Behavior chemotherapy

Drug – bio-affecting and body treating compositions – Designated organic active ingredient containing – Nitrogen containing other than solely as a nitrogen in an...

Reexamination Certificate

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C514S654000, C514S456000, C514S319000, C514S810000, C514S811000, C514S812000

Reexamination Certificate

active

06617361

ABSTRACT:

TECHNICAL FIELD
The invention relates to modification of behavior, particularly habitual or addictive behavior, using a combination of chemotherapeutic assistance and psychological counseling. More specifically, it relates to a three-stage protocol for replacing an undesired habit with a desired one.
BACKGROUND ART
Attempts to alter human behavioral patterns associated with addictions or compulsions are littered with failure. Programs designed to modify such habits as overeating, addiction to narcotics, alcoholism, and smoking are the basis for an industry with a turnover of billions of dollars a year. Some of these programs involve entirely psychological counseling and support. Others employ known chemical agents.
A large number of pharmacological agents that affect behavior is known. Perhaps one of the best known is the combination Fen-Phen used for many years to exert an anorectic effect to treat obesity. This combination of phentermine and fenfluramine was available until recently when the cardiopulmonary side effects of this medicament were considered unacceptable. Both of these components are related to amphetamines and are epinephrine analogs which can be used to combat fatigue and drowsiness. The use of, for example, donepezil to treat the symptoms of Alzheimer's disease is also known. In short, a variety of agents known to affect the central nervous system have been used in various contexts to treat a number of indications related directly or indirectly to behaviors.
At present, however, there appears to be no established treatment that is adaptable generally to replacing undesired behaviors permanently with desired ones. The present invention provides such a protocol.
The protocol of the present invention, in addition to correcting undesirable habitual behavior, also restores the normal balance of the various neurotransmitters mediated by norepinephrine, dopamine, serotonin and acetyl choline. By virtue of the imbalance in the behavior of these neurotransmitters, chronic conditions such as cancer and Alzheimer's disease may occur. Therefore, by restoring the balance, the protocols of the invention operate as preventatives for these conditions.
DISCLOSURE OF THE INVENTION
The invention provides a protocol that can be adapted to replace a behavioral pattern that is ingrained and undesired with a desired one the desired behavior may include simply avoidance of the undesirable activity. The protocol can be applied to humans and to other mammals. The protocol of the invention can be modified as described herein to treat individuals who are habitual gamblers, smokers, alcoholics, sufferers of incapacitating fatigue, narcotics addicts, and the like. It can also be used to train animals, such as domestic pets. The invention protocol also relates to a method to prevent the onset of chronic conditions such as Alzheimer's disease and cancer by restoring appropriate neurotransmitter balance. The capacity of the protocol to prevent cancer may be mediated by a positive effect on the immune system.
The invention relates to a three-stage protocol the length of which will vary with the nature of the subject treated.
The first stage comprises acute treatment with effective amounts of compounds that augment the activity of and generally affect the amine neurotransmitters that are associated with the sympathetic nervous system and which influence implicit memory. This treatment may be supplemented with specific aids as dictated by the condition of the subject; for example, a nicotine patch may be useful where the undesired behavior is smoking.
The second stage involves maintaining chemotherapy with these amine neurotransmitter augmenting compounds but adds a component of psychology/supportive therapy in the case of humans, and training or otherwise effecting or conditioning a behavioral adjustment in the case of nonhuman animals. For nonhuman animals this may involve an indirect intervention, e.g., modifying the behavior of the owner.
The third stage comprises administering an acetylcholinesterase (AChase) inhibitor along with the compounds described above with respect to stages I and II. The third stage mimics the psychological condition of rapid eye movement (REM) sleep.
The protocol may be supplemented by a superimposed treatment whereby diurnal variation is mimicked by administration of a corticosteroid, such as prednisone.
MODES OF CARRYING OUT THE INVENTION
The subjects for which the invention protocol is intended are human or animal subjects who would be benefited by modification of behavior to overcome what might simply be called a “bad habit.” The habits can be internal or external. An internal habit arises by virtue of repetitive behavior unrelated to a direct metabolic effect of an external agent. An external habit further involves an interaction with an external metabolic agent. External habits include narcotics addiction and smoking; internal habits would be exemplified by gambling and overeating. Of course, external habits may be reinforced by an internal habit mechanism as well. As will be seen, where a habit is internal, stage I treatment consists only of stimulators of the sympathetic nervous system in the form of compounds that stimulate amine neurotransmitters, optionally along with agents to control possible side effects of these drugs in cases where they are needed. For treatment of habits which have an external component, however, the subject is supplied with sufficient amounts of the external substance, or with a specific substitute therefor, to ameliorate withdrawal symptoms.
In general, the habitual behavior is controlled by “implicit memory.” As defined herein, “implicit memory” is the unintentional recall of events or activities that influence behavior. Implicit memory is controlled by amine neurotransmitters, most prominently serotonin, norepinephrine, and dopamine. Implicit memory is brought to bear in behaviors that are permanently available and relatively unconsciously controlled. Exemplary behaviors of this type often include a physical component. Motor skills such as riding a bicycle, skiing, swimming, ice skating and the like, once learned, are essentially permanent. Conscious mechanisms are not required to bring them to recall.
On the other hand, “explicit memory” as defined herein relates to a conscious and deliberate recall of recent events and volitional behavior. In general, this type of memory is controlled by a single neurotransmitter, acetylcholine. In stage III of the protocol described herein, the explicit memory is stimulated along with the implicit memory, thus mimicking the transfer of elements from explicit to implicit memory similar to that which occurs in REM sleep. This transfer, in general, permits replacement of a “good” habit which has been implanted in the explicit memory into the habitual realm of the implicit memory. Thus, the behavior patterns explicitly learned in stage II of the invention protocol are transferred into the implicit memory in stage III.
In addition to subjects who are affected by undesirable habitual behavior, the protocols of the invention can be used to restore appropriate neurotransmitter balance in anyone where imbalance occurs. It is believed that imbalance in neurotransmitters negatively affects the immune system, which in turn lowers the resistance of the individual to the onset of malignancy and that this imbalance also contributes to the onset of Alzheimer's disease.
As set forth above, the method of the invention is a protocol that involves three stages of treatment. The first stage, initial therapy, is designed to activate the implicit memory to make the habitual behavior available for modification. The pharmacological agents useful in this stage are compounds that stimulate amine neurotransmitters of the sympathetic nervous system. In general, these compounds are amines which are related to the three major neurotransmitters, serotonin, norepinephrine, and dopamine. Included among these are compounds related to norepinephrine such as ethylnorepinephrine, metaraninol, tyramine, hydr

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