Chameleon Scientific Corporation

United States of America

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C23C 14/24 - Vacuum evaporation 4
A61L 27/06 - Titanium or titanium alloys 2
C23C 14/34 - Sputtering 2
C23C 14/38 - Diode sputtering by direct current glow discharge 2
A61C 13/00 - Dental prosthesesMaking same 1
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Found results for  patents

1.

NANOFILM PROTECTIVE AND RELEASE MATRICES

      
Application Number US2008013918
Publication Number 2009/091384
Status In Force
Filing Date 2008-12-18
Publication Date 2009-07-23
Owner CHAMELEON SCIENTIFIC CORPORATION (USA)
Inventor
  • Miller, Tiffany, E.
  • Storey, Daniel, M.
  • Kitchell, Barbara, S.

Abstract

A modified atomic plasma deposition (APD) procedure is used to produce amorphous, nonconformal thin metal film coatings on a variety of substrates. The films are porous, mesh- like lattices with imperfections such as pinholes and pores, which are useful as scaffolds for cell attachment, controlled release of bioactive agents and protective coatings.

IPC Classes  ?

  • H01L 21/205 - Deposition of semiconductor materials on a substrate, e.g. epitaxial growth using reduction or decomposition of a gaseous compound yielding a solid condensate, i.e. chemical deposition
  • C23C 16/50 - Chemical coating by decomposition of gaseous compounds, without leaving reaction products of surface material in the coating, i.e. chemical vapour deposition [CVD] processes characterised by the method of coating using electric discharges
  • B32B 15/01 - Layered products essentially comprising metal all layers being exclusively metallic

2.

SPINULOSE SURFACES

      
Application Number US2008012348
Publication Number 2009/058351
Status In Force
Filing Date 2008-10-31
Publication Date 2009-05-07
Owner CHAMELEON SCIENTIFIC CORPORATION (USA)
Inventor
  • Thomas, Christina, K.
  • Ryves, Luke, J.
  • Storey, Daniel, M.
  • Kitchell, Barbara, S.

Abstract

Spinulose metal surfaces are produced by a modified nanoplasma cyclic deposition process. The unique spinulose surfaces are highly adherent toward polymer and bioactive molecules and cells, including osteoblast, fibroblast and endothelial cells. The nanostructured spinulose surfaces can be coated with a wide range of polymers to form polymer surface coatings that are particularly useful on implants, catheters, guidewires, stents and other medical devices intended for in vivo applications.

IPC Classes  ?

3.

HYDROXYAPATITE COATED NANOSTRUCTURED TITANIUM SURFACES

      
Application Number US2008069599
Publication Number 2009/017945
Status In Force
Filing Date 2008-07-10
Publication Date 2009-02-05
Owner CHAMELEON SCIENTIFIC CORPORATION (USA)
Inventor
  • Balasundaram, Ganesan
  • Shimpi, Tushar, M.
  • Storey, Daniel, M.

Abstract

Nanotubular structured titanium (Ti) substrates have been coated with nanoparticulate hydroxyapatite (nano-HA). The nano-HA surface is highly adherent to the nanotubular Ti surface and is free of microparticles. Hie nano-HA coated nanotubular Ti surface promotes osteoblast cell adhesion and is particularly suitable for orthopedic and dental implants where deposition of osteoblasts and other proteins is important in bone formation.

IPC Classes  ?

4.

BIOCOMPATIBLE COATED NANOSTRUCTURED TITANIUM SURFACES

      
Application Number US2008007339
Publication Number 2008/156637
Status In Force
Filing Date 2008-06-12
Publication Date 2008-12-24
Owner CHAMELEON SCIENTIFIC CORPORATION (USA)
Inventor
  • Balasundaram, Ganesan
  • Shimpi, Tushar, M.
  • Storey, Daniel, M.

Abstract

Bioactive molecules have been coated on nanotubular structured titanium substrates by molecular plasma deposition. The coatings promote cell adhesion and are particularly suited for orthopedic implants that provide improved bone cell adhesion and new tissue growth. Nanodimensional features on titanium substrates are engineered using electrochemical anodization techniques. The nanostructured surfaces provide superior support for a wide selection of polypeptide coatings.

IPC Classes  ?

  • A61L 27/06 - Titanium or titanium alloys
  • A61L 27/22 - Polypeptides or derivatives thereof
  • A61F 2/00 - Filters implantable into blood vesselsProstheses, i.e. artificial substitutes or replacements for parts of the bodyAppliances for connecting them with the bodyDevices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
  • A61F 2/28 - Bones
  • A61C 13/00 - Dental prosthesesMaking same
  • C07K 7/00 - Peptides having 5 to 20 amino acids in a fully defined sequenceDerivatives thereof
  • C07K 14/435 - Peptides having more than 20 amino acidsGastrinsSomatostatinsMelanotropinsDerivatives thereof from animalsPeptides having more than 20 amino acidsGastrinsSomatostatinsMelanotropinsDerivatives thereof from humans

5.

MODIFIED SURFACES FOR ATTACHMENT OF BIOLOGICAL MATERIALS

      
Application Number US2006045314
Publication Number 2008/054408
Status In Force
Filing Date 2006-11-21
Publication Date 2008-05-08
Owner CHAMELEON SCIENTIFIC CORPORATION (USA)
Inventor
  • Storey, Daniel, M.
  • Mcgrath, Terrence, S.
  • Reising, Alexander, B.

Abstract

The invention relates to bioactive surface coatings deposited on selected substrates. Surface nanostructured film coatings deposited on most metal or nonmetal substrates to provide surfaces can be engineered to promote enhanced tissue/cell adhesion. Attached cells, including osteoblasts, fibroblasts and endothelial cells, retain viability and will readily differentiate and proliferate under appropriate conditions. Fibroblasts and endothelial cells exhibit good attachment and growth on most coated substrates, except on nano surfaced structured silicone.

IPC Classes  ?

  • A61L 27/40 - Composite materials, i.e. layered or containing one material dispersed in a matrix of the same or different material
  • A61L 27/42 - Composite materials, i.e. layered or containing one material dispersed in a matrix of the same or different material having an inorganic matrix

6.

APPARATUS AND METHOD FOR NANO PLASMA DEPOSITION

      
Application Number US2007002098
Publication Number 2008/048339
Status In Force
Filing Date 2007-01-23
Publication Date 2008-04-24
Owner CHAMELEON SCIENTIFIC CORPORATION (USA)
Inventor Storey, Daniel, M.

Abstract

An apparatus and method for initiation and control of a sustained metal plasma and nano plasma (macroparticulate) deposition methods for preparing modified metal coatings are provided. The plasma deposition process can be tightly controlled by virtue of a device that incorporates a plasma arc initiator component and an internal power supply that is capable of controlling dwell time on the target and the size range of particles ejected in the plasma arc.

IPC Classes  ?

  • C23C 14/38 - Diode sputtering by direct current glow discharge
  • C23C 14/40 - Diode sputtering with alternating current discharge, e.g. high-frequency discharge
  • C23C 14/24 - Vacuum evaporation

7.

MOLECULAR PLASMA DEPOSITION OF COLLOIDAL MATERIALS

      
Application Number US2007001103
Publication Number 2007/106212
Status In Force
Filing Date 2007-01-16
Publication Date 2007-09-20
Owner CHAMELEON SCIENTIFIC CORPORATION (USA)
Inventor
  • Storey, Daniel, M.
  • Mcgrath, Terrence, S.
  • Shimpi, Tushar, M.

Abstract

A molecular plasma discharge deposition method for depositing colloidal suspensions of biomaterials such as amino acids or other carbon based substances onto metal or nonmetal surfaces without loss of biological activity and/or structure is described. The method is based on generating a charged corona plasma which is then introduced into a vacuum chamber to deposit the biomaterial onto a biased substrate. The deposited biomaterials can be selected for a variety of medical uses, including coated implants for in situ release of pharmaceuticals.

IPC Classes  ?

  • A61L 27/54 - Biologically active materials, e.g. therapeutic substances
  • A61L 27/28 - Materials for coating prostheses

8.

CHROME COATED SURFACES AND DEPOSITION METHODS THEREFOR

      
Application Number US2006043296
Publication Number 2007/100363
Status In Force
Filing Date 2006-11-06
Publication Date 2007-09-07
Owner CHAMELEON SCIENTIFIC CORPORATION (USA)
Inventor Storey, Daniel, M.

Abstract

A plasma vapor deposition method for producing highly reflective and adherent metal or metal alloy decorative coatings on articles such as automotive fixtures is described. The improved coatings are particularly applicable to chrome based coatings on automobile fixtures and accessories, including wheels, hubcaps, bumpers and door handles. The method also provides plated metal coatings such as gold, platinum and silver for jewelry and industrial tools.

IPC Classes  ?

9.

ULTRAVIOLET ACTIVATED ANTIMICROBIAL SURFACES

      
Application Number US2006043295
Publication Number 2007/097790
Status In Force
Filing Date 2006-11-06
Publication Date 2007-08-30
Owner CHAMELEON SCIENTIFIC CORPORATION (USA)
Inventor
  • Mcgrath, Terrence, S.
  • Sewell, Deidre
  • Storey, Daniel, M.

Abstract

The invention is directed to an ion plasma deposition (IPD) method adapted to coat polymer surfaces with highly adherent antimicrobial films. A controlled ion plasma deposition (IPD) process is used to coat a metal or polymer with a selected metal/metal oxide. Exposing the coated surface to ultraviolet light significantly improves the antimicrobial properties of the deposited coatings.

IPC Classes  ?

  • C23C 14/24 - Vacuum evaporation
  • C23C 14/00 - Coating by vacuum evaporation, by sputtering or by ion implantation of the coating forming material
  • C23C 14/34 - Sputtering

10.

RADIOPAQUE COATINGS FOR POLYMER SUBSTRATES

      
Application Number US2006043299
Publication Number 2007/086977
Status In Force
Filing Date 2006-11-07
Publication Date 2007-08-02
Owner CHAMELEON SCIENTIFIC CORPORATION (USA)
Inventor
  • Storey, Daniel, M.
  • Mcgrath, Terrence, S.

Abstract

Improved radiopaque coatings particularly suitable for polymer substrates are described. A modified ion plasma deposition (IPD) method is used to provide coatings with macroparticle-dense surfaces that have excellent radiopacity. The coatings are particularly adapted to polymer surfaces because of high adherence and resistance to peeling and flaking.

IPC Classes  ?