Abstract:
Provided are a hair observation method, a phase contrast microscope system, and a preparation. The hair observation method includes capturing an infrared image of the hair using an image sensor that is capable of detecting infrared light. A phase contrast microscope system includes: a stage having a sample placed thereon; an infrared light irradiation source for irradiating infrared light to the sample placed on the stage; an image sensor that is capable of detecting infrared light and configured to capture an infrared image of the sample; and a display apparatus configured to display the infrared image captured by the image sensor. The preparation includes a microscope glass and a plurality of hair pieces that are obtained by cutting one hair and arranged on the microscope glass in a manner parallel with one another from one end to another end in a cutting order.
Abstract:
The object of the present invention is to provide an artificial skin having hair follicles, sebaceous glands, and hair pores. The present invention provides a method for manufacturing artificial skin having hair follicles, sebaceous glands, and hair pores, characterized in that it comprises each of the following steps: (A): a step of preparing an artificial skin having dermal and epidermal layers or an artificial skin having only a dermal layer; and (B): a step of transplanting isolated hair follicles to the artificial skin prepared in step (A); wherein said isolated hair follicle comprises a sebaceous gland, and said isolated hair follicle is transplanted to said artificial skin so that the surface of said dermal Layer of said artificial skin is in alignment with the position of the hair pore portion of said isolated hair follicle.
Abstract:
Provided are a hair observation method, a phase contrast microscope system, and a preparation. The hair observation method includes capturing an infrared image of the hair using an image sensor that is capable of detecting infrared light. A phase contrast microscope system includes: a stage having a sample placed thereon; an infrared light irradiation source for irradiating infrared light to the sample placed on the stage; an image sensor that is capable of detecting infrared light and configured to capture an infrared image of the sample; and a display apparatus configured to display the infrared image captured by the image sensor. The preparation includes a microscope glass and a plurality of hair pieces that are obtained by cutting one hair and arranged on the microscope glass in a manner parallel with one another from one end to another end in a cutting order.
Abstract:
The present invention is directed to a hair growth agent for external use comprising chiro-inositol, which is provided as an excellent hair growth agent.
Abstract:
To provide a method of efficiently producing full thickness skin having skin accessory organs. [Solution] This method of producing full thickness skin having skin accessory organs is characterized by involving the following steps (a) to (d): (a) a step for stimulating an embryoid body with a physiologically active substance that can activate the Wnt pathway, (b) a step for preparing a conjugate that includes all or part of the embryoid body stimulated in step (a) and a scaffolding material, (c) a step for transplanting the conjugate prepared in step (b) into an animal, and (d) a step for producing, in the animal, full thickness skin derived from said conjugate.
Abstract:
The object of the present invention is to provide a technology that enables long-term preservation while maintaining the function of an organ or tissue for transplantation. A further object is utilizing this technology to provide a technology for suppressing tissue disorder accompanying warm ischemia and reperfusion as well as restoring an organ from a cardiac arrest donor to a level compatible for transplantation. A method that employs perfusion by a perfusate etc. is provided, comprising each of the following steps of: (a) connecting a perfusate instream cannula for streaming said perfusate into said “organ or tissue,” (b) connecting a perfusate outstream cannula for streaming said perfusate out from said “organ or tissue,” and (c) perfusing a perfusate comprising an oxygen carrier and a blood coagulation inhibitor into said organ or tissue.
Abstract:
The object of the present invention is to provide a technology that enables long-term preservation while maintaining the function of an organ or tissue for transplantation. A further object is utilizing this technology to provide a technology for suppressing tissue disorder accompanying warm ischemia and reperfusion as well as restoring an organ from a cardiac arrest donor to a level compatible for transplantation. A long-term maintenance method of a mammalian organ or tissue for transplantation that employs perfusion by a perfusate etc. is provided, comprising each of the following steps of: (a) connecting a perfusate instream cannula for streaming said perfusate into said “organ or tissue,” (b) connecting a perfusate outstream cannula for streaming said perfusate out from said “organ or tissue,” and (c) perfusing a perfusate comprising an oxygen carrier and a blood coagulation inhibitor into said organ or tissue.
Abstract:
The purpose of the present invention is to provide a dental implant which enables the formation of a functional periodontal tissue around the implant after the implantation of the implant. The dental implant according to the present invention is characterized in that a cell mass originated from a tooth germ tissue or a periodontal ligament tissue is placed on the surface of the implant and the surface of the implant on which the cell mass is to be placed is the whole or a part of a surface that is surrounded by an alveolar bone of a recipient during the implantation of the implant.
Abstract:
Disclosed are a perfusion culture method and a perfusion culture device whereby a perfusate can be delivered to all parts of an organ or tissue so that the organ or tissue can be preserved while sufficiently maintaining the function thereof. Specifically disclosed is a method for perfusion culture of an organ or tissue removed from a mammal, said organ or tissue having been removed together with a second organ or tissue connected to the aforesaid organ or tissue in vivo, which comprises a step for fixing said second organ or tissue so as to hang the aforesaid organ or tissue and a step for perfusing blood vessels in the aforesaid organ or tissue with a perfusate.
Abstract:
To provide means for efficient growth of epithelial cells capable of being used to manufacture regenerated hair follicle germs. Provided are a culture medium for growth of epithelial cells capable of being used to manufacture regenerated hair follicle germs, the culture medium comprising basal medium and at least (1) through (3), below: and a method for growing the epithelial cells using the culture medium: (1) at least one species of BMP inhibitor: (2) at least one species of fibroblast growth factor: and (3) at least one species of sonic hedgehog (SHH) and/or SHH agonist.