Abstract:
A p16 protein variant; a polynucleotide encoding the p16 protein variant; a method for preparing the p16 protein variant; a pharmaceutical composition comprising the p16 protein variant; a method for preventing and/or treating cancer comprising administering the p16 protein variant to a subject; and use of the p16 protein variant in the prophylaxis and/or therapy of cancer.
Abstract:
In a method of manufacturing a variable resistance memory device, an MTJ structure layer is formed on a substrate. The MTJ structure layer is etched in an etching chamber to form an MTJ structure. The substrate having the MTJ structure thereon is transferred to a deposition chamber through a transfer chamber. A protection layer covering a sidewall of the MTJ structure is formed in the deposition chamber. The etching chamber, the transfer chamber, and the deposition chamber are kept in a high vacuum state equal to or more than about 10−8 Torr.
Abstract:
A p16 protein variant; a polynucleotide encoding the p16 protein variant; a method for preparing the p16 protein variant; a pharmaceutical composition comprising the p16 protein variant; a method for preventing and/or treating cancer comprising administering the p16 protein variant to a subject; and use of the p16 protein variant in the prophylaxis and/or therapy of cancer.
Abstract:
An electronic device according to various embodiments of the present invention comprises a wireless power reception circuit and a processor, wherein the processor can be set so as to receive power transmitted from an external electronic device by using the wireless power reception circuit, detect a state related with the reception during the reception of the power, and disable at least a part of the wireless power reception circuit such that the external electronic device stops the transmission when the state satisfies a designated condition. Other examples are also possible.
Abstract:
A reception device for receiving wireless power may include: a power reception circuit configured to wirelessly receive power from a transmission device, rectify the received power, and output the rectified power; a charger configured to process the rectified power received from the power reception circuit and charge a battery of the reception device or output the rectified power to a system of the reception device; and a control circuit configured to, when an event for changing an input current limit of the charger is detected, gradually change the input current limit of the charger by stepping up or stepping down the input current limit to one or more intermediary values until the input current limit reaches a predetermined value.