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Lipids are essential components of cell membrane structure and play important roles in many cellular processes, including cell growth, proliferation, differentiation, and signaling
Zhongke New Life's non-target lipidomic products have been heavily upgraded to non-target lipidomic absolute quantification plus, which has five major characteristics:
Massive database: LipidSearch database, which includes spectra of more than 8 categories, 300 subtypes, and 1.1.
Article title: Degradation of lipid droplets by chimeric autophagy-tethering
https://mp.
2.
Article title: Thrombin induces ACSL4-dependent ferroptosis during cerebral ischemia/reperfusion
3.
Title of the article: A small molecule targeting ALOX12-ACC1 ameliorates nonalcoholic steatohepatitis in mice and macaques
4.
Article title: Cadmium exposure impairs pancreatic β-cell function and exaggerates diabetes by disrupting lipid metabolism
5.
Article title: Lipid reprogramming induced by the TFEB-ERRα axis enhanced membrane fluidity to promote EC progression
6.
Title of the article: Investigation of oyster Crassostrea gigas lipid profile from three sea areas of China based on non-targeted lipidomics for their geographic region traceability
7.
Lipidomics technology facilitates plant stress research
Title: Silencing of Sulfoquinovosyl Diacylglycerol Synthase 1 Impairs the Glycolipids Accumulation and Photosynthesis in Phosphate-deprived Rice
Impact Factor: 7.
298
Published Journal: Journal of Experimental Botany
Published: 2021.
6 Cooperative unit: Shanghai Academyof
Agricultural Sciences Omics: Lipidome
Research CONCLUSIONS: Analysis of the concentrations of different lipid species in glucosyl diacylglycerol synthase 1 (OsSQD1) mutants shows that under Pi deficiency, OsSQD1 silencing leads to an increase in phospholipids and a decrease in glycolipids, and altered fatty acids composition .
Furthermore, OsSQD1 silencing also inhibited photosynthesis by downregulating glycolipids in rice seedlings .
Studies have shown that OsSQD1 plays a key role in lipid homeostasis, especially the accumulation of glycolipids upon Pi deficiency .
Article interpretation link:
https://mp.
weixin.
qq.
com/s/WmizjVMMAqPQOWEzOuHVrA
8.
Lipidomics technology facilitates the study of mitochondrial lipid changes in early post-mortem beef
Title of the article: Alteration of Mitochondrial Lipidome and Its Potential Effect on
Apoptosis, Mitochondrial Reactive Oxygen Species Production, and Muscle Oxidation in Beef during Early Postmortem
Impact Factor: 5.
895
Published Journal: Journal of Agricultural and Food Chemistry
Published Date: 2022.
6
Partner: China Agriculture University
Omics Approach: Lipidome
Conclusions: This study investigated changes in mitochondrial lipid molecules in the early postmortem period and their potential impact on mitochondrial ROS generation and muscle oxidation
.
It was found that mitochondrial lipids changed significantly (1−24 h) postmortem and also differed among different muscle types, and the levels of apoptosis-related lipid molecules increased in the early postmortem and promoted apoptosis
.
Lipid molecules can assist the production of mitochondrial ROS, reduce mitochondrial membrane potential (MMP) during postmortem apoptosis, and lead to muscle oxidative and antioxidant system damage
.
The above is just a brief sharing of several client literatures of Zhongke Xinsheng Lipidomics.
If teachers need more lipid project articles, please contact us
.
We will provide better products and better services to help your scientific research career
.