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薬物生理学研究室
富山大学
薬学・和漢系
概要
フィンガープリント
ネットワーク
プロファイル
(2)
プロジェクト
(13)
研究成果
(119)
データセット
(1)
受賞
(3)
活動
(1)
フィンガープリント
薬物生理学研究室が活動している研究トピックを掘り下げます。これらのトピックラベルは、この組織のメンバーの研究成果に基づきます。これらがまとまってユニークなフィンガープリントを構成します。
並べ替え順
重み付け
アルファベット順
Keyphrases
Acid Secretion
10%
Alkaloids
19%
Anion Channel
20%
Anticancer Drugs
10%
Apical Membrane
7%
Apoptosis
17%
Apoptotic Cell Death
10%
Apoptotic Volume Decrease
17%
Arachidonic Acid
7%
ATP Synthase
10%
Basolateral Membrane
15%
Beta-blockers
8%
Ca2+
30%
Cancer Cell Proliferation
8%
Cancer Cells
37%
Cardiac Glycosides
10%
Cation Channel
15%
Cell Death
9%
Cell Shrinkage
13%
Cell Volume
16%
Channel Activity
13%
Channel Blocker
10%
Chloride Channel
18%
Cisplatin
17%
Cisplatin Resistance
13%
Cisplatin Sensitivity
7%
Cisplatin-induced
7%
Cl Channel
100%
Claudin-2
7%
ClC-3
7%
Colonic Crypt
7%
Concentration-dependent
9%
Conductance
18%
Crypt Cells
7%
Cyclic GMP
12%
Disubstituted
8%
Epidermoid Cancer
8%
Epithelial Cell Line
9%
Ethanol
6%
Expression Level
9%
Extracellular Solution
7%
Functional Association
8%
Functional Expression
9%
Gastric Acid
7%
Gastric Acid Secretion
8%
Gastric Parietal Cell
52%
Gastric Proton Pump
11%
H+-ATPase
51%
HeLa Cells
24%
Housekeeping
14%
Human Colorectal Cancer
7%
Human Epithelial Cells
28%
Human Gastric Cancer Cells
6%
Hypotonic Stress
7%
IC50
8%
IC50 Value
7%
Indolizidine
8%
Induced Apoptosis
18%
Inhibitory Effect
10%
Intracellular Ca2+
9%
Ion Properties
6%
Irinotecan
8%
K+ Channels
9%
K+-ATPase Activity
16%
K-Cl Cotransporter
21%
KB Cells
10%
KCC4
7%
Membrane Potential
7%
Molecular Properties
6%
Na +
19%
Na+, K+-ATPase Activity
11%
Na+-K+ ATPase
38%
Nanoprobe
6%
Nicotinic Acetylcholine Receptor (nAChR)
15%
Nitric Oxide
9%
Ouabain
9%
Overexpression
10%
Parietal Cell
33%
Pharmacological Properties
7%
Plasma Membrane
15%
Platelet-activating Factor
8%
Poison Frog
15%
Polycystic Kidney Disease
12%
Polycystin
10%
Prostaglandin E2
17%
Protein Kinase
12%
Proton Pump Inhibitors
6%
Rat Colon
20%
Reactive Oxygen Species
7%
Receptor-mediated
8%
Regulatory Volume Decrease
21%
Renal Tubular Epithelial Cells
10%
Secretory Mechanisms
6%
Swelling-activated
9%
Thromboxane A2 (TXA2)
27%
Thromboxane A2 Receptor
7%
Thromboxane Synthase
8%
Volume-regulated Anion Channel
13%
Water Properties
6%
Whole Cell
10%
Pharmacology, Toxicology and Pharmaceutical Science
5 Nitro 2 (3 Phenylpropylamino)benzoic Acid
5%
Actin
6%
Adenosine Triphosphatase
47%
Adenosine Triphosphate
13%
Anion Channel
17%
Anticarcinogen
9%
Anura
13%
Arachidonic Acid
7%
Biological Activity
6%
Calcium Ion
30%
Carbachol
5%
Cation Channel
5%
Channel Blocker
7%
Chloride Channel
62%
Cisplatin
18%
Clathrin
6%
Claudin 2
7%
Colorectal Carcinoma
5%
Cotransporter
19%
Cyclic GMP
6%
Glutathione
6%
Histamine
5%
Hydrogen Potassium Adenosine Triphosphatase
29%
IC50
10%
Indolizidine Derivative
8%
Irinotecan
8%
Leporidae
22%
Lung Adenocarcinoma
6%
Malignant Neoplasm
27%
Messenger RNA
7%
Neoplasm
6%
Nicotinic Receptor
11%
Nitric Oxide
9%
Omeprazole
5%
Ouabain
5%
Potassium Channel
12%
Potassium Ion
79%
Prostaglandin E2
13%
Protein Kinase C
5%
Proton Pump Inhibitor
5%
Receptor
5%
Sodium Ion
32%
Squamous Cell Carcinoma
10%
Superoxide
7%
Tablet
5%
Thrombocyte Activating Factor
8%
Thromboxane A2
26%
Thromboxane A2 Receptor
5%
Biochemistry, Genetics and Molecular Biology
Adenosine Triphosphate
14%
ATPase
60%
Basolateral Membrane
9%
C-Terminus
6%
Cancer Cell
31%
Cardiac Glycoside
9%
Cardiac Muscle Cell
7%
Cell Death
10%
Cell Membrane
14%
Cell Proliferation
5%
Cell Volume
17%
Chloride Channel
49%
Claudin
11%
Colon
9%
Conductance
15%
Cyclic Adenosine Monophosphate
10%
Electric Potential
19%
Interphase
6%
Isoform
15%
K Cl- Cotransporter
8%
Leporidae
13%
Messenger RNA
6%
Mucosa
6%
Ouabain
8%
Parietal Cell
34%
Polycystic Kidney Disease 2
12%
Potassium Channel
12%
Prostaglandin E2
6%
Proton Pump
8%
Receptor Potential
6%
Secretion (Process)
13%
Sodium Channel
6%
Solution and Solubility
17%
Thromboxane A2
13%
Transient Receptor Potential Channel
6%
Upregulation
8%
Volume
6%
Whole Cell
11%
Wild Type
5%