Abstract:
The invention relates to a tumour vaccine and a process for the preparation thereof. The tumour vaccine contains tumour cells, at least a portion of which has at least one MHC-I-haplotype of the patient on the cell surface, and which have been loaded in such a manner with one or a plurality of peptides bonding to the MHC-I-molecule that said tumour cells are recognised as foreign within the context of the peptides by the patient's immune system and trigger a cellular immune response. Loading takes place in the presence of a polycation such as polylysine.
Abstract:
The invention relates to a process for making printed circuit boards from semi-finished foil products (F.2/6/6'/6") in which at least two semi-finished foil products (F.2/6/6'/6") are bonded together under pressure and temperature via at least two viscous insulating layers (2, 7) which are physically different from each other in that one insulating layer (7) does not melt to liquid form and acts as a spacer, the other insulating layer (2) melts to liquid form during bonding and acts as a bonding agent, a bonding semi-finished foil product (F.2/6/6'/6") with insulating layers (2, 7) is used therefor and spacing insulating layers (7) are applied to conductive layers (1) and bonding insulating layers (2) are applied to spacing insulating layers (7).
Abstract:
The proposed method of producing multifunctional multilayered connection substrates involves the following: the connection substrate is built up function by function from the various components, i.e. signal conducting substrate components (19), power supply substrate components (2), thermal substrate components (20), mechanical substrate components (7), and the arrangement of the components (4) and component-bearing substrate components as interdependent functions or modules, are designed and optimised separately before finally being assigned to spatially separated functional areas (inner/outer) of the circuit. The construction process involves connecting the modules to a circuit which forms the connection substrate. The substrate components with fine, compact, flexible and cool elements are assigned to the inner areas of the circuit, while those substrate components with coarse, rigid and warm elements and/or components are assigned to the outer areas of the circuit; a stiffening support material is applied in the outer area in such a way as to give the circuit a mechanical support structure which is designed to have rigid sections which merge into flexible sections. The circuit can be folded and/or wound according to the rigid and flexible sections. The mechanical support structure can be formed by separately manufactured device housing components or by the device housing.
Abstract:
A process and apparatus for several pile loops in pile forming machines in the manufacturing of velour-like textiles. Severing pile loops is of considerable economical and ecological importance inasmuch as the subsequent shearing of loops can result in considerable loss of pile material and is preferably to be avoided when producing cut pile textiles. In the present invention, the cutting elements (2) are arranged to start out from a mounting position on or adjacent the inactive side or flank of the pile elements (1). The cutting elements (2) then extend, in fact they bend slightly, to contact the opposite side or flank of the pile elements (1), on which side a cutting edge is provided. This arrangement produces smoother cutting conditions and the cutting element is separated from the pile element as soon as severing has occurred and the cutting edges are not pushed apart.
Abstract:
A process is disclosed for manufacturing printed circuit boards, printed circuit foils and semifinished products for printed circuit boards and printed circuit foils from blanks with electroconductive layers (7, 8) that may be structured into conductive patterns and substrates (4) that may be structured for forming connecting means (V), profiles (K) and conductive patterns (L). The connecting means (V), profiles (K) and conductive patterns (L) are structured at the same time or in the same process steps on the blanks. The connecting means (V) and the profiles (K) are part of the structured substrate (4) of the blanks. The electric or mechanical connecting means (V) are placed in a position in which they may be connected and the finished conductive patterns (L) may be detached around the profiles (K).
Abstract:
In the process of the invention for the production of multi-layer film printed circuit boards from semi-finished products (A), with current paths (B) structured in electrically conductive layers (1, 3) and with electrically conductive plating (C, D) from conductive layer (1) to conductive layer (3) through an insulating layer (2), or for the production of semi-finished items for such foil printed circuit boards, in initial steps in the process a structuring agent (7, 7', 13) is applied in a controlled fashion locally to the semi-finished item (A) and cover layers (8, 9) are applied to the surface of the semi-finished item (A). The structuring agent (7, 7', 13) is either applied to the cover layers (8, 9) which are then locally removed or the cover layers (8, 9) are applied to structuring agents (7, 7', 13) and in a further step the structuring agent (7, 7', 13) applied is removed leaving apertures (10, 10') in the cover layers (8, 9) extending as far as the insulating layer (2). In a further step, through or blind holes (11, 11') are locally etched into the insulating layer (2) at the location of the appertures (10, 10') and, to produce electrically conductive plating (C, D), electrically conductive deposition substances (12) are deposited in the through or blind holes (11, 11').
Abstract:
Cancer vaccines are prepared by treating tumor cells or fibroblasts with a complex of immunostimulating polypeptide-coding DNA and of DNA-binding substance, for example polylysine, preferably conjugated with transferrine. The complex further contains a conjugate of DNA-binding substance and of an endosomolytic peptide or an adenovirus having at least one E4 defect or one E1a defect associated with other genetic defects.
Abstract:
According to a process for producing a thermal layout, not only massive heat sinks are provided for absorbing heat, but also an optimized number of thermoconductive strips which distribute the heat over the printed circuit board. In the collecting zones are arranged higher capacity sinks into which the heat is transmitted. The thermoconductive strips may be thermoconductors (TL) provided for that purpose and more massive than the conductive strips for the electric connections, or conductive strips for electric connections, the electroconductors (EL), may also be used for heat transfer. An optimum design interconnects the TL'S and EL's into a functional whole, a thermal management network. With a certain technique, which could be called pocket groove technique, "cooling channels" of a type may be created. Such thermoconductors may be included in the electric layout, so that a thermal layout is superimposed on the connection layout (TL/EL network). Heat distribution and transfer may thus be calculated and optimized by a computer in the same way as the electric distribution by the conductive strips, i.e. the known electric layout, which is produced by a computer-assisted process.
Abstract:
A machine (10) for dispensing a freshly mixed cup of juice or other beverage made from concentrate mixed with water immediately prior to the dispensing, comprising a generally U-shaped water reservoir (32), the water in which is kept at an essentially constant level by means of a proximity switch (40) interacting with a solenoid valve (98) located in the principal water supply. Coils (62) of a refrigerant unit (60) are disposed in the reservoir (32) to chill the water to a temperature above the freezing point, and one or more concentrate tanks (34) are located between the arms of the U-shaped reservoir (32), so that concentrate will be chilled to, and maintained at, a desired temperature. Modular pump units (44) are utilized for pumping concentrate into a mixing chamber (78), with a power driven impeller (80) utilized in the mixing chamber (78) to effect a mixing of concentrate with a suitable quantity of water from the reservoir (32). Down time of the machine is minimized by the modular pump units (44) being quickly replaceable in case of malfunction, with the refrigeration unit (60) used in the machine likewise being modularized to permit rapid replacement.
Abstract:
Die vorliegende Erfindung betrifft ein Peptid, welches aus 10 bis 30 Aminosäureresten besteht und von der Aminosäuresequenz SIPWNLERITPPRYRADEYQPPDGGSLVEV (SEQ ID Nr. 1) abgeleitet ist, wobei das Peptid die Aminosäuresequenz SIPWNLERIT umfasst, und ein Vakzin umfassend dieses Peptid.
Abstract translation:本发明涉及一种由10〜30个氨基酸残基和氨基酸序列SIPWNLERITPPRYRADEYQPPDGGSLVEV(SEQ ID NO。1)的肽,其中所述肽包含氨基酸序列SIPWNLERIT和疫苗,其包含该肽。