PsychiatricTimes Members: Login | Register

|     

PsychiatricTimes SearchMedica Medline Drugs

Powered by SearchMedica

 
Risk Assessment
News
Current Issues
Blogs
Special Reports
CME
Conferences
Resources
Careers
Multimedia
About Us
 

Home »

Psychiatric Times. Vol. 25 No. 5
Pages: 1  2  
Next
Improving Drug Discovery in Psychiatry 

Focus on Bipolar Disorder

Increased Understanding of Intracellular Mechanisms Leads to New Targets for Therapy

By Carlos A. Zarate, Jr, MD and Husseini K. Manji, MD | April 15, 2008
Dr Zarate is chief of experimental therapeutics in the Mood and Anxiety Disorders Program at the NIMH and clinical professor of psychiatry and behavioral sciences at George Washington University, Washington, DC. Dr Manji is senior investigator at the Laboratory of Molecular Pathophysiology and Experimental Therapeutics, Mood and Anxiety Disorders Research Program, NIMH, Bethesda, Md. The authors acknowledge the support of the Intramural Research Program of NIMH, the Stanley Medical Research Institute, and the National Alliance for Research on Schizophrenia and Depression. They report no conflict of interest regarding the subject matter of this article.

Although several antimanic agents are available to treat individuals with bipolar disorder (BD), many patients have a less than satisfactory response or experience adverse effects.1 With the exception of lithium(Drug information on lithium), all of the current antimanic agents are either anticonvulsant or antipsychotic drugs. It is remarkable that no drug has been developed specifically for BD, especially because this illness was conceptualized more than a century ago. The lack of available therapeutics with a novel mechanism of action results in large part from our modest understanding of the relevant molecular and cellular substrates of this complex emotional, behavioral, and activity disorder.

Different strategies have been proposed for the development of better compounds for patients with psychiatric disorders. It has been argued that the ultimate goal of drug development should be to reduce the prevalence of psychiatric disorders through cure therapeutics and strategic preventive measures. Insel and Scolnick2 have suggested that drug development for mental disorders over the past 50 years has been significantly stalled compared with other areas of medicine and that drastically different approaches are in order.

It is our firm opinion that we are entering an era in which we will be able to develop markedly improved treatments for severe mood disorders. A growing body of data suggests that mood disorders arise from abnormalities in synaptic and neuronal plasticity cascades, leading to aberrant information processing in critical synapses and circuits.

Thus, these illnesses can best be conceptualized as genetically influenced disorders of synapses and circuits rather than simply as deficits or excesses in individual neurotransmitters. In this article, we discuss current approaches to drug development in mood disorders at the Mood and Anxiety Disorders Program of the Intramural Research Program at the National Institute of Mental Health and provide an example of one such approach.

Drug development models
At the Mood and Anxiety Disorders Program, the model of drug development that we are pursuing is based on 2 highly integrated preclinical-clinical pathways:

1. Understanding the long-term, therapeutically relevant targets of the medications currently in use. For example, in the case of SSRIs, instead of studying the initial increases in intrasynaptic serotonin, the goal would be to study the long-term changes in synaptic and neural plasticity that likely underlie their delayed therapeutic effects. Such knowledge can then be used to design new drugs directed at the target(s).

2. Understanding the pathophysiology of the illness and using that knowledge to design therapeutics to attenuate or prevent pathological processes. These may be envisioned as true disease-modifying strategies rather than simply as symptom control.

Because of space limitations, this article focuses on the first approach. For there to be substantial progress in generating novel compounds, susceptibility genes involved in illness need to be identified. However, this alone is insufficient to provide the knowledge necessary to expand our current therapeutic armamentarium. Fundamentally, we need information about the intracellular signaling cascades that are disrupted within the complex set of interacting neuronal networks and the specific changes that occur within these systems as a result of the effective treatments administered in a therapeutically relevant paradigm and in a time sensitive manner.

For example, much could be learned by gathering information at the precise point when there is a change in mood episode poles (switch from depression to mania) in BD or when an effective treatment intervention takes place. The advent of methodologies such as subtractive hybridization, messenger RNA differential display, and microarrays has illustrated the importance of hypothesis-generating by mimicking the conditions of illness or examining when effective treatments act (eg, in an animal model of mania and lithium treatment); this is particularly true when dealing with disorders whose pathophysiology remains elusive.3

Thus, it may be very useful to develop drugs that are based on pertinent intracellular signaling molecular targets of current mood stabilizers; these later could be adapted to optimize efficacy, specificity, and/or adverse-effect profiles. In addition, all current medications have a considerable onset lag before their full therapeutic properties are activated (implying changes in gene expression, protein function, and—more generally—plasticity). Thus, identification of targets after prolonged treatments in cell- and animal-based models may be a useful approach in the development of novel therapeutics.

This approach may increase the likelihood of identifying relevant downstream targets with potentially more potent and rapid actions. Ultimately, novel agents identified in this manner also may benefit patients who are treatment-resistant, because alterations in the intracellular pathways (ie, defects) could simply be bypassed to the end-stage molecular targets that are ultimately relevant to the therapeutic effects. The use of this strategy could provide clues on how to bypass the defect in a number of ways. There is no shortage of targets, and the task of determining the ones that are most therapeutically relevant is challenging.

Our work attempts to focus on those target proteins and pathways with the most evidence for involvement in mood disorders, the greatest relevance to current disease models, or where other medications with the same or similar actions have been developed and could be used for proof-of-concept trials.

An example of drug development for BD: identification of a novel molecular target
The recent identification of biochemical targets of effective treatments has been facilitated by gene and protein expression profiling, which has led to the identification of several hitherto unexpected targets. It is important to note that these methodologies are only a screening technique, and the results need independent validation. More information on understanding the molecular mechanisms presumably involved in mood stabilization through genome-wide gene expression profiling is reviewed elsewhere.3

Because target validation for complex psychiatric disorders is so challenging, the following criteria for selecting mood stabilizers for further study were put forth: (1) corroboration of a target at the protein and functional level; (2) observation with chemically dissimilar but clinically effective agents; (3) occurrence at a dose/plasma level and time frame consistent with clinical therapeutic effect; (4) localization to brain regions implicated in the neurobiology of the disorder under consideration; (5) when known, relevance to pathophysiology; and (6) when possible, tethered to human genetic findings. Application of these stringent criteria led a number of independent groups4,5 to recognize protein kinase C (PKC) as a promising direct biochemical target for developing therapeutics to treat BD.

The mood stabilizers that meet the aforementioned criteria for further testing are lithium (a monovalent cation) and valproate(Drug information on valproate) (an 8-carbon, branched fatty acid). Lithium and valproate are structurally dissimilar, but researchers have postulated that their similar therapeutic effects take place in the critical circuits of brain regions implicated in the pathophysiology of BD. The therapeutic effects are specific to these agents and occur at drug concentrations in vivo. The resultant biochemical changes occur only after long-term—but not short-term—administration in a time frame consistent with improvement of symptoms of the illness.

Both lithium and valproate were found to bring about markedly analogous effects on the PKC signaling cascade, actions that appear to be most pertinent to their antimanic profile. The PKC example we will now describe is one of the few instances in which a drug is being developed specifically to treat BD based on an identified molecular target. Indeed, such development has gone from identifying a direct molecular target in 1990 to a positive, proof-of-concept clinical study with a modulator of the relevant target in humans in 2007.

What is PKC?
PKC is a family of 12 closely and structurally related isozyme subspecies with a heterogeneous distribution throughout the body that depends on isoforms.6,7 In the brain, PKC has a varied distribution and plays a significant role in regulating synaptic facets of neurotransmission. A number of additional functions for PKC have been described, including regulation of neuronal excitability, neurotransmitter release, long-term alterations in gene expression and plasticity, and mediation of intracellular signaling pathways.8

Pages: 1  2  
Next
 

Join the Conversation

Want to join the conversation? If you're a healthcare professional, we'd like to hear your comments. Just sign in or register today to become part of our growing, online community.






 
TOPIC INDEX

Addiction Medicine
Alzheimer Disease
Anxiety Disorders
ADHD
Bipolar Disorder
Child & Adolescent Psychiatry
Dementia
Depression
DSM-5
Geriatric Psychiatry

 

Health Care Reform
Major Depressive
Disorder
OCD
Personality Disorders
Schizoaffective Disorder
Schizophrenia
Sleep Disorders
Somatoform Disorders
All Topics

 


 
FROM PHYSICIANS PRACTICE
'What They Should Really Teach in Medical School'
Julie Schopps, MD , February 6, 2012
The North Carolina-based pediatrician weighs in on why she thinks the real learning doesn't take place until students are out of the classroom.
Improve EHR Systems by Rethinking Medical Billing
Daniel Essin, MA, MD, February 6, 2012
Separating billing-related data from other clinical documentation and transmitting it to a billing system is not difficult …no matter how the charting is done.
Keeping Your Medical Practice’s Accounts Receivable on Track
P.J. Cloud-Moulds, February 4, 2012
Here are the minimum reports you should be running to keep an eye on your practices A/R.
Healthcare Providers Play Crucial Role in Helping Victims of Abuse
Stephen Hanson, PA-C , February 3, 2012
I would urge each and every one of you to be familiar with the warning signs of abuse, and the resources available to you all as healthcare providers.
Protecting Your Medical Practice's Data
Marisa Torrieri, February 3, 2012
Here's the scoop on how to implement a good data-backup plan at your office.
 
MOST POPULAR
  • Most Popular
  • Most Emailed
  • Most Recent
  • Pathological Lying: Symptom or Disease?
  • Psychopathy and Antisocial Personality Disorder: A Case of Diagnostic Confusion
  • The Hidden Suffering of the Psychopath
  • Does Marijuana Withdrawal Syndrome Exist?
  • The Cannabis-Psychosis Link
  • Broken Sleep May Be Natural Sleep
  • Sleep Hygiene
  • The Cannabis-Psychosis Link
  • How Psychotherapy Changes the Brain
  • Grief, Mourning—and the Denial of Death
  • Psychoeducational Resources
  • An Evidence-Based Practice of Psychoeducation for Schizophrenia
  • Recovery-Based Services and Education Resources
  • Documentation That DSM-5 Publication Must Be Delayed
  • Peer Specialists as Educators for Recovery-Based Systems Transformation
Click here to subscribe to our newsletter
 
COMMENTS
  • Most Commented
  • Most Recent
  • What's Your Challenge?
  • APA Should Delay Publication of DSM-5
  • Borderline Personality Disorder and Bipolar Disorder—Distinguishing Features of Clinical Diagnosis and Treatment
  • Grief, Mourning—and the Denial of Death
  • Occupy Medicine: Reclaiming Our Lost Leadership
  • Hebephilia is a Crime, Not a Mental Disorder
  • Strategies to Avoid Burnout in Professional Practice: Some Practical Suggestions
  • John Henry: Railroading the Mentally Ill
  • Improving Suicide Risk Assessment
  • Pioneering FBI Profiler Answers Questions About Serial Killers
Click here to subscribe to our newsletter
 
CAREER CENTER

  • Featured Jobs
  • Resources
  • State Listings
  • Psychiatry and Nurse Practitioner Opportunities
  • Associate Medical Director - Psychiatrist Delray Beach, Florida
  • Retiring Child Psychiatrist Seeks Replacement August 2010 or Before
  • Chairperson, Dept of Psychiatry Needed
  • FT Staff Psychiatrist - Excellent Benefits
  • BC Adult and Child Psychiatrits - PT and FT Positions Available
  • Managing Risks When Practicing in Three-Party Care Settings
  • 12 Tips for Making Your Practice Greener
  • Keys to Avoiding Malpractice: Standard of Care in Psychiatric Practice
  • Take This Job and Shove It
  • Merging Administrative and Academic Careers in Psychiatry
  • Arizona
  • California
  • Florida
  • Massachusetts
  • New Jersey
Virtual Career Expo: On Demand
 
SearchMedica SEARCH RESULT

Find peer-reviewed literature and websites for practicing medical professionals

CME on Display
Evidence on Display
Guidelines on Display
Patient Education on Display
Clinical Trials on Display
Practical Articles on Display
Research and Reviews on Display
All "Display" results

CancerNetwork | CME LLC | ConsultantLive | Diagnostic Imaging | Musculoskeletal Network | OBGYN.net | PediatricsConsultantLive |
Physicians Practice | Psychiatric Times | SearchMedica | Medical Resources

© 1996 - 2012 UBM Medica LLC, a UBM company
Privacy Statement - Terms of Service - Advertising Information - Editorial Policy Statement - UBM Medica Network Privacy Policy