Luke M C, Hahn E F, Price M, Pasternak G W
Cotzias Laboratory of Neuro-Oncology, Memorial Sloan-Kettering Cancer Center, New York, NY.
Life Sci. 1988;43(15):1249-56. doi: 10.1016/0024-3205(88)90215-9.
We have synthesized a series of hydrazones and acylhydrazones of naltrexone. These substitutions had modest effects on competition of mu binding but many greatly enhanced the relative potency of the compounds for delta receptors. Increased delta affinity was most prominent with the acylhydrazones. Many of the derivatives elicited a wash-resistant inhibition of binding which was restricted to mu, not delta, binding sites. This wash-resistant inhibition of binding did not correlate with affinity, as determined by IC50 values, implying that the inhibition could not be explained simply by slow rate of dissociation due to increased affinity.
我们合成了一系列纳曲酮的腙和酰腙。这些取代对μ受体结合竞争有适度影响,但许多化合物大大增强了对δ受体的相对效力。酰腙的δ亲和力增加最为显著。许多衍生物引起了一种耐洗脱的结合抑制,这种抑制仅限于μ受体结合位点,而非δ受体结合位点。如通过IC50值所确定的,这种耐洗脱的结合抑制与亲和力不相关,这意味着这种抑制不能简单地用由于亲和力增加导致的解离速率缓慢来解释。