CA2184733C

Spin encapsulation apparatus and method of use

Abstract

A coating apparatus includes a rotary cup (12) for forming beads (14) and projecting them radially outwardly, and one or morecollection basins (16) surrounding the bead forming cup (12). The cup (12) is adjustably rotatable about its central axis, and the collectionbasins (16) are independently rotatable and positioned to collect the beads (14) projected from the cup (12). The coating apparatus furtherincludes an elevation adjustment system for axially adjusting the alignment of the cup (12) with respect to the selected collection basins(16). The rotational speeds of the cup (12) and the collection basins (16) are selected so as to minimize the impact of the beads (14) againsta gelling solution (24) in the collection basins (16).

CA2184733C, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Expired 30 March 2015, 11.5 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

35 claims: 9 independent, 26 dependent

  1. 1
    CA 02184733 2004-11-04 68803-71 CLAIMS :1. An encapsulation apparatus for forming capsules containing particles to be coated with a coating material, the apparatus comprising in combination: a) a rotary cup for forming beads and for projecting them centrifugally outward, said rotary cup being adjustably rotatable at a preselected first rotational speed, said rotary cup being positioned within a rotary cup block connected to a first rotor or shaft for connection to a first motor providing said first rotational speed;b) one or more collection basins adapted for surrounding said rotary cup, and being adjustably rotatable at a preselected second rotational speed, said collection basins comprising: a collection basin block;an annular gelation chamber;an annular collection chamber;and a trough;wherein the collection basin block is connected to a second rotor or shaft for connection to a second motor providing said second rotational speed;wherein the annular gelation chamber is defined within the collection basin block having a flat upper rim extending horizontally and radially from a central axis into a vertical or lateral chamber sidewall, said chamber sidewall extending into a first conical or beveled edge of the annular collection chamber;ι CA 02184733 2004-11-04 68803-71 wherein the collection chamber is defined by the first beveled edge and a second beveled edge, symmetrical to the first beveled edge, with respect to a central geometric axis of the trough and wherein the second beveled edge extends radially into a flat lower rim or edge parallel to said upper rim, said lower rim extending inwardly toward the block of the rotary cup;wherein the trough is conically shaped;said collection basins being rotatable independently from said rotary cup and positioned to collect said beads projected from said rotary cup into a gelling solution present in the gelation chamber;and c) wherein said first and second rotational speeds are selected so as to minimize impact of said beads against the gelling solution in said one or more collection basins.
  2. 9
    An encapsulation apparatus for forming capsules containing particles to be coated with a coating material, said apparatus comprising in combination:a) spinning means for forming beads and for projecting them centrifugally outward, said spinning means being adjustably rotatable at a preselected first rotational speed;b) collection basins adapted for surrounding said spinning means, and being adjustably rotatable at a preselected second rotational speed,c) said collection basins being rotatable independently from said spinning means and positioned to collect said beads projected from said spinning means;and d) said first and second rotational speeds being selected so as to minimize impact of said beads against a gelling solution in said collection basins;wherein there are two or more collection basins of different sizes;and wherein said collection basins are adjacently vertically disposed relatively to each other, such that the sizes of said collection basins gradually increase from bottom to top.
  3. 12
    An encapsulation apparatus comprising in combination:a) a cup-shaped member that is rotatably mounted 15 about an axis for spinning a fluid suspension therein, said cup-shaped member having an open end and a closed end, said closed end being a mixing chamber for receiving a suspension of particles to be encapsulated and an encapsulating solution, 20 said mixing chamber extending into an upper chamber bound by a conical sidewall terminating at an upper end of said cup-shaped member, said conical sidewall of said upper chamber forming an angle in a range between 10° and 90° degrees with 25 a central axis of said mixing chamber, said cup-shaped member being positioned within a block connected to a first rotor for connection to a first motor providing a first rotational speed;CA 02184733 2004-11-04 68803-71 the first rotor coupled to said cup-shaped member for rotating said member at the first rotational speed;b) one or more collection basins rotatably mounted about said cup-shaped member, said collection basins comprising : a collection basin block;an annular gelation chamber;an annular collection chamber;and a trough;wherein the collection basin block is connected to a second rotor for connection to a second motor providing a second rotational speed;wherein the annular gelation chamber is defined within the collection basin block having a flat upper rim extending horizontally and radially from a first central axis into a vertical or lateral sidewall, said sidewall extending into a first beveled edge of the annular collection chamber;wherein the collection chamber is defined by the first beveled edge and a second beveled edge symmetrical to the first beveled edge with respect to a second central geometric axis of the trough and wherein the second beveled edge extends radially into a flat lower rim or edge parallel to said upper rim, said lower rim extending inward toward the block of the cup-shaped member;wherein the trough is conically shaped;CA 02184733 2004-11-04 68803-71 said gelation chamber being adapted for containing a gelling solution, said gelation chamber being radially spaced from said open end of the cup-shaped member;the second rotor coupled to said collection basins for rotating said collection basins at the second rotational speed;said collection basins being rotatable independently from said cup-shaped member and positioned to collect beads projected from said cup-shaped member;and said first and second rotational speeds being selected so as to minimize impact of said beads against said gelling solution present in said gelation chamber of said collection basins.
  4. 15
    The apparatus of any one of claims 12 to 14, wherein the conical sidewall has an inner wall of a smooth, rough or textured surface and wherein said upper chamber has a diameter that increases in a direction from said closed to said open end.
  5. 16
    The apparatus of any one of claims 12 to 15 having a plurality of collection basins formed within one collection basin block, said collection basins having CA 02184733 2004-11-04 68803-71 different diameters, said diameters increasing from bottom to top;said apparatus having adjustment and alignment means for alignment and adjustment of the cup-shaped member with respect to a selected one of said collection basins.
  6. 17
    An encapsulation apparatus comprising in combination :a cup-shaped member that is rotatably mounted about an axis for spinning a fluid suspension therein, said cup-shaped member having an open end and a closed end;a first drive coupled to said cup-shaped member for rotating said member at a first speed;a first basin rotatably mounted about said cupshaped member, said first basin including a first basin chamber adapted for containing a gelling solution, said first basin chamber being radially spaced from said open end of the cup-shaped member;and a second drive coupled to said first basin for rotating said first basin at a second speed;said apparatus further comprising a second basin that is rotatably mounted above said first basin, said second basin including a second basin chamber, said cupshaped member being movable from a first position where the open end of said cup-shaped member is radially spaced from said first basin chamber to a second position where the open end of said cup-shaped member is radially spaced from said second basin chamber.
  7. 21
    The apparatus of any one of claims 17 to 20 further comprising means for delivering a fluid suspension into said cup-shaped member.
  8. 26
    Microcapsules containing biological tissue, cells, ! cell lines, solid or semisolid particle materials coated with multiple layers of uniform, continuous and semipermeable coating having a total thickness from about 20 to about 200 μ produced by an encapsulation process, said process comprising steps :a) preparing a suspension comprising biological tissue, cells, cell lines, solid or semisolid particle materials to be coated and a gellable coating polymer;b) delivering said suspension into a mixing chamber of a rotary cup of a spinning disk apparatus;c) forming beads of said suspension by rotating the rotary cup of the spinning disk apparatus at a preselected first rotational speed suitable to propel the suspension by a centrifugal force from the mixing chamber along a textured inner wall of a conical sidewall of the rotary cup thereby forming the beads;d) projecting said beads centrifugally outwardly from the conical sidewall into a collection basin containing a gelling solution, said collection basin rotating at a preselected second rotational speed selected to minimize impact of the beads against the gelling solution;e) gelling the gellable coating polymer;and f) recovering coated microcapsules from a collection chamber of said collection basin.
  9. 30
    A method for coating of biological tissue, cells, cell lines, solid or semisolid particle materials with a uniform, continuous, semi-permeable, biocompatible and reproducible coating having a thickness from about 20 to about 200 μ, said method comprising:a) preparing a suspension comprising biological tissue, cells, cell lines, solid or semisolid particle materials to be coated and a gellable coating polymer;b) delivering said suspension into a mixing chamber of a rotary cup of a spinning disk apparatus;c) forming beads of said suspension by rotating the rotary cup of the spinning disk apparatus at a preselected first rotational speed suitable to propel the suspension by a centrifugal force from the mixing chamber along a textured inner wall of a conical sidewall of the rotary cup thereby forming the beads;d) controlling bead shape and coating thickness by: aligning the rotary cup of the spinning disk apparatus in relation to a collection basin of the spinning disk apparatus;texturing a surface of the inner wall of the conical sidewall of the rotary cup;and I CA 02184733 2004-11-04 68803-71 40b adjusting a travel distance of the beads along said surface of the conical sidewall, through the collection basin until the beads come in contact with a gelling solution, said travel distance depending on a size of the 5 collection basin in relation to the rotary cup;e) projecting said beads centrifugally outward from the conical sidewall into the collection basin containing the gelling solution, said collection basin rotating at a preselected second rotational speed selected 10 to minimize impact of the beads projected from the conical sidewall against the gelling solution, said first and second rotational speeds being defined by number of rotations per minute;f) gelling the gellable coating polymer;and 15 g) recovering coated microcapsules from a collection chamber of said collection basin.