143 Results for "

cellular systems

" in MedChemExpress (MCE) Product Catalog:
Products (143)

143 Results for "cellular systems" in MCE Product Catalog:

Cat. No.: HY-D3121
CAS No.: 2763752-95-8
Target:  

Fluorescent Dye

Research Areas:  

Metabolic Disease

HOTPy is a mitochondria-targeted fluorescent viscosity probe with aggregation-induced emission properties, which responds to microenvironmental viscosity. HOTPy can recognize the abnormal increase in mitochondrial viscosity and capture dynamic viscosity changes in acute alcoholic liver injury models at both cellular and in vivo levels. The maximum absorption peak of HOTPy in PBS solution is at 379 nm; its maximum emission peak reaches 611 nm in a high-viscosity glycerol system. HOTPy can be used for the research of acute alcoholic liver injury .
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Cat. No.: HY-182307
CAS No.: 1018153-87-1
Research Areas:  

Cancer

OH14 is a cellular FLICE-like inhibitory protein (cFLIP) inhibitor and TNF-related apoptosis-inducing ligand (TRAIL) sensitizer. OH14 selectively binds to the DED1 pocket of cFLIP, disrupting its recruitment to the TRAIL-death inducing signalling complex without affecting procaspase-8 recruitment to FADD, allowing procaspase-8 activation. OH14 promotes TRAIL-mediated apoptosis and impairs cell viability in breast cancer systems when combined with TRAIL. OH14 can be used for the research of breast cancer .
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Cat. No.: HY-164579
CAS No.: 1364335-16-9
Target:  

Liposome

Research Areas:  

Others

NH2-GG-DSPE is a lipid compound that can be used for liposome preparation. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble loads can be captured in the internal aqueous space of liposomes, while lipophilic loads can be distributed into the lipid bilayer and become part of the lipid bilayer. Especially for the delivery of antisense oligonucleotides, it can overcome the problems of inefficient cellular uptake and rapid loss in the body.
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Cat. No.: HY-189222
CAS No.: 3118096-98-0
Target:  

PROTACs Ras ERK Phosphatase

Research Areas:  

Cancer

RP04340 is an orally active, selective pan-KRAS PROTAC degrader. RP04340 hijacks the CRBN E3 ligase and the cellular proteasome system to degrade KRAS, without degrading HRAS, NRAS, or common CRBN neosubstrates. RP04340 inhibits KRAS downstream signaling pathways, including pERK and DUSP6. RP04340 exhibits anticancer activity in various KRAS-mutant cancers. RP04340 can be used to study kras-driven cancers, including pancreatic ductal adenocarcinoma, colorectal cancer, and lung adenocarcinoma .
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Cat. No.: HY-N17326
CAS No.: 242794-72-5
Ilekudinol B is an inhibitor of ACAT and PTP1B, with an IC50 of 5.3 μM and a Ki of 11.6 μM against human PTP1B. Ilekudinol B inhibits the classical pathway of the complement system, with an IC50 of 51 μM. Ilekudinol B inhibits TNF-α-induced cellular IL-8 secretion, promotes glucose uptake in skeletal muscle myotubes, and acts as an insulin mimetic and insulin sensitizer. Ilekudinol B can be used in research related to type 2 diabetes, obesity, and inflammatory diseases .
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Cat. No.: HY-Y1004
CAS No.: 112-30-1
Synonyms: Decyl alcohol
1-Decanol (Decyl alcohol) is a nematicidal agent derived from Houttuynia cordata, with an LC50 of 31.5 μg/mL against potato cyst nematodes (PCN). 1-decanol directly damages nematode surface structures, induces cellular apoptosis, and disrupts the oxidative stress regulation system, while also downregulating defense-related metabolic pathways in potato, thereby promoting the reallocation of metabolic resources from defense to growth. 1-Decanol can be used for the research of potato cyst nematode infestation .
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Cat. No.: HY-106031
CAS No.: 866874-63-7
Purity:  97.48%
Research Areas:  

Cancer

F-14512 is an anticancer agent that utilizes the polyamine transport system (PTS) to selectively deliver polyamine-containing drugs to cancer cells. F-14512 enhances the affinity of polyamines for DNA, thereby inhibiting topoisomerase II and achieving selective cellular uptake. F-14512 exhibits significant cytotoxicity against cells with high PTS activity and induces DNA damage. F-14512 demonstrates potent antitumor activity in the MX1 breast tumor xenograft model. F-14512 can be used to study breast cancer .
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Cat. No.: HY-106031A
CAS No.: 866874-39-7
Research Areas:  

Cancer

F-14512 hydrochloride is an anticancer agent that utilizes the polyamine transport system (PTS) to selectively deliver polyamine-containing drugs to cancer cells. F-14512 hydrochloride enhances the affinity of polyamines for DNA, thereby inhibiting topoisomerase II and achieving selective cellular uptake. F-14512 hydrochloride exhibits significant cytotoxicity against cells with high PTS activity and induces DNA damage. F-14512 hydrochloride demonstrates potent antitumor activity in the MX1 breast tumor xenograft model. F-14512 hydrochloride could be used to study breast cancer .
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Cat. No.: HY-173599
Target:  

Molecular Glues PNPLA3

Research Areas:  

Metabolic Disease

NUV-244 is a molecular glue degrader of PNPLA3 I148M. NUV-244 induces degradation via the ubiquitin-proteasome system involving the E3 ligase BFAR. NUV-244 promotes 26S proteasome-dependent degradation of PNPLA3 I148M. NUV-244 restores lipid droplet morphology and cellular fitness in hepatocytes expressing PNPLA3 I148M. NUV-244 can be used in the research of metabolic dysfunction-associated fatty liver disease .
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Cat. No.: HY-157678
CAS No.: 321883-39-0
Synonyms: 18:2 PS sodium
Target:  

Liposome

Research Areas:  

Others

1,2-Dilinoleoyl-sn-glycero-3-phospho-L-serine sodium (18:2 PS sodium) is a lipid compound that can be used for liposome preparation. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble loads can be captured in the internal aqueous space of liposomes, while lipophilic loads can be distributed into the lipid bilayer and become part of the lipid bilayer. Especially for the delivery of antisense oligonucleotides, it can overcome the problems of inefficient cellular uptake and rapid loss in the body.
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Cat. No.: HY-B0315A
Synonyms: Biotin-Cyanocobalamin B12
Biotin-Vitamin B12 (Biotin-Cyanocobalamin B12) is the biotinylated Vitamin B12 (HY-B0315). Vitamin B12 is a vitamin that can pass through the blood-brain barrier. Vitamin B12 plays a key role in the normal functioning of the brain and nervous system, and for the formation of blood. Vitamin B12 is beneficial for many inflammatory diseases and also provides protection in oxidative-stress-associated pathologies. Biotin-Vitamin B12 can be used in researches on vitamin B12 transport, cellular uptake, targeted delivery, analytical detection, and other areas .
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Cat. No.: HY-184480
CAS No.: 2133321-59-0
Target:  

SNIPERs Huntingtin

Research Areas:  

Neurological Disease

PROTAC HTT Degrader-1 is a cIAP1-recruiting Htt PROTAC degrader. PROTAC HTT Degrader-1 recruits cIAP1 to mHtt or wtHtt and induces their degradation via the ubiquitin-proteasome system. PROTAC HTT Degrader-1 can be used in research related to Huntington's disease .
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Cat. No.: HY-L011
2,278 compounds

Most of molecules enter or leave cells mainly via membrane transport proteins, which play important roles in several cellular functions, including cell metabolism, ion homeostasis, signal transduction, the recognition process in the immune system, energy transduction, etc. There are three major types of transport proteins, ATP-powered pumps, channel proteins and transporters. Transport proteins such as channels and transporters play important roles in the maintenance of intracellular homeostasis, and mutations in these transport protein genes have been identified in the pathogenesis of a number of hereditary diseases. In the central nervous system, ion channels have been linked to, but not limited to, many diseases such asataxias, paralyses, epilepsies, and deafness. This indicates the roles of ion channels in the initiation and coordination of movement, sensory perception, and encoding and processing of information. Ion channels are a major class of drug targets in drug development.

MCE designs a unique collection of 2,278 smal-molecule modulators that can be used for the research of Ion Channel and Membrane Transporter or high throughput screening (HTS) related drug discovery.

Cat. No.: HY-149228
CAS No.: 2931509-11-2
Target:  

Deubiquitinase

Research Areas:  

Cancer

USP28-IN-2 is a USP28 inhibitor (IC50=0.3 μM) with high selectivity over USP2, USP7, USP8, USP9x, UCHL3 and UCHL5. USP28-IN-2 shows cytotoxicity against cancer cells, down-regulates the cellular level of c-Myc through ubiquitin-proteasome system. USP28-IN-2 also decreases the ankyrase-1/2 level in vitro. USP28-IN-2 enhance the sensitivity of colorectal cancer cells to Regorafenib (HY-10331) .
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Cat. No.: HY-149229
CAS No.: 2931509-14-5
Purity:  98.26%
Target:  

Deubiquitinase

Research Areas:  

Cancer

USP28-IN-3 is a USP28 inhibitor (IC50=0.1 μM) with high selectivity over USP2, USP7, USP8, USP9x, UCHL3 and UCHL5. USP28-IN-3 shows cytotoxicity against cancer cells, down-regulates the cellular level of c-Myc through ubiquitin-proteasome system. USP28-IN-3 also decreases the ankyrase-1/2 level in vitro. USP28-IN-3 enhance the sensitivity of colorectal cancer cells to Regorafenib (HY-10331) .
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Cat. No.: HY-149230
CAS No.: 2931509-15-6
Purity:  99.35%
Target:  

Deubiquitinase

Research Areas:  

Cancer

USP28-IN-4 is a USP28 inhibitor (IC50=0.04 μM) with high selectivity over USP2, USP7, USP8, USP9x, UCHL3 and UCHL5. USP28-IN-4 shows cytotoxicity against cancer cells, down-regulates the cellular level of c-Myc through ubiquitin-proteasome system. USP28-IN-4 also decreases the ankyrase-1/2 level in vitro. USP28-IN-4 enhance the sensitivity of colorectal cancer cells to Regorafenib (HY-10331) .
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Cat. No.: HY-181134
CAS No.: 2715104-46-2
Target:  

PROTACs

Research Areas:  

Cancer

PROTAC HMGCR Degrader-2 is a HMGCR PROTAC degrader with an IC50 value of 0.25 μM. PROTAC degrades HMGCR-2 in Insig-silenced HepG2 cells with a DC50 of 0.12 μM. PROTAC HMGCR Degrader-2 takes PROTAC HMGCR Degrader-1 (HY-171823) as the oral prodrug. PROTAC HMGCR Degrader-2 degrades HMGCR by the VHL-dependent ubiquitin-proteasome system and reduces cellular cholesterol in HepG2 cells. PROTAC CDK2/4/6 Degrader-2 can be used for hyperlipidemia research .
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Cat. No.: HY-187219
CX-Se13 is an orally active pulmonary fibrosis inhibitor with anti-inflammatory and antioxidant activities. CX-Se13 regulates the Keap1/Nrf2/HO-1/NQO1, YAP/TAZ-TEAD, NF-κB p65 and TGF-β/Smads signaling pathways. CX-Se13 activates the cellular antioxidant defense system, restores redox balance, alleviates inflammatory responses, reduces collagen deposition, decreases pro-inflammatory cytokine levels and inhibits pathological progression. CX-Se13 can be used in studies related to pulmonary fibrosis .
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Cat. No.: HY-W782399
CAS No.: 17363-08-5
Synonyms: Sodium boranocarbonate
CORM-A1 (Sodium boranocarbonate) is a water-soluble carbon monoxide (CO) releasing molecule that facilitates the investigation of CO's impact on cellular systems. As CO is generated from heme degradation by the enzyme heme oxygenase, it serves as a crucial gaseous signaling mediator in mammalian cells. CORM-A1 not only exhibits anti-oxidant and anti-inflammatory properties but also regulates CO release in a manner dependent on pH and temperature, promoting mild vasorelaxation and hypotension. Furthermore, CORM-A1 has been shown to provide cytoprotection in primary cultures of astrocytes under oxidative stress while also enhancing autophagy due to its boron-containing composition.
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Cat. No.: HY-165975
CAS No.: 1314999-30-8
Synonyms: (2S)-3-Keto-C6-dihydrosphingosine hydrochloride
Target:  

Liposome

Research Areas:  

Others

(2S)-3-Keto sphinganine (d6:0) ((2S)-3-Keto-C6-dihydrosphingosine) hydrochloride is a lipid compound that can be used for liposome preparation. Liposomes are the main component of vesicles with concentric phospholipid bilayer membranes, which can be used to construct drug delivery systems for anti-cancer and anti-infection fields. Highly polar water-soluble loads can be captured in the internal aqueous space of liposomes, while lipophilic loads can be distributed into the lipid bilayer and become part of the lipid bilayer. Especially for the delivery of antisense oligonucleotides, it can overcome the problems of inefficient cellular uptake and rapid loss in the body.
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