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Importance of the treatment package time in surgery and postoperative radiation therapy for squamous carcinoma of the head and neck.

BACKGROUND: To determine the effect of treatment time-related factors on outcome in patients treated with surgery and postoperative radiation therapy (RT) for locally advanced squamous cell carcinoma of head and neck (SCCHN) METHODS: A retrospective review was performed on 208 consecutive patients treated from 1992 to 1997 with surgery and postoperative RT (> or =55 Gy) for SCCHN. The treatment time factors considered were (1) interval from surgery to the start of RT; (2) RT duration; and (3) the total time from surgery to completion of RT (treatment package time). Treatment package time was dichotomized into short (< or =100 days) vs long (>100 days) categories. Other variables considered were clinical and pathologic staging, margin status, RT dose, and tumor site. Patients were also divided into intermediate- and high-risk groups on the basis of eligibility for RTOG 95-01. Univariate (logrank) and multivariate analyses were performed. RESULTS: Median follow-up for surviving patients was 24 months. Actuarial 2-year locoregional control (LRC) and survival rates were 82% and 71%, respectively. In univariate analysis, factors associated with higher locoregional failure were high-risk group (p =.011), margin status (p =.038), pathologic stage (p =.035), clinical N stage (p =.006), package time (p =.013), and RT treatment time (p =.03). Package time was also a significant predictor of survival in univariate analysis (p =.021). The other two individual time factors, tumor factors, and RT dose were not significant. Both risk status and treatment package time were significant factors in a multivariate model of LRC. CONCLUSIONS: A total treatment package time of <100 days is associated with improved tumor control and survival. Every effort should be made to keep the time from surgery to the completion of postoperative RT to <100 days.

Adult↗

The effect of oxygen concentration on the teratogenicity of salicylate, niridazole, cyclophosphamide, and phosphoramide mustard in rat embryos in vitro.

Comparisons were made of rat embryos cultured at 5% or 20% oxygen in the presence of salicylate (SAL), cyclophosphamide (CP), niridazole (NDZ), or phosphoramide mustard (PM). Multiple regression analyses were used to compare the effects of drug concentration, oxygen concentration, and the product of drug times oxygen concentration on malformation incidence, viability, and protein content of embryos cultured for 24 hours. Drug concentration significantly affected malformation incidence or severity and protein content (P less than 0.001) for the four drugs tested. Oxygen concentration significantly affected protein content for the four compounds (P less than 0.001) but affected malformation incidence only with NDZ. Furthermore, the interaction of oxygen concentration and drug concentration significantly affected the malformation incidence in the presence of NDZ (P less than 0.001), and protein content (P less than 0.001) and viability (P less than 0.001) in the presence of CP. The pattern of significant effects of the independent variables (drug concentration, oxygen concentration, and drug times oxygen concentration) is consistent with the hypotheses of oxygen-dependent metabolism (or lack of metabolism) of the drugs in question. NDZ, which is thought to be converted to reactive intermediates by an oxygen-inhibited nitroreductase, was more toxic at reduced oxygen tension. CP, which is activated by an oxygen-dependent P-450 system, was more toxic with increased oxygen tension. Significant effects of the independent variables on embryos exposed to SAL or PM were consistent with the effects on control embryos, notably, increased protein content with increased oxygen.

Abnormalities, Drug-Induced↗

Na-Li countertransport kinetics in the relatives of hypertensive patients with abnormal Na-Li countertransport activity.

Familial factors are believed to be important in determining the high sodium-lithium countertransport activity (defined as >0.40 mmol Li/(h x l cell) at external sodium concentration of 140 mmol/L (Nae 140)) which is observed in a proportion of patients with essential hypertension. However, environmental factors such as pregnancy and dyslipidemia also affect activity. High sodium-lithium countertransport activity (Nae 140) in essential hypertension is mainly due to a low Michaelis constant (Km) and is associated with a high Vmax/Km ratio. In contrast, dyslipidemias affect Vmax. This study aimed to determine if there was evidence that Km and Vmax/Km ratios are influenced by familial factors. Sodium-lithium countertransport kinetics were measured in the 47 first degree relatives of 12 hypertensive probands with abnormal sodium-lithium countertransport kinetics and 35 normotensive control subjects. Sodium-lithium countertransport was measured as Na-stimulated Li efflux from lithium loaded erythrocytes. The relatives had significantly reduced Km and increased Vmax/Km compared to normal subjects. Eleven relatives had high sodium-lithium countertransport activity (Nae 140), associated with low Km and high Vmax/Km. The 14 relatives that were hypertensive had abnormalities of sodium-lithium countertransport kinetics. The results of this study suggest that familial factors are important in determining the Km and Vmax/Km of sodium-lithium countertransport activity. Studies aimed at determining the inheritance of sodium-lithium countertransport and its use as an intermediate phenotype of essential hypertension must measure its kinetic determinants to reduce the risk of confounding effects from other variables.

Adult↗

Time-dependent effects of intrahippocampal grafts in rats with fimbria-fornix lesions.

Based on three experiments, this study examined whether behavioral and histological effects of fetal septal or hippocampal grafts placed in the denervated hippocampus depend on the duration of post-grafting delays. Each experiment included four groups of rats: sham-operated rats (Sham), rats with aspirative lesions of the fimbria-fornix (Fifo) and rats given both Fifo lesions and intrahippocampal fetal suspension grafts of either septal (Fifo.ST) or hippocampal (Fifo.HT) origin. All rats were tested (i) for home cage activity, (ii) for activity and reactivity in an open field and (iii) for learning ability in a 8-arm radial maze. Except for home cage activity which was also monitored preoperatively, behavioral tests were conducted between 1-2 months postgrafting in Experiment 1 (EXP1), 5-6 months post-grafting in Experiment 2 (EXP2) and 10-11 months post-grafting in Experiment 3 (EXP3). Each test period lasted 3 weeks. Histological controls consisted of acetylcholinesterase (AChE) and cresyl violet staining. Graft size was estimated by computerized image analysis. Normal rats performed well in each experiment. In all experiments, rats with fimbria-fornix lesions showed increased activity in both their familiar (home cage) and unfamiliar (open field) environments, and their performances in the radial maze task were impaired. In no experiment did grafts, whether hippocampal or septal, affect "noncognitive" behavioral variables. However, maze performance was improved by hippocampal grafts in EXP1 (short delay) and by septal grafts in EXP2 (intermediate delay). No graft-induced effect was found in EXP3 (long delay). Concerning AChE-positivity in the dorsal hippocampus, fimbria-fornix lesions reduced staining densities by at least 60%. Both types of grafts were undiscernably AChE-positive, but only septal grafts provided the denervated hippocampus with a significant AChE-positive fiber ingrowth. Differences among groups in density of hippocampal AChE staining were comparable in all three experiments and no correlation between hippocampal AChE-positivity and maze performance was found. Our results suggest that graft-induced recovery from behavioral effects of fimbria-fornix lesions may depend on both the type of tissue implanted (hippocampal vs septal) and the post-grafting delay (1-2, 5-6 and 10-11 months). The recovery observed at a short post-grafting delay with hippocampal grafts and at a longer post-grafting delay with septal grafts was not persistent and concerned only cognitive function as assessed by radial maze performance.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Complexity and contradiction in clinical trial research.

Randomized clinical trials have become the accepted scientific standard for evaluating therapeutic efficacy. Contradictory results from multiple randomized clinical trials on the same topic have been attributed either to methodologic deficiencies in the design of one of the trials or to small sample sizes that did not provide assurance that a meaningful therapeutic difference would be detected. When 36 topics with conflicting results that included over 200 randomized clinical trials in cardiology and gastroenterology were reviewed, it was discovered that results of randomized clinical trials often disagree because the complexity of the randomized clinical trial design and the clinical setting creates inconsistencies and variation in the therapeutic evaluation. Nine methodologic sources of this variation were identified, including six items concerned with the design of the trials, and three items concerned with interpretation. The design issues include eligibility criteria and the selection of study groups, baseline differences in the available population, variability in indications for the principal and concomitant therapies, protocol requirements of the randomized clinical trial, and management of intermediate outcomes. The issues in interpreting the trials include the regulatory effects of treatments, the frailty of double-blinding, and the occurrence of unexpected trial outcomes. The results of this review suggest that pooled analyses of conflicting results of randomized clinical trials (meta-analyses) may be misleading by obscuring important distinctions among trials, and that enhanced flexibility in strategies for data analysis will be needed to ensure the clinical applicability of randomized clinical trial results.

Clinical Trials as Topic↗

Distribution of somatostatin-14 and somatostatin-28 gastrointestinal-pancreatic cells of rats and humans.

Somatostatin-14 and somatostatin-28 are biologically active peptides derived from the posttranslational cleavage of prosomatostatin. Because both peptides are found in variable concentrations in the gastrointestinal (GI) tract and pancreas, it has been contended that somatostatin-28 is either an intermediate in the processing to somatostatin-14 or a terminal product derived from prosomatostatin. To address this question, two antisera were used to recognize epitopes in two regions of somatostatin-14; one with high specificity for somatostatin-14 and the other interacting with prosomatostatin, somatostatin-28, and somatostatin-14. Distribution of these peptides was measured in extracts of pancreas and mucosa and submucosa/muscularis from the rat and human GI mucosal biopsies; the antisera were used to immunostain cells in these tissues. Extracts of human and rat intestinal mucosa contained both somatostatin-28 and somatostatin-14. By immunocytochemistry, D cells in stomach and pancreas and neural processes in the intestine, extending into the mucosal villi adjacent to endocrine cells, stained with both antisera indicating the presence of somatostatin-14, prosomatostatin, and possibly somatostatin-28. In contrast, endocrine cells in the gut reacting with antisera against somatostatin-28 did not immunostain with somatostatin-14-specific antisera. Thus, these data suggest that somatostatin-28 is the terminal peptide processed from prosomatostatin in intestinal mucosal cells, whereas somatostatin-14 is the major final product in gastric and pancreatic D cells and neurons. The localization of somatostatin-28 and somatostatin-14 in different cells in the pancreas and GI tract implies that they serve different functions.

Animals↗

The aggregation characteristics of column-purified rabbit skeletal myosin in the presence and absence of C-protein at pH 7.0.

The aggregation properties of column-purified rabbit skeletal myosin at pH 7.0 were investigated as functions of ionic strength, protein concentration, and time. Filaments prepared by dialysis exhibited the same average length and population distribution at 0.10 and 0.15 M KCl at protein concentrations greater than 0.10 mg/ml; similar results were obtained at .0.20 M KCl, although average filament length was approximately 0.5 micrometer shorter. Once formed, these length distributions remained virtually unchanged over an 8-d period. At and below 0.10 mg/ml, average filament length decreased as a function of protein concentration; filaments prepared from an initial concentration of 0.02 mg/ml were half the length of those prepared at 0.2 mg/ml. Filaments prepared by dilution exhibited a sharp increase in average length as the time-course increased up to 40 s, then altered only slightly over a further period of 4 min. Addition of C-protein in a molar ratio of 1-3.3 myosin molecules affected most of these results. Average filament length was affected neither by ionic strength nor by initial protein concentration down to 0.04 mg/ml or over an 8-d period. Filaments formed by dilution in the presence of C-protein exhibited a constant average length and hypersharp length distribution over variable time courses up to 7 min. It is possible that C-protein acts to stabilize the antiparallel intermediate during filamentogenesis, and may also affect subunit addition to this nucleus.

Animals↗

Severe myoclonic epilepsy in infants--a review based on the Tokyo Women's Medical University series of 84 cases.

Severe myoclonic epilepsy in infants (SME) is one of the most malignant epileptic syndromes recognized in the latest classification of epileptic syndromes. The clinical details and electroencephalographic (EEG) characteristics have been elucidated by Dravet et al. The diagnosis of SME depends largely on the combination of clinical and EEG manifestations at different ages, of which the presence of myoclonic seizures appears to be the most important. However, because of the inclusion of different types of myoclonic attack and the lack of strict criteria for diagnosing SME, there has been some confusion as to whether patients without myoclonic seizures or myoclonus should be classified as SME, despite other identical clinical symptoms (SME borderlands (SMEB) group). Among the various clinical manifestations characterizing SME, special attention has been paid to seizures easily precipitated by fever and hot baths in Japan. We have demonstrated that the onset of myoclonic attack in these patients is very sensitive to the elevation of body temperature itself rather than its etiology. Using simultaneous EEG and rectal temperature monitoring during hot water immersion, we showed that epileptic discharges increased in frequency, and eventually developed into seizures at temperatures over 38 degrees C. We believe that the unique fever sensitivity observed in SME is similar to, but more intense than that of febrile convulsions. We have also identified a group of cases who have had innumerous myoclonic and atypical absence seizures daily which were sensitive to the constant bright light illumination. In these cases, spike discharges increased or decreased depending on the intensity of constant light illumination. Although these cases form the most resistant SME group, they lost the constant light sensitivity with increasing age, leaving only relatively common types of fever-sensitive grand mal seizures (FSGM) at the age of around 5 years. In the long run, only convulsive seizures continue, while myoclonic or absence seizures and photosensitivity disappear with advancing age, thus it is conceivable that SMEB constitutes a basic epileptic condition underlying SME. There is a clinical continuum that extends from the mildest end of SMEB to the severest end of SME with constant light sensitivity, with intermediates of frequent or infrequent myoclonic and absence seizures in-between. This spectrum concept appropriately explains the clinical variabilities between SME and SMEB during early childhood.

Electroencephalography↗

Use of binding energy in catalysis: optimization of rate in a multistep reaction.

The role of binding energy in optimizing the overall rate of catalysis by the tyrosyl-tRNA synthetase from Bacillus stearothermophilus has been investigated by measuring the rate constants for transfer of tyrosine from engineered mutants to tRNA. The residues chosen for mutation are those that were previously identified as binding tyrosyl adenylate and contributing to the rate constant for its formation. It was previously found that tighter binding of the tyrosyl adenylate was accompanied by an increase in the rate constant for its formation. A new linear free energy relationship is presented that links the two. We now find that the rate constant for transfer of Tyr from Tyr-AMP to tRNA decreases with increasing stability of the E.Tyr-AMP complex on mutation of Thr-51. Position 51 is the one that is found to be the most variable of the binding-site residues among the enzymes from different species. The tightness of binding of the intermediate is thus a compromise, since stabilizing the intermediate speeds up the first step but slows down the second. The rate constants for activation and transfer by wild-type enzymes are very similar, which is optimal for the rate of the overall reaction. Those for the mutants diverge so that the rate of overall catalysis is lower.

Adenosine Monophosphate↗

Solvent-Dependent Lithium Bridging in Allenyl-Propargyllithium Reagents.

The solution structures of two allenyl-propargyllithium reagents (6-Li and 7-Li) which give (13)C NMR chemical shifts intermediate between those expected for the allenyl and propargyl isomers have been studied by the Saunders isotope perturbation technique. Variable equilibrium isotope shifts were detected, showing that these reagents adopt structures ranging from equilibrating localized allenyl- and propargyllithium reagents (1A right harpoon over left harpoon 1B) to equilibrating unsymmetrically bridged structures (11) and symmetrically bridged structures (2), depending mostly on the details of solvation.

Journal Article↗

Age-dependent intestinal absorption of valproic acid in the rat.

The absorption of valproic acid (VPA) across isolated perfused segments of jejunum, ileum and colon was examined in situ in 14-day- to 24-month-old Fischer-344 rats. Within each age group, the intrinsic absorptive clearance (Cla) of VPA at a perfusate concentration of 1 mg/ml was highest in the jejunum, lowest in the colon, and intermediate in the ileum. When intestinal Cla was normalized for the dry weight of the segment, within-group variability decreased. In all segments, VPA Cla normalized by dry weight decreased during development (< or = 20 to 90 days) and remained relatively constant during aging (90 days to 24 months). The mechanism of valproate absorption (active vs. passive) was examined across age in everted intestinal sacs prepared from each of the three segments. Data were consistent with active transport of VPA in the jejunum and ileum of rats of all ages, and in the colon of pre-weanling animals. Colonic absorption of VPA appeared to occur by passive diffusion in adult rats. In contrast, colonic absorption of d-glucose occurred, only by passive diffusion in all age groups. These data indicate that, during development, significant alterations in the rate of VPA absorption occur throughout the rat intestine. Furthermore, while active transport of VPA by the small intestine was present throughout the age range investigated, active transport by the colon became negligible by the time of weaning.

Aging↗

Structure of Tetrahymena GCN5 bound to coenzyme A and a histone H3 peptide.

Gene activation is a highly regulated process that requires the coordinated action of proteins to relieve chromatin repression and to promote transcriptional activation. Nuclear histone acetyltransferase (HAT) enzymes provide a mechanistic link between chromatin destabilization and gene activation by acetylating the epsilon-amino group of specific lysine residues within the aminoterminal tails of core histones to facilitate access to DNA by transcriptional activators. Here we report the high-resolution crystal structure of the HAT domain of Tetrahymena GCN5 (tGCN5) bound with both its physiologically relevant ligands, coenzyme A (CoA) and a histone H3 peptide, and the structures of nascent tGCN5 and a tGCN5/acetyl-CoA complex. Our structural data reveal histone-binding specificity for a random-coil structure containing a G-K-X-P recognition sequence, and show that CoA is essential for reorienting the enzyme for histone binding. Catalysis appears to involve water-mediated proton extraction from the substrate lysine by a glutamic acid general base and a backbone amide that stabilizes the transition-state reaction intermediate. Comparison with related N-acetyltransferases indicates a conserved structural framework for CoA binding and catalysis, and structural variability in regions associated with substrate-specific binding.

Acetyltransferases↗

Comparative studies between a new human rhabdomyosarcoma cell line, JR-1 and its tumour of origin.

A new human embryonal rhabdomyosarcoma cell line, designated JR-1, is described that closely resembles the tumour from which it was derived. Comparative studies, by light and electron microscopy reveal morphological features such as myofibre formation, that are concordant with embryonal rhabdomyosarcoma. Immunohistological investigations using a panel of monoclonal antibodies indicate that the cell surface antigen profile of the JR-1 cell line is similar to other embryonal rhabdomyosarcomas. In addition the cell line expresses the cytoplasmic intermediate filament protein desmin, only found in cells of rhabdoid origin. Karyotyping JR-1 shows the cells to contain variable numbers of chromosomes (range 44-100). DNA flow cytometry indicates that cells have an DNA content which is approximately twice normal. The JR-1 cell line has a doubling time of 29 h in culture and, in common with several other human cell lines, produces xenografts in nude mice within 6 weeks of inoculation. With detailed studies on the original tumour and the JR-1 cell line, the latter should prove an excellent model system for investigating the biology of rhabdomyosarcoma.

Animals↗

Poorly differentiated follicular thyroid carcinoma with rhabdoid phenotype: a clinicopathologic, immunohistochemical and electron microscopic study of two cases.

Poorly differentiated thyroid carcinomas with follicular cell phenotype are not well defined. Different diagnostic criteria have been employed for these tumors, including solid growth, nodular, trabecular, and insular patterns. Cytologic features, such as a predominance of tall and columnar cells, have been considered to be diagnostic of poorly differentiated carcinoma. However, there is no agreement among surgical pathologists regarding morphologic criteria for poorly differentiated thyroid carcinoma. We report two unique thyroid neoplasms that we interpreted as poorly differentiated follicular carcinomas. Nodular, trabecular, and sheetlike patterns predominated in both tumors. They were composed of cells that were focally immunoreactive for thyroglobulin and had large vesicular nuclei with prominent nucleoli. A variable number of cells showed rhabdoid phenotype. The rhabdoid inclusions did not stain for thyroglobulin but contained whorls of intermediate filaments that were vimentin positive. There were foci of necrosis and numerous mitotic figures. Both patients were adults and died with multiple pulmonary metastases. The presence of rhabdoid cells in poorly differentiated follicular carcinomas broadens the spectrum of tumors with rhabdoid phenotype. More cases are needed to determine whether the rhabdoid phenotype is a marker for poorly differentiated follicular carcinoma as well as an independent adverse prognostic factor.

Adenocarcinoma, Follicular↗

Downregulation of the potential suppressor gene IGFBP-rP1 in human breast cancer is associated with inactivation of the retinoblastoma protein, cyclin E overexpression and increased proliferation in estrogen receptor negative tumors.

The complex insulin-like growth factor network of ligands, receptors and binding proteins has been shown to be disturbed in breast cancer. In addition to defects in proteins controlling cell cycle checkpoints, this type of aberrations could affect tumor growth and survival thereby influencing both tumor aggressiveness and potential response to treatments. We have previously identified the T1A12/mac25 protein, which is identical to the IGFBP-rP1, as a differentially expressed gene product in breast cancer cells compared with normal cells. Here we compare the expression of IGFBP-rP1 in 106 tumor samples with known status of cell cycle aberrations and other clinicopathological data. This was done using a tumor tissue section array system that allows for simultaneous immunohistochemical staining of all samples in parallel. Cytoplasmic staining of variable intensity was observed in most tumors, 15% lacked IGFBP-rP1 staining completely, 20% had weak staining, 32% intermediate and 33% showed strong staining. Low IGFBP-rP1 was associated with high cyclin E protein content, retinoblastoma protein (pRb) inactivation, low bcl-2 protein, poorly differentiated tumors and higher stage. There was a significantly impaired prognosis for patients with low IGFBP-rP1 protein tumors. Interestingly, IGFBP-rP1 showed an inverse association with proliferation (Ki-67%) in estrogen receptor negative tumors as well as in cyclin E high tumors suggesting a separate cell cycle regulatory function for IGFBP-rP1 independent of interaction with the estrogen receptor or the pRb pathway.

Aneuploidy↗

Mapping distributions of chromosomal forms of Anopheles gambiae in West Africa using climate data.

The mosquito Anopheles gambiae Giles sensu stricto (Diptera: Culicidae), the principal vector of malaria in West Africa, comprises several chromosomal forms (e.g. Bissau, Forest, Mopti, Savanna) associated with climatic zones. Here we show how climate data can be used to map the geographical distribution of these chromosomal forms. The climate at 144 sites surveyed for mosquitoes in West Africa between 1971 and 92 was determined using computerized climate surfaces. Forest and Bissau forms occurred at relatively wet sites: median annual precipitation 1325 mm and 1438 mm, respectively, interquartile ranges (IQR) 1144-1858 mm and 1052-1825 mm), whilst the Mopti form was found at dry sites (annual 938 mm, IQR 713-1047 mm) and the Savanna form at sites intermediate between the wet and dry forms (annual 1067 mm, IQR 916-1279). Logistic regression analyses of the climate variables were carried out on a stratified random sample of half the sites. The resulting models correctly classified over 80% of the sites for presence or absence of each chromosomal form. When these models were tested against excluded sites they were also correct at over 80% of sites. The combined data produced models that were correct at over 86% of sites. Mean annual precipitation, evapotranspiration, minimum temperature and maximum temperature were the most important climate variables correlated with the distribution of these forms of An. gambiae. We used the logistic models to map the distribution of each chromosomal form within the reported range for An. gambiae s.s. in West Africa employing a geographical information system. Our maps indicate that each chromosomal form favours particular climate envelopes in well-defined ecoclimatic zones, although these forms are sympatric at the edges of their ranges. This study demonstrates that climate can be used to map the distribution of chromosomal forms of insects across large areas.

Africa, Western↗

Characterization of host responder types after a single Cooperia oncophora infection: kinetics of the systemic immune response.

After primary infection with 100,000 third stage larvae of the intestinal nematode Cooperia oncophora in 3-month-old calves, a high variability in egg output and worm counts is observed. Based on this variability, infected animals can be divided in different responder types. The three major phenotypes can be classified as high, intermediate and low responder animals. We investigated whether calves classified into different responder types show different immune responses during infection. Peripheral blood eosinophil counts and flow cytometric analysis of different lymphocyte subsets of the blood did not reveal major differences between infected and control animals, nor between responder types. However, the levels of Cooperia-specific immunoglobulin (Ig)G1 and IgA during primary infection were significantly higher in intermediate responders than in low responders. In the intermediate responders, isotype specific responses were negatively correlated with parasitological parameters expressing worm expulsion and influence on worm fecundity. Total serum IgE levels were elevated in most of the infected animals. A quantitative positive relationship between worm counts and total serum IgE levels was observed. Based on the observed correlations, we propose a role for the humoral response against the maintenance of the infection in the gut.

Animals↗

Hydrogen ion maintenance improves the chemotaxis of stored granulocytes.

Through technological advances in granulocyte collection, it has become possible to collect neutrophils (PMNs) routinely in high concentration (greater than 5 X 10(7) PMN/ml) for transfusion. Previous studies in this laboratory suggested that storage of neutrophils for transfusion at high PMN concentrations resulted in impaired adenosine triphosphate (ATP) and hydrogen ion maintenance. The studies we report here were designed to assess the effect of PMN storage at concentrations which are usual (2 X 10(7) PMN/ml), intermediate (5 X 10(7) PMN/ml), and high (8 X 10(7) PMN/ml) on chemotactic responses, and to identify variables which are easily measured and might predict the chemotactic function of stored PMNs. Granulocyte concentrates were stored in plastic bags at 2,5, and 8 X 10(7) PMN per ml, with or without 15 mM bicarbonate (HCO3). The random migration (RM) chemotaxis (CTX), ATP, and relative cell size (VOL) of the fresh and stored cells and the pH, glucose, and lactate concentrations in the supernatant medium were measured in the freshly prepared units after 24 and 48 hours storage at room temperature. We found that RM, CTX, ATP, glucose, and pH decreased significantly (p less than .02) following storage for 24 and 48 hours, particularly in units stored at the higher cell concentrations. Cell volume and lactate increased significantly with storage for 24 and 48 hours, and these values were also greater in units stored at the higher cell concentration (p less than .02).(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate↗