Examples of 'liposomes can' in a sentence
Meaning of "liposomes can"
The phrase 'liposomes can' indicates the capability or potential of liposomes in performing certain functions or applications. Liposomes are microscopic vesicles composed of lipid bilayers, often used as carriers for drug delivery, cosmetics, or research purposes. The phrase suggests the versatility or effectiveness of liposomes in various contexts
How to use "liposomes can" in a sentence
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liposomes can
Liposomes can be classified according to various parameters.
Transference through liposomes can also be used.
Liposomes can be loaded with supplemental substances.
The diameter of liposomes can vary considerably.
Liposomes can also be used as carriers.
Several types of liposomes can be distinguished.
Liposomes can be prepared by different methods.
Standard methods for coupling targeting agents to liposomes can be used.
Therefore larger liposomes can be used to maximize echogenicity.
Any suitable means of encapsulating the drug combination in the liposomes can be employed.
Liposomes can be prepared by a variety of methods.
Under appropriate circumstances liposomes can adsorb to almost any cell type.
The liposomes can be used as a general delivery system.
The preparation of cytokines in form of liposomes can improve the biological activity thereof.
The liposomes can be unilamellar or multilamellar.
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The colloidal dispersion system containing liposomes can be used for passive or active targeting.
Liposomes can have one or more lipid membranes.
The lipids which form the liposomes can be of natural or synthetic origin.
The liposomes can be used in a method of treatment by therapy or diagnosis.
The preparation comprising povidone iodine combined with liposomes can be administered by known methods.
Such sized liposomes can then be sterilized by filtration.
By this technique gigantic networks with a large number of nanotubes and liposomes can be constructed.
Morphology of the liposomes can be analyzed by electron microscopy.
In certain embodiments, commercially available liposomes can be used.
The production of liposomes can be performed at room temperature.
Incorporation of growth factors or fractions thereof into liposomes can include,.
Liposomes can encapsulate both lipophillic and hydrophillic drugs.
Multilamellar and unilamellar liposomes can be made by several relatively simple methods.
Liposomes can be anionic or cationic.
The route of delivery of liposomes can also affect their distribution in the body.
Liposomes can be targeted in cancer tissue with passive or active targeting.
These results show that liposomes can alter the pharmacokinetics of the drug.
Liposomes can also be used as carriers for the active compound.
The lamellar structure and size of the resulting liposomes can be characterized using electron microscopy.
The liposomes can be delivered vÃa catheter to the renal artery.
Said hydrated lipidic lamellar phases or the liposomes can be prepared as follows,.
The liposomes can be made by any method known in the are.
Depending on the charge of the phospholipids, liposomes can be positive, negative or neutral.
These liposomes can safely be administered to animals for therapeutic purposes.
After several washes of this type, the liposomes can be completely emptied of the drug.
Stressed liposomes can be obtained by any of the above mentioned procedures.
Any nontoxic, physiologically acceptable and metabolizable lipid capable of forming liposomes can be used.
Drug release from liposomes can also be activated by different methods.
The therapeutic compounds can be formulated in liposomes ;, the liposomes can include a targeting moiety.
Liposomes can be formed from a single lipid or from a mixture of lipids.
The ceramide containing liposomes can be triggered to leak with local AMF pulse.
Liposomes can be used to encapsulate hydrophobic and hydrophilic active ingredients.
For example, the liposomes can be applied topically.
Liposomes can be utilized as drug carriers and vehicles for imaging agents.
Because of their aqueous cores, liposomes can be used as carriers for water-soluble substances.
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Such liposomes are then ready for use
The mechanism is referred to as passive accumulation of liposomes
The liposomes are recovered under sterile conditions