Hair growth stimulating dressing
10668026 ยท 2020-06-02
Assignee
Inventors
Cpc classification
A61K8/0241
HUMAN NECESSITIES
A61K9/703
HUMAN NECESSITIES
International classification
A61K9/70
HUMAN NECESSITIES
Abstract
The present invention discloses a hair growth stimulating dressing having advantages of simple manufacturing processes, low manufacture cost and reasonable selling price. To fabricate the hair growth stimulating dressing, it is firstly took mesoporous silica nanoparticles doped with lanthanide elements and at least one polymer matrix as raw materials to fabricate a plurality of biological fibers; and subsequently, the biological fibers are weaved to a biological textile. Particularly, the hair growth stimulating dressing can indeed show a promotion effect of hair growth on the heads of BALB/c nude mice after being covered onto the head of the nude mice. Therefore, compared to the fact that the commercial hair growth promoting products only just can show apparent hair growing effect on user's head after being continuously used for at least 4 months, this hair growth stimulating dressing only takes 7 days to exhibit positive hair growing effect on user's head.
Claims
1. A hair growth stimulating dressing, comprising a biological textile weaved by a plurality of biological fibers, wherein each of the plurality of biological fibers comprises: a polymer sheath; and a plurality of nanoparticles, being doped in or enclosed by the polymer sheath; wherein the forgoing nanoparticle has a chemical formula SiO.sub.2.sup.xEu.sup.yGd.sup.z; wherein x is a first weight percent in a range between 99 and 99.8, y being a second weight percent in a range from 0.1 to 0.5, and z being a third weight percent in a range between 0.1 and 0.5; and wherein an amount of the plurality of nanoparticles that are contained in the hair growth stimulating dressing is 2.5 mg.
2. The hair growth stimulating dressing of claim 1, further comprising: a substrate for supporting the biological textile; and an adhesive layer, being formed on the biological textile.
3. The hair growth stimulating dressing of claim 1, wherein the manufacturing material of the polymer sheath is selected from the group consisting of compound of gelatin and trifluoroethanol (TFE), compound of gelatin, TFE and polycaprolactone (PCL), compound of gelatin, TFE and polylactide (PLA), polyester, polyurethane (PU), polyvinyl chloride (PVC), polypropylene (PP), and polyamide (PA).
4. The hair growth stimulating dressing of claim 2, wherein the substrate is provided with a glue layer thereon.
5. The hair growth stimulating dressing of claim 2, wherein there are a plurality of air holes formed on the substrate.
6. A hair growth stimulating dressing, comprising a biological textile weaved by a plurality of biological fibers and a plurality of fibers, wherein each of the plurality of biological fibers comprises: a polymer sheath; and a plurality of nanoparticles, being doped in or enclosed by the polymer sheath; wherein the forgoing nanoparticle has a chemical formula SiO.sub.2.sup.xEu.sup.yGd.sup.z; wherein x is a first weight percent in a range between 99 and 99.8, y being a second weight percent in a range from 0.1 to 0.5, and z being a third weight percent in a range between 0.1 and 0.5; and wherein an amount of the plurality of nanoparticles that are contained in the hair growth stimulating dressing is 2.5 mg.
7. The hair growth stimulating dressing of claim 6, further comprising: a substrate for supporting the biological textile; and an adhesive layer, being formed on the biological textile.
8. The hair growth stimulating dressing of claim 6, wherein the manufacturing material of the polymer sheath is selected from the group consisting of compound of gelatin and trifluoroethanol (TFE), compound of gelatin, TFE and polycaprolactone (PCL), compound of gelatin, TFE and polylactide (PLA), polyester, polyurethane (PU), polyvinyl chloride (PVC), polypropylene (PP), and polyamide (PA).
9. The hair growth stimulating dressing of claim 6, wherein the manufacturing material of the sheath is selected from the group consisting of compound of gelatin and trifluoroethanol (TFE), compound of gelatin, TFE and polycaprolactone (PCL), compound of gelatin, TFE and polylactide (PLA), polyester, polyurethane (PU), polyvinyl chloride (PVC), polypropylene (PP), and polyamide (PA).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention as well as a preferred mode of use and advantages thereof will be best understood by referring to the following detailed description of an illustrative embodiment in conjunction with the accompanying drawings, wherein:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(14) To more clearly describe a hair growth stimulating dressing according to the present invention, embodiments of the present invention will be described in detail with reference to the attached drawings hereinafter.
First Embodiment
(15) With reference to
(16) It needs to emphasize that the manufacturing material of the polymer sheath 111 does not be particularly limited in the present invention, which is selected from the group consisting of compound of gelatin and trifluoroethanol (TFE), compound of gelatin, TFE and polycaprolactone (PCL), compound of gelatin, TFE and polylactide (PLA), polyester, polyurethane (PU), polyvinyl chloride (PVC), polypropylene (PP), and polyamide (PA). Moreover, it is worth explaining that gelatin, PCL and PLA belong to biodegradable polymer materials, and the others are all synthesis polymer materials.
First Manufacturing Method
(17) Before weaving the biological textile of the hair growth stimulating dressing 1, the MSN particles 112 must be firstly made according to the manufacturing flow comprising following steps: (1) adding cetyltrimethylammonium bromide (CTAB) and NaOH into a beaker or any other one-opening container filled with distilled deionized (DD) water, and then heating and stirring the solution of the aforesaid materials; wherein the CTAB is used as a surfactant and the NaOH is known one kind of alkali metal hydroxide; (2) sequentially adding tetraethyl orthosilicate (TEOS), europium(III) chloride (EuCl.sub.3), and gadolinium(III) chloride into the solution obtained from the step (1), and stirring the solution of the aforesaid materials; (3) applying a centrifuging treatment to the beaker, and then screening out precipitates from the solution in the beaker; (4) drying the precipitates; and (5) applying a calcination treatment to the dried precipitates, therefore the MSN particles 112 are obtained.
(18) Particularly, the MSN particles 112 obtained from the step (5) have a chemical formula of SiO.sub.2.sup.x:Eu.sup.yGd.sup.z. Subsequently, the MSN particles 112 and at least one polymer matrix can be token as raw materials to form a plurality of biological fibers 11 through an electro-spinning equipment or a drawing apparatus, wherein the manufacturing flow of the biological fibers 11 are provided in
(19) Since the collection device 4 is a plate, the collected biological fibers 11 would be directly gathered to a biological textile of the hair growth stimulating dressing 1 proposed by the present invention. On the other hand,
Second Manufacturing Method
(20) With reference to
Verification Experiment
(21) For verifying whether the hair growth stimulating dressing 1 of the present invention can provide a promotion effect of hair growth on user's head, inventors of the present invention plan and subsequently complete a first embodiment. There are three nude mice (BALB/c, female) arranged in an experimental group, and the average body weight of the nude mice is 13 grams. For facilitating the hair growth stimulating dressing 1 able to be attached on the breech of the nude mice stably, a few DD water is dropped on the buttock of the nude mice before the hair growth stimulating dressing 1 is covered on the breech of the nude mice. It is worth explaining that the biological textile of the hair growth stimulating dressing 1 includes the MSN particles 112 with a dosage of 2.5 mg.
(22) In the animal experiment, conversion between adult dose and animal dose of all test samples are carried out according to the guidance of estimating the maximum safe starting dose in initial clinical trials for therapeutics in adult healthy volunteer provided by U.S. Food and Drug Administration (USFDA). An easy formula for converting the adult dose to the animal dose is presented as follows: mouse equivalent dose per kilogram =(human equivalent dose per kilogram/60 kg)12.3. Therefore, all of the equivalent doses for the nude mice are calculated and used.
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Second Embodiment
(25) With reference to
Third Embodiment
(26) With reference to
Fourth Embodiment
(27) With reference to
(28) It needs to emphasize that the manufacturing material of the polymer fibers 17 does not be particularly limited in the present invention, which is selected from the group consisting of compound of gelatin and trifluoroethanol (TFE), compound of gelatin, TFE and polycaprolactone (PCL), compound of gelatin, TFE and polylactide (PLA), polyester, polyurethane (PU), polyvinyl chloride (PVC), polypropylene (PP), and polyamide (PA). It is worth explaining that, because the biological textile is weaved by biological fibers 11 and polymer fibers 17, the manufacture cost of the fourth embodiment is lower than that of the first embodiment.
(29) Therefore, through above descriptions, all embodiments and their constituting elements of the hair growth stimulating dressing proposed by the present invention have been introduced completely and clearly; in summary, the present invention includes the advantages of:
(30) (1) Differing from the fact that the commercial hair growth promoting products exhibit drawbacks of complex ingredient composition and expensive selling price, the primary objective of the present invention is to disclose a hair growth stimulating dressing having advantages of simple manufacturing processes, low manufacture cost and reasonable selling price. To fabricate the hair growth stimulating dressing, it is firstly took mesoporous silica nanoparticles doped with lanthanide elements and at least one polymer matrix as raw materials to produce a plurality of biological fibers through an electro-spinning equipment or a drawing apparatus, and subsequently weaved the plurality of biological fibers to a biological textile. Moreover, a variety of experimental data have proved that, the hair growth stimulating dressing can indeed show a promotion effect of hair growth on the heads of BALB/c nude mice after being covered on the head of the nude mice for a certain time. Therefore, compared to the fact that the commercial hair growth promoting products only just can show apparent hair growing effect on user's head after being continuously used for at least 4 months, this hair growth stimulating dressing only takes 7 days to exhibit a positive hair growing effect on user's head
(31) The above description is made on embodiments of the present invention. However, the embodiments are not intended to limit scope of the present invention, and all equivalent implementations or alterations within the spirit of the present invention still fall within the scope of the present invention.