IP Library Granted Patent US 10,912,856
Granted Patent B2
US 10,912,856 · App. 15/717,426 · Granted Feb 9, 2021

Bacterial adsorption dressing with nonphotocatalyst and method of manufacturing the same

Inventors: Hyung Joon Kim (Daegu, KR); Jeon Young Kang (Daegu, KR); Jeong Ha Lee (Daegu, KR)
Assignee: SAMBO ADVANCED MATERIALS INC.
A61L15/18A61F13/00063A61L15/225A61L15/26A61L15/425A61L15/44A61L15/46D04B1/22D04B21/16A61L2300/102A61L2300/112A61L2300/404A61L2300/406A61L2300/606A61L2400/12
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Quick Facts
Patent No.
US 10,912,856
App. No.
15/717,426
Granted
Feb 9, 2021
Kind
B2
Abstract

A bacterial adsorption dressing in contact with a wound and a method of manufacturing the bacterial adsorption dressing are provided. A bacterial adsorption dressing with a nonphotocatalyst includes a fabric layer including a polyester fiber as a supporter, and a nonphotocatalyst coating layer formed on the fabric layer and including titanium dioxide phosphate.

Claims (24)

1. A bacterial absorption dressing comprising:

a fabric layer comprising a polyester fiber as a supporter; and

a coating layer formed on the fabric layer comprising titanium dioxide phosphate, the coating layer being capable of performing a bacterial adsorption function even in a light-free environment,

wherein the coating layer has a thickness of 10 micrometers (μm) to 20 μm,

wherein the coating layer comprises a microporous surface layer, and wherein the coating layer further comprises at least one transition metal selected from Zn, Mn, Fe, Cu, Ni, Co, Cr, V, Zr, Mo, W, Pt and Au.

2. The bacterial absorption dressing of claim 1 , further comprising:

a support layer comprising a tencel nonwoven fabric and formed on an opposite side to a side of the fabric layer in contact with the coating layer; and

an absorption layer comprising a rayon nonwoven fabric extending over the support layer such that the support layer is positioned between the absorption layer and fabric layer.

3. The bacterial absorption dressing of claim 1 , wherein the coating layer is hydrophilic and absorbs bacteria by an oxidation reaction.

4. The bacterial absorption dressing of claim 1 , wherein the titanium dioxide phosphate comprises titanium phosphate particles having a particle diameter of 6 nanometers (nm) to 15 nm.

5. The bacterial absorption dressing of claim 1 , wherein the fabric layer comprises an inorganic antibacterial material comprising at least one selected from the group consisting of zeolite, calcium phosphate, zirconium phosphate and silica gel.

6. The bacterial absorption dressing of claim 2 , wherein the absorption layer has a thickness of 500 μm to 2,000 μm and a weight of 60 grams per square meter (g/m 2 ) to 200 g/m 2 , and the support layer has a thickness of 100 μm to 500 μm and a weight of 20 g/m 2 to 60 g/m 2 , and the absorption layer and the support layer are mechanically bonded to each other.

7. The bacterial absorption dressing of claim 2 , wherein the absorption layer further comprises an airlaid nonwoven fabric.

8. The bacterial absorption dressing of claim 2 , further comprising:

a pore nonwoven fabric layer formed of a nonwoven fabric comprising a pore with a size of 2 μm to 10 μm and located between the fabric layer and the absorption layer.

9. A method of manufacturing the bacterial

absorption dressing of claim 1 , the method comprising:

preparing a solution comprising titanium dioxide phosphate and at least one transition metal salt containing at least one transition metal selected from Zn, Mn, Fe, Cu, Ni, Co, Cr, V, Zr, Mo, W, Pt and Au;

forming a fabric layer comprising a polyester fabric using a knitting process with a guide bar; and

forming a coating layer using the solution comprising titanium dioxide phosphate and said at least one transition metal on the fabric layer, wherein the coating layer having a thickness of 10 micrometers (μm) to 20 μm.

10. The method of claim 9 , further comprising, after the forming of the coating layer, or between the forming of the fabric layer and the forming of the coating layer:

forming a support layer on an opposite side to a side of the fabric layer in contact with the coating layer using a spunlace process, the support layer comprising a tencel nonwoven fabric;

forming an absorption layer comprising a rayon nonwoven fabric using a needle punching process such that the support layer is positioned between the absorption layer and fabric layer; and

mechanically bonding the absorption layer and the support layer to each other.

Assignments (2)
CHANGE OF NAME Recorded Nov 10, 2020
From: SAMBO CO., LTD.
To: SAMBO ADVANCED MATERIALS INC.
Reel/Frame 054322/0888 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2017
From: KIM, HYUNG JOON; KANG, JEON YOUNG; LEE, JEONG HA
To: SAMBO CO., LTD
Reel/Frame 043717/0696 →
Priority Claims (1)
KR 10-2017-0003363 · Jan 10, 2017 · national
Continuity (1)
Related Publication 20180193514A1 · Jul 12, 2018