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Biomedical subjects

P G Schneider

Publications and source records attributed to P G Schneider.

At least 19 recordsLinked to original sources

Calcitonin modifies ligand binding to muscarinic receptor in CNS membranes.

Calcitonin (CT) is a peptide produced by the thyroid gland, whose best described role is to prevent bone reabsorption, though it also participates in other biological functions through both central and peripheral mechanisms. CT is able to inhibit brain Na(+), K(+)-ATPase activity (Rodríguez de Lores Arnaiz, López Ordieres, Peptides 1997;18:613-5) and a relationship between such enzyme activity and cholinergic function has been suggested. Accordingly, we tested CT effect on [(3)H]-quinuclidinyl benzilate ([(3)H]-QNB) binding to rat CNS membranes to determine whether the peptide is able to modify the cholinergic muscarinic receptor as well. It was found that 1x10(-7)-1x10(-5) M CT decreased 20-70% ligand binding to hippocampal, cerebellar, cortical and striatal membranes. Scatchard analysis of saturation curves showed that 5x10(-6) M CT significantly modified binding kinetic constants, thus it increased roughly 220% K(d) values and decreased 20-36% B(max) values in cerebral cortical and cerebellar membranes. Since the peptide decreases affinity ligand binding and reduces the number of binding sites, CT may well be acting as a cholinergic modulator through a decrease in muscarinic receptor functionality.

Animals↗

Ligand binding to CNS muscarinic receptor is transiently modified by convulsant 3-mercaptopropionic acid administration.

The administration of convulsant drugs has proven a powerful tool to study experimental epilepsy. We have already reported that the administration of convulsant 3-mercaptopropionic acid (mp) at 150 mg/kg enhances binding affinity of muscarinic antagonist [3H]quinuclidinyl benzilate ([3H]QNB) to certain rat CNS membranes during seizure and postseizure without affecting site number. Results obtained with a 100-mg/kg dose of mp have shown reversible increases in [3H]QNB binding to cerebellum and hippocampus, whereas a delayed response has been found in striatum. Neither a subconvulsant dose nor in vitro addition modifies binding. In order to evaluate preseizure, seizure as well as early (30 min) and late (24 h) postseizure stages, we employed a 50 mg/kg dose and tested [3H]QNB binding to CNS membranes. Changes in binding were as follows (in %): in cerebellum, +37, +86, and +40 at preseizure, seizure and early postseizure stages, respectively, but there was a decrease at late postseizure; in hippocampus, +27 at pre- and seizure stages, but a decrease at early and late postseizure. No changes were found in striatum or cerebral cortex membranes at any stage studied. Saturation curves analysed by Scatchard plots indicated that changes in [3H]QNB binding to cerebellar membranes are attributable to an increase in ligand affinity at seizure, followed by a decrease in binding site number at postseizure. A similar profile was observed for hippocampus except that the decrease in binding site number, though lower than at postseizure, was already evident at seizure stage. Results confirm a region-specific response to the convulsant and transient changes provide an example of neuronal plasticity.

3-Mercaptopropionic Acid↗

Endocrine management of breast cancer.

Hormonal therapy for breast cancer began more than a century ago with the observation that bilateral oophorectomy caused tumor regression in selected premenopausal patients. In the first half of this century, besides extending ablation of ovarian function to photon irradiation, surgical adrenalectomy and hyophysectomy were introduced, and hormonal additive therapy was established. Regression rates for advanced breast cancer with all types of endocrine therapy at this point did not exceed 35%. The demonstration that adjuvant systemic therapy can prolong the disease-free interval and improve overall survival has been a major advance in the management of breast cancer, the rationale was to control or eliminate micrometastases before tumor recurrence. The nonsteroidal antiestrogen tamoxifen was chosen for the majority of studies since the mid-1970s. Since the first report of successful treatment of metastatic breast cancer, the number of treated women worldwide has reached over 3,000,000. Objective response rate (CR+PR following UICC) in unselected patients is 34%. Tamoxifen has been used successfully to treat both pre- and postmenopausal women with all stages of the disease. In an overview analysis of 30,000 patients from 40 trials of adjuvant tamoxifen, a significant increase was found in both disease-free and overall survival. When patients were separated by nodal status, statistically significant increases were observed in disease-free and overall survival for both node-positive and node-negative patients. Women over 50 appear to benefit most from tamoxifen treatment experiencing highly significant increases in disease-free and overall survival regardless of nodal status. However, since tamoxifen primarily acts as a cytostatic and not cytotoxic agent, most patients ultimately experience disease recurrence or progression during or after therapy. Newer antiestrogens include trioxifene, toremifene, and droloxifene (3-OH-tamoxifen). Randomized, prospective studies are still under way to establish their clinical superiority (or lack of it). Progestins exert direct antiproliferative effects on human breast cancer cell lines. They may also exert direct antiestrogenic action by increasing the oxidative activity of 17 beta-hydroxy-steroid-dehydrogenase, thereby facilitating the conversion of estradiol to estrone. Progestins may exert additional antiestrogenic effects by suppressing estrogen receptor levels. As they also cause estrogen deprivation indirectly through suppression of pituitary ACTH secretion, resulting in reduced production of adrenal androgen precursors, both low- and high-dose regimens have been studied. Aromatase inhibition in premenopausal women interrupts estrogen biosynthesis; the reflex rise in FSH then stimulates production of new aromatase enzyme, and the LH increment results in enhanced ovarian steroidogenesis, counteracting the inhibitory action of aromatase-blocking drugs on the ovary.(ABSTRACT TRUNCATED AT 400 WORDS)

Antineoplastic Agents↗

Cloning, sequencing and expression of the Fab fragment of a monoclonal antibody to the herbicide atrazine.

The Fab region of an IgG2b antibody (AM7B2.1) reactive to the herbicide atrazine was cloned into a plasmid vector using the polymerase chain reaction and two sets of degenerate oligonucleotide primers designed to mimic the amino acid variation at the N-termini of kappa L-chains and gamma H-chains. These primers also provide a secretion signal fused precisely to the antibody gene sequence for secretion of the mature antibody. A further set of universal oligonucleotide primers was developed for the direct sequencing of the VH and CH1 regions of gamma H-chains and the VL and CL regions of kappa L-chains without subcloning and were used to determine the sequence of this antibody. The kappa L-chain was found to not possess a conserved Cys residue at position 23 and the implications of this observation are discussed. The cloned genes were expressed in Escherichia coli using a commercially available T7 RNA polymerase-based plasmid. The clones were also expressed in a T7 RNA polymerase-based system containing an attenuated version of the T7 RNA polymerase promoter, plus a lac promoter placed in an antisense orientation, to enhance plasmid stability. The expressed products were confirmed as atrazine reactive by binding to an atrazine derivative conjugated with alkaline phosphatase.

Amino Acid Sequence↗

3-mercaptopropionic acid administration increases the affinity of [3H]quinuclidinyl benzilate binding to membranes of the striatum and cerebellum.

It is known that quinuclidinyl benzilate (QNB) binds specifically and with high affinity to the cholinergic muscarinic receptor and that behaves as a potent antagonist of this receptor. We have analysed L-[3H]QNB binding to rat CNS membranes after the administration of the convulsant 3-mercaptopropionic acid (MP) (150 mg.kg-1, i.p.). The studies were done in rats killed at two stages: during and after seizures. No changes in [3H]QNB binding to hippocampus and cerebral cortex membranes were found. [3H]QNB binding increased about 40 and 80% in striatum and cerebellum membranes, respectively. The changes were observed both in seizure and postseizures states. The study was extended to the assay of [3H]QNB binding kinetic constants in the anatomical areas modified by the convulsant. The analysis of the saturation curves indicated an increase in the binding affinity but no change in the number of binding sites. Hill number values were near the unit suggesting a non-cooperative interaction between the ligand and the receptor, and the labelling of a homogeneous population of receptor sites. The results suggest the participation of some cholinergic pathways in the development and maintenance of MP-induced seizures.

3-Mercaptopropionic Acid↗

Muscle biopsy--still a matter of methodological considerations.

A method of open muscle biopsy is described which is not so invasive for the patient and not traumatic for the muscle tissue. The biopsy is performed with the patient under local cutaneous anesthesia. The sample can be obtained from a defined part of the muscle. It allows morphological-quantitative evaluation of a sufficient amount of fibers to arrive at reliable results. The advantages of the described method compared with other open and needle biopsy procedures, especially with regard to the method of anesthesia, are discussed.

Anesthesia, Local↗

Indication for surgical treatment of chronic soft tissue injuries.

Experience with surgical treatment of chronic soft tissue overuse syndrome in high-performance sportsmen shows full sporting performance can be restored in many cases. The risks of the various operation procedures are low, and their efficiency astonishingly reliable with correct establishment of indications. It therefore appears to be advisable to employ surgical therapy at an early stage in all cases with an unsatisfactory improvement after conservative treatment.

Athletic Injuries↗

[Xeroradiography and soft tissue traumatology (author's transl)].

A three-year experience concerning soft tissue pathology following orthopedic and sport lesions is presented. The possibilities of xeropneumoradiography in tendon lesions (Achilles, rectus, biceps, etc.), epicondylitis, muscular lesions, articular and meniscal lesions, are discussed. Many examples are presented which show the possibilities and the difficulties encountered in soft tissue pathology. The findings clearly show that the precise xeroradiographic images allow a diagnostic gain even when routinely used for orthopedics and traumatology.

Athletic Injuries↗

[Benefits and dangers of sport for the postural and locomotor apparatus (author's transl)].

The possible prophylactic, rehabilitative and the, today often unjustly exaggerated harmful effects of sport on the locomotor apparatus are reviewed. Damage and dangers can be avoided if attention is paid to measured amounts appropriate to age, improved individual style of the type of sport practised, and to the biomechanical susceptibility of certain sections of our postural and locomotor apparatus due to recent developmental history.

Adolescent↗

[Damage to the meniscus in professional footballers].

The nature of the injuries and disease in damage to the meniscus in professional footballers is reported. A typical pattern of movement specific to the sport, with possible pathomechanical effects is the constantly recurring hyperextension and torsion process which can set in motion meniscopathy as a kind of endogenous trauma. The torn meniscus which is overlooked or treated conservatively often leads to secondary sequelae such as chronic relapsing progressive synovitis and damage to the cartilage and to predominant degenerative changes. It is suggested that this type of injury should be regarded as an occupational disease.

Athletic Injuries↗