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Patent · US4224179A · A · US

Process for the preparation of liposomes in aqueous solution

(11) Publication number
US4224179A
(21) Application number
05/931,242
(22) Filing date
1978-08-04
(30) Priority date
1977-08-05
(43) Publication date
1980-09-23
(45) Date of grant
1980-09-23
(51) IPC
A61K 9/127; A61K 9/50; B01J 13/02; B01J 13/12
(52) CPC
  • A61K Preparations for medical, dental or toiletry purposes: 9/1277
  • Y10S Technical subjects covered by former uspc cross-reference art collections [xracs] and digests: 516/929
(73) Assignee
Battelle Memorial Institute Inc
(72) Inventors
Michel Schneider
(54) Title
Process for the preparation of liposomes in aqueous solution
(57) Abstract

A process for the preparation of a solution or suspension of liposomes in an aqueous medium comprising the steps of dispersing a first aqueous liquid in an essentially water-insoluble solvent in the presence of a compound of the formula XY wherein X is a hydrophilic lipophobic group and Y is a lipophilic hydrophobic group to form a dispersion of liposome precursors in the solvent, the precursors consisting of small vesicles of the first aqueous liquid surrounded by a monomolecular film of compound XY, emulsifying the liposome precursors in a second aqueous medium in the presence of a compound of the formula ZW wherein Z is a hydrophilic group and W is a hydrophobic group to thereby form a solution or suspension of liposomes in the second aqueous medium, said liposomes consisting of the first aqueous liquid surrounded by a bimolecular film of the structure XY-WZ and removing the water-insoluble solvent prior to after said emulsification.

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Claims (19)

  1. In a process for the preparation of a solution or suspension of liposomes in an aqueous medium in which a non-aqueous dispersion of liposome precursors is first produced by dispersing a first aqueous liquid in an essentially water-insoluble solvent in the presence of a compound of the formula XY wherein X is a hydrophilic lipophobic group and Y is a lipophilic hyrophobic group, said liposome precursors consisting of small vesicles of the first aqueous liquid surrounded by a monomolecular film of compound XY, the improvement comprising thereafter emulsifying the liposome precursors in said aqueous medium in the presence of a compound of the formula ZW wherein Z is a hydophilic group and W is a hydophobic group to thereby form a solution or suspension of liposomes consisting of the first aqueous liquid surrounded by a bimolecular film of structure XY-WZ, and water-insoluble solvent being removed prior to or after said emulsification.
  2. The process of claim 1 wherein the compound ZW is compound XY thereby forming a bimolecular film of the structure XY-YX.
  3. The process of claim 1 in which the dispersion of the liposome precursors is emulsified in said aqueous medium and the solvent is thereafter removed by evaporation.
  4. A process for the preparation of a solution or suspension of liposomes in an aqueous medium comprising the steps of dispersing a first aqueous liquid in an essentially water-insoluble solvent in the presence of a compound of the formula XY wherein X is a hydrophilic lipophobic group and Y is a lipophilic hydrophobic group to form a dispersion of liposome precursors in the solvent, the precursors consisting of small vesicles of the first aqueous liquid surrounded by a monomolecular film of compound XY, emulsifying the liposome precursors in a second aqueous medium in the presence of a compound of the formula ZW wherein Z is a hydrophilic group and W is a hydrophobic group to thereby form a solution or suspension of liposomes in the second aqueous medium, said liposomes consisting of the first aqueous liquid surrounded by a bimolecular film of the structure XY-WZ and removing the water-insoluble solvent prior to or after said emulsification.
  5. The process of claim 4, wherein the dispersion of said first liquid in the water-insoluble solvent is carried out with the aid of sonic or ultra-sonic vibration.
  6. The process of claim 4 in which the compound ZW is compound XY thereby forming a bimolecular film of structure XY-YX.
  7. The process of claim 4 in which the dispersion of liposome precursors is emulsified in the second aqueous medium and the solvent is removed after by evaporation.
  8. A process for the preparation of a solution or suspension of liposomes in an aqueous medium comprising the steps of dispersing a liquid product to be encapsulated with the aid of sonic or ultrasonic vibration in an essentially water-insoluble solvent containing in solution an excess of a compound of the formula XY wherein X is a hydrophilic lipophobic group and Y is a hydrophobic lipophilic group to form a dispersion of liposome precursers in the solvent consisting of vesicles of the liquid product surrounded by a monomolecular film of the compound XY, emulsifying this dispersion of liposome precursors containing an excess of the XY compound in a second aqueous medium to form a solution or suspension of liposomes consisting of vesicles of the liquid product surrounded by a bimolecular film of structure XY-YX and thereafter removing the solvent by evaporation to provide a solvent-free solution or suspension of the liposomes in said aqueous medium.
  9. The process of claim 4 or 8 wherein compound XY is a lipid selected from the group consisting of lecithin, phosphatidyl-ethanolamine, lysolecithin, lysophosphatidylethanolamine, phosphatidylserine, phosphatidylinositol, sphingomyelin, cardiolipin, phosphatidic acid, cerebrosides, stearylamine and dipalmitoyl-phosphatidylcholine.
  10. The process of claim 4 or 8 in which the compound of formula XY is a mixture of at least one phospholipid and at least one other lipid belonging to a category of lipids other than phospholipids.
  11. The process of claim 10 in which the other lipid is selected from the group consisting of cholesterol and tocopherol.
  12. The process of claim 4 in which the compound ZW is a mixture of at least one phospholipid and at least one other lipid belonging to a category of lipids other than phospholipids.
  13. The process of claim 12 wherein said other lipid is selected from the group consisting of cholesterol and tocopherol.
  14. The process of claim 4 or 8 wherein the water-insoluble solvent is selected from the group consisting of benzene, alkyl-benzene haloalkylbenzene, aliphatic ethers, aldehydes, esters and ketones and free and halogenated aliphatic and cycloaliphatic hydrocarbons.
  15. The process of claim 8 wherein the liquid product to be encapsulated is selected from the group consisting of dyestuffs, flavors, fragrances, antibiotics, enzymes, polypeptides and chelating agents.
  16. The process of claim 4 or 8 wherein the second aqueous medium is pure water or an aqueous solution of a water-soluble salt.
  17. The process of claim 16 wherein the aqueous medium is 0.15 M NaCl aqueous solution.
  18. The process of claim 8 wherein said evaporation of the solvent is provided by sweeping a gas over the aqueous medium.
  19. The process of claim 8 wherein evaporation is provided by the application of reduced pressure.

Description

The present invention concerns a process for the preparation of solutions or suspension of liposomes in aqueous media.

Liposomes are microscopic vesicles, generally spherically shaped, formed from one or several concentric layers (lamellae) of lipid molecules, i.e. compounds having a lipophobic hydrophilic moiety and a lipophilic hydrophobic moiety. The lamellae of a water-soluble liposome are formed of at least one bimolecular lipid layer (which lipid can be represented hereinafter by the formula XY, wherein X is the hydrophilic moiety and Y is the hydrophobic moiety), the molecules of this layer being so oriented that the hydrophilic functions thereof stay in contact with the aqueous phase. Since the liposomes lamellae are being separated from each other by a water film, they have a wall-like structure which can be schematically represented, in section, by a series of molecular composites XY--YX stacked together in the plane of the paper. The size of the liposomes vesicles is extremely variable and depends, as will be described hereinafter, on the methods used for the manufacture thereof; in general, they have a 25 to 30,000 nm diameter and the lipid film around is about 3 to 10 nm. The smaller liposomes of this range in general have a mono-lamellar envelope, that is a monolayer of the following molecular association: ##STR1## The aqueous phase in which the liposomes are in solution or suspension is generally different from the aqueous phase contained in the inside thereof.

Citations (7)

  • US3361680A
  • GB1502774A
  • DE2532317A1
  • US4089801A
  • FR2347924A1
  • NL7701554A
  • BE861011A
Record as JSON
{
  "publication_number": "US4224179A",
  "country": "US",
  "kind": "A",
  "title": "Process for the preparation of liposomes in aqueous solution",
  "abstract": "A process for the preparation of a solution or suspension of liposomes in an aqueous medium comprising the steps of dispersing a first aqueous liquid in an essentially water-insoluble solvent in the presence of a compound of the formula XY wherein X is a hydrophilic lipophobic group and Y is a lipophilic hydrophobic group to form a dispersion of liposome precursors in the solvent, the precursors consisting of small vesicles of the first aqueous liquid surrounded by a monomolecular film of compound XY, emulsifying the liposome precursors in a second aqueous medium in the presence of a compound of the formula ZW wherein Z is a hydrophilic group and W is a hydrophobic group to thereby form a solution or suspension of liposomes in the second aqueous medium, said liposomes consisting of the first aqueous liquid surrounded by a bimolecular film of the structure XY-WZ and removing the water-insoluble solvent prior to after said emulsification.",
  "claims": [
    "1. In a process for the preparation of a solution or suspension of liposomes in an aqueous medium in which a non-aqueous dispersion of liposome precursors is first produced by dispersing a first aqueous liquid in an essentially water-insoluble solvent in the presence of a compound of the formula XY wherein X is a hydrophilic lipophobic group and Y is a lipophilic hyrophobic group, said liposome precursors consisting of small vesicles of the first aqueous liquid surrounded by a monomolecular film of compound XY, the improvement comprising thereafter emulsifying the liposome precursors in said aqueous medium in the presence of a compound of the formula ZW wherein Z is a hydophilic group and W is a hydophobic group to thereby form a solution or suspension of liposomes consisting of the first aqueous liquid surrounded by a bimolecular film of structure XY-WZ, and water-insoluble solvent being removed prior to or after said emulsification.",
    "2. The process of claim 1 wherein the compound ZW is compound XY thereby forming a bimolecular film of the structure XY-YX.",
    "3. The process of claim 1 in which the dispersion of the liposome precursors is emulsified in said aqueous medium and the solvent is thereafter removed by evaporation.",
    "4. A process for the preparation of a solution or suspension of liposomes in an aqueous medium comprising the steps of dispersing a first aqueous liquid in an essentially water-insoluble solvent in the presence of a compound of the formula XY wherein X is a hydrophilic lipophobic group and Y is a lipophilic hydrophobic group to form a dispersion of liposome precursors in the solvent, the precursors consisting of small vesicles of the first aqueous liquid surrounded by a monomolecular film of compound XY, emulsifying the liposome precursors in a second aqueous medium in the presence of a compound of the formula ZW wherein Z is a hydrophilic group and W is a hydrophobic group to thereby form a solution or suspension of liposomes in the second aqueous medium, said liposomes consisting of the first aqueous liquid surrounded by a bimolecular film of the structure XY-WZ and removing the water-insoluble solvent prior to or after said emulsification.",
    "5. The process of claim 4, wherein the dispersion of said first liquid in the water-insoluble solvent is carried out with the aid of sonic or ultra-sonic vibration.",
    "6. The process of claim 4 in which the compound ZW is compound XY thereby forming a bimolecular film of structure XY-YX.",
    "7. The process of claim 4 in which the dispersion of liposome precursors is emulsified in the second aqueous medium and the solvent is removed after by evaporation.",
    "8. A process for the preparation of a solution or suspension of liposomes in an aqueous medium comprising the steps of dispersing a liquid product to be encapsulated with the aid of sonic or ultrasonic vibration in an essentially water-insoluble solvent containing in solution an excess of a compound of the formula XY wherein X is a hydrophilic lipophobic group and Y is a hydrophobic lipophilic group to form a dispersion of liposome precursers in the solvent consisting of vesicles of the liquid product surrounded by a monomolecular film of the compound XY, emulsifying this dispersion of liposome precursors containing an excess of the XY compound in a second aqueous medium to form a solution or suspension of liposomes consisting of vesicles of the liquid product surrounded by a bimolecular film of structure XY-YX and thereafter removing the solvent by evaporation to provide a solvent-free solution or suspension of the liposomes in said aqueous medium.",
    "9. The process of claim 4 or 8 wherein compound XY is a lipid selected from the group consisting of lecithin, phosphatidyl-ethanolamine, lysolecithin, lysophosphatidylethanolamine, phosphatidylserine, phosphatidylinositol, sphingomyelin, cardiolipin, phosphatidic acid, cerebrosides, stearylamine and dipalmitoyl-phosphatidylcholine.",
    "10. The process of claim 4 or 8 in which the compound of formula XY is a mixture of at least one phospholipid and at least one other lipid belonging to a category of lipids other than phospholipids.",
    "11. The process of claim 10 in which the other lipid is selected from the group consisting of cholesterol and tocopherol.",
    "12. The process of claim 4 in which the compound ZW is a mixture of at least one phospholipid and at least one other lipid belonging to a category of lipids other than phospholipids.",
    "13. The process of claim 12 wherein said other lipid is selected from the group consisting of cholesterol and tocopherol.",
    "14. The process of claim 4 or 8 wherein the water-insoluble solvent is selected from the group consisting of benzene, alkyl-benzene haloalkylbenzene, aliphatic ethers, aldehydes, esters and ketones and free and halogenated aliphatic and cycloaliphatic hydrocarbons.",
    "15. The process of claim 8 wherein the liquid product to be encapsulated is selected from the group consisting of dyestuffs, flavors, fragrances, antibiotics, enzymes, polypeptides and chelating agents.",
    "16. The process of claim 4 or 8 wherein the second aqueous medium is pure water or an aqueous solution of a water-soluble salt.",
    "17. The process of claim 16 wherein the aqueous medium is 0.15 M NaCl aqueous solution.",
    "18. The process of claim 8 wherein said evaporation of the solvent is provided by sweeping a gas over the aqueous medium.",
    "19. The process of claim 8 wherein evaporation is provided by the application of reduced pressure."
  ],
  "description_excerpt": "The present invention concerns a process for the preparation of solutions or suspension of liposomes in aqueous media.\n\nLiposomes are microscopic vesicles, generally spherically shaped, formed from one or several concentric layers (lamellae) of lipid molecules, i.e. compounds having a lipophobic hydrophilic moiety and a lipophilic hydrophobic moiety. The lamellae of a water-soluble liposome are formed of at least one bimolecular lipid layer (which lipid can be represented hereinafter by the formula XY, wherein X is the hydrophilic moiety and Y is the hydrophobic moiety), the molecules of this layer being so oriented that the hydrophilic functions thereof stay in contact with the aqueous phase. Since the liposomes lamellae are being separated from each other by a water film, they have a wall-like structure which can be schematically represented, in section, by a series of molecular composites XY--YX stacked together in the plane of the paper. The size of the liposomes vesicles is extremely variable and depends, as will be described hereinafter, on the methods used for the manufacture thereof; in general, they have a 25 to 30,000 nm diameter and the lipid film around is about 3 to 10 nm. The smaller liposomes of this range in general have a mono-lamellar envelope, that is a monolayer of the following molecular association: ##STR1## The aqueous phase in which the liposomes are in solution or suspension is generally different from the aqueous phase contained in the inside thereof.",
  "cpc": [
    "A61K 9/1277",
    "Y10S 516/929"
  ],
  "ipc": [
    "A61K 9/127",
    "A61K 9/50",
    "B01J 13/02",
    "B01J 13/12"
  ],
  "assignees": [
    "Battelle Memorial Institute Inc"
  ],
  "inventors": [
    "Michel Schneider"
  ],
  "filing_date": "1978-08-04",
  "publication_date": "1980-09-23",
  "grant_date": "1980-09-23",
  "priority_date": "1977-08-05",
  "application_number": "US-93124278-A",
  "family_id": "4353843",
  "cited_by_count": 557,
  "citations": [
    "US3361680A",
    "GB1502774A",
    "DE2532317A1",
    "US4089801A",
    "FR2347924A1",
    "NL7701554A",
    "BE861011A"
  ]
}

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