Stem cell secreted factor mask
By designing a partitioned stem cell secretion factor mask, using a combination of internal and external coating structure and cell beads, the problem of single partitioned care function and poor stability of active ingredients is solved, and a more efficient and safe skin care effect is achieved.
Patent Information
- Application Number
- CN202521120105.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2035-06-04
AI Technical Summary
Existing facial mask products have problems such as single zoning care function, poor stability of active ingredients and unconsidered skin barrier differences in different zoning, resulting in inefficient care and potential risk of irritation or allergies.
A stem cell secretion factor mask was designed, which contained T-zone, U-zone and eye units. Each unit uses a different type of stem cell secretion factor, isolates the structure of the inner compress from the outer compress through the inner compress and sets cell beads in the vein groove. The cell fluid is wrapped with edible grade hydrogel, and the inner compress is bonded to the edge of the outer compress to ensure that the active ingredients are evenly penetrated during use.
It realizes the scientific and efficient zoning care, improves the nursing effect, avoids the inactivation of active ingredients during transportation and storage, and reduces adverse reactions during use, which is particularly suitable for the skin needs of different zonings.
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Figure CN223081979U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of stem cell beauty, in particular to a stem cell secreted factor mask. Background Technique
[0002] Due to their unique self-renewal and multi-directional differentiation abilities, stem cells (Stem Cells) have received much attention in the field of skin repair and regeneration in recent years. A variety of stem cells and their secreted factors, such as mesenchymal stem cells (Mesenchymal Stem Cells, MSCs), adipose-derived stem cells (Adipose-Derived Stem Cells, ADSCs), and human amniotic epithelial stem cells (Human Amniotic Epithelial Stem Cells, hAECs), have been proven to have significant anti-inflammatory, anti-wrinkle, repair-promoting, and anti-photoaging effects. Stem cell secreted factors (Secretome) mainly include growth factors (such as EGF, FGF, VEGF), cytokines (such as TGF-β, IL-10), and exosomes (Exosomes). These active components can improve skin barrier function, promote collagen synthesis, and inhibit inflammatory responses by regulating cell signaling pathways. For example, adipose stem cell secreted factors have been proven to be able to reduce sebum secretion and inhibit the activity of Propionibacterium acnes, while human amniotic epithelial stem cell factors can enhance skin hydration ability and reduce wrinkle formation. However, due to the totipotency of stem cells, there are ethical controversies and potential tumorigenic risks in their direct application. Currently, cell-free therapy (Cell-Free Therapy) is commonly used in the field of skin care, that is, using stem cell secreted factors instead of living cells to achieve safe and efficient skin care effects.
[0003] Currently, there are already some mask products on the market that add stem cell secreted factors, but there are the following main deficiencies: 1. The partition care function is single. Traditional masks usually adopt a single formula design and do not carry out functional zoning according to the different needs of different facial areas, such as oil control in the T area, moisturizing in the U area, and eye area repair, resulting in low care efficiency; 2. The stability of active ingredients is poor. Stem cell secreted factors are sensitive to temperature, pH, and oxidative environment. The storage and transportation conditions of existing masks are difficult to ensure their long-term biological activity, and the active ingredients are easily lost in advance when not applied by users; 3. Some products do not consider the differences in skin barriers in different partitions. For example, the skin around the eyes is more sensitive, and using the same strong formula may cause irritation or allergic reactions.
[0004] How to solve the above technical problems is the subject faced by the utility model. Content of the Utility Model
[0005] In order to address the deficiencies of the prior art, the utility model provides a stem cell secretion factor mask that can realize zoning functional preparation and significantly improve the care efficiency and safety of the mask.
[0006] The technical solution adopted by the utility model to solve the technical problem is as follows: the utility model provides a stem cell secretion factor mask, comprising a T zone unit, a U zone unit and an eye unit, wherein the T zone unit, the U zone unit and the eye unit are combined to form a whole mask;
[0007] The T-zone unit, the U-zone unit and the eye unit all include an inner compress and an outer compress, and the inner compress is applied to the face;
[0008] A plurality of cell liquid beads are arranged between the inner compress cloth and the outer compress cloth.
[0009] The T-zone unit is applied to the forehead, nose and chin of the face;
[0010] The U-zone unit is applied to the cheeks of the face, and the eye unit is applied to the eye sockets of the face.
[0011] The inner compress cloth and the outer compress cloth are fixedly bonded at their edges.
[0012] The inner compress cloth is made of biological fiber cloth, Tencel fiber cloth, silk cloth or non-woven fabric.
[0013] The inner wall of the inner compress is provided with a plurality of crisscrossing vein grooves, and the depth of the vein grooves is 0.3-0.6 mm.
[0014] The cell liquid beads are arranged on the venous grooves and are evenly distributed on the inner compress cloth.
[0015] The cell liquid bead is provided with a soft wrapping shell made of edible hydrogel material on the outside, and the cell liquid bead is filled with cell liquid.
[0016] The cell liquid beads are bonded to the inner compress cloth by natural plant glue.
[0017] A single inner compress cloth or outer compress cloth is arranged in the middle of the eye unit, and the middle of the eye unit overlaps with the bridge of the nose where the T zone unit is applied.
[0018] The beneficial effects of the present utility model are as follows: Different stem cell secretion factors can be added corresponding to different zones. For example, for the T-zone unit which requires oil control, pore shrinking, anti-inflammatory and acne treatment, adipose stem cell secretion factors or mesenchymal stem cell exosomes can be filled. For the U-zone unit aiming at moisturizing and anti-aging, human amniotic epithelial stem cell factors can be selected, etc. For the eye area unit which needs to target dark circle reduction, edema relief, etc., umbilical cord mesenchymal stem cell exosomes or fibroblast stem cell lysates can be selected for filling. It can be applied by classification, breaking through the limitation of the single formula of traditional facial masks, and the nursing is more scientific and efficient;
[0019] The present utility model adopts the structure of an inner cloth and an outer cloth, which is convenient for the cell liquid beads to flow and uniformly diffuse after being pressed in the middle cavity. Moreover, the edges of the inner cloth and the outer cloth are bonded to isolate external pollution and oxidation, avoiding the inactivation of active ingredients during transportation or storage. At the same time, during use, the cytokine in different zones will not be mixed too much to prevent poor use effects. Even if the cell liquids in different zones are mixed, the selection of cell liquids can avoid adverse effects;
[0020] The criss-cross grooves on the inner cloth of the present utility model cooperate with the cell liquid beads. The groove diversion design promotes the uniform penetration of the liquid after pressing. The inner cloth is made of skin-friendly and breathable materials to avoid airtightness caused by the inner cloth and the outer cloth being simultaneously attached to the face;
[0021] The cell liquid beads of the present utility model wrap the cell liquid with an edible-grade hydrogel, reducing the risk of sensitization and meeting the use requirements of sensitive facial areas such as around the eyes. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 is the front view of the present utility model.
[0023] Figure 2 is the three-dimensional exploded structure schematic diagram of the present utility model.
[0024] Figure 3 is the internal structure schematic diagram of the present utility model.
[0025] Figure 4 is the three-dimensional internal structure schematic diagram of the present utility model.
[0026] Among them, the reference numerals are: 1, T-zone unit; 2, U-zone unit; 3, eye area unit; 4, cell liquid beads; 5, choroid groove. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] In order to clearly illustrate the technical features of the present solution, the present solution will be elaborated below through specific embodiments.
[0028] Embodiment 1
[0029] See Figures 1 to 4As shown in the figure, this embodiment is a stem cell secretion factor facial mask, which includes a T-zone unit 1, a U-zone unit 2, and an eye unit 3. The T-zone unit 1 is applied to the forehead, nose, and chin of the face, the U-zone unit 2 is applied to the cheeks of the face, and the eye unit 3 is applied to the eye sockets of the face. The T-zone unit 1, the U-zone unit 2, and the eye unit 3 are combined to form the overall facial mask. A single inner cloth or outer cloth is arranged in the middle of the eye unit 3, and the middle of the eye unit 3 coincides with the place where the T-zone unit 1 is applied to the root of the nose.
[0030] The T-zone unit 1, the U-zone unit 2, and the eye unit 3 all include an inner cloth and an outer cloth. The inner cloth is applied to the face, and the edges between the inner cloth and the outer cloth are fixedly bonded. The material of the inner cloth is a biological fiber cloth.
[0031] A number of criss-crossed vein grooves 5 are arranged on the inner wall of the inner cloth. The depth of the vein grooves 5 is 0.4 mm. A number of cell liquid beads 4 are arranged between the inner cloth and the outer cloth. The cell liquid beads 4 are arranged on the vein grooves 5 and are evenly distributed on the inner cloth.
[0032] A soft wrapping shell made of sodium alginate-calcium chloride cross-linked hydrogel is arranged outside the cell liquid beads 4. The cell liquid beads 4 are filled with cell liquid, and the cell liquid beads 4 are bonded to the inner cloth through natural plant glue.
[0033] Before use, ensure that the cell liquid beads 4 are not damaged to avoid the mixing of cell liquid with different zones before use, which may affect the use effect. When transporting this utility model, a box packaging or other packaging with a supporting effect is selected.
[0034] When using, gently press the facial mask to make it naturally fit the face. The T-zone, that is, the forehead, nose wings, and chin, corresponds to the T-zone unit 1, the cheeks correspond to the U-zone unit 2, and the area around the eye sockets corresponds to the eye unit 3. The middle of the T-zone unit 1 at the root of the nose coincides with the middle of the eye unit 3 for application. If the fit is uneven, the fixed positions of the edges of the inner and outer cloths can be finely adjusted. Gently knead the main area of the facial mask with both hands, and press moderately to break the cell liquid beads 4 at the vein grooves 5 of the inner cloth. The active ingredients uniformly penetrate into the diversion holes of the vein grooves 5 and are released to the skin. The eye unit 3 needs to be pressed more gently. Keep the facial mask on for 15-20 minutes. During this period, avoid large-scale movement of the face to ensure that the active ingredients are fully absorbed. Slowly remove the facial mask from top to bottom without rinsing, and gently pat the remaining essence to promote absorption.
[0035] Embodiment Two
[0036] See Figures 1 to 4As shown, this embodiment is a stem cell secretion factor mask, including a T-zone unit 1, a U-zone unit 2 and an eye unit 3. The T-zone unit 1 is applied to the forehead, nose and chin of the face, the U-zone unit 2 is applied to the cheeks of the face, and the eye unit 3 is applied to the eye sockets of the face. The T-zone unit 1, the U-zone unit 2 and the eye unit 3 are combined to form a whole mask. A single inner compress cloth or outer compress cloth is arranged in the middle of the eye unit 3, and the middle of the eye unit 3 overlaps with the T-zone unit 1 applied to the bridge of the nose.
[0037] The T zone unit 1, the U zone unit 2 and the eye unit 3 all include an inner compress and an outer compress. The inner compress is applied to the face, and the inner compress and the outer compress are fixedly bonded at their edges. The inner compress is made of Tencel fiber cloth.
[0038] The inner wall of the inner compress is provided with a plurality of crisscrossing vein grooves 5, the depth of the vein grooves 5 is 0.35 mm, and a plurality of cell liquid beads 4 are provided between the inner compress and the outer compress. The cell liquid beads 4 are provided on the vein grooves 5 and are evenly distributed on the inner compress.
[0039] The cell liquid bead 4 is provided with a soft wrapping shell made of sodium alginate-calcium chloride cross-linked hydrogel material on the outside, the cell liquid bead 4 is filled with cell liquid, and the cell liquid bead 4 is bonded to the inner compress by natural plant glue.
[0040] When using, press the mask lightly to make it fit the face naturally. The T-zone, i.e. forehead, wings of nose, and chin, correspond to T-zone unit 1, the cheeks correspond to U-zone unit 2, the area around the eye sockets corresponds to eye unit 3, and the bridge of the nose of T-zone unit 1 overlaps with the middle of eye unit 3. If the fit is uneven, you can fine-tune the fixed positions of the edges of the inner and outer compresses, gently rub the main area of the mask with both hands, and break the cell liquid beads 4 at the venous groove 5 of the inner compress through moderate pressure, so that the active ingredients evenly penetrate into the diversion holes of the venous groove 5 and are released into the skin. The eye unit 3 needs to be pressed more gently and applied for 15-20 minutes. Avoid large movements of the face during this period to ensure full absorption of the active ingredients. Slowly peel off the mask from top to bottom. No need to rinse, and gently pat the remaining essence to promote absorption.
[0041] Embodiment 3
[0042] See also Figures 1 to 4 As shown, this embodiment is a stem cell secretion factor mask, including a T-zone unit 1, a U-zone unit 2 and an eye unit 3. The T-zone unit 1 is applied to the forehead, nose and chin of the face, the U-zone unit 2 is applied to the cheeks of the face, and the eye unit 3 is applied to the eye sockets of the face. The T-zone unit 1, the U-zone unit 2 and the eye unit 3 are combined to form a whole mask. A single inner compress cloth or outer compress cloth is arranged in the middle of the eye unit 3, and the middle of the eye unit 3 overlaps with the T-zone unit 1 applied to the bridge of the nose.
[0043] The T-zone unit 1, U-zone unit 2, and eye unit 3 all include an inner cloth and an outer cloth. The inner cloth is applied to the face, and the edges between the inner cloth and the outer cloth are fixedly bonded. The material of the inner cloth is silk cloth.
[0044] A number of criss-crossing vein grooves 5 are provided on the inner wall of the inner cloth. The depth of the vein grooves 5 is 0.3. A number of cell liquid beads 4 are provided between the inner cloth and the outer cloth. The cell liquid beads 4 are arranged on the vein grooves 5 and are evenly distributed on the inner cloth.
[0045] The outside of the cell liquid beads 4 is provided with a soft wrapping shell made of gelatin hydrogel. The cell liquid beads 4 are filled with cell liquid, and the cell liquid beads 4 are bonded to the inner cloth through natural plant glue.
[0046] When in use, gently press the mask to make it naturally fit the face. The T-zone, that is, the forehead, nose wings, and chin, corresponds to the T-zone unit 1. The cheeks correspond to the U-zone unit 2. The area around the eye sockets corresponds to the eye unit 3. The root of the nose of the T-zone unit 1 coincides with the middle part of the eye unit 3 for application. If the fit is uneven, the fixed positions of the edges of the inner and outer cloths can be finely adjusted. Gently knead the main area of the mask with both hands. By moderately pressing, the cell liquid beads 4 at the vein grooves 5 of the inner cloth are broken, and the active ingredients uniformly penetrate into the diversion holes of the vein grooves 5 and are released to the skin. The eye unit 3 needs to be pressed more gently. Apply the mask for 15 - 20 minutes. During this period, avoid large movements of the face to ensure that the active ingredients are fully absorbed. Slowly remove the mask from top to bottom. There is no need to rinse. Gently pat the remaining essence to promote absorption.
[0047] Example 4
[0048] See Figures 1 to 4 As shown, this example is a stem cell secretion factor mask, including a T-zone unit 1, a U-zone unit 2, and an eye unit 3. The T-zone unit 1 is applied to the forehead, nose, and chin of the face. The U-zone unit 2 is applied to the cheeks of the face. The eye unit 3 is applied to the eye sockets of the face. The T-zone unit 1, the U-zone unit 2, and the eye unit 3 are combined to form the overall mask. A single inner cloth or outer cloth is provided in the middle of the eye unit 3, and the middle part of the eye unit 3 coincides with the root of the nose where it is applied to the T-zone unit 1.
[0049] The T-zone unit 1, U-zone unit 2, and eye unit 3 all include an inner cloth and an outer cloth. The inner cloth is applied to the face, and the edges between the inner cloth and the outer cloth are fixedly bonded. The material of the inner cloth is non-woven fabric.
[0050] A number of criss-crossing vein grooves 5 are provided on the inner wall of the inner cloth. The depth of the vein grooves 5 is 0.6 mm. A number of cell liquid beads 4 are provided between the inner cloth and the outer cloth. The cell liquid beads 4 are arranged on the vein grooves 5 and are evenly distributed on the inner cloth.
[0051] Outside the cell liquid beads 4, there is a soft wrapping shell made of gelatin hydrogel. The cell liquid beads 4 are filled with cell liquid, and the cell liquid beads 4 and the inner dressing are bonded by natural plant glue.
[0052] When in use, gently press the facial mask to make it fit the face naturally. The T-zone, that is, the forehead, nose wings, and chin, corresponds to the T-zone unit 1. The two cheeks correspond to the U-zone unit 2. The area around the eye sockets corresponds to the eye unit 3. The middle of the root of the nose in the T-zone unit 1 coincides with the middle of the eye unit 3 for application. If the fit is uneven, the positions of the edges of the inner and outer dressings can be finely adjusted and fixed. Gently knead the main area of the facial mask with both hands, and press moderately to break the cell liquid beads 4 at the vein grooves 5 of the inner dressing. The active ingredients uniformly penetrate into the diversion holes of the vein grooves 5 and are released to the skin. The eye unit 3 needs to be pressed more gently. Apply the mask for 15 - 20 minutes, and avoid large-scale movement of the face during this period to ensure that the active ingredients are fully absorbed. Slowly remove the facial mask from top to bottom without rinsing, and gently pat the remaining essence to promote absorption.
[0053] The technical features not described in this utility model can be achieved by or adopted from the prior art, and will not be elaborated here. Of course, the above description is not a limitation to this utility model, and this utility model is not limited to the above examples. Changes, modifications, additions, or substitutions made by those of ordinary skill in the art within the scope of the essence of this utility model should also fall within the protection scope of this utility model.
Claims
1. A stem cell secreted factor facial mask, characterized in that, It includes a T-zone unit (1), a U-zone unit (2) and an eye unit (3), and the T-zone unit (1), the U-zone unit (2) and the eye unit (3) are combined to form an integral facial mask; Both the T-zone unit (1), the U-zone unit (2) and the eye unit (3) include an inner cloth and an outer cloth, and the inner cloth is applied to the face; A number of cell liquid beads (4) are arranged between the inner cloth and the outer cloth.
2. The stem cell secreted factor facial mask according to claim 1, characterized in that The T-zone unit (1) is applied to the forehead, nose and chin of the face; The U-zone unit (2) is applied to the cheeks of the face, and the eye unit (3) is applied to the eye sockets of the face.
3. The stem cell secreted factor facial mask according to claim 1, wherein The edges between the inner cloth and the outer cloth are fixedly bonded.
4. The stem cell secreted factor facial mask according to claim 1, characterized in that The material of the inner cloth is biofiber cloth, tencel fiber cloth, silk cloth or non-woven fabric.
5. The stem cell secreted factor facial mask according to claim 1, wherein A number of criss-crossing vein grooves (5) are arranged on the inner wall of the inner cloth, and the depth of the vein grooves (5) is 0.3 - 0.6 mm.
6. The stem cell secreted factor facial mask according to claim 5, wherein The cell liquid beads (4) are arranged on the vein grooves (5) and are evenly distributed on the inner cloth.
7. The stem cell secreted factor facial mask according to claim 1, characterized in that The outside of the cell liquid beads (4) is provided with a soft wrapping shell made of edible-grade hydrogel material, and the cell liquid beads (4) are filled with cell liquid.
8. The stem cell secretion factor facial mask according to claim 1, wherein The cell liquid beads (4) and the inner cloth are bonded by natural plant glue.
9. The stem cell secreted factor facial mask according to claim 1, characterized in that, A single inner cloth or outer cloth is arranged in the middle of the eye unit (3), and the middle of the eye unit (3) coincides with the place where the T-zone unit (1) is applied to the root of the nose.