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B Aicher

Publications and source records attributed to B Aicher.

7 recordsLinked to original sources

The fixed combination of acetylsalicylic acid, paracetamol and caffeine is more effective than single substances and dual combination for the treatment of headache: a multicentre, randomized, double-blind, single-dose, placebo-controlled parallel group study.

We investigated efficacy, safety, and tolerability of two tablets of the fixed combination of 250 mg acetylsalicylic acid (ASA) + 200 mg paracetamol + 50 mg caffeine (Thomapyrin) in comparison with two tablets of 250 mg ASA + 200 mg paracetamol, two tablets of 500 mg ASA, two tablets of 500 mg paracetamol, two tablets of 50 mg caffeine, and placebo in patients who were used to treating their episodic tension-type headache or migraine attacks with non-prescription analgesics. For the primary endpoint "time to 50% pain relief" in the intention-to-treat dataset (n = 1743 patients), the fixed combination of ASA, paracetamol and caffeine was statistically significantly superior to the combination without caffeine (P = 0.0181), the mono-substances ASA (P = 0.0398), paracetamol (P = 0.0016), caffeine (P < 0.0001) and placebo (P < 0.0001). All active treatments except caffeine differed significantly (P < 0.0001) from placebo. The superior efficacy of the triple combination could also be shown for all secondary endpoints such as time until reduction of pain intensity to 10 mm, weighted sum of pain intensity difference (%SPIDweighted), extent of impairment of daily activities, global assessment of efficacy. All treatments were well tolerated. The incidence of adverse events observed was low.

Acetaminophen↗

The synthesis of Rantes, G-CSF, IL-4, IL-5, IL-6, IL-12 and IL-13 in human whole-blood cultures is modulated by an extract from Eleutherococcus senticosus L. roots.

An ethanol extract derived from the roots of Eleutherococcus senticosus was found to influence markedly the cytokine synthesis of activated whole blood cultures of ten healthy volunteers. Whereas the synthesis of Rantes was increased over a wide range of concentrations, the release of IL-4, IL-5 and IL-12 was significantly inhibited. An inhibition at higher concentrations, switching to a stimulation at lower doses of the extract was seen with G-CSF, IL-6 and IL-13. From these particular immuno-pharmacological effects of Eleutherococcus senticosus we suggest this herbal preparation possesses immuno-modulatory potency, rather than just being immuno-suppressive or -stimulating.

Adult↗

Effects of caffeine and paracetamol alone or in combination with acetylsalicylic acid on prostaglandin E(2) synthesis in rat microglial cells.

Paracetamol has mild analgesic and antipyretic properties and is, along with acetylsalicylic acid, one of the most popular "over the counter" analgesic agents. However, the mechanism underlying its clinical effects is unknown. Another drug whose mechanism of action is unknown is caffeine, which is often used in combination with other analgesics, augmenting their effect. We investigated the inhibitory effect of paracetamol and caffeine on lipopolysaccharide (LPS)-induced cyclooxygenase (COX)- and prostaglandin (PG)E(2)-synthesis in primary rat microglial cells and compared it with the effect of acetylsalicylic acid, salicylic acid, and dipyrone. Furthermore, combinations of these drugs were used to investigate a possible synergistic inhibitory effect on PGE(2)-synthesis. Both paracetamol (IC(50)=7.45 microM) and caffeine (IC(50)=42.5 microM) dose-dependently inhibited microglial PGE(2) synthesis. In combination with acetylsalicylic acid (IC(50)=3.12 microM), both substances augmented the inhibitory effect of acetylsalicylic acid on LPS-induced PGE(2)-synthesis. Whereas paracetamol inhibited only COX enzyme activity, caffeine also inhibited COX-2 protein synthesis. These results are compatible with the view that the clinical activity of paracetamol and caffeine is due to inhibition of COX. Furthermore, these results may help explain the clinical experience of an adjuvant analgesic effect of caffeine and paracetamol when combined with acetylsalicylic acid.

Acetaminophen↗

Cellular redistribution of protein tyrosine phosphatases LAR and PTPsigma by inducible proteolytic processing.

Most receptor-like protein tyrosine phosphatases (PTPases) display a high degree of homology with cell adhesion molecules in their extracellular domains. We studied the functional significance of processing for the receptor-like PTPases LAR and PTPsigma. PTPsigma biosynthesis and intracellular processing resembled that of the related PTPase LAR and was expressed on the cell surface as a two-subunit complex. Both LAR and PTPsigma underwent further proteolytical processing upon treatment of cells with either calcium ionophore A23187 or phorbol ester TPA. Induction of LAR processing by TPA in 293 cells did require overexpression of PKCalpha. Induced proteolysis resulted in shedding of the extracellular domains of both PTPases. This was in agreement with the identification of a specific PTPsigma cleavage site between amino acids Pro821 and Ile822. Confocal microscopy studies identified adherens junctions and desmosomes as the preferential subcellular localization for both PTPases matching that of plakoglobin. Consistent with this observation, we found direct association of plakoglobin and beta-catenin with the intracellular domain of LAR in vitro. Taken together, these data suggested an involvement of LAR and PTPsigma in the regulation of cell contacts in concert with cell adhesion molecules of the cadherin/catenin family. After processing and shedding of the extracellular domain, the catalytically active intracellular portions of both PTPases were internalized and redistributed away from the sites of cell-cell contact, suggesting a mechanism that regulates the activity and target specificity of these PTPases. Calcium withdrawal, which led to cell contact disruption, also resulted in internalization but was not associated with prior proteolytic cleavage and shedding of the extracellular domain. We conclude that the subcellular localization of LAR and PTPsigma is regulated by at least two independent mechanisms, one of which requires the presence of their extracellular domains and one of which involves the presence of intact cell-cell contacts.

Amino Acid Sequence↗

[Effectiveness of fixed analgesic combinations exemplified by thomapyrin].

Thomapyrin has been on the German market as analgesic for the past 50 years. It is the prescription-free preparation with the highest sales there. This is an occasion to survey current state of scientific knowledge concerning combination analgesics with acetyl salicylic acid, paracetamol and caffeine. For the assessment and registration of fixed preparations authorities of different European countries and also USA have defined special criteria. Analgesic preparations must agree with these defined criteria. The importance of these combination analgesics in pain therapy is described with the respect to the latest scientific results. Combination analgesics represent an important area of self-medication by the patient. The properties of the active substances alone and in combination are set forth, with respect to pharmacokinetics and efficacy. The experimental and especially clinical results clearly show a broader spectrum of action in consequence of the different modes of action of the individual active substances. Analgesic action is 1.4 fold higher owing to added caffeine. The fixed combination of active substances does not change the profile of side effects. The conclusion is that combination analgesics such as Thomapyrine show a positive benefit/risk ratio. Furthermore such combination analgesics are appropriate for self-medications and suited to combat pain of different kinds.

Acetaminophen↗

The effect of the base on the kinetics of action of the capsaicinoid nonivamide: evaluation with a hyperemic test.

Because of their selective receptor-mediated action on cutaneous nociceptive C-fibers, the interest in capsaicinoids as topical analgetic drugs has been constantly growing over the past years. Knowledge of the pharmacokinetics seems particularly important for potential future clinical applications. Therefore, the aim of the present study was to investigate the influence of the type of preparation on the time course of action of the capsaicinoid nonivamide monitored by the axon-reflex-induced hyperemic action and area of erythema. Sixteen healthy subjects were included in the study. The hyperemic responses after application of nonivamide in an oil-in-water (O/W) emulsion and in a water-free ointment were assessed both by laser Doppler perfusion imaging and planimetry after 0, 15, 30, 45, 60, 120 and 240 min. They were compared with the reaction after application of the nicotinic ester nicoboxil and a combination of nonivamide and nicoboxil in the same preparations. Applied as a water-free ointment, nonivamide showed a slow onset of hyperemic action, reaching its maximum 45 min after application. When applied as an O/W emulsion, however, the increase in effect was high, reaching its maximum already after 30 min. Application of the nicoboxil preparations revealed a clearly lesser influence of the base regarding the onset of maximum effect. The combination of both substances showed an additive effect for both bases, and a maximum effect was found already after 15 min with both the water-free ointment and the O/W emulsion base. In conclusion, the results of the present study show that there appears to be a strong influence of the vehicle on the kinetics of action of capsaicinoids, and that the hyperemic test used in this paper is very useful for the quantitative determination of the pharmacokinetic properties of capsaicinoids. Moreover, the C-fiber-stimulating effect of capsaicinoids can, at least in part, be enhanced by combination with a nicotinic ester, even though these substances have no direct effect on the C-fibers.

Adolescent↗