| Catalog | name | Description | price |
|---|---|---|---|
| R-C-3467 | GLP-1-PEG750-DSPE | Glucagon like peptide-1(GLP-1)is a kind of brain gut peptide secreted by ileal endocrine cells.It is mainly used as the target of type 2 diabetes drugs.PEG modification makes the previously insoluble peptides less soluble and highly mobile.PEG modification can reduce the filtration of drugs by kidney,reduce its pyrogen,reduce the digestion of protease, and enhance its transport capacity by protecting the body immune system.GLP-1 has two Lys located in the inactive site,which provides great flexibility for modification. | price> |
| R-C-3468 | HP2 targeting peptide-PEG350-DSPE | HER2,also known as c-erb2,consists of 922 adenine,1382 cytosine,1346 guanine and 880 thymine.Peptides, as receptor targeted antitumor carriers, are more and more used to improve the effect of chemotherapeutic drugs. Experiments have also proved that they can improve the antitumor effect by enhancing the targeting specificity of drugs, enhancing the targeted absorption of drugs, and improving the original insoluble of some small molecule drugs. Peptide carrier targeting technology is known as a new generation of targeted drug development technology. | price> |
| R-C-3469 | HP2-polyethylene glycol550-DSPE | HER2,also known as c-erb2,consists of 922 adenine,1382 cytosine,1346 guanine and 880 thymine.Peptides, as receptor targeted antitumor carriers, are more and more used to improve the effect of chemotherapeutic drugs. Experiments have also proved that they can improve the antitumor effect by enhancing the targeting specificity of drugs, enhancing the targeted absorption of drugs, and improving the original insoluble of some small molecule drugs. Peptide carrier targeting technology is known as a new generation of targeted drug development technology. | price> |
| R-C-3470 | HP2-PEG750-DSPE | HER2,also known as c-erb2,consists of 922 adenine,1382 cytosine,1346 guanine and 880 thymine.Peptides, as receptor targeted antitumor carriers, are more and more used to improve the effect of chemotherapeutic drugs. Experiments have also proved that they can improve the antitumor effect by enhancing the targeting specificity of drugs, enhancing the targeted absorption of drugs, and improving the original insoluble of some small molecule drugs. Peptide carrier targeting technology is known as a new generation of targeted drug development technology. | price> |
| R-C-3471 | DSPE-PEG350-CGKRKb targeting polypeptide | (DSPE) conjugated polyethylene glycol is a combination of phospholipids and polyethylene glycol, which has hydrophilicity and hydrophobicity. Polyethylene glycol phospholipid liposomes form high-quality materials, which can be used for drug delivery, gene transfection and vaccine delivery. Pegylated phospholipids can significantly improve blood circulation time and stabilize drug encapsulation. These materials can also be used for targeted drug delivery by modifying ligands with target surfaces, such as antibodies and peptides. | price> |
| R-C-3472 | DSPE-polyethylene-glycol550-CGKRKb | (DSPE) conjugated polyethylene glycol is a combination of phospholipids and polyethylene glycol, which has hydrophilicity and hydrophobicity. Polyethylene glycol phospholipid liposomes form high-quality materials, which can be used for drug delivery, gene transfection and vaccine delivery. Pegylated phospholipids can significantly improve blood circulation time and stabilize drug encapsulation. These materials can also be used for targeted drug delivery by modifying ligands with target surfaces, such as antibodies and peptides. | price> |
| R-C-3473 | CGKRKb-PEG750-DSPE | (DSPE) conjugated polyethylene glycol is a combination of phospholipids and polyethylene glycol, which has hydrophilicity and hydrophobicity. Polyethylene glycol phospholipid liposomes form high-quality materials, which can be used for drug delivery, gene transfection and vaccine delivery. Pegylated phospholipids can significantly improve blood circulation time and stabilize drug encapsulation. These materials can also be used for targeted drug delivery by modifying ligands with target surfaces, such as antibodies and peptides. | price> |
| R-C-3474 | apamin-polyethylene-glycol350-DSPE | (DSPE) conjugated polyethylene glycol is a combination of phospholipids and polyethylene glycol, which has hydrophilicity and hydrophobicity. Polyethylene glycol phospholipid liposomes form high-quality materials, which can be used for drug delivery, gene transfection and vaccine delivery. Apamin can selectively block SK channel. Apamin can inhibit the effect of SK channel, enhance the excitability of neurons and reduce the induction threshold of synaptic plasticity. | price> |
| R-C-3475 | apamin-PEG550-DSPE | (DSPE) conjugated polyethylene glycol is a combination of phospholipids and polyethylene glycol, which has hydrophilicity and hydrophobicity. Polyethylene glycol phospholipid liposomes form high-quality materials, which can be used for drug delivery, gene transfection and vaccine delivery. Apamin can selectively block SK channel. Apamin can inhibit the effect of SK channel, enhance the excitability of neurons and reduce the induction threshold of synaptic plasticity. | price> |
| R-C-3476 | DSPE-PEG750- apamin | (DSPE) conjugated polyethylene glycol is a combination of phospholipids and polyethylene glycol, which has hydrophilicity and hydrophobicity. Polyethylene glycol phospholipid liposomes form high-quality materials, which can be used for drug delivery, gene transfection and vaccine delivery. Apamin can selectively block SK channel. Apamin can inhibit the effect of SK channel, enhance the excitability of neurons and reduce the induction threshold of synaptic plasticity. | price> |

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