Catalog |
name |
Description |
price |
R-C-6918 |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 19:0 PC) |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 19:0 PC),Common saturated phosphatidylcholines include dipalmitoylphosphatidylcholine(DPPC,16:0)and distearoyl phosphatidylcholine (DSPC,18:0);19:0 PC belongs to saturated phosphatidylcholine with longer carbon chains Compared to unsaturated phospholipids,saturated PC has more stable chemical properties and is less prone to oxidation or hydrolysis reactions. |
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R-C-6919 |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 20:0 PC) |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 20:0 PC),Compared to phospholipids containing unsaturated fatty acids,20:0 PC liposomes are less prone to oxidation or degradation during long-term storage, making them suitable for experimental scenarios that require high stability Mainly used in scientific research fields(such as drug carriers, membrane biology research),prohibited for human experiments. |
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R-C-6920 |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 21:0 PC) |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 21:0 PC),Compared to phospholipids containing unsaturated fatty acids,21:0 PC liposomes are less prone to oxidation or degradation during long-term storage, making them suitable for experimental scenarios that require high stability Mainly used in scientific research fields(such as drug carriers, membrane biology research),prohibited for human experiments. |
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R-C-6921 |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 22:0 PC (DBPC)) |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 22:0 PC (DBPC)),DBPC saturated fatty acid chains have no double bonds,strong intermolecular van der Waals forces,and form a tightly ordered lipid bilayer structure with low permeability and high mechanical strength.Compared to liposomes containing unsaturated phospholipids,DBPC liposomes are less prone to oxidation or hydrolysis during long-term storage,making them suitable for experiments with high stability requirements. |
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R-C-6922 |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 23:0 DBPC) |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 23:0 DBPC),Saturated straight chain fatty acids(without double bonds)form a tight lipid bilayer through strong van der Waals forces,with mechanical strength and stability superior to phospholipids containing unsaturated fatty acids.Used for developing sustained-release formulations or tumor targeted drug carriers,it is necessary to combine cholesterol regulation membrane fluidity or enhance functionality through surface modification(such as targeting ligand coupling). |
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R-C-6923 |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 24:0 DBPC) |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 24:0 DBPC),Composed of 100% 24:0 DBPC(1,2-dihydroxyphosphatidylcholine),the saturated fatty acid chain(24 carbons)has no double bonds,endowing the liposome with high stability and rigidity Symmetric saturated chains form tight lipid bilayers through strong van der Waals forces,with high mechanical strength and low permeability,making them suitable for encapsulating hydrophilic drugs. |
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R-C-6924 |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 14:0-16:0 PC) |
Lyophosome made from Saturated Phosphatidylcholine(PC)(100% 14:0-16:0 PC),Composed of 100% 14:0-16:00 PC(mixed saturated phosphatidylcholine),it contains saturated fatty acid chains of tetradecanoic acid(14:0)and hexadecanoic acid(16:0),with no double bonds and stable structure.Saturated fatty acid chains form a tight lipid bilayer through strong van der Waals forces,with high membrane mechanical strength and low permeability,making it suitable for encapsulating hydrophilic drugs. |
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R-C-6925 |
Lyophosome made from Saturated PC(100% 14:0-18:0 PC) |
Lyophosome made from Saturated Phosphatidylcholine(PC)(100% 14:0-18:0 PC),Composed of 100% 14:0-16:00 PC(mixed saturated phosphatidylcholine),it contains saturated fatty acid chains of tetradecanoic acid(14:0)and hexadecanoic acid(16:0),with no double bonds and stable structure.Saturated fatty acid chains form a tight lipid bilayer through strong van der Waals forces,with high membrane mechanical strength and low permeability,making it suitable for encapsulating hydrophilic drugs.The non double bond structure significantly reduces the risk of oxidation,and the long-term storage stability after freeze-drying is better than that of liposomes containing unsaturated chains. |
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R-C-6926 |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 16:0-14:0 PC) |
This liposome is composed of 100% 16:0-14:0 PC,specifically 1-palmitoyl-2-meristoyl-sn-glycoro-3-phosphocholine,which is a double saturated phosphatidylcholine formed by the binding of palmitoyl (16:0)and myristoyl(14:0)fatty acid chains.Fatty acid chains have no carbon carbon double bonds and are arranged in a straight chain,with strong intermolecular forces,forming a tight lipid bilayer structure. |
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R-C-6927 |
Lyophosome made from Saturated Phosphatidylcholine (PC)(100% 16:0-18:0 PC) |
This liposome is composed of 100% 16:0-18:00 PC,namely 1-palmitoyl-2-stearoyl-sn-gycero-3-phosphoryline,where the fatty acid chains are fully saturated(sn-1 position is palmitic acid(16:0),sn-2 position is stearic acid(18:0)).Fully saturated fatty acid chains avoid oxidation and hydrolysis reactions,significantly improving the storage stability of liposomes (stored in a dry and dark environment at -20℃). |
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