Nikhil Gandasi
Forskare vid Institutionen för medicinsk cellbiologi; Forskargrupp Sebastian Barg
- Telefon:
- 018-471 46 60
- E-post:
- nikhil.gandasi@mcb.uu.se
- Besöksadress:
- BMC
Husargatan 3
751 23 Uppsala - Postadress:
- Box 571
751 23 UPPSALA
Publikationer
Senaste publikationer
Ingår i Frontiers in Endocrinology, 2024
- DOI för Exploring the potential of pheophorbide A, a chlorophyll-derived compound in modulating GLUT for maintaining glucose homeostasis
- Ladda ner fulltext (pdf) av Exploring the potential of pheophorbide A, a chlorophyll-derived compound in modulating GLUT for maintaining glucose homeostasis
Pancreatic Islet Biobanking Facilities in India: The Need of the Hour to Deal with Diabetes?
Ingår i Journal of The Indian Institute of Science, s. 381-385, 2023
- DOI för Pancreatic Islet Biobanking Facilities in India: The Need of the Hour to Deal with Diabetes?
- Ladda ner fulltext (pdf) av Pancreatic Islet Biobanking Facilities in India: The Need of the Hour to Deal with Diabetes?
Somatostatin Containing δ-Cell Number Is Reduced in Type-2 Diabetes
Ingår i International Journal of Molecular Sciences, 2023
- DOI för Somatostatin Containing δ-Cell Number Is Reduced in Type-2 Diabetes
- Ladda ner fulltext (pdf) av Somatostatin Containing δ-Cell Number Is Reduced in Type-2 Diabetes
Setting the Stage for Insulin Granule Dysfunction during Type-l-Diabetes: Is ER Stress the Culprit?
Ingår i Biomedicines, 2022
- DOI för Setting the Stage for Insulin Granule Dysfunction during Type-l-Diabetes: Is ER Stress the Culprit?
- Ladda ner fulltext (pdf) av Setting the Stage for Insulin Granule Dysfunction during Type-l-Diabetes: Is ER Stress the Culprit?
Paracrine control of α-cell glucagon exocytosis is compromised in human type-2 diabetes.
Ingår i Nature Communications, 2020
- DOI för Paracrine control of α-cell glucagon exocytosis is compromised in human type-2 diabetes.
- Ladda ner fulltext (pdf) av Paracrine control of α-cell glucagon exocytosis is compromised in human type-2 diabetes.
Alla publikationer
Artiklar i tidskrift
Ingår i Frontiers in Endocrinology, 2024
- DOI för Exploring the potential of pheophorbide A, a chlorophyll-derived compound in modulating GLUT for maintaining glucose homeostasis
- Ladda ner fulltext (pdf) av Exploring the potential of pheophorbide A, a chlorophyll-derived compound in modulating GLUT for maintaining glucose homeostasis
Pancreatic Islet Biobanking Facilities in India: The Need of the Hour to Deal with Diabetes?
Ingår i Journal of The Indian Institute of Science, s. 381-385, 2023
- DOI för Pancreatic Islet Biobanking Facilities in India: The Need of the Hour to Deal with Diabetes?
- Ladda ner fulltext (pdf) av Pancreatic Islet Biobanking Facilities in India: The Need of the Hour to Deal with Diabetes?
Somatostatin Containing δ-Cell Number Is Reduced in Type-2 Diabetes
Ingår i International Journal of Molecular Sciences, 2023
- DOI för Somatostatin Containing δ-Cell Number Is Reduced in Type-2 Diabetes
- Ladda ner fulltext (pdf) av Somatostatin Containing δ-Cell Number Is Reduced in Type-2 Diabetes
Paracrine control of α-cell glucagon exocytosis is compromised in human type-2 diabetes.
Ingår i Nature Communications, 2020
- DOI för Paracrine control of α-cell glucagon exocytosis is compromised in human type-2 diabetes.
- Ladda ner fulltext (pdf) av Paracrine control of α-cell glucagon exocytosis is compromised in human type-2 diabetes.
Ingår i Proceedings of the National Academy of Sciences of the United States of America, s. 2484-2495, 2020
- DOI för In pancreatic islets from type 2 diabetes patients, the dampened circadian oscillators lead to reduced insulin and glucagon exocytosis
- Ladda ner fulltext (pdf) av In pancreatic islets from type 2 diabetes patients, the dampened circadian oscillators lead to reduced insulin and glucagon exocytosis
The PI(4)P phosphatase Sac2 controls insulin granule docking and release
Ingår i Journal of Cell Biology, s. 3714-3729, 2019
- DOI för The PI(4)P phosphatase Sac2 controls insulin granule docking and release
- Ladda ner fulltext (pdf) av The PI(4)P phosphatase Sac2 controls insulin granule docking and release
Fusion pore regulation by cAMP/Epac2 controls cargo release during insulin exocytosis
Ingår i eLIFE, 2019
- DOI för Fusion pore regulation by cAMP/Epac2 controls cargo release during insulin exocytosis
- Ladda ner fulltext (pdf) av Fusion pore regulation by cAMP/Epac2 controls cargo release during insulin exocytosis
Functional Characterization of Native, High-Affinity GABAA Receptors in Human Pancreatic β Cells
Ingår i EBioMedicine, 2018
- DOI för Functional Characterization of Native, High-Affinity GABAA Receptors in Human Pancreatic β Cells
- Ladda ner fulltext (pdf) av Functional Characterization of Native, High-Affinity GABAA Receptors in Human Pancreatic β Cells
Glucose-Dependent Granule Docking Limits Insulin Secretion and Is Decreased in Human Type 2 Diabetes
Ingår i Cell Metabolism, s. 470-478, 2018
PtdIns(4,5)P2 is not required for secretory granule docking
Ingår i Traffic, s. 436-445, 2018
Syntaxin clusters at secretory granules in a munc18-bound conformation
Ingår i Molecular Biology of the Cell, s. 2700-2708, 2018
- DOI för Syntaxin clusters at secretory granules in a munc18-bound conformation
- Ladda ner fulltext (pdf) av Syntaxin clusters at secretory granules in a munc18-bound conformation
The lipid phosphatase INPP5F regulates insulin secretion
Ingår i Diabetologia, 2018
MiR-335 overexpression impairs insulin secretion through defective priming of insulin vesicles
Ingår i Physiological Reports, 2017
- DOI för MiR-335 overexpression impairs insulin secretion through defective priming of insulin vesicles
- Ladda ner fulltext (pdf) av MiR-335 overexpression impairs insulin secretion through defective priming of insulin vesicles
Recruitment of Epac2A to Insulin Granule Docking Sites Regulates Priming for Exocytosis
Ingår i Diabetes, s. 2610-2622, 2017
Plasma membrane PI(4,5)P-2 is critical for secretory granule exocytosis
Ingår i Molecular Biology of the Cell, s. 3727-3727, 2017
Ca2+ channel clustering with insulin-containing granules is disturbed in type 2 diabetes
Ingår i Journal of Clinical Investigation, s. 2353-2364, 2017
- DOI för Ca2+ channel clustering with insulin-containing granules is disturbed in type 2 diabetes
- Ladda ner fulltext (pdf) av Ca2+ channel clustering with insulin-containing granules is disturbed in type 2 diabetes
Ingår i PLOS ONE, 2016
- DOI för Statistical Frailty Modeling for Quantitative Analysis of Exocytotic Events Recorded by Live Cell Imaging: Rapid Release of Insulin-Containing Granules Is Impaired in Human Diabetic beta-cells
- Ladda ner fulltext (pdf) av Statistical Frailty Modeling for Quantitative Analysis of Exocytotic Events Recorded by Live Cell Imaging: Rapid Release of Insulin-Containing Granules Is Impaired in Human Diabetic beta-cells
Quantitative Imaging of the Exocytosis Machinery Assembly
Ingår i Biophysical Journal, 2015
Survey of Red Fluorescence Proteins as Markers for Secretory Granule Exocytosis
Ingår i PLOS ONE, 2015
- DOI för Survey of Red Fluorescence Proteins as Markers for Secretory Granule Exocytosis
- Ladda ner fulltext (pdf) av Survey of Red Fluorescence Proteins as Markers for Secretory Granule Exocytosis
Ingår i Diabetologia, 2015
CD59 is required for pancreatic beta cell insulin exocytosis
Ingår i Molecular Immunology, s. 279-279, 2014
Contact-induced clustering of syntaxin and munc18 docks secretory granules at the exocytosis site
Ingår i Nature Communications, 2014
The Complement Inhibitor CD59 Regulates Insulin Secretion by Modulating Exocytotic Events
Ingår i Cell Metabolism, s. 883-890, 2014
Quantitative analysis of t-SNARE and Ca2+-channel clusters near secretory granules
Ingår i Diabetologia, 2010
Artiklar, forskningsöversikt
Setting the Stage for Insulin Granule Dysfunction during Type-l-Diabetes: Is ER Stress the Culprit?
Ingår i Biomedicines, 2022
- DOI för Setting the Stage for Insulin Granule Dysfunction during Type-l-Diabetes: Is ER Stress the Culprit?
- Ladda ner fulltext (pdf) av Setting the Stage for Insulin Granule Dysfunction during Type-l-Diabetes: Is ER Stress the Culprit?