Lack of androgenicity of Siberian ginseng.
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Biomedical subjects
Publications and source records attributed to A M Martin.
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A number of eukaryotic DNA binding proteins have been isolated by screening phage expression libraries with DNA probes containing the binding site of the DNA-binding protein. This methodology was employed here to isolate clones of the factor that interacts with the W box element of the human major histocompatibility complex HLA-DQB gene. Surprisingly, several cDNA clones of YB-1, a cDNA clone that was previously isolated with a CCAAT element-containing sequence were found. Independently, the screening of phage expression libraries with depurinated DNA resulted in the isolation of YB-1 and dbpA, a previously isolated cDNA that has homology to YB-1. Additional characterization of YB-1 showed that it bound a wide variety of DNA sequences and suggested that the binding of this protein is promiscuous. Furthermore, we show that both YB-1 and dbpA bind to depurinated DNA better than undamaged DNA and that the extent of specificity of binding is influenced by Mg2+. Due to the lack of sequence specificity and high degree of binding to depurinated DNA, we suggest that these proteins might be involved in chromosome functions such as maintenance of chromatin structure or DNA repair that do not require sequence-specific binding.
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In the following studies, we investigated the effects of 24-h maternal deprivation on the infant's hypothalamic-pituitary-adrenal system. Experiment 1 examined the effect of deprivation on the infant's corticosterone (CORT) response to adrenocorticotropin hormone (ACTH) injection. At all ages studied, deprivation resulted in a potentiation of the response. At some ages, deprived nontreated pups had higher CORT levels than nondeprived pups. Experiment 2 examined the ontogeny of the deprivation-induced stress response, and the capacity of the mother to inhibit it. From 8 days of age onwards, deprived animals showed a CORT response to saline injection that was either absent or far smaller in nondeprived pups. Saline-induced CORT secretion was diminished, or prevented, by returning the infant to its dam. Maternal reunion had no effect on ACTH-induced CORT elevations. Finally, Experiment 3 investigated the effects of deprivation over a more extended period of time. In maternally deprived pups, ACTH-induced CORT elevations persisted for at least 2 h following reunion, but by 6 h had returned to baseline. These data suggest that maternal factors are involved in the regulation of the responsiveness of the pup's hypothalamic-pituitary-adrenal system.
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Physicians working in casualty and outpatient departments where adverse conditions prevail often prescribe antibiotic prophylaxis routinely at the time of suture repair of simple wounds. To evaluate this practice, we performed a randomized, controlled study of parenteral chemoprophylaxis of simple wounds undergoing suture repair. Uncomplicated wounds were randomized to either treatment with a combination of benzathine penicillin (2.4 million units) and procaine penicillin (2.0 million units) intramuscularly, or a control group. At the time of suture removal, seven days later, all wounds were reviewed for signs of infection. Of 320 patients enrolled in the study, 173 (54.1%) returned for review. Among treated wounds, 75 of 81 (92.6%) were healing, compared to 79 of 92 (85.9%) controls (p = 0.24). A significantly higher rate of healing was observed when wounds repaired nine or more hours after injury and involving the arms, legs, or trunk were treated (22 of 23, 95.7%) compared to those in whom prophylaxis was omitted (20 of 30, 66.7%) (p = 0.03). Wounds involving the head, and wounds repaired within nine hours after injury had a high rate of healing (greater than 90%), whether prophylaxed or not. Based on a 30% higher healing rate for the patients who benefited from treatment (arm, leg, trunk wounds repaired after nine or more hours), the drug cost of implementing prophylaxis for this group alone was more than five times that of an expectant, non-prophylactic strategy. These results serve to remind practitioners of the possibility that a clinically effective mode of therapy may not necessarily be cost-effective in the delivery of health care.
Transmission of intracranial pressure (ICP) to the perilymph of the cochlea may occur via the cochlear aqueduct and possibly other routes. Indirect measurement of perilymphatic pressure may be investigated by observing tympanic membrane (TM) displacement during stapedial reflex contraction. In a previous study we investigated the effects of changes in ICP on perilymphatic fluid pressure in three patients who underwent ventriculo/lumbar-peritoneal shunt operations. The TM displacement technique proved extremely sensitive and revealed marked changes in cochlear fluid pressure brought about by changes in ICP (Marchbanks et al., 1987). The study has been extended to 58 patients with hydrocephalus, intracranial tumours and other neurological conditions associated with abnormal ICP. Significant differences in the TM displacement were found between patients with raised and normal ICP. We have shown that changes in ICP can affect the hydrostatic pressure of the cochlea and influence the peripheral auditory system. The finding that ICP can be correlated with TM displacement strengthens the association between an abnormal TM displacement and abnormal cochlear hydrostatic status, irrespective of cochlear aqueduct patency. We suggest that the TM displacement technique provides a useful non-invasive method for the assessment of perilymphatic fluid pressure.
When paired for 15-min periods for 5-8 consecutive days, castrated, testosterone-treated hamsters consistently assumed the dominant status, based on a higher aggression index (18 +/- 3) and frequency of flank marking (15 +/- 3) as compared to their castrated, untreated subordinate partners (-1.3 +/- 1 and 2.4 +/- 1, respectively). In addition to these hamsters with established dominant/subordinate relationships, control hamsters with no social interactions were killed, and in all animals the vasopressin level in the anterior hypothalamus-medial preoptic area was assessed by counting vasopressin immunoreactive perikarya following immunocytochemistry, or by radioimmunoassay of vasopressin from tissue punches. In the socialized pairs the subordinate hamsters had a significantly (P less than 0.01) lower number of vasopressin staining perikarya in the anterior hypothalamus, specifically the area of the nucleus circularis, than their dominant partners (n = 6 pairs). There was also a significantly (P less than 0.001) lower level of vasopressin immunoreactivity in punches taken from the area of the nucleus circularis in subordinate hamsters as compared to their dominant partners (n = 14 pairs). However, there were no significant differences in the number of perikarya or the concentration of immunoreactive vasopressin between subordinate and dominant hamsters in the supraoptic nucleus, paraventricular nucleus, suprachiasmatic nucleus or bed nucleus of the stria terminalis. The number of perikarya (n = 5 pairs) and concentration of vasopressin (n = 8 pairs) for all vasopressin immunoreactive sites, including the nucleus circularis, were similar for testosterone-treated and untreated hamsters that remained isolated and not subjected to daily aggressive encounters.(ABSTRACT TRUNCATED AT 250 WORDS)
A comparison of mean intracranial pressure (ICP) between 36 spina bifida patients and 24 patients with clinically normal ICP was undertaken. A new non-invasive method of assessing ICP was used throughout this study. The technique relates tympanic membrane displacement to ICP and has been shown to be a reliable measure of mean ICP by comparison with direct measures via ventricular catheters and reservoirs, subdural catheters and lumbar punctures. Using this non-invasive method the results of this study indicated that the patients with spina bifida and without a ventricular shunt have a higher than average mean ICP. The results demonstrated a significant difference (99.9%) in the measures of ICP between the spina bifida and normal populations. A significant difference (99.9%) in the ICP was also found between patients with spina bifida and with and without ventricular shunts, and thus presumably those with and without diagnosed hydrocephalus. It is suggested that patients with spina bifida and without ventricular shunts probably have higher than average mean ICP when compared with the normal population.
Intracranial pressure is normally transmitted to the perilymph of the cochlea via the cochlear aqueduct. The relationship between perilymphatic pressure, indirectly measured by tympanic membrane displacement, and mean intracranial pressure defined either clinically or by direct measurement has been examined in 58 patients (aged 5-77 years), with hydrocephalus, benign intracranial hypertension, intracranial tumours, subarachnoid haemorrhage and head injuries. The most consistent results were obtained in young patients with hydrocephalus and benign intracranial hypertension. However, the technique was not suitable when the stapedial reflex was absent as a result of middle ear/brainstem dysfunction and did not reflect intracranial pressure when the cochlear aqueduct was not patent. This pilot study suggests that the tympanic membrane displacement technique may provide a useful non-invasive method for serial monitoring of intracranial pressure in young patients with hydrocephalus or benign intracranial hypertension.
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The CD4+ helper/inducer T cell population is comprised of functionally distinct subsets identifiable by the HB11 (anti-CD45R) mAb. We have previously shown that the cells that provide help for antibody production express the CD4+CD45R- phenotype. In contrast, CD4+ CD45R+ cells have minimal, if any, helper cell functions; rather, these cells function as inducers of Ts cell activity. The lineal relationship of these phenotypically and functionally distinct CD4+ subsets is unknown. In the present studies, we have examined the hypothesis that the CD4+ subpopulations identifiable with anti-CD45R antibodies represent "virgin" or "memory" T cells sequentially derived from a common differentiation pathway but differing in their relative maturation. When freshly purified cells were tested, CD4+ CD45R+ cells had no Th cell function. However, after in vitro activation with PHA and propagation in IL-2, CD4+CD45R+ cells acquired the ability to provide help for antibody production. Moreover, this functional acquisition by these cells was accompanied by their conversion to the CD4+CD45R- phenotype. Analyses of the activation, growth kinetics, and functional dose-response characteristics of CD4+CD45R+ and CD4+CD45R- cells demonstrated that our findings did not result from the selective growth of CD4+ CD45R- cells contaminating the CD4+CD45R+ preparations. Thus, these data demonstrate that the "helper" and "suppressor-inducer" subsets of CD4+ cells identified by anti-CD45R antibodies are not comprised of fully mature, phenotypically and functionally stable T cells. Rather, these CD4+ subsets appear to represent cells at different maturational stages of an activation-dependent, post-thymic differentiation pathway.
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We have analyzed the characteristics and cellular sources of the T cell-derived lymphokines that affect the proliferation and the oxidative metabolic capabilities of the U937 monocytic cell line. Although gamma-interferon (gIFN) and tumor necrosis factor-alpha (TNFa) can, in high doses, inhibit the proliferation of U937 cells, the predominant antiproliferative factor produced by activated CD4+ and CD8+ T cells has a MW = 45-55 Kd, is resistant to heat treatment, and is distinct and independent from gIFN, TNFa, and GM-CSF. The inhibitory effect of this lymphokine on U937 cell growth requires an 18-24-hr induction period; thereafter, this growth arrest persists for up to 5 d, even in the absence of the factor. The lymphokine responsible for inducing oxidative metabolic capabilities in U937 cells is also a non-gIFN, heat-resistant, 45-55-Kd factor secreted by CD4+ and CD8+ cells, and we postulate that this differentiation factor is identical to the factor responsible for inhibiting U937 growth. These data demonstrate the prominent role of T cell-derived factors distinct from gIFN, TNFa, or GM-CSF in regulating the growth and functional capabilities of monocyte-lineage cells. Furthermore, the data suggest it may be appropriate to distinguish monocyte activation, in which cells at a given maturational stage develop a heightened ability to perform a particular function, from changes in the functional repertoire of cells acquired as a consequence of lymphokine-induced differentiation.
The major histocompatibility complex (MHC) class II deficiency syndrome is a rare immunodeficiency disease associated with defective expression of class II MHC antigens. We have examined the consequences of this defect for the differentiation and functional capabilities of immunoregulatory T-cell subpopulations in an affected patient. Although the number of circulating T cells was normal, there was a striking reduction in the number of CD4+ T cells. Furthermore, purified CD4+ cells from the patient were unable to provide help for antibody secretion. This defect in helper function appeared to be due to the abnormal differentiation of the few CD4+ cells present, virtually all of which expressed the CD4+HB11+ phenotype characteristic of immature "virgin" T cells. Abnormal development of immunoregulatory CD8+ T cells was also observed. Although increased numbers of CD8+ T cells were present, virtually none had phenotypic properties of suppressor cells (i.e., CD3+/CD8+/9.3- granular lymphocytes that coexpress the Leu-15 or Leu-7 antigens), and purified CD8+ cells from the patient had no suppressor activity. Thus, the absence of class II MHC antigens profoundly disrupts the development of immunoregulatory T cells. We propose that these effects occur by the following mechanisms: (1) the absence of intrathymic class II antigens results in deficient production of CD4+ cells, (2) the CD4+ cells that do emerge from the thymus do not undergo postthymic maturation into CD4+HB11- cells with helper capabilities, and (3) the absence of CD4+HB11- effector cells results in abortive development of suppressor cells involved in feedback suppression.
The bare lymphocyte syndrome is a rare combined immunodeficiency disorder associated with the absence of class I and/or class II major histocompatibility (MHC) antigens. Although it has been inferred that the immune deficiency is a consequence of disordered MHC-restricted interactions among otherwise normal cells, the biological capabilities and differentiation of B lymphocytes deficient in class II MHC antigens have not been rigorously analyzed. We have examined the phenotypic and functional attributes of B cells with absent class II MHC antigens. Our data demonstrate that these B cells are intrinsically defective in their responses to membrane-mediated activation stimuli. In addition, virtually all the B cells had phenotypic evidence of arrested differentiation at an immature stage. Finally, these B cells also failed to express the C3d-EBV receptor normally present on all B lymphocytes. These data indicate that class II MHC molecules are vital participants in early events of the B cell activation cascade, and that other non-MHC membrane molecules may also be absent as a consequence of either arrested differentiation or as a result of the basic defect affecting the expression of MHC membrane antigens.