PubMed Health⌕ Search

PubMed · 12498011

Utilizing brain imaging for analgesic drug development.

Abstract

Analgesia is defined as loss of pain sensation without loss of consciousness; pain may be acute or chronic. Acute pain is well understood and can be controlled with currently available analgesics. Chronic pain, however, is not effectively controlled with current analgesics and side effect profiles often limit the use of these agents. Currently there are: (i) no objective methods for defining pain or analgesia in humans; (ii) no objective methods for correlating efficacy of analgesics in animal testing with human testing; and (iii) no objective method of evaluating the efficacy of analgesics in painful conditions, including neuropathic pain in which adaptive or maladaptive changes evolve with time. A technological revolution in functional brain imaging in humans and animals offers new approaches to objective evaluation of analgesics and of clinical pain states. These approaches hold great promise for revolutionizing drug development at preclinical and clinical stages.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

David Borsook, Alexander Ploghaus, Lino Becerra. 2002. Utilizing brain imaging for analgesic drug development.. https://pubmed.ncbi.nlm.nih.gov/12498011/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Analgesic activity of a polysaccharide in experimental osteoarthritis in rats.

Viscosupplementation efficacy has been related to the high molecular weight of hyaluronic acid-like compounds, as well as to gel formulation. We evaluated the effect of a galactomannan polysaccharide derived from Guar gum (GG) in joint pain in an osteoarthritis (OA) model. Wistar rats (six animals/group) were subjected to anterior cruciate ligament transection (ACLT-OA group). The OA group was compared to a false-operated group (sham). Joint pain was recorded daily, using the articular incapacitation test, until 7 days after ACLT. Solutions or gel preparations of GG (100 microg) or Hylan G-F 20 (100 microg), used as a comparator, were given intraarticularly (i.a.) at day 4 after ACLT. Controls received saline i.a. The OA group had significantly increased joint pain as compared to sham (P<0.001). GG, either as a gel or solution, significantly inhibited joint pain similar to the inhibition achieved with Hylan G-F20. This is the first demonstration that a galactomannan derived from GG reduces joint pain in experimental OA. This analgesia is independent of the colloidal state. We propose that the analgesic benefit of viscosupplementation may be due to an intrinsic carbohydrate-mediated mechanism rather than to the rheologic properties of the material.

Analgesics↗

Synthesis and pharmacological evaluation of some 3-(4-methylphenyl)-2-substituted amino-3H-quinazolin-4-ones as analgesic and anti-inflammatory agents.

A variety of 3-(4-methyl phenyl)-2-substituted amino-3H-quinazolin-4-ones were synthesized by reacting the amino group of 2-hydrazino-3-(4-methyl phenyl)-3H-quinazolin-4-one with a variety of aldehydes and ketones. The starting material 2-hydrazino-3-(4-methyl phenyl)-3H-quinazolin-4-one was synthesized from 4-methyl aniline. The title compounds were investigated for analgesic, anti-inflammatory, and ulcerogenic index activities. While the test compounds exhibited significant activity, compounds Al, A2, and A3 showed more potent analgesic activity and the compound A3 showed more potent anti-inflammatory activity when compared to the reference standard diclofenac sodium. Interestingly, the test compounds showed only mild ulcerogenic potential when compared to aspirin.

Analgesics↗