Neurodegenerative diseases represent a challenge for biomedical research due to their high prevalence and lack of mechanism-based treatments. Because of the complex pathology of neurodegenerative disorders, multifunctional drugs have been increasingly recognized as potential treatments. We identified homobivalent γ-carbolinium salts as potent inihitors of both cholinesterases, N-methyl-D-aspartate receptors, and monoamine oxidases. Homobivalent γ-carbolines displayed similar structure-activity relationships on all tested targets and may present promising designed multiple ligands for the treatment of neurodegenerative disorders.
Nine novel β- and γ-carboline derivatives bearing either methyl-, propargyl- or phenethyl-residues at the indole nitrogen were synthesized and tested as potential anti-Alzheimer drugs. Antagonism of recombinantly expressed NMDA receptors, inhibition of cholinesterases, and radical scavenging properties were determined for all compounds. Some were additionally tested in vivo for their ability to reverse scopolamine-induced cognitive impairment in an 8-arm radial maze experiment with rats. For the most promising candidates, the interaction with muscarinic M1 receptors was also investigated. With this set of compounds assays the influence of the scaffold itself and the substituents can be investigated separately. 5-Methyl-γ-carboline (6) was the most potent (0.25 μmol/100 g b.w.) compound in the in vivo test and might be a good starting point for the development of novel anti-Alzheimer drugs.
We studied kidneys of rats intoxicated with uranylnitrate (UN) or subjected to 5/6 nephrectomy (NX) or after a combination of both procedures (NX-UN). Our observations indicate that UN causes impressive changes of ultrastructure (partial loss of brush border, appearance of intercellular clefts in the epithelial barrier) and altered protein expression (α-SMA, collagen I and III) in proximal tubule cells. Renal parameters (creatinine clearance, proteinuria) seemed to be unaffected. Blood pressure recovered to normal values within 12 months. However ultrastructural and functional restoration of modified proximal tubules was not complete. We conclude that changed proximal tubules may induce progression of interstitial fibrosis causing renal failure. NX animals and more pronounced NX-UN animals showed dramatic changes in renal function. We observed increased levels of proteinuria, blood pressure and decreased creatinine clearance. Progressive glomerular reorganization includes loss of filtration gaps and enhanced thickness of glomerular basement membranes (GBM) with increased immunoreactivity for collagen IV. Cells in vicinity of Bowman's capsule contained high amounts of immunoreactive α-smooth muscle actin. The NX-UN group showed more dramatic changes in ultrastructure of proximal tubules including apoptosis. Enhanced expression and secretion of extracellular matrix proteins (ECM e.g. collagens I, III, fibronectin) indicate progressive epithelial-mesenchymal transition (EMT) leading to permanent impairment of renal function.
β-Carbolines (BCs) belong to the heterogenous family of carbolines, which have been found exogenously, that is, in various fruits, meats, tobacco smoke, alcohol and coffee, but also endogenously, that is, blood, brain and CSF. These exogenous and endogenous BCs and some of their metabolites can exert neurotoxic effects, however, an unexpected stimulatory effect of 9-methyl-β-carboline (9-me-BC) on dopaminergic neurons in primary mesencephalic cultures was recently discovered. The aim of the present study was to extend our knowledge on the stimulatory effects of 9-me-BC and to test the hypothesis that 9-me-BC may act as a cognitive enhancer. We found that 10 days (but not 5 days) of pharmacological treatment with 9-me-BC (i) improves spatial learning in the radial maze, (ii) elevates dopamine levels in the hippocampal formation, and (iii) results after 10 days of treatment in elongated, more complex dendritic trees and higher spine numbers on granule neurons in the dentate gyrus of 9-me-BC-treated rats. Our results demonstrate that beyond its neuroprotective/neurorestorative and anti-inflammatory effects, 9-me-BC acts as a cognitive enhancer in a hippocampus-dependent task, and that the behavioral effects may be associated with a stimulatory impact on hippocampal dopamine levels and dendritic and synaptic proliferation.
The influence of age on (1) cognition and (2) scopolamine (CAS 51-34-3) induced memory impairment in female rats was measured in the radial maze paradigm (RAM).(1) First training trials were done with 3 and 12 months old rats. Rats were trained to find all eight food baits in the RAM without errors and within 1 min. Both 3- and 12-month old rats need about 15 trials for the first-time learning of the RAM task. After intervals of 3 and 6 months, respectively, initially young rats were re-trained with an age of 6 and 12 months. Surprisingly, re-trained rats successfully completed the maze runs already after one re-training trial. Thus the phenomenon of preserved spatial memory was approved for female rats.(2) Memory impairment by scopolamine in the RAM was tested for the first time in rats with an age of 3 months. After a control run, the rats received an i.p. injection of either scopolamine hydrochloride (0.05 mg/100 g b. wt.) or saline vehicle. The effect of scopolamine on working memory was measured 20 min after administration. Training procedure and scopolamine administration were repeated at an age of 6, 12, 18, and 24 months in the same manner. The cognition impairment after scopolamine (number of errors: control: <1; scopolamine: 5-6) remains constant between 3 and 24 months of age. The only significant difference was the increase in run time in rats older than 18 months caused by degenerative changes developing with age.It can be concluded that the drug effect on cognition and working memory can be measured in young and old-aged female rats with the same results.
Two tacrine-ferulic acid hybrids (1 A, 1 B) and three beta-carboline derivatives (BCs; 2A, 2B, 2C) were tested in vivo on 3-month-old female rats as multi-potent anti-Alzheimer drug candidates. In vitro, the two tacrine-ferulic acid hybrids show higher acetylcholinesterase (AChE) inhibitory activity and comparable butyrylcholinesterase (BChE) inhibitory activity compared to tacrine (CAS 1684-40-8). However, in vivo both substances have no beneficial effect on scopolamine (CAS 51-34-3) induced cognition impairment. On the contrary, 1B even worsen the scopolamine induced cognition impairment. The beta-carboline derivatives 2A, 2B, and 2 C, the inhibitory potency of which at AChE reaching tacrine activity does not antagonize scopolamine induced impairment of cognition in rats measured in radial maze paradigm. Compounds 2A and 1B might act as positive allosteric modulators of scopolamine action at the muscarinic acetylcholine receptors. On the basis of these results it can be concluded that both ferulic acid- (CAS 537-98-4) and BC-derivatives are not qualified as cognition improving drugs and further studies in this field should be focussed on other pharmaceutical leads to find effective anti-Alzheimer drugs.
Tacrine (CAS 321-64-2) is a reversible acetylcholine esterase inhibitor that, despite exerting beneficial effects on Alzheimer's disease (AD), displays marked hepatotoxicity. Searching for safer drugs and taking into account the multi-pathogenesis of AD, two tacrine-NO donor hybrid molecules (FL16, FL38) as well as a tacrine-ferulic acid hybrid (FL67) were synthesized. NO donors coupled to the tacrine moiety may exert an additional beneficial effect on AD via an increased blood supply to the brain and by reducing inflammation. Ferulic acid is an antioxidant.To investigate the hepatotoxicity and effects on the cytochrome P450 (CYP) system of the liver, female rats were treated with the highest tolerated dose of tacrine or equimolar doses of the novel compounds 24 or 36 h, respectively, before sacrifice.Tacrine caused pericentral necrosis and fatty degeneration of the hepatocytes, loss of liver glycogen and (indicating oxidative stress) induction of heme oxygenase (HO)-1. No histopathological changes were observed with the hybrids, but a glycogen deficit and an elevation of HO-1 was noticed after FL38 or FL67 treatment. Both tacrine and the hybrids, but mainly FL38 and FL67, caused an induction of CYP1A1, 2B1 and 3A2 expression. CYP activity was noticeably increased after treatment with FL38 and FL67 only.Thus, since it displays much less hepatotoxicity and interaction potential at the CYP system than tacrine and the other hybrids, FL16 is a good candidate for further investigations.
A set of amide- and amine-linked hybrid molecules comprising moieties of the orthosteric M(1) muscarinic receptor agonist xanomeline and the cholinesterase inhibitor and allosteric receptor modulator tacrine were prepared with varying spacer length of 10-17 atoms. The hybrids inhibited acetylcholinesterase with similar or higher potency compared to tacrine. M(1) receptor binding affinity was similar or higher relative to xanomeline and far higher relative to tacrine. Affinities hardly changed when the receptors' orthosteric site was occupied by an inverse agonist ligand. When occupied by the orthosteric activator acetylcholine, affinity for the hybrids declined to unmeasureably low levels. Hybrids did not activate M(1) receptors. In vivo studies assaying cognition impairment in rats induced by scopolamine revealed pronounced enhancement of scopolamine action. Taken together, instead of dualsteric (simultaneous allosteric/orthosteric) binding, the hybrids seem to prefer purely allosteric binding at the inactive M(1) receptor.
In search of safer anti-Alzheimer drugs, 14 NO-donor-tacrine hybrids (1- 14) were synthesized and evaluated for their ability to inhibit cholinesterases and for vasorelaxation effects. Compounds 1- 13 showed good cholinesterases inhibitory activities in vitro, while 14, particularly, was highly selective, preferring butyrylcholinesterase rather than acetylcholinesterase. Four selected compounds (1, 9, 11, and 14) moderately relaxed the porcine pulmonary arteries in organ bath. In the hepatotoxicity study, significant hepatotoxicity was caused by tacrine but not by 9.
Six new tri- and tetracyclic nitrogen bridgehead compounds known to be moderate to potent inhibitors of acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) in vitro were tested in vivo as experimental therapeutics for treatment of Alzheimer's disease. Cognitive impairment in rats was reversibly induced by scopolamine (CAS 51-34-3). The effect of the new substances was evaluated in an eight-arm radial maze and run times (1), errors (2), correct choices (3), correct choices per second (4), speed (5), and running distance (6) were recorded. For optimisation of data analysis a new strategy was used: A score was created on the basis of the 6 parameters described with score 1 for controls and score 4 for scopolamine rats. Scores above 4 indicate an impairment of cognition function compared to scopolamine. After equimolar dosage compared to the reference drug rivastigmine (CAS 123441-03-2), two of the new substances slightly improved cognition in rats, but only to a significantly lower degree compared to the irreversible inhibitor rivastigmine. Surprisingly, the other four compounds did not improve or even worsened the scopolamine effect on working memory.
A series of tacrine-NO donor hybrid compounds are synthesized and evaluated for cholinesterase inhibitory activity, cognition improving activity, and hepatotoxicity. The pharmacological results indicate that hybrid compounds 1, 2, and 3a potently inhibit cholinesterase in vitro and significantly improve the scopolamine-induced cognition impairment, whereas an analogue (3h) of 2 without the NO donor moiety does not. Compared to tacrine, 1 and 2 show much less hepatotoxicity. Molecular modeling studies suggest that 2 may interact with the catalytic and the peripheral anionic site of acetylcholinesterase.
Tricyclic quinazolinimines as a novel class of potent inhibitors of cholinesterases in vitro are micro- and sub-micromolar inhibitors with activities at both acetyl- (AChE) and butyrylcholinesterase (BChE) or at BChE only. To further establish the antiamnesic properties of this class of compounds, an in vivo test system has been established. Cognitive impairment in rats was reversibly induced by scopolamine (0.05 mg/100 g body weight) and evaluated in an eight-arm radial maze. A representative quinazolinimine (MD212) showed attenuation of cognitive deficits at a low dosage (0.01 mg/100 g body weight), whereas at a high dosage (>0.1 mg/100 g body weight) the effect of scopolamine is markedly reinforced. As MD212 applied alone does not influence rat's cognition at all, the reinforcement of scopolamine effect has to be due to the amplification of scopolamine action possibly by (1) inhibition of scopolamine metabolism, (2) influence of scopolamine on MD212 metabolism or (3) allosteric modulation of mACh receptors. Receptor-binding studies proved hypothesis (3): MD212 stabilizes [3H]N-methylscopolamine binding to muscarinic receptors allosterically.
About 10% of children develop Fanconi syndrome (FS) a few months after ifosfamide (IFO) treatment. To establish an animal model, IFO was injected as 4 or 5 treatment courses (TCs, once daily for 3 consecutive days), to adult female rats (AF, 8 mg 100 g(-1) body wt, 4 TCs), to young female rats (YF, 8 mg 100 g(-1) body wt, 5 TCs) and to male rats (M, 6 mg 100 g(-1) body wt, 4 TCs). In the adult female rats, polyuria with electrolyte and albumin wasting occurred acutely, 2 days after the first treatment course. After the third treatment course, 30% of the rats died, but survivors showed a reduced excretion of electrolytes and glucose. The body weight increase was significantly diminished in adult female and male rats by about 25% or 70%, respectively. Up to 5 months after 5 TCs in young female rats, 15% of the animals died but the survivors did not show any sign of renal failure. In males, 28% of the rats died and in surviving animals the excretion of electrolytes, proteins and glucose as well as GFR were reduced 7 weeks after the last treatment course. There were no pathomorphological changes in kidney and liver. Determination of renal and hepatic cytochrome P450 activities indicated that results of adult female and male rats could be caused by starving, known as a common side effect of IFO, and not by its nephrotoxicity. Altogether, it was not possible to establish a model of a Fanconi syndrome persisting after cessation of IFO treatment in our rat strain, whereas acute, FS-like IFO effects on the kidney could be shown.
Sixun Peng (彭司勋)合作论文数中国药科大学新药物研究中心2