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Science, ISSN 0036-8075, 2/2008, Volume 319, Issue 5865, pp. 962 - 965
Bacterial infection often results in the formation of tissue abscesses, which represent the primary site of interaction between invading bacteria and the... 
Microbial growth | Kidneys | Antimicrobials | Liver | Abscesses | Neutrophils | Chelation | Reports | Mice | Infections | Staphylococcus | CALPROTECTIN | STAPHYLOCOCCUS-AUREUS | EXPRESSION | MULTIDISCIPLINARY SCIENCES | EF-HAND PROTEINS | ANTIMICROBIAL ACTIVITY | Abscess - microbiology | Abscess - metabolism | Calcium - metabolism | Zinc - metabolism | Leukocyte L1 Antigen Complex - metabolism | Gene Expression Profiling | Liver Abscess - metabolism | Liver Abscess - microbiology | Mass Spectrometry | Leukocyte L1 Antigen Complex - pharmacology | Staphylococcal Infections - microbiology | Dimerization | Neutrophils - metabolism | Kidney Diseases - metabolism | Staphylococcal Infections - metabolism | Staphylococcus aureus - genetics | Kidney Diseases - microbiology | Liver Abscess - pathology | Staphylococcal Infections - immunology | Chelating Agents - pharmacology | Kidney Diseases - immunology | Animals | Manganese - metabolism | Leukocyte L1 Antigen Complex - genetics | Abscess - immunology | Chelating Agents - metabolism | Staphylococcus aureus - drug effects | Staphylococcus aureus - growth & development | Bacterial growth | Control | Care and treatment | Immune response | Bacterial infections | Abscess | Research | Chelation therapy | Methods | Bacteria | Staphylococcus infections | Biomedical research | Immunology | Metals | Rodents | Index Medicus
Journal Article
Journal Article
American Journal of Hematology, ISSN 0361-8609, 12/2014, Volume 89, Issue 12, pp. 1102 - 1106
Iron overload in β‐thalassemia major (TM) typically results in iron‐induced cardiomyopathy, liver disease, and endocrine complications. We examined the... 
IMPACT | TRANSFUSIONAL IRON OVERLOAD | MRI | MASS | REPLACEMENT THERAPY | IMPROVEMENT | COMPLICATIONS | PREVALENCE | HEMATOLOGY | HYPOGONADISM | NORTH-AMERICA | Diabetes Mellitus - pathology | Hypothyroidism - pathology | Hypothyroidism - metabolism | Benzoates - therapeutic use | Humans | Middle Aged | Child, Preschool | Male | Puberty, Delayed - metabolism | Iron Overload - etiology | Osteoporosis - metabolism | Hypogonadism - metabolism | Bone and Bones - metabolism | Diphosphonates - therapeutic use | Child | Triazoles - therapeutic use | Iron Chelating Agents - therapeutic use | Hypoparathyroidism - metabolism | beta-Thalassemia - drug therapy | Puberty, Delayed - pathology | Diabetes Mellitus - prevention & control | Osteoporosis - pathology | Adolescent | beta-Thalassemia - metabolism | Hypogonadism - etiology | beta-Thalassemia - pathology | Bone and Bones - pathology | Iron Overload - drug therapy | Calcium - administration & dosage | Chelation Therapy | beta-Thalassemia - complications | Hypoparathyroidism - pathology | Hypoparathyroidism - prevention & control | Iron Overload - pathology | Osteoporosis - etiology | Bone and Bones - drug effects | Hypogonadism - prevention & control | Iron Overload - metabolism | Puberty, Delayed - etiology | Adult | Diabetes Mellitus - etiology | Female | Vitamin D - administration & dosage | Retrospective Studies | Hypothyroidism - prevention & control | Hypogonadism - pathology | Bone Density | Osteoporosis - prevention & control | Diabetes Mellitus - metabolism | Hypothyroidism - etiology | Puberty, Delayed - prevention & control | Hypoparathyroidism - etiology | Index Medicus
Journal Article
Gut, ISSN 0017-5749, 07/2017, Volume 66, Issue Suppl 2, p. A140
IntroductionExcess, ‘free iron’ residing within the large bowel is known to be pro-inflammatory and associated with chemical, cellular and microbial... 
Inflammatory bowel diseases | Calcium | Alginic acid | Iron | Biopolymers | Intestine | Hemoglobin | Chelation | Tumorigenesis | Supplementation | Magnesium | Digestive tract | Creatinine | Alanine | Ileitis | Digestive system | Dietary supplements | Mass spectroscopy | Inflammation | Crohn's disease | Ribonucleic acid--RNA | Adenomatous polyposis coli | Side effects | Alanine transaminase | Sodium alginate
Journal Article
Journal of Biomedical Materials Research Part A, ISSN 1549-3296, 01/2018, Volume 106, Issue 1, pp. 168 - 179
There is a clear clinical need for a bioactive bone graft substitute. Poly(vinyl phosphonic acid‐ co ‐acrylic acid) (PVPA‐ co ‐AA) has been identified as a... 
osteoinductivity | calcium chelation | osteoconductivity | acrylic acid | polyvinyl phosphonic acid | MATRIX | CELLS | MATERIALS SCIENCE, BIOMATERIALS | COLLAGEN | PROTEIN | ENGINEERING, BIOMEDICAL | PHOSPHATE | REPAIR | MINERALIZATION | GENE-EXPRESSION | BONE REGENERATION | SCAFFOLDS | Bone Regeneration - drug effects | Mesenchymal Stromal Cells - drug effects | Acrylates - chemistry | Biocompatible Materials - chemistry | Humans | Osteoblasts - drug effects | Osteogenesis - drug effects | Tissue Adhesives - pharmacology | Biocompatible Materials - pharmacology | Organophosphonates - pharmacology | Cell Differentiation - drug effects | Acrylates - pharmacology | Organophosphonates - chemistry | Polymers - pharmacology | Polyvinyls - pharmacology | Cell Line, Tumor | Polymers - chemistry | Calcium Chelating Agents - pharmacology | Calcium Chelating Agents - chemistry | Bone Transplantation - methods | Polyvinyls - chemistry | Tissue Adhesives - chemistry | Tissue Engineering | Acrylic acid | Stem cells | Calcium | Mesenchyme | Tissue engineering | Therapeutic applications | Valproic acid | Grafting | Biological activity | Regeneration | Design engineering | Bone growth | Biomedical materials | Acids | Mineralization | Osteoconduction | Bone marrow | Chelation | Bones | Biocompatibility | Bone | Polymers | Scaffolds | Osteogenesis | Index Medicus | Original
Journal Article
Journal Article