid - blood | Hyaluronic Acid - adverse effects | Doxorubicin - administration & dosage | Endocytosis - immunology | Technetium - chemistry | Rabbits | Hyaluronic Acid - administration & dosage | Hyaluronic Acid - chemistry | Carcinoma, Ehrlich Tumor - drug therapy | Doxorubicin - chemical synthesis | Polyglutamic Acid - blood | Polyglutamic Acid - chemistry | Animals | Hyaluronic Acid - analogs & derivatives | Antineoplastic Agents - blood | Hyaluronan Receptors - immunology | Mice | Mice, Inbred BALB C | Nanoparticles - administration & dosage | Polyglutamic Acid - therapeutic use | Neoplasms, Experimental - drug therapy | Doxorubicin - adverse effects | Polyglutamic Acid - adverse effects | Anthracyclines | Ascites | Hyaluronic acid | Tumors | Polymers | Chemical Sciences
Journal Article
2009, 1st ed., ISBN 9780123741783, xxvii, 426
Hyaluronan biology is being recognized as an important regulator of cancer progression. Paradoxically, both hyaluronan (HA) and hyaluronidases, the enzymes... 
Pathophysiology | Hyaluronic acid | Carcinogenesis
Book
Colloids and surfaces, B, Biointerfaces, ISSN 0927-7765, 2016, Volume 140, pp. 392 - 402
Journal Article
Journal Article
Acta pharmaceutica Sinica. B, ISSN 2211-3835, 01/2018, Volume 8, Issue 1, pp. 34 - 50
Natural biomacromolecules have attracted increased attention as carriers in biomedicine in recent years because of their inherent biochemical and biophysical... 
Drug delivery | Tissue engineering | Polysaccharide | Biomacromolecule | Protein | DOXORUBICIN-TRANSFERRIN CONJUGATE | GENE DELIVERY | HUMAN SERUM-ALBUMIN | LOW-DENSITY-LIPOPROTEIN | SILK FIBROIN | HUMAN BREAST-CANCER | HYALURONIC-ACID NANOGELS | NEONATAL FC-RECEPTOR | MOLECULAR-WEIGHT HEPARIN | IN-VIVO | PHARMACOLOGY & PHARMACY | BP, cyclodextrin–bisphosphonate complexes | DOXO-EMCH, (6-maleimidocaproyl)hydrazone derivative of doxorubicin | GO, grapheme oxide | ECM, extracellular matrix | LDLR, low density lipoprotein receptor | ACM, aclacinomycin | HA-CA, catechol-modified hyaluronic acid | RGD, Arg–Gly–Asp peptide | TfR, transferrin receptor | LMWH, low molecular weight heparin | CIA, collagen-induced arthritis | MSA, mouse serum albumin | HA, hyaluronic acid | CD-NPs, amphiphilic MMA–tBA β-CD star copolymers that are capable of forming nanoparticles | HA, recombinant human fibroblast growth factor type 2 in a hyaluronic acid carrier | CD, cyclodextrin | LDL, low density lipoprotein | CD-g-CS, chitosan grafted with β-cyclodextrin | LDV, leucine–aspartic acid–valine | ART, artemisinin | FcRn, neonatal Fc receptor | GAG, glycosaminoglycan | VEGF, vascular endothelial growth factor | ADH, adipic dihydrazide | CC-HAM, core-crosslinked polymeric micelle based hyaluronic acid | PTX, paclitaxel | PEC, polyelectrolyte | SPARC, secreted protein acidic and rich in cysteine | HCF, heparin-conjugated fibrin | TRAIL, tumor-necrosis factor-related apoptosis-inducing ligand | GC-DOX, glycol–chitosan–doxorubicin conjugate | GDNF, glial-derived neurotrophic factor | BMP-2, bone morphogenetic protein-2 | VLDL, very low density lipoprotein | ASF, Antheraea mylitta silk fibroin | ATS, artesunate | MTX–HSA, methotrexate–albumin conjugate | ABD, albumin binding domain | GSH, glutathione | EMT, epithelial mesenchymal transition | RES, reticuloendothelial system | CM, collagen matrices | HDL, high density lipoprotein | HEK, human embryonic kidney | SFNP, silk fibroin nanoparticle | DOX–TRF, doxorubincin–transferrin conjugate | Review | OP-Gel-NS, oxidized pectin-gelatin-nanosliver | pDNA, plasmid DNA | BCEC, brain capillary endothelial cells | EPR, enhanced permeability and retention | INF, interferon | Tf, transferrin | DTX-HPLGA, HA coated PLGA nanoparticulate docetaxel | BSA, bovine serum albumin | BSF, Bombyx mori silk fibroin | NSCLC, non-small cell lung cancer | NIR, near-infrared | HSA, human serum albumin | DHA, dihydroartesunate | rHDL, recombinant HDL | CMD-ChNP, carboxylmethyl dextran chitosan nanoparticle | SF-CSNP, silk fibroin modified chitosan nanoparticle | ATRA, all-trans retinoic acid | Gd, gadolinium | IDL, intermediate density lipoprotein | ACS, absorbable collagen sponge | rhEGF-2 | SF, silk fibroin
Journal Article