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The Plant Cell, ISSN 1040-4651, 11/2010, Volume 22, Issue 11, pp. 3560 - 3573
Journal Article
Journal Article
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 10/2009, Volume 106, Issue 41, pp. 17431 - 17436
Journal Article
Journal Article
ENDOCRINOLOGY, ISSN 0013-7227, 08/2019, Volume 160, Issue 8, pp. 1832 - 1853
During spermatogenesis, the blood-testis barrier (BTB) undergoes cyclic remodeling that is crucial to support the transport of preleptotene spermatocytes... 
SEMINIFEROUS EPITHELIUM | MALE CONTRACEPTIVES | GERM-CELLS | ENDOCRINOLOGY & METABOLISM | F-ACTIN ORGANIZATION | APICAL ECTOPLASMIC SPECIALIZATION | ADENOVIRUS RECEPTOR CAR | BARRIER DYNAMICS | RAT TESTIS | REGULATES SPERMATID ADHESION | MICROTUBULE-BASED CYTOSKELETONS
Journal Article
Journal of Biological Chemistry, ISSN 0021-9258, 11/2010, Volume 285, Issue 45, pp. 35123 - 35132
The evolutionary loss of hepatic urate oxidase (uricase) has resulted in humans with elevated serum uric acid (urate). Uricase loss may have been beneficial to... 
HYPERURICEMIA | ORGANIC ANION TRANSPORT | GOUT | BIOCHEMISTRY & MOLECULAR BIOLOGY | IDENTIFICATION | EXCRETION | APICAL MEMBRANE | URIC-ACID | HOMINOID EVOLUTION | FAMILY | EXCHANGER | Glucose Transport Proteins, Facilitative - metabolism | Organic Anion Transporters, Sodium-Independent - genetics | Organic Anion Transport Protein 1 - metabolism | Diuretics - pharmacokinetics | Sodium-Phosphate Cotransporter Proteins, Type I - genetics | Humans | Hyperuricemia - metabolism | Mutation, Missense | Organic Anion Transporters - metabolism | Urate Oxidase - metabolism | Organic Anion Transporters - genetics | Urate Oxidase - genetics | Furosemide - adverse effects | Organic Anion Transporters, Sodium-Independent - metabolism | Kidney Tubules, Proximal - secretion | Ion Transport - drug effects | Glucose Transport Proteins, Facilitative - genetics | Bumetanide - adverse effects | Genetic Predisposition to Disease | Uric Acid - metabolism | Organic Cation Transport Proteins - metabolism | Diuretics - pharmacology | Furosemide - pharmacokinetics | Liver - metabolism | Xenopus laevis | Organic Anion Transport Protein 1 - genetics | Bumetanide - pharmacokinetics | Bumetanide - pharmacology | Hyperuricemia - genetics | Gout - metabolism | Animals | Models, Biological | Gout - genetics | Furosemide - pharmacology | Organic Cation Transport Proteins - genetics | Sodium-Phosphate Cotransporter Proteins, Type I - metabolism | Diuretics - adverse effects | Hyperuricemia - chemically induced | Ion Transport - genetics | Index Medicus | Transport Drugs | Membrane Biology | Gout | Epithelial Cell | Uric Acid | Diuretics | Kidney
Journal Article
Molecular Nutrition & Food Research, ISSN 1613-4125, 06/2018, Volume 62, Issue 11, pp. e1701012 - n/a
Blocking intestinal glucose uptake could be a possible strategy for moderate control of type 2 diabetes. Especially guava leaf extracts have been reported to... 
intestinal glucose transport | GLUT2 | postprandial blood glucose | SGLT1 | guava extract | DIETARY POLYPHENOLS | METABOLIC SYNDROME | UPPER AUSTRIA | FOOD SCIENCE & TECHNOLOGY | SUGAR ABSORPTION | DRUG ABSORPTION | INSULIN | INDUCED DIABETIC-RATS | APICAL GLUT2 | CACO-2 CELLS | APPLE JUICE | Glucose Transporter Type 2 - genetics | Plant Extracts - chemistry | Glucose Transporter Type 5 - metabolism | Intestinal Mucosa - metabolism | Plant Extracts - pharmacology | Humans | Glucose Transporter Type 2 - metabolism | Intestinal Mucosa - drug effects | Sodium-Glucose Transporter 1 - genetics | Plant Extracts - analysis | Postprandial Period | Female | Biological Transport - drug effects | Sodium-Glucose Transporter 1 - metabolism | Caco-2 Cells | Plant Leaves - chemistry | Fruit - chemistry | Mice, Inbred C57BL | Hypoglycemic Agents - pharmacology | Animals | Glucose - pharmacokinetics | Polyphenols - analysis | Glucose - metabolism | Psidium - chemistry | Glucose Transporter Type 5 - genetics | Polyphenols | Blood sugar | Plants | Glucose transporter | Guava | Pharmacology | Liquid chromatography | Glucose | Glucose transport | High-performance liquid chromatography | Blood | Fruits | Time dependence | Organic chemistry | Leaves | Sodium | Intestine | Bioactive compounds | Inhibition | Transport | Transporter | Gastric juice | Index Medicus
Journal Article