67 Results for "

cell physiological processes

" in MedChemExpress (MCE) Product Catalog:
Products (67)

67 Results for "cell physiological processes" in MCE Product Catalog:

Cat. No.: HY-113225S1
Synonyms: GTP-13C10,15N5 tetraammonium
Guanosine triphosphate- 13C10, 15N5 tetraammonium solution (100 mM) (GTP- 13C10, 15N5 tetraammonium) is the 15N, 13C-labeled Guanosine triphosphate (HY-113225). Guanosine triphosphate (GTP) is a critical nucleotide and regulator of cellular metabolism. Guanosine triphosphate promotes ribosomal DNA localization, pre-rRNA transcription and ribosome biogenesis by binding to RNA polymerase I and GPN proteins (GPN1/3). Guanosine triphosphate links MYC-dependent ribosome biogenesis to nucleotide sufficiency, acts as a metabolic gatekeeper supporting protein synthesis, DNA/RNA synthesis and cellular signal transduction, while also participating in the physiological activities of pancreatic β-cells and serving as an oxidative substrate for reactive oxygen species. In small cell lung cancer with high MYC expression, Guanosine triphosphate accumulates through the IMPDH-driven synthetic pathway, thereby affecting apoptosis and mitotic processes. Guanosine triphosphate is used in the research of small cell lung cancer, hepatoblastoma and cellular metabolism .
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Cat. No.: HY-168764
CAS No.: 34324-89-5
C16 Galactosylceramide is a sphingolipid compound. C16 Galactosylceramide participates in the physiological processes of lipid metabolism and immune regulation in cells. C16 Galactosylceramide can be used in the study of diabetes .
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Cat. No.: HY-W923366
CAS No.: 119110-38-2
Synonyms: ETH 4030
Magnesium ionophore III (ETH 4030) is an ionophore that has the activity of regulating the intracellular magnesium concentration. Magnesium ionophore III can promote the permeability of cell membranes to magnesium ions and enhance cell functions and metabolic activities. Magnesium ionophore III is also used to study the importance of magnesium ions in biological processes and its effects on cell physiology.
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Cat. No.: HY-167808
CAS No.: 5070-03-1
Cis-9,12-Hexadecadienoic acid is a polyunsaturated fatty acid that has the activity of regulating the physical properties of cell membranes. The presence of Cis-9,12-Hexadecadienoic acid can enhance the fluidity and flexibility of cell membranes. Cis-9,12-Hexadecadienoic acid participates in a variety of physiological processes in the body, affecting cell signal transduction and membrane structure stability.
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Cat. No.: HY-116557
CAS No.: 140652-99-9
Research Areas:  

Others

JCP-265 is a compound used for in vivo phenotypic screening of small molecule libraries, which has the activity of screening molecules that regulate cell function. JCP-265 uses molecular cell barcoding technology to directly screen small molecule libraries in vivo for studying complex physiological processes, such as screening compounds related to targets in pancreatic cancer metastasis seeding studies.
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Cat. No.: HY-W989120
CAS No.: 29428-96-4
cis-6,9,12-Hexadecatrienoic acid is an important fatty acid with biological membrane fluidity and flexibility regulation activity. The multiple double bond structures of cis-6,9,12-Hexadecatrienoic acid help to improve the fluidity of cell membranes, thereby affecting cell molecular transport and signal transduction pathways. cis-6,9,12-Hexadecatrienoic acid plays a key role in cell physiological processes and promotes the normal function and interaction of cells.
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Cat. No.: HY-125629
CAS No.: 339337-07-4
Target:  

Others

Research Areas:  

Others

Primordazine B is a small molecule compound identified by chemical screening in zebrafish embryos with the activity of selectively destroying Primordial Germ Cells (PGCs). Primordazine B inhibits a process called Poly(A)-tail Independent Non-canonical Translation (PAINT) without inhibition of polyadenylate tail dependent typical translation (PAT). Primordazine B can be used to study translational control of cells in specific physiological or pathological states, such as gene expression regulation during cell dormancy, viral infection, or stress conditions .
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Cat. No.: HY-174782
Target:  

mRNA

Research Areas:  

Inflammation/Immunology

Human ACVR2B mRNA encodes the human activin A receptor type 2B (ACVR2B) protein, a receptor that transduces the activin signal from the cell surface to the cytoplasm and is thus regulating many physiological and pathological processes including neuronal differentiation and neuronal survival, hair follicle development and cycling, FSH production by the pituitary gland, wound healing, extracellular matrix production, immunosuppression and carcinogenesis.
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Cat. No.: HY-173283
Target:  

Fungal

Research Areas:  

Infection

Antifungal agent 129 (Compound 4g) is an inhibitor targeting Rhizoctonia solani, with an EC50 value of 4.27 mg/L. It has a good control effect against rice sheath blight in in vitro and in vivo experiments. Preliminary exploration through scanning electron microscopy, molecular docking, enzyme activity determination, and cytotoxicity experiments has revealed that Antifungal agent 129 may exert its inhibitory activity by affecting the cell structure or physiological processes of Rhizoctonia solani. Antifungal agent 129 can be used in the research of plant diseases in the agricultural field, such as rice sheath blight, which are caused by Rhizoctonia solani .
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Cat. No.: HY-114540
CAS No.: 185855-91-8
Research Areas:  

Neurological Disease

CP-339818 is a non-peptide Kv1.3 channel (IC50 = 200 nM) and Kv1.4 channel blocker. CP 339818 inhibits HCN channel with IC50s of 18.9 μM and 43.4 μM against HCN1 and HCN4 (high Cl -). CP-339818 has significantly weaker blocking effects on Kv1.1, Kv1.2, Kv1.5, Kv1.6, Kv3.1-4, and Kv4.2 channels. CP-339818 selectively blocked Kv1.3, thereby inhibiting the activation process of human T cells. CP-339818 can be used to study the physiological functions of HCN and Kv channels .
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Cat. No.: HY-K3038

MCE Sodium Bicarbonate Solution (7.5%) is designed to adjust the bicarbonate buffering system of cell culture media. Under appropriate CO2 culture conditions, sodium bicarbonate helps maintain physiological pH, neutralizes acidic metabolites produced by cellular metabolism, and provides a stable environment for cell growth. It also supplies bicarbonate ions required for certain cellular metabolic processes.

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Cat. No.: HY-L162M
23 compounds

Cell death is a core biological process that maintains homeostasis in multicellular organisms, playing a dual role in life activities. On one hand, cell death participates in physiological processes such as cell renewal and damage repair through precise regulation; on the other hand, it actively eliminates damaged, infected, or cancerous cells, thereby blocking pathological progression and preserving organism health. Cell death not only ensures the normal development and growth regulation of organisms but is also closely associated with the occurrence and development of various diseases. Numerous studies have shown that specific types of programmed cell death play critical roles in disease progression, providing an important theoretical basis for developing novel therapeutic strategies by regulating cell death pathways.

MCE offers 23 types of commonly used cell death inhibitors, such as apoptosis, ferroptosis, pyroptosis, and cuproptosis, suitable for use as positive controls in the study of novel cell death mechanisms.

Cat. No.: HY-L150
7,133 compounds

Membrane receptors, also known cell surface receptors or transmembrane receptors, are transmembrane proteins embedded into the plasma membrane which play an essential role in maintaining communication between the internal processes within the cell and various types of extracellular signals. They act in cell signaling by receiving (binding to) extracellular molecules, which are also called ligands. These extracellular molecules include hormones, cytokines, growth factors, neurotransmitters, lipophilic signaling molecules such as prostaglandins, and cell recognition molecules.

There are three kinds of membrane receptors: ion channel-linked receptors, enzyme-linked receptors and G-protein-linked receptors. They play important roles in keeping human normal physiologic processes. GPCRs and ion channels are important drug targets in drug discovery.

MCE provides a unique collection of 7,133 compounds targeting a variety of membrane receptors. MCE Membrane reeptor-targeted Compound Library can be used for membrane receptor-focused screening and drug discovery.

Cat. No.: HY-L029
2,080 compounds

Autophagy is a lysosomal degradation pathway that is essential for cell survival, differentiation, development, and homeostasis. The process of autophagy in mammalian cells is as follows: a portion of cytoplasm, including organelles, is enclosed by a phagophore or isolation membrane to form an autophagosome. The outer membrane of the autophagosome subsequently fuses with the endosome and then the lysosome, and the internal material is degraded. Autophagy plays a wide variety of physiological and pathophysiological roles. Defective autophagy contributes to various pathologies, including infections, cancer, neurodegeneration, aging, and heart disease.

MCE provides a unique collection of 2,080 autophagy pathway-related compounds that is a useful tool for the research of autophagy-related regulation and diseases.

Cat. No.: HY-187265S
[U- 15N]-IL-6 is the 15N-labeled IL-6. IL-6 is a multifunctional cytokine that plays a crucial role in numerous physiological processes, including immune regulation, inflammatory responses, the control of hematopoiesis, and cell growth and differentiation. Alterations in IL-6 levels are closely associated with various disease states, such as autoimmune disorders, chronic inflammatory diseases, and certain types of tumors. This isotope can be used in NMR studies of disease mechanisms and in mass spectrometry analysis.
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Cat. No.: HY-L012
7,360 compounds

Metabolism is the set of life-sustaining chemical reactions in organisms. Metabolic pathways are enzyme-mediated biochemical reactions that lead to biosynthesis (anabolism) or breakdown (catabolism) of natural product small molecules within a cell or tissue. Acting as catalysts, enzymes are crucial to metabolism - they allow a reaction to proceed more rapidly - and they also allow the regulation of the rate of a metabolic reaction. Proteases are used throughout an organism for various metabolic processes. Proteases control a great variety of physiological processes that are critical for life, including the immune response, cell cycle, cell death, wound healing, food digestion, and protein and organelle recycling. Imbalances in metabolic activities have been found to be critical in a number of pathologies, such as cardiovascular diseases, inflammation, cancer, and neurodegenerative diseases.

MCE designs a unique collection of 7,360 Metabolism/Protease-related small molecules that act as a useful tool for drug discovery of metabolism-related diseases.

Cat. No.: HY-N22000
CAS No.: 14379-32-9
N-Stearoyl valine is an N-acyl derivative of valine. N-Stearoyl valine antagonizes intracellular calcium mobilization by binding to the TRPV3 channel as a bioactive endogenous ligand of transient receptor potential (TRP) channels. N-Stearoyl valine participates in physiological processes such as lipid metabolism and cell signal transduction as an endogenous metabolite. N-Stearoyl valine is also a flavor compound. N-Stearoyl valine can be used in research on biomarker detection, animal nutrition and amino acid metabolism, and the development of the food and beverage industry .
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Cat. No.: HY-L003
3,650 compounds

Apoptosis is an ordered and orchestrated cellular process that occurs in physiological and pathological conditions, which is also called programmed cell death (PCD). Apoptosis plays a crucial role in developing and maintaining the health of the body by eliminating old cells, unhealthy cells and unnecessary cells. Too little or too much apoptosis contribute to many diseases. When apoptosis does not work correctly, cells that should be eliminated may persist and become immortal, for example, in cancer and leukemia. When apoptosis works overly well, it kills too many cells and inflicts grave tissue damage. This is the case in strokes and neurodegenerative disorders such as Alzheimer's, Huntington's, and Parkinson's disease.

MCE designs a unique collection of 3,650 apoptosis-related compounds mainly focusing on the key targets in the apoptosis signaling pathway and can be used in the research of apoptosis signal pathway and related diseases.

Cat. No.: HY-L168
707 compounds

Extracellular vesicles (EVs) are small membrane binding structures that are released from cells into the surrounding environment and play a crucial role in mediating and regulating intercellular communication related to physiological and pathological processes. EVs are lipid membrane vesicles composed of proteins, lipids, and nucleic acids. EVs can be divided into several types based on their source, such as extracellular vesicles, microcapsules, and apoptotic vesicles. The size range of exosomes is 30-150nm, which are endocrine in multi vesicular endosomes (MVEs); microvesicles (50-1000nm) are secreted directly through extracellular interactions, thereby releasing plasma membrane vesicles. In contrast, apoptotic bodies are usually larger, ranging in size from 1 to 5 μ m. This is generated during programmed cell death. EV plays a crucial role in transmitting information between cells and influencing the behavior and function of receptor cells.

MCE designs a unique collection of 707 small molecules related to extracellular vesicles (EVs). It is a good tool to be used for research on metabolize, cancer and other diseases.

Cat. No.: HY-L174
276 compounds

Macrophages are effector cells of the innate immune system, engulfing bacteria and secreting pro-inflammatory and antibacterial mediators. They are an important component of the first line defense against pathogens and tumor cells. In addition, macrophages play an important role in eliminating damaged cells through programmed cell death. Like all immune cells, macrophages originate from pluripotent hematopoietic stem cells in the bone marrow. Macrophages play key functions in many physiological processes beyond homeostasis and innate immunity, including metabolic function, cell debris clearance, tissue repair, and remodeling. In order to fulfill their different functional roles, macrophages can polarize into a series of phenotypes, including classic (pro inflammatory, M1) and alternative (anti-inflammatory, healing promoting, M2) activation states, as well as a wide range of regulatory phenotypes and subtypes. Macrophages exist in all vertebrate tissues and have a dual function in host protection and tissue damage, maintaining a good balance.

MCE designs a unique collection of 276 macrophage related compounds. It is a good tool to be used for research on Inflammation, cancer and other diseases.