摘要:
The present invention relates to a cleaning composition for removing cellular components from tissue for transplantation derived from humans and animals. More particularly, the present invention relates to a cleaning composition for treating tissue for transplantation comprising a polyoxyethyleneglycol C14-C20alkyl ether as a first protein solubilizing component, a C6-C8alkylphenol polyethoxylate as a first lipid solubilizing component, a C10-C16alkyl glycoside as a second protein solubilizing component and a C9-C12alkylphenoxy polyethoxy ethanol as a second lipid solubilizing component.
摘要:
The present invention relates to a cleaning composition for removing cellular components from tissue for transplantation derived from humans and animals. More particularly, the present invention relates to a cleaning composition for treating tissue for transplantation comprising a polyoxyethyleneglycol C14-C20alkyl ether as a first protein solubilizing component, a C6-C8alkylphenol polyethoxylate as a first lipid solubilizing component, a C10-C16alkyl glycoside as a second protein solubilizing component and a C9-C12 alkylphenoxy polyethoxy ethanol as a second lipid solubilizing component.
摘要:
The present invention relates to a bone-repair composition comprising a micro-pulverized demineralized bone matrix; a nonmicro-pulverized demineralized bone matrix; and a hydrating material. The bone-repair composition of the present invention provides easier injectability and shape-maintenance (handling), and exhibits excellent bone-repairing effects due to a large surface area of the micro-pulverized demineralized bone matrix and an early release of the bone growth factors, compared with conventional compositions comprising the nonmicro-pulverized demineralized bone matrix alone. It also has an advantage of being biocompatible and harmless to the human body because there is no use of synthetic materials.
摘要:
The present invention relates to a bone-repair composition comprising a micro-pulverized demineralized bone matrix; a nonmicro-pulverized demineralized bone matrix; and a hydrating material. The bone-repair composition of the present invention provides easier injectability and shape-maintenance (handling), and exhibits excellent bone-repairing effects due to a large surface area of the micro-pulverized demineralized bone matrix and an early release of the bone growth factors, compared with conventional compositions comprising the nonmicro-pulverized demineralized bone matrix alone. It also has an advantage of being biocompatible and harmless to the human body because there is no use of synthetic materials.