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AB133130

Glycerol Assay试剂盒(Cell-Based)

Glycerol Assay Kit (Cell-Based)

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(10 Publications)

Glycerol Assay Kit (Cell-Based) (ab133130) provides a convenient tool for studying triglyceride/fatty acid cycling and its regulation in adipocytes or hepatocytes.
2 Images
Functional Studies - Glycerol Assay Kit (Cell-Based) (AB133130)
  • FuncS

Lab

Functional Studies - Glycerol Assay Kit (Cell-Based) (AB133130)

Glycerol release from HepG2 cells treated with chloroquine.
HepG2 cells were seeded at a density of 104 cells/well in a 96-well plate and grown overnight in a 37°C incubator. The next day, cells were treated with vehicle or different doses of chloroquine for 24 hours. At the end of this incubation, supernatants were collected and analyzed for free glycerol according to the procedure described in the protocol.

Functional Studies - Glycerol Assay Kit (Cell-Based) (AB133130)
  • FuncS

Lab

Functional Studies - Glycerol Assay Kit (Cell-Based) (AB133130)

Standard curve : mean of duplicates (+/- SD) with background reads subtracted

关键信息

检测方法

Colorimetric

样品类型

Cell culture media, Cell culture supernatant

检测类型

Cell-based

检测平台

Microplate reader

产品详情

Glycerol Assay Kit (Cell-Based) (ab133130) provides a convenient tool for studying triglyceride/fatty acid cycling and its regulation in adipocytes or hepatocytes. This kit will allow investigators to screen compounds involved in lipid storage and metabolism. Chloroquine is included in the kit as a positive control for screening compounds that induce lipid droplet accumulation and free glycerol release from hepatocytes.

Other Notes
In mammals, triglycerides are constantly synthesized from fatty acids and segregated into cytosolic lipid droplets, mainly in adipocytes, as the major energy storage depot. During fasting, triglycerides stored in adipose tissue and liver are hydrolyzed by hormone-sensitive lipase and adipose triglyceride lipase to produce free fatty acids and glycerol. Triglyceride/fatty acid cycling is important in metabolic regulation and heat production, and is highly regulated by enzymes such as phosphenolpyruvate carboxykinase (PEPCK) and lipases. Quantitative changes in the triglyceride/fatty acid cycle have been related to the increased metabolic rate of cachectic patients with esophageal cancer and to metabolic syndrome. Abnormal triglyceride accumulation in the form of lipid droplets can occur in adipocytes and/or hepatocytes of obese mammals. In vitro, dramatic lipid accumulation can be observed in well-differentiated 3T3-L1 cells, or HepG2 cells treated with steatosis-inducing compounds such as chloroquine. Triglycerides stored in these lipid droplets can be hydrolyzed into free fatty acids and glycerol which are subsequently released into the surrounding environment. The amount of glycerol released into the medium is proportional to the triglyceride/fatty acid cycling rate.

REACH authorisation
Abcam has not and does not intend to apply for the REACH Authorisation of customers' uses of products that contain European Authorisation list (Annex XIV) substances.
It is the responsibility of our customers to check the necessity of application of REACH Authorisation, and any other relevant authorisations, for their intended uses.

规格

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性能和储存信息

运输条件
Blue Ice
推荐的短期储存条件
-20°C
推荐的长期储存条件
-20°C
储存信息
-20°C

补充信息

This supplementary information is collated from multiple sources and compiled automatically.

Glycerol also known as glycerol anhydrous or glycérol is a simple polyol compound with a molecular weight of approximately 92.09 g/mol. Glycerol is expressed widely in various tissues and plays a considerable role as a backbone in the structure of triglycerides and phospholipids thereby impacting lipid biology significantly. It acts mechanically in lipid metabolism by serving as a substrate for glycerolipid synthesis and provides energy through its conversion to glucose or dihydroxyacetone phosphate.
Biological function summary

Glycerol metabolism is significant in energy storage and lipid regulation. It does not function in isolation but is part of various lipid complexes that regulate lipid homeostasis. Through its involvement it aids in the formation of essential lipid components that are important for membrane structure and function. The ability of cells to store energy efficiently is largely dependent on glycerol's capability to integrate into and support these lipid structures.

Pathways

Glycerol participates in glycerolipid metabolism and gluconeogenesis. The glycolytic pathway is especially important as glycerol serves as a potential precursor for glucose production connecting it to energy supply chains within the organism. Proteins like glycerol kinase and glycerol-3-phosphate dehydrogenase play critical roles in these conversions and metabolic processes underlying how glycerol fits into broader biological functions.

Glycerol has connections to metabolic conditions such as glycerol kinase deficiency and nonalcoholic fatty liver disease. Its metabolism's rate and efficiency can influence lipid accumulation and related metabolic syndromes. The enzyme glycerol kinase which phosphorylates glycerol to form glycerol-3-phosphate associates directly with glycerol's relevance in these diseases. Understanding these connections may lead to insights into managing or alleviating related metabolic disease symptoms.

产品实验方案

文献 (10)

Recent publications for all applications. Explore the full list and refine your search

Nature communications 16:5457 PubMed40593547

2025

cTAGE5 is essential for adipogenesis and adipose tissue development.

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Junwan Fan,Tiantian Ma,Xiaoping Ren,Zhilin Chang,Dan Zhang,Yi Wang,Shiyao Cheng,Xin Qi,Kehui Liu,Yan Wang,Yaqing Wang,Zhiheng Xu,Wenyan He

Cell reports 43:114676 PubMed39217614

2024

Aldehydes alter TGF-β signaling and induce obesity and cancer.

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Species

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Xiaochun Yang,Krishanu Bhowmick,Shuyun Rao,Xiyan Xiang,Kazufumi Ohshiro,Richard L Amdur,Md Imtaiyaz Hassan,Taj Mohammad,Keith Crandall,Paolo Cifani,Kirti Shetty,Scott K Lyons,Joseph R Merrill,Anil K Vegesna,Sahara John,Patricia S Latham,James M Crawford,Bibhuti Mishra,Srinivasan Dasarathy,Xin Wei Wang,Herbert Yu,Zhanwei Wang,Hai Huang,Adrian R Krainer,Lopa Mishra

Cell reports. Medicine 5:101525 PubMed38663398

2024

α2δ1-mediated maladaptive sensory plasticity disrupts adipose tissue homeostasis following spinal cord injury.

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Debasish Roy,Elliot Dion,Jesse A Sepeda,Juan Peng,Sai Rishik Lingam,Kristy Townsend,Andrew Sas,Wenjing Sun,Andrea Tedeschi

iScience 27:109471 PubMed38551005

2024

T cells with increased responsiveness cause obesity in mice without diet intervention.

Applications

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Species

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Ida Gregersen,Xiang Y Kong,Sander Kooijman,Håvard Foyn,Helene Grannes,Maria B Olsen,Anna M Lone,Kuan Yang,Ana Quiles-Jiménez,Marianne Tran,Jonas Øgaard,Filip M Segers,Azita Rashidi,Ellen Lund Sagen,Knut H Lauritzen,Amanda C M Pronk,Jan Freark de Boer,Kirsten B Holven,Espen Melum,Pål Aukrust,Kjetil Taskén,Sverre Holm,Patrick C N Rensen,Tuva B Dahl,Bente Halvorsen

Lipids in health and disease 22:9 PubMed36670439

2023

Astragalus polysaccharide prevents heart failure-induced cachexia by alleviating excessive adipose expenditure in white and brown adipose tissue.

Applications

Unspecified application

Species

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Dufang Ma,Tao Wu,Yiwei Qu,Jinlong Yang,Lu Cai,Xiao Li,Yong Wang

Molecular medicine reports 27: PubMed36633126

2023

Rhododendrol, a reductive metabolite of raspberry ketone, suppresses the differentiation of 3T3‑L1 cells into adipocytes.

Applications

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Species

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Naoto Uramaru,Azusa Kawashima,Makoto Osabe,Toshiyuki Higuchi

STAR protocols 3:101518 PubMed35779261

2022

Protocol for assessing ex vivo lipolysis of murine adipose tissue.

Applications

Unspecified application

Species

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Debasish Roy,Julia M Myers,Andrea Tedeschi

iScience 25:104085 PubMed35372814

2022

The vesicular transporter STX11 governs ATGL-mediated hepatic lipolysis and lipophagy.

Applications

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Species

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Gaojian Zhang,Jianxiong Han,Lili Wang,Xuegang Yang,Zhongkang Yan,Min Qu,Huijuan Zhou,Hazrat Bilal,Feifei Wang,Honghua Ge,Xingyuan Yang

Cell metabolism 33:1836-1852.e11 PubMed34348115

2021

Isthmin-1 is an adipokine that promotes glucose uptake and improves glucose tolerance and hepatic steatosis.

Applications

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Species

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Zewen Jiang,Meng Zhao,Laetitia Voilquin,Yunshin Jung,Mari A Aikio,Tanushi Sahai,Florence Y Dou,Alexander M Roche,Ivan Carcamo-Orive,Joshua W Knowles,Martin Wabitsch,Eric A Appel,Caitlin L Maikawa,Joao Paulo Camporez,Gerald I Shulman,Linus Tsai,Evan D Rosen,Christopher D Gardner,Bruce M Spiegelman,Katrin J Svensson

Journal of sleep research 30:e13381 PubMed33949729

2021

Modest sleep restriction does not influence steps, physical activity intensity or glucose tolerance in obese adults.

Applications

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Species

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Jay W Porter,Ryan J Pettit-Mee,Travis S Emerson,Christina S McCrae,Guido Lastra,Victoria J Vieira-Potter,Elizabeth J Parks,Jill A Kanaley
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