1. Field of the Invention
The present invention is related to an apparatus and a method for preparation of 188Re-perrhenate solution, and especially to an apparatus and a method for preparation of 188Re-perrhenate solution controlled under set steps, wherein the processes including liquid transfer, washing, filtration, collection etc. of a concentrator are monitored by remote control of a computer during the reaction of concentration. The monitor for the computer displays immediately the activities of the collected concentrated rhenium-188 solution so that the process of concentration can automatically increase the quality of concentration and efficiency of production of the rhenium-188, and can reduce the amount of the radiation absorbed dose of an operator.
2. Description of the Prior Art
The coronary-artery heart disease is a kind of disease most frequently seen in the western industrial countries and have the highest rate of fatality. In the recent years, a tendency has been presenting that the rate of morbidity in Taiwan has been gradually increasing and the ages of patients have been gradually lowering. The rate of morbidity of the patients die because of cardiomyoemphraxis induced by coronary-artery obstruction each year in Taiwan has ranked the third place of the rate of death in Taiwan. The methods of therapy available presently are “balloon dilation”, “laser burning”, “supporting-framework implantation”, “surgical bypassing” and “medical therapy” etc. Wherein the “balloon dilation” is the most often used method by heart physicians; however, according to statistics, 30-50% patients still have the problem of cardiostenosis again after blood-vessel dilation, and the expenses of the therapy are quite high; thereby, to prevent recurring of cardiostenosis is a problem being tried hard to overcome in the medical profession.
The main object of radiation therapy in cooperation with the “balloon dilation” is to solve the problem of fast proliferation of non-striped muscles after the above stated “balloon dilation”, the therapy is first used by a German scientist Dr. Hehrlein in 1993. This method of therapy generally can be divided into two kinds—the radioactive balloon dilation (catheter-based therapy) and the radioactive lead dilation (vascular stents).
Rhenium-188 is a radioisotope having both the function of diagnosis and therapy. The half life period of the parent nuclear species tungsten-188 is 69.4 days, its gamma ray of 155 keV can be applied on image-forming diagnosis or positioning of tumor cells. It is extremely suitable for the radioactive therapy of balloon dilation by the fact that its radiation energy is moderate (β−max=2.12 MeV, γ=155 keV, 15%). The feature of its nuclear species has extremely potential power for therapy of the above mentioned blood-vessel obstruction of heart.
In order to obtain concentrated rhenium-188 solution, The Institute of Nuclear Energy Research-Taiwan was obtained with the material of parent nuclear species (188W-sodium tungstate solution) from the Oak Ridge National Laboratory of the U.S.A. and successfully built up a tungsten-188/rhenium-188 generator. It took the rhenium-188 solution bred in the generator by rapid vacuum extrusion; 188Re-perrhenate solution then was obtained by vacuum cleansing with saline solution in the tungsten-188/rhenium-188 generator, and the 188Re-perrhenate solution was concentrated by the principle of successive tandem-column solid-phase chromatographic method, and then 188Re-perrhenate adsorbed by anion-exchange resin was dissolved with saline solution, and then cleansed solution was collected in several stages to produce the concentrated rhenium-188 solution meeting the specification of medicine.
Preparation of the above stated concentrated rhenium-188 solution generally uses a semi-automated producing mode which can produce rhenium-188 concentrate with high concentration in a producing process under automatic monitoring and controlling. Such a producing process is a one-way operation. It does not immediately detect the activities of the collected concentrated rhenium-188 solution during the process of concentration for the function of feeding back; and the procedures of zeroing, weighing etc. for a collecting bottle need operation by manpower. During the process, it inevitably has man-made neglect that affects the quality of concentration of products; and during the process of concentrating the 188Re-perrhenate solution, an operator is unable to completely avoid absorbing radiation. Therefore, the equipment and the producing process for concentration of the 188Re-perrhenate solution still leave spaces for improvement.
The primary object of the present invention is to provide an apparatus for preparation of 188Re-perrhenate solution that can monitor for remote control with a computer, and can immediately display the reaction process of concentration. (i.e. the process of concentration is automated, the quality of concentration and efficiency of production of the rhenium-188 thus is increased).
The second object of the present invention is to provide an apparatus for preparation of 188Re-perrhenate solution, wherein all the reactions of concentration of a concentrator are of a sealed mode. When a radioactive nuclear species was loaded into the sealed system for reaction via connection of pipe lines, it goes all the way to the stage of finishing and outputting the last product. Thus the process can avoid leakage of radioactive material and can reduce the amount of the radiation absorbed dose of an operator.
Another object of the present invention is to provide an apparatus for preparation of 188Re-perrhenate solution, with the apparatus, radioactive activities of the rhenium-188 in a collecting bottle and an waste liquid bottle as well as the weights of the collecting bottle and the collected liquid are measured during the reaction process of concentration for the purpose of monitoring the state of concentration of the rhenium-188, and the reaction is finished according to a command of the computer to refilter and collect the waste liquid.
To achieve the above stated objects, the apparatus for preparation of 188Re-perrhenate solution of the present invention comprises a concentrator, a control box and a control computer provided with an automatic control program. The concentrator includes at least a container for receiving liquid, a silver cation solid-phase chromatographic tube, an anion-exchange tube, a creeping motor, a plurality of electromagnetic valves, a waste liquid bottle and a collecting bottle. The abovementioned components are mutually connected by means of a plurality of delivery pipes. The collecting bottle is provided thereunder with a weighing element, the waste liquid bottle and the collecting bottle are respectively provided with a set of Geiger tubes. The control box includes an electric power supply, a signal control module, a radiation measuring module and a signal measuring module. The signal control module can cooperate with the control program to control the concentrator to operate in accordance with a given procedure, the radiation measuring module measures the activities of rhenium-188 by means of the Geiger tubes, the signal measuring module can detect the weighing element to measure the weight of the collecting bottle, and the control box of the concentrator is electrically connected with the control computer.
Thereby, the control computer can monitor for remote control, and can immediately display the processes of liquid transfer, washing, filtration, collection etc., and can simultaneously measure the radioactive activities of the rhenium-188 in a collecting bottle and an waste liquid bottle as well as the weights of the collecting bottle and the collected liquid during operation, thereby to increase the quality of concentration and efficiency of production of the rhenium-188, and to reduce the amount of the radiation absorbed dose of an operator.
The method for preparation of 188Re-perrhenate solution includes the following steps:
The present invention will be apparent after reading the detailed description of the preferred embodiment thereof in reference to the accompanying drawings.
Referring firstly to
The concentrator 2 includes a container 21 loaded with 20 cc sterilized water, two containers 22, 22′ loaded with 0.9% saline solutions (the saline solutions loaded therein are respectively 1.2-1.5 cc and 1.0 cc), an IC-Chelate Plus (Alltech) silver cation solid-phase chromatographic tube 23, a Sep Pak anion-exchange tube 24, a creeping motor 25, five electromagnetic valves 26a, 26b, 26c, 26d and 26e, a film 27, a waste liquid bottle 28 and a collecting bottle 29. The abovementioned components are mutually connected by means of a plurality of delivery pipes 30. The collecting bottle 29 is provided thereunder with a weighing element (Load Cell) 31. The waste liquid bottle 28 is provided thereunder with a set of Geiger tubes 32, and the collecting bottle 29 is provided alongside with a set of Geiger tubes 33 so that the activities of the rhenium-188 in the collecting bottle 29 and the waste liquid bottle 28 can be separately monitored; the two sets of Geiger tubes 32, 33 are provided therearound respectively with a lead screen to prevent interference of the external radiation signals.
The control box 4 is provided behind the concentrator 2 to connect with the components of the concentrator 2, and is electrically connected with the control computer 9. The control box 4 includes an electric power supply 41, a signal control module 42, a radiation measuring module 43 and a signal measuring module 44. The electric power supply 41 provides electric power of 24 and 5 volts respectively for the electromagnetic valves 26a, 26b, 26c, 26d, 26e and the signal measuring module 44; the signal control module 42 includes a signal picking card and a digital signal output card (not shown) for cooperating with the control program to control of the concentrator 2 to operate in accordance with a given procedure; the radiation measuring module 43 measures the activities of rhenium-188 by means of the Geiger tubes 32, 33. While the signal measuring module 44 can detect the weighing element 31 to measure the weight of the collecting bottle 29. The weighing element 31 can be controlled by a command of the computer to be set zero.
The components of concentrator 2 mentioned above can form a flowing path for the 188Re-perrhenate solution by connecting with the delivery pipes 30.
Referring to
Referring to
Various flowing paths used during concentration of the 188Re-perrhenate solution are controlled by the computer, and form connection by means of various modules of the control box 4; the signal control module 42 of the control box 4 in this embodiment adopted is an FP-RLY-420 of the National Instruments company of the U.S.A.; the radiation measuring module 43 is an FP-AI-502; weighing is done by using the signal measuring module 44 (FP-AI-110 (44)) inputting electric voltage and current, and connection with the computer is built by transmission of the network in cooperation with FP-2000.
Referring to
Referring to
The activity of the rhenium-188 monitored by any set of the Geiger tubes 32, 33 in the above step 4 takes 199000±100 cps as a reference value. When the activity of the waste liquid in the reaction of concentration is higher than the reference value, the “ending” key on the monitor 91 can be pushed down to finish the reaction. Then an empty bottle is used in lieu of the waste liquid bottle 28, the original waste liquid bottle 28 is used as an input terminal. When the solution drawing key of the testing keys is pushed down, adsorption of the rhenium-188 can be completed, and then the filtering and collecting key is pushed down to refilter and recollect solution.
When the concentrator 2 in the embodiment is not used for a long period of time, alcohols of the concentration of 70% loaded in the containers 21, 22, 22′ can be fully filled in the delivery pipes 30 of the apparatus 1 by a “sterilizing” key on the monitor 91 to prevent propagation of germs.
The present invention hence has the following advantages:
In conclusion, according to the description disclosed above, the present invention surely can achieve the expected objects thereof to provide an apparatus and a method for preparation of 188Re-perrhenate solution able to render the process of concentration to be automated, and to increase the quality of concentration and production efficiency of the rhenium-188 as well as to reduce the amount of the radiation absorbed dose of an operator. Having thus described the technical process of my invention having an extremely high industrial value.