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M Sosnowski

Publications and source records attributed to M Sosnowski.

At least 37 records · Page 2Linked to original sources

Pain management: physiopathology, future research and endpoints.

In this article, first, the different stages of acquisition and processing of nociceptive information from peripheral receptor to brain are reviewed and the plastic changes that accompany tissue injury are underlined. For instance, the subclassification of peripheral receptors in nociceptors and non-nociceptors (e.g., mechanoreceptors, thermoreceptors) must be understood in the light of peripheral sensitization. This phenomenon is the probable explanation for primary hyperalgesia, the decrease in pain threshold at the site of injury. The observation that substance P enhances N-methyl-D-aspartate (NMDA)-elicited responses suggests that these two receptors may operate in concert to prolong and amplify the afferent input generated by peripheral tissue injury. Such afferent barrage induces a state of central sensitization. Second, the major problems in the management of cancer pain, i.e. the development of tolerance to opioids and opioid-insensitive pain, are discussed. The loss of drug effect observed after chronic exposure of the opioid receptor (tolerance) may be the consequence of the down-regulation or desensitization phenomenon (where the total number of receptors coupled to the second messenger is reduced). The agonist dose-response begins to shift to the right. The dramatic analgesic improvement obtained with subanaesthetic doses of ketamine, an NMDA receptor antagonist, in those of our cancer patients who have become resistant to morphine is intriguing. As shown for tolerance, insensitivity to opioids may represent a rightward shift in the opioid dose-response curve and the analgesic effect of ketamine the reversal of that shift.

Afferent Pathways↗

Gutron treatment of patients suffering from essential orthostatic hypotony. Part Two--Autonomic system investigation.

Neurovegative control of circulatory system in essential orthostatic hypotony (EOH) is not well recognized. Therefore, in group of 9 patients (pts) with EOH treated with midodrine (Gutron, Gu) 5 mg i.v. we performed a study of sympathovagal balance, based on heart rate variability (HRV) analysis. From computer-assisted tachograms we calculated standard deviation of 512 sinus cycles length (SD-SCL) and from power spectral analysis by fast Fourier transformation we derived: amplitudes of high frequency (HF, 0.15-0.35 Hz) and low frequency (LF, 0.05-0.15 Hz) spectra, percentage of power of HF and LF spectra and their ratio, named vegetative control coefficient (VCC, %LF:%HF). Results were compared to that received from control group (11 volunteers). We found that EOH-pts presented lower amplitude of HF, especially after Gu, a lack of increment of %LF irrespective to treatment and higher VCC, which normalized to control value after Gu. We stated that: 1) both branches of autonomic system are disturbed in EOH-patients; 2) Gutron shifts sympatho-vagal balance from initial resting sympathicotomy into parasympathetic predominance.

Adult↗

Gutron treatment of patients suffering from essential orthostatic hypotony. Part Three--Hemodynamic-autonomic interactions.

In this communication neurovegetative investigation of circulatory system in essential orthostatic hypotony (EOH) is continued. Our previous polycardiographic and heart rate variability (HRV) studies showed, that hemodynamic alterations in EOH are concerned with impairment of both branches of autonomic system. But hemodynamic-autonomic interactions in EOH are till now not well recognized. Therefore, in group of 9 patients (pts) with EOH we performed a study before and after midodrine (Gutron, Gu) 5 mg i.v. treatment. Sympathovagal balance, based on heart rate variability (HRV), was analysed in orthostatic trial. Hemodynamic parameters such as: heart rate (HR), systolic and diastolic blood pressure (RRs and RRd), as well as double product (DP) were measured in resting and after tilt. Simultaneously, on basis of computer-assisted tachograms standard deviation of 512 sinus cycles lengths (SD-SCL) was calculated and on basis of power spectral analysis by means of fast Fourier transform, the following variables: amplitudes (absolute powers) of high (aHF, 0.15-0.35 Hz) and low frequencies (aLF, 0.05-0.15 Hz) spectra, percentage powers of HF and LF spectra (%HF, %LF) and their ratio, named vegetative control coefficient (VCC, %LF:%HF). The results were compared to the control group (18 healthy volunteers). We found in EOH-pts significant correlation between aLF and resting HR, whereas after Gu this correlation disappeared and made the reaction of these pts similar to the control subjects, in which these correlations didn't appear. Resting RRs and RRd negatively correlated with aLF in controls, while in EOH-pts this relations were inverse i.e. positive.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

[Heart rhythm variation and electrophysiologic parameters of the sino-atrial node].

UNLABELLED: Sinoatrial node (SAN) function depends on its intrinsic properties and on regulatory influences of autonomic nervous system. Disturbances in these both factors are responsible for intrinsic and extrinsic SAN dysfunction (SAND), respectively. Heart rate variability (HRV) is a reliable noninvasive marker of cardiovascular autonomic control. We examined 120 patients (pts) with syncope, palpitations and/or bradycardia (< 40 bpm during daily activity). In these patients, after one-minute oesophageal-ECG recording for HRV assessment, rapid continuous and programmed premature transesophageal left atrial pacing (TAP) were performed. Regarding the results of TAP, pts were divided into two groups: group I included 57 subjects with negative TAP, and group II consisted of 63 pts with positive TAP (SAND). We analysed two HRV parameters: variation ratio (VR, %) and maximal difference of any two consecutive sinus cycle lengths (DSCL, ms). The following TAP variables were calculated: corrected sinus node recovery time (CSNRT), second pause time (SPT) and calculated sinoatrial conduction time after Strauss (SACT). RESULTS: Mean DSCL was significantly shorter in group I (106 +/- 96) than in gr. II (151 +/- 169) (p < 0.05). Similarly behaved VR values. In SAND-pts with abnormal CSNRT or SPT we observed significantly greater VR and DSCL. This correlation was not confirmed in respect to SACT. We corroborated the significant coincidence of high HRV (VR < 20.0 and DSCL > 100) with pathologic CSNRT or SPT, but not with SACT.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Two-stage surgical treatment for male transsexuals.

A plan for complex treatment of male-to-female transsexuals is presented. On the basis of our experience in the management of 15 patients, two-stage surgical treatment aiming at the change of external genitals, as well as the obtained cosmetic and functional results are described.

Genitalia, Male↗

The role of spinal and brainstem adenosine receptors in the modulation of the volume-evoked micturition reflex in the unanesthetized rat.

The pharmacology of the spinal, supraspinal and peripheral adenosine receptor subtypes (A1, A2) and their influence on the volume-evoked micturition reflex (VEMR) was studied in a chronic unanesthetised rat model by cystometrography after intrathecal (i.t.), intracerebroventricular (i.c.v.) and intravenous (i.v.) injection. Intrathecally administered A1 adenosine agonist: N6-(L-2-phenylisopropyl)adenosine (R-PIA) and A2 adenosine agonist: 5'-(N-ethylcarboxamido)adenosine (NECA) were equally active with 1.0 nmol reliably producing an increase in the volume necessary to induce the VEMR. At a higher dose (3 nmol), a long-lasting blockade of the VEMR was produced by both agonists. These effects were reversed following intraperitoneal injection of caffeine, an adenosine antagonist. This inhibition of the VEMR outlasted the spinal antinociceptive action which we have previously reported for these two agonists. Contrary to the spinal effect of these agonists, i.c.v. (0.3-3 nmol) and i.v. (100-1000 nmol) injections of R-PIA and NECA resulted in a significant decrease in the volume required to evoke the VEMR. We conclude that at the spinal level a xanthine-sensitive adenosine receptor(s) inhibits the VEMR. Based on several indirect lines of evidence, we speculate that these effects are not mediated by an action on primary afferent input or directly on preganglionic neurons, but on an excitatory interneuronal link.

Adenosine↗

Spinal administration of receptor-selective drugs as analgesics: new horizons.

The processing at the spinal cord levels of sensory information is subject to modulation by a number of local receptor systems, including opioids: alpha 2 adrenergic; and to a lesser extent serotonin, GABAB, neuropeptide Y, cholinergic, adenosine, and the NMDA-glutamate site. The functional utility of these multiple systems are only partially understood, but it appears that (a) they may act individually to alter different aspects of the nociceptive sensory message (b) they could be used synergistically to reduce the incidence of side effects by reducing the dose of agents required to yield analgesic effects, and (c) they may function variably in animals made tolerant to classes of receptor agonists.

Analgesia, Epidural↗

Differential cross-tolerance between intrathecal morphine and sufentanil in the rat.

By means of a subcutaneously implanted osmotic pump, groups of rats received a constant-rate (1 microliter/h), 7-day intrathecal infusion of saline or one of two mu opioid agonists: sufentanil (0.6 nmol/h) or morphine (20 nmol/h). These concentrations of morphine and sufentanil yielded a comparable near maximal hot-plate response latency on day 1 of the infusion. On day 7, the magnitude of tolerance was assessed in each group by establishing intrathecal dose-response curves and ED50 values for sufentanil and morphine given as a bolus injection. Each infused animal was used for a single bolus injection. In all cases, infusion with the opioid resulted in a rightward shift (increase in ED50) for both morphine and sufentanil as compared to saline-infused animals. The magnitude of the shift, however, was different for the two drugs. Thus in morphine-infused rats, the morphine ED50 increased as compared to saline-infused animals by a factor of 44, whereas the sufentanil ED50 shifted by a factor of 10. In sufentanil-infused animals, the respective shifts in the morphine and sufentanil ED50 values were increased by a factor of 9 and 3, respectively. Thus, a significantly greater shift as compared to saline-infused animals was observed in morphine-infused than in sufentanil-infused animals. Conversely, regardless of the opioid to which the animal was exposed, morphine-tested animals showed a greater rightward shift than did sufentanil-tested animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Analgesics, Opioid↗

[Bilateral testicular neoplasms].

Three cases of bilateral testicular neoplasms were found in 112 patients treated in the last 7 years. In two patients bilateral seminoma developed at various time periods. In one case seminoma coexisted with germinal carcinoma.

Adult↗

Role of spinal adenosine receptors in modulating the hyperesthesia produced by spinal glycine receptor antagonism.

The intrathecal administration of strychnine in rats yields a prominent touch-evoked allodynia. The effects of an intrathecally administered A1 adenosine agonist: N6-(L-2-phenylisopropyl)-adenosine (LPIA) or an A2 adenosine agonist: 5'-(N-ethyl carboxamido)-adenosine (NECA), on this touch-evoked hyperesthesia were examined. Over the range of 0.3-1.0 nmol these agents produced a dose-dependent inhibition of the strychnine-evoked hyperesthesia. This inhibition was reversed following intraperitoneal injection of caffeine, an adenosine receptor antagonist. No statistical differences between LPIA and NECA were recorded. The powerful effect of adenosine analogues on strychnine hyperesthesia occur at doses that have only a mild analgesic effect on the thermally evoked hot-plate response. This effect is in contrast to opioids, which have been reported to be only minimally effective against strychnine-evoked hyperesthesia. The characteristics of the strychnine hyperesthesia appear to mimic the clinical phenomenon observed in patients suffering from sensory dysesthesia following nerve injury and suggest a possible role for the adenosine receptor in certain pain states.

Animals↗

Assessment of the role of A1/A2 adenosine receptors mediating the purine antinociception, motor and autonomic function in the rat spinal cord.

The effects on nociception, motor and autonomic function produced by the intrathecal administration of three adenosine analogs: N6-(L-2-phenylisopropyl)-adenosine, N6-cyclohexyladenosine and 5'-(N-ethylcarboxamido)-adenosine were examined in rats. Over the range of 0.3 to 1.0 nmol these agents produced a dose-dependent antinociception in the hot plate and tail-flick tests. In addition, 5'-(N-ethylcarboxamido)-adenosine and N6-(L-2-phenylisopropyl)-adenosine both suppressed the chemically evoked writhing response as well as the touch-evoked hyperesthesia normally observed in rats receiving low doses of intrathecal strychnine. These adenosine analogs examined at doses higher than 1.5 nmol produced a dose-dependent motor impairment as measured behaviorally and by electromyography, and an increase in the volume distention required to evoke micturition. Statistically significant effects on heart rate or blood pressure were not observed at any of the doses tested. The effects of the adenosine analogs on nociceptive and motor endpoints were partially antagonized by pretreatment with intrathecal caffeine (2 mumol). These results suggest a probable association of spinal adenosine receptors with a number of spinal sensory and motor systems other than those involved with nociceptive processing.

Adenosine↗