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US20020042388A1 - Lyophilizable and enhanced compacted nucleic acids - Google Patents

Lyophilizable and enhanced compacted nucleic acids
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Publication number
US20020042388A1
US20020042388A1US09/867,693US86769301AUS2002042388A1US 20020042388 A1US20020042388 A1US 20020042388A1US 86769301 AUS86769301 AUS 86769301AUS 2002042388 A1US2002042388 A1US 2002042388A1
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US
United States
Prior art keywords
nucleic acid
composition
polycation
complex
diameter
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Abandoned
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US09/867,693
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Mark Cooper
Murali Pasumarthy
Tomasz Kowalczyk
Maureen Costello
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Copernicus Therapeutics Inc
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Copernicus Therapeutics Inc
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Application filed by Copernicus Therapeutics IncfiledCriticalCopernicus Therapeutics Inc
Priority to US09/867,693priorityCriticalpatent/US20020042388A1/en
Publication of US20020042388A1publicationCriticalpatent/US20020042388A1/en
Priority to US10/305,078prioritypatent/US20030078229A1/en
Priority to US10/305,089prioritypatent/US20030078230A1/en
Priority to US10/307,555prioritypatent/US20030134818A1/en
Priority to US10/307,284prioritypatent/US20030171322A1/en
Assigned to COPERNICUS THERAPEUTICS, INC.reassignmentCOPERNICUS THERAPEUTICS, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: COOPER, MARK, KOWALCZYK, TOMASZ H., PASUMARTHY, MURALI K.
Priority to US10/656,192prioritypatent/US8017577B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

Counterions of polycations used to compact nucleic acids profoundly affect shape and stability of particles formed. Shape is associated with differential serum nuclease resistance and colloidal stability. A surrogate for determining such properties that is easy to measure is the turbidity parameter. Shape also affects the suitability and efficacy of compacted nucleic acid complexes for transfecting cells by various routes into a mammalian body. Moreover, counterions such as acetate can protect compacted nucleic acid complexes from adverse effects of lyophilization

Description

Claims (176)

20. A non-naturally occurring composition comprising unaggregated nucleic acid complexes, each complex consisting essentially of a single nucleic acid molecule and one or more polycation molecules, wherein said polycation molecules have a counterion selected from the group consisting of acetate, bicarbonate, and chloride, said polycation molecule having a nucleic acid binding moiety through which it is complexed to the nucleic acid, wherein said nucleic acid molecule encodes at least one functional protein, wherein said complex is compacted to a diameter which is less than double the theoretical minimum diameter of a complex of said single nucleic acid molecule and a sufficient number of polycation molecules to provide a charge ratio of about 1:1, in the form of a condensed sphere, or 30 nm, whichever is larger.
38. A method of preparing a composition comprising unaggregated nucleic acid complexes, each complex consisting essentially of a single nucleic acid molecule and one or more polycation molecules, said method comprising:
mixing a nucleic acid molecule with a polycation molecule at a salt concentration sufficient for compaction of the complex to a diameter which is less than double the theoretical minimum diameter of a complex of said single nucleic acid molecule and a sufficient number of polycation molecules to provide a charge ratio of about 1:1, in the form of a condensed sphere, or 30 nm, whichever is larger, whereby unaggregated nucleic acid complexes are formed, wherein each complex consists essentially of a single nucleic acid molecule and one or more polycation molecules, and wherein said polycation molecules have a counterion selected from the group consisting of bicarbonate and chloride.
41. A method of preparing a composition comprising unaggregated nucleic acid complexes, each complex consisting essentially of a single nucleic acid molecule and one or more polycation molecules, said method comprising:
mixing a nucleic acid molecule with a polycation molecule in a solvent to form a complex, said mixing being performed in the absence of added salt, whereby the nucleic acid forms soluble complexes with the polycation molecule without forming aggregates, wherein each complex consists essentially of a single nucleic acid molecule and one or more polycation molecules, wherein the complexes have a diameter which is less than double the theoretical minimum diameter of a complex of said single nucleic acid molecule and a sufficient number of polycation molecules to provide a charge ratio of about 1:1, in the form of a condensed sphere, or 30 μm, whichever is larger, wherein the polycation has acetate as a counterion.
44. A method of preparing a composition comprising unaggregated nucleic acid complexes, each complex consisting essentially of a single nucleic acid molecule and one or more polycation molecules, said method comprising:
mixing a nucleic acid molecule with a polycation molecule in a solvent to form a complex, said mixing being performed in the absence of added salt, whereby the nucleic acid forms soluble complexes with the polycation molecule without forming aggregates, wherein each complex consists essentially of a single nucleic acid molecule and one or more polycation molecules, wherein the complexes have a diameter which is less than double the theoretical minimum diameter of a complex of said single nucleic acid molecule and a sufficient number of polycation molecules to provide a charge ratio of about 1:1, in the form of a condensed sphere, or 30 nm, whichever is larger, wherein the polycation has a counterion selected from the group consisting of bicarbonate and chloride.
59. A method of preventing or treating a disease or other clinical condition in a subject which comprises:
administering intramuscularly or to the lung of the subject a prophylactically or therapeutically effective amount of a composition comprising:
unaggregated nucleic acid complexes, each complex consisting essentially of a single nucleic acid molecule and one or more polycation molecules, said polycation molecule having acetate as a counterion, wherein said complex is compacted to a diameter which is less than (a) double the theoretical minimum diameter of a complex of said single nucleic acid molecule and a sufficient number of polycation molecules to provide a charge ratio of about 1:1, in the form of a condensed sphere, or (b) 30 nm, whichever is larger,
said nucleic acid being one whose integration, hybridization or expression within target cells of said subject prevents or treats said disease or other clinical condition.
64. A method of preventing or treating a disease or other clinical condition in a subject which comprises:
administering intramuscularly or to the lung of the subject a prophylactically or therapeutically effective amount of a composition comprising:
unaggregated nucleic acid complexes, each complex consisting essentially of a single nucleic acid molecule and one or more polycation molecules, said polycation molecule having a counterion selected from the group consisting of bicarbonate and chloride, wherein said complex is compacted to a diameter which is less than (a) double the theoretical minimum diameter of a complex of said single nucleic acid molecule and a sufficient number of polycation molecules to provide a charge ratio of about 1:1, in the form of a condensed sphere, or (b) 30 μm, whichever is larger, said nucleic acid being one whose integration, hybridization or expression within target cells of said subject prevents or treats said disease or other clinical condition.
160. A method of preparing a composition comprising unaggregated nucleic acid complexes, each complex consisting essentially of a single nucleic acid molecule and one or more polycation molecules, said method comprising:
mixing a nucleic acid molecule with a polycation molecule at a salt concentration sufficient for compaction of the complex to a diameter which is less than double the theoretical minimum diameter of a complex of said single nucleic acid molecule and a sufficient number of polycation molecules to provide a charge ratio of about 1:1, in the form of a condensed sphere, or 30 nm, whichever is larger, whereby unaggregated nucleic acid complexes are formed, wherein each complex consists essentially of a single nucleic acid molecule and one or more polycation molecules, and wherein said polycation molecules have a counterion selected from the group consisting of acetate, bicarbonate and chloride.
US09/867,6932000-05-312001-05-31Lyophilizable and enhanced compacted nucleic acidsAbandonedUS20020042388A1 (en)

Priority Applications (6)

Application NumberPriority DateFiling DateTitle
US09/867,693US20020042388A1 (en)2001-05-012001-05-31Lyophilizable and enhanced compacted nucleic acids
US10/305,078US20030078229A1 (en)2000-05-312002-11-27Lyophilizable and enhanced compacted nucleic acids
US10/305,089US20030078230A1 (en)2000-05-312002-11-27Lyophilizable and enhanced compacted nucleic acids
US10/307,555US20030134818A1 (en)2000-05-312002-12-02Lyophilizable and enhanced compacted nucleic acids
US10/307,284US20030171322A1 (en)2000-05-312002-12-02Lyophilizable and enhanced compacted nucleic acids
US10/656,192US8017577B2 (en)2000-05-312003-09-08Lyophilizable and enhanced compacted nucleic acids

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US28741901P2001-05-012001-05-01
US09/867,693US20020042388A1 (en)2001-05-012001-05-31Lyophilizable and enhanced compacted nucleic acids

Related Child Applications (5)

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US10/305,078DivisionUS20030078229A1 (en)2000-05-312002-11-27Lyophilizable and enhanced compacted nucleic acids
US10/305,089DivisionUS20030078230A1 (en)2000-05-312002-11-27Lyophilizable and enhanced compacted nucleic acids
US10/307,284DivisionUS20030171322A1 (en)2000-05-312002-12-02Lyophilizable and enhanced compacted nucleic acids
US10/307,555DivisionUS20030134818A1 (en)2000-05-312002-12-02Lyophilizable and enhanced compacted nucleic acids
US10/656,192ContinuationUS8017577B2 (en)2000-05-312003-09-08Lyophilizable and enhanced compacted nucleic acids

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US20020042388A1true US20020042388A1 (en)2002-04-11

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US09/867,693AbandonedUS20020042388A1 (en)2000-05-312001-05-31Lyophilizable and enhanced compacted nucleic acids
US10/305,078AbandonedUS20030078229A1 (en)2000-05-312002-11-27Lyophilizable and enhanced compacted nucleic acids
US10/305,089AbandonedUS20030078230A1 (en)2000-05-312002-11-27Lyophilizable and enhanced compacted nucleic acids
US10/307,284AbandonedUS20030171322A1 (en)2000-05-312002-12-02Lyophilizable and enhanced compacted nucleic acids
US10/307,555AbandonedUS20030134818A1 (en)2000-05-312002-12-02Lyophilizable and enhanced compacted nucleic acids
US10/656,192Expired - Fee RelatedUS8017577B2 (en)2000-05-312003-09-08Lyophilizable and enhanced compacted nucleic acids

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US10/305,078AbandonedUS20030078229A1 (en)2000-05-312002-11-27Lyophilizable and enhanced compacted nucleic acids
US10/305,089AbandonedUS20030078230A1 (en)2000-05-312002-11-27Lyophilizable and enhanced compacted nucleic acids
US10/307,284AbandonedUS20030171322A1 (en)2000-05-312002-12-02Lyophilizable and enhanced compacted nucleic acids
US10/307,555AbandonedUS20030134818A1 (en)2000-05-312002-12-02Lyophilizable and enhanced compacted nucleic acids
US10/656,192Expired - Fee RelatedUS8017577B2 (en)2000-05-312003-09-08Lyophilizable and enhanced compacted nucleic acids

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US20030134818A1 (en)2003-07-17
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