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Biophysical aspects of P-glycoprotein-mediated multidrug resistance.

In the 45 years since Burchenal's observation of chemotherapeutic drug resistance in tumor cells, many investigators have studied the molecular basis of tumor drug resistance and the phenomenon of tumor multidrug resistance (tumor MDR). Examples of MDR in microorganisms have also become topics of intensive study (e.g., Plasmodium falciparum MDR and various types of bacterial MDR) and these emerging fields have, in some cases, borrowed language, techniques, and theories from the tumor MDR field. Serendipitously, the cloning of MDR genes overexpressed in MDR tumor cells has led to elucidation of a large family of membrane proteins [the ATP-binding cassette (ABC) proteins], an important subset of which confer drug resistance in many different cells and microorganisms. In trying to decipher how ABC proteins confer various forms of drug resistance, studies on the structure and function of both murine and human MDR1 protein (also called P-glycoprotein or P-gp) have often led the way. Although various theories of P-gp function have become popular, there is still no precise molecular-level description for how P-gp overexpression lowers intracellular accumulation of chemotherapeutic drugs. In recent years, controversy has developed over whether the protein protects cells by translocating drugs directly (as some type of drug pump) or indirectly (through modulating biophysical parameters of the cell). In this ongoing debate over P-gp function, detailed consideration of biophysical issues is critical but has often been neglected in considering cell biological and pharmacological issues. In particular, P-gp overexpression also changes plasma membrane electrical potential (delta psi zero) and intracellular pH (pHi), and these changes will greatly affect the cellular flux of a large number of compounds to which P-gp overexpression confers resistance. In this chapter, we highlight these biophysical issues and describe how delta psi zero and pHi may in fact be responsible for many MDR-related phenomena that have often been hypothesized to be due to direct drug translocation (e.g., drug pumping) by P-gp.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Biophysics of the green fluorescent protein.

It is almost certainly a truism that interpretation of the fluorescence of a protein matrix-embedded chromophore in terms of the physicochemical character of its environment requires that the tertiary structure of the protein be known to high resolution. This reality derives from the complexity of the photophysics of most fluorescent molecules, complexity that reveals the imperfections of available theory. The accuracy of these dicta is highlighted by the biophysical properties of the green fluorescent protein now being so elegantly elucidated from the application of X-ray crystallography, ultrafast optical spectroscopy, and site-specific mutagenesis. Despite the mass of recent data, however, the physicochemical basis of the green fluorescence cannot be regarded as having been fully defined, nor has the role of protein folding in chromophore formation been solved. In addition, GFP consistently yields surprises typified by the recent experiments of Vanden Bout et al. (1997) on the fluorescence of single molecules mutant (T203F and T2034) GFPs, which showed unique reversible photobleaching and were whimsically termed "blinking molecules" by Moerner (1977). Given the apparent malleability of the GFP sequence and the sensitivity of the chromophore's photophysics to a broad spectrum of physicochemical factors, it is inevitable that additional useful and intriguing biophysical properties will emerge from the study of other mutants. Although on the surface it may seem mundane, determination of the amino acid sequence and tertiary structures of the GFPs from other coelenterates is quite likely to provide very useful insights into the biophysical bases of both protein folding and the green fluorescence per se. Finally, a broader set of spectroscopic techniques need to be applied to the study of GFPs, and future fluorescence examination should include measurements of transient absorption and fluorescence emission anisotropy decays.

Animals↗

Biophysical testing in premature rupture of the membranes.

The management of pregnancies complicated by premature rupture of the membranes (PROM) should include some type of surveillance for the development of infectious complications. This is a necessity because neonatal sepsis is not heralded by maternal chorioamnionitis in the majority of cases. Fetal biophysical assessment holds promise as a method to assess fetal well-being and predict the development of infectious complications. The frequent use of fetal biophysical profiles in patients with PROM helps to distinguish healthy fetuses from those infected or at high risk of infection. This distinction enables the physician to intervene appropriately and in a timely manner. The recognition of the healthy fetus allows for safe prolongation of pregnancy. This article reviews the published experience using antepartum fetal biophysical monitoring in patients with PROM.

Amnion↗

Cord blood gases and abnormal fetal biophysical assessment in preterm premature rupture of the membranes.

The relationship between cord blood gases and infection outcome was determined in 53 consecutive patients with preterm premature rupture of the membranes who were delivered because of abnormal fetal biophysical assessment. Measures of infection outcome included the presence of clinical amnionitis, possible neonatal sepsis, and neonatal sepsis. Fetal acidosis at birth, as defined by cord arterial pH less than 7.20, was found in six fetuses; five of these developed neonatal sepsis and the other was born to a mother who had intrapartum clinical amnionitis. The mean cord blood pH (artery and vein) of fetuses with neonatal sepsis was significantly less than in fetuses with possible neonatal sepsis or no sepsis; however, two thirds (10 of 15) of the neonates with sepsis had normal acid-base status at birth. These data suggest that the fetal biophysical assessment becomes abnormal before the development of fetal acidosis. The possible mechanisms by which fetal infection diminishes fetal biophysical activities prior to the development of acidosis are discussed.

Bicarbonates↗

The fetal biophysical profile in pregnancies with grade III placentas.

The components of the fetal biophysical profile of pregnancies with grade III placentas and good outcome were retrospectively analyzed and compared to the fetal biophysical components of pregnancies with grade 0 to II placentas. The results of the present study suggest that the dynamic components of the fetal biophysical profile (nonstress test, fetal breathing movements, fetal movements, fetal tone) are not altered in the presence of a grade III placenta and good pregnancy outcome; however, a greater incidence of reduced amniotic fluid volume was found in the presence of grade III placenta. The clinical significance of grade III placenta is discussed.

Amniotic Fluid↗

A prospective evaluation of the value of intrapartum biophysical and Doppler parameters in identifying the potentially compromised fetus.

This study was designed to evaluate the use of the biophysical profile and umbilical arterial Doppler in early labour in identifying the potentially compromised fetus. Two hundred and forty-two women attending the labour suite in early labour were studied. One hundred and fifty-one were in spontaneous labour and the remaining 91 had labour induced. All women had intrapartum biophysical profile assessment and umbilical arterial Doppler performed. Umbilical arterial Doppler and fetal movements were variously identified as being independently and significantly associated with adverse perinatal outcomes. Positive predictive values for adverse outcomes were however poor. Umbilical arterial Doppler used individually or in combination with clinical risk, gave no advantage over the use of clinically assigned risk alone in identifying fetuses at risk of subsequent adverse outcome. The assignment of clinical risk on admission in labour remains the most predictive 'test' for identifying the fetus at risk of subsequent adverse outcome. The routine addition of intrapartum biophysical parameters and umbilical arterial Doppler as methods of assessment is not justified.

Journal Article↗

Correlation of testicular sperm extraction with morphological, biophysical and endocrine profiles in men with azoospermia due to primary gonadal failure.

To identify the predictive factors for testicular sperm extraction (TESE) and to understand the pathology associated with TESE, we carried out a prospective study in 40 consecutive men with azoospermia due to primary gonadal failure. The main outcome measure was the retrieval of at least one testicular spermatozoon. Endocrine and biophysical profiles, testicular histology, Johnsen score and testicular spermatids were used as predictors of sperm extraction. Spermatogenesis was quantified with the Johnsen score. A variable pattern of spermatogenesis was common, being present in 20 (50%) patients. Visualisation of testicular spermatids on testicular histology showed a strong association with TESE (P < 0.0001). Statistically significant differences were detected in plasma follicle stimulating hormone (FSH) and testicular volume between patients who had hypospermatogenesis and Sertoli cell-only or maturation arrest. There were no significant differences in Johnsen score, biophysical and endocrine profiles between the groups with successful and failed TESE. However, a statistically significant trend occurred with changes in histological pattern [chi2 for trend, P = 0.001; Pearson's coefficient (r) = 0.6], Johnsen score (P = 0.022; r = 0.5), testicular volume (P = 0.01; r = 0.5) and plasma FSH concentrations (P = 0.044; r = 0.4), albeit to a limited degree. Difference in the interpretation of histological patterns with different assessors was observed. The type of occupation or risk factors for azoospermia showed no association with testicular pathology or TESE. Variable histological patterns in different tubules in the same individual may explain the poor correlation of TESE with endocrine and biophysical profiles, Johnsen score and histological pattern. Differences in the amount of tissue used for TESE and histopathology, and misinterpretation of testicular histology rather than failure to quantify spermatogenesis may explain the poor correlation between histological patterns and TESE. Testicular spermatids predicted TESE. However, considerable overlap in values means that no single variable can provide a perfect discrimination between the groups with successful and failed TESE.

Adult↗

Fetal biophysical profile in twin gestations.

The fetal biophysical profile (nonstress test, fetal breathing movements, fetal movements, fetal tone, amniotic fluid volume, placental grading) was assessed in 49 consecutive referred high-risk patients with twin gestations. The relationship between the last fetal biophysical profile score before delivery was compared with the pregnancy outcome--as reflected by the presence of fetal distress and perinatal death. These data suggest that the fetal biophysical profile is a useful tool for observing fetal status in patients with twin gestations, and could be reliably used as a means of follow-up of nonreactive nonstress testing in these patients.

Amniotic Fluid↗

The importance of the behavioural state in biophysical assessment of the term human fetus.

We have examined how the different behavioural states exhibited by 78 healthy fetuses at term influence the result of the non-stress test (NST) and biophysical profile score (BPS). In association with state 1F the average recording time to obtain a satisfactory NST and BPS was 27.0 and 26.3 min respectively, and 52.6% and 44.0% respectively failed to achieve a 'normal' result. In contrast, satisfactory results were always obtained in the two active states (2F and 4F), and the average time was 3-5 min. Mature fetuses spend on average one third of the time in state 1F, and knowledge of its characteristics is therefore important, for the interpretation of biophysical tests. Our results suggest that continuation of biophysical recording for at least 40 min is necessary before an unreactive NST or low BPS should be regarded as suspicious. We suggest that interpretation of the NST and BPS should be made in the light of knowledge of normal patterns of behavioural development rather than using an arbitrarily defined scoring system.

Amniotic Fluid↗

Prediction of morbidity in small and normally grown fetuses by fetal heart rate variability, biophysical profile score and umbilical artery Doppler studies.

OBJECTIVE: To assess the ability of noninvasive tests of fetal wellbeing to predict hypoxic morbidity independent of fetal size. DESIGN: A prospectively planned, longitudinal, observational study. SETTING: Fetal Surveillance Unit, King's College Hospital, London. SUBJECTS: One hundred and ninety-one pregnant women with singleton pregnancies who were delivered after 32 weeks' gestation who were seen in the Fetal Surveillance Unit within seven days of delivery. INTERVENTIONS: Fetal surveillance by fetal abdominal circumference, heart rate variability (mean range), biophysical profile score and umbilical artery pulsatility index measurements. MAIN OUTCOME MEASURES: Birthweight was classified as > or < or = 2.5th centile (AGA or SGA) for gestational age and sex. Morbidity was defined as at least one of the following at birth: delivery by emergency caesarean section for fetal distress, umbilical venous blood pH less than 7.15, 5 min Apgar score less than 7 or admission to the Special Care Baby Unit (SCBU). RESULTS: Fetal abdominal circumference was the best indicator of which fetuses (n = 30) would be SGA. Fourteen of the 30 (47%) SGA fetuses had morbidity at birth and abnormal umbilical Doppler studies significantly predicted this (chi 2 = 2.93, P = 0.003). By contrast, fetal heart rate variability and the biophysical profile score did not. Twenty-seven of the 161 (17%) AGA fetuses had morbidity at birth, but this was not significantly predicted by heart rate variability, biophysical profile score or umbilical Doppler studies. CONCLUSIONS: None of the antenatal testing techniques studied predicted morbidity in normally grown fetuses but Doppler studies indicated whether a small fetus was 'sick small' or 'normal small'.

Blood Flow Velocity↗

Effect of hormonal replacement therapy on skin biophysical properties of menopausal women.

BACKGROUND/PURPOSE: Hormonal replacement therapy (HRT) has been shown in the past to influence well being as well as several somatic features in menopausal women. The aim of this analysis was to study the effect of HRT on various biophysical properties of the skin of menopausal women. Two sub-samples were built to test the effect (1) of 'short-term' HRT in recently menopausal women (n=15), and (2) the effect of 'medium- and long-term' HRT in menopausal women (n=78). METHODS: The analysis was performed on data from a study of 106 menopausal Caucasian women with apparent healthy skin. Self-report data on the menopausal status, the duration of the menopause, whether or not HRT has been taken and the duration of the HRT were collected. A series of biophysical measurements on the cheek, the forehead and the inner forearm were performed under controlled environmental conditions. Twenty women were menopausal for less than 5 years (eight with HRT for at least 1 year and seven who had never taken HRT) and 86 women for at least 5 years (35 with HRT for at least 5 years and 43 who had never taken HRT). Analyses of covariance with adjustment for age were performed. RESULTS: With regard to skin colour, the measurements in women treated for at least 1 year were significantly higher for red intensity (a*) and lower for brightness (L*) on the forearm as compared with the non-treated women. Furthermore, yellow intensity (b*) mean values were higher on the forehead and the forearm in women treated for at least 5 years compared with the non-treated women. Concerning sebum casual level, the mean values were significantly higher on the forehead and the cheek in women treated for at least 5 years. Regarding skin surface parameters reflecting hydration, the mean values for capacitance on the forehead and the cheek were significantly higher in women treated for at least 5 years. Finally, as regards with skin relief, parameters mean values for amplitude and roughness on the forehead were significantly higher in women treated for at least 5 years. CONCLUSION: The skin colour parameters showed a higher red intensity value in menopausal women who had been treated for at least 1 year. In menopausal women who had been treated for at least 5 years, the biophysical measurements were significantly higher for the parameters reflecting hydration and sebum secretion, which generally decrease after the menopause. These features were associated with higher values for the yellow intensity parameter and the skin relief parameters on the forehead. Our results support the subjective impression and the clinical evaluation concerning the impact of HRT on the development and the evolution of some skin properties after menopause.

Aged↗

Hebbian synapses: biophysical mechanisms and algorithms.

We have examined the evolution of the concept of a Hebbian synaptic modification and have suggested a contemporary definition. The biophysical mechanism demonstrated in vitro to control the induction of one type of hippocampal LTP has been shown to satisfy our definition of a Hebbian synaptic modification. Whether this biophysical mechanism is involved in the organization of behavior in the manner that Hebb originally envisioned remains to be seen. We have also summarized several modification algorithms that have been explored in theoretical studies of learning in adaptive networks. These algorithms also satisfied our definition of a Hebbian modification, but their relationships to known neurobiology require further exploration. By reviewing the biophysical mechanisms and formal algorithms together, we have exposed obvious similarities and differences. Such comparisons may help bridge the gap between computational theory and knowledge of the neurobiology of use-dependent synaptic change. Current models of LTP reveal that the activity-modification relationships are extremely sensitive to the biophysical/molecular details. The activity-modification relationships obviously can have a major influence on adaptive neurodynamics at the network level. As more accurate representations of the biological complexity and diversity are introduced into adaptive network simulations, we expect to gain new insights into the classes of computation that particular networks are capable of performing.

Algorithms↗

Biophysical properties of the normal-sized aorta in patients with Marfan syndrome: evaluation with MR flow mapping.

PURPOSE: To investigate the feasibility of magnetic resonance (MR) flow mapping in the assessment of aortic biophysical properties in patients with Marfan syndrome and to detect differences in biophysical properties in the normal-sized aorta distal to the aortic root between these patients and matched control subjects. MATERIALS AND METHODS: Seventy-eight patients with Marfan syndrome with aortic root dilatation and 23 matched control subjects underwent MR flow mapping in four locations in the normal-sized aorta (1, ascending aorta; 2, thoracic descending aorta; 3, descending aorta at the level of the diaphragm; and 4, abdominal descending aorta). Distensibility at each location and flow wave velocity between locations were calculated. RESULTS: Compared with the control subjects, patients with Marfan syndrome had decreased aortic distensibility at three of the four locations (levels 1, 2, and 4; P <.05) and increased flow wave velocity between all locations (P <.05) in the aorta. In patients with Marfan syndrome, flow wave velocity was also significantly increased along the entire aortic tract beyond the aortic root (from level 1 to level 4). CONCLUSION: MR imaging reveals abnormal biophysical properties of the normal-sized aorta in patients with Marfan syndrome. Monitoring of these properties is relevant for evaluating disease progression and treatment options.

Adolescent↗

C2C12 cells: biophysical, biochemical, and immunocytochemical properties.

We examined the myofibril biochemical, structural, and biophysical properties of C2C12, a mouse skeletal muscle cell line (American Type Culture Collection), to assess whether force development and the sensitivity of the myofilaments to calcium could be measured in C2C12 myotubes and whether a cardiac contractile protein, troponin T, is expressed and incorporated into C2C12 myofibrils. When myoblasts fused and differentiated into myotubes, expression of myofilament proteins was initiated. Multiple cardiac and skeletal muscle troponin T isoforms were coexpressed. Cardiac troponin T expression increased and then decreased with time. Fluorescence immunocytochemistry demonstrated incorporation of cardiac troponin T isoforms into the myofibrils. At the time of the biophysical studies, mean myotube diameter was 12 microns (range 5-25 microns), and mean length was 290 microns (range 130-520 microns). The estimated maximum force developed by chemically skinned myotubes at 6-7 days poststarvation, 0.88 +/- 0.12 microN (mean +/- 95% confidence interval, n = 5), was significantly less (P < 0.05) than that at 10-13 days poststarvation, 1.12 +/- 0.12 microN (n = 7). The force-pCa relation yielded a Hill coefficient of 2.9 +/- 0.6 (n = 7) and half-maximal activation at pCa of 5.77 +/- 0.20. The demonstration that the biophysical properties of C2C12 cells can be measured and that cardiac and skeletal muscle troponin T isoforms are incorporated and colocalized into myofibrils suggest that these cells could be a useful model to assess the effects of exogenous native and mutated cardiac and skeletal contractile protein isoforms on myofilament function.

Actin Cytoskeleton↗

Clinical, genetic, and biophysical characterization of SCN5A mutations associated with atrioventricular conduction block.

BACKGROUND: Three distinct cardiac arrhythmia disorders, the long-QT syndrome, Brugada syndrome, and conduction system disease, have been associated with heterozygous mutations in the cardiac voltage-gated sodium channel alpha-subunit gene (SCN5A). We present clinical, genetic, and biophysical features of 2 new SCN5A mutations that result in atrioventricular (AV) conduction block. Methods and Results- SCN5A was used as a candidate gene in 2 children with AV block. Molecular genetic studies revealed G to A transition mutations that resulted in the substitution of serine for glycine (G298S) in the domain I S5-S6 loop and asparagine for aspartic acid (D1595N) within the S3 segment of domain IV. The functional consequences of G298S and D1595N were assessed by whole-cell patch clamp recording of recombinant mutant channels coexpressed with the beta1 subunit in a cultured cell line (tsA201). Both mutations impair fast inactivation but do not exhibit sustained non-inactivating currents. The mutations also reduce sodium current density and enhance slower inactivation components. Action potential simulations predict that this combination of biophysical abnormalities will significantly slow myocardial conduction velocity. CONCLUSIONS: A distinct pattern of biophysical abnormalities not previously observed for any other SCN5A mutant have been recognized in association with AV block. These data provide insight into the distinct clinical phenotypes resulting from mutation of a single ion channel.

Action Potentials↗

Current trends in the enhancement of biomaterial osteointegration: biophysical stimulation.

To enhance bone implant osteointegration, many strategies for improving biomaterial properties have been developed which include optimization of implant material, implant design, surface morphology and osteogenetic coatings. Other methods that have been attempted to enhance endogenous bone healing around biomaterials are different forms of biophysical stimulations such as pulsed electromagnetic fields (PEMFs) and low intensity pulsed ultrasounds (LIPUS), which were initially developed to accelerate fracture healing. To aid in the use of adjuvant biophysical therapies in the management of bone-implant osteointegration, the present authors reviewed experimental and clinical studies published in the literature over the last 20 years on the combined use of biomaterials and PEMFs or LIPUS, and summarized the methodology, and the possible mechanism of action and effectiveness of the different biophysical stimulations for the enhancement of bone healing processes around bone implanted biomaterials.

Animals↗

Bronchoscopic administration of bovine natural surfactant in ARDS and septic shock: impact on biophysical and biochemical surfactant properties.

The purpose of the present study was to investigate the impact of bronchoscopic surfactant administration, on the biochemical and biophysical surfactant properties, in patients with severe and early acute respiratory distress syndrome (ARDS) and septic shock. A total number of 27 ARDS patients received 300-500 mg x kg x body x weight(-1) of a natural bovine surfactant extract (Alveofact) via a flexible bronchoscope. Bronchoalveolar lavages were performed 3 h prior to, and 15-18 h and 72 h after surfactant administration. A comparison to healthy volunteers, undergoing an identical lavage procedure, was made (control, n=12). Severe biophysical and biochemical surfactant abnormalities were encountered throughout in the ARDS patients. These included a massive alveolar protein load, a reduced percentage of large surfactant aggregates (LA), a loss of palmitoylated phosphatidylcholine species and a significant reduction of surfactant apoprotein (SP)-A, SP-B and SP-C in the LA fraction. Both minimum (gammamin) and adsorption (gammaads) surface tension values (pulsating bubble surfactometer) were dramatically increased. Surfactant treatment resulted in a marked increase in the lavagable phospholipid (PL) pool, but predominance of the alveolar surfactant-inhibitory protein load was still encountered. Far-reaching or even complete normalization of the PL profile, the LA fraction and its SP-B and SP-C (but not SP-A) content as well as the fatty acid composition of the phosphatidylcholine class was noted. Surface tension lowering properties (gammamin and gammaads) significantly improved, but were still not fully normalized. Bronchoscopic administration of large quantities of natural bovine surfactant in severe acute respiratory distress syndrome causes far-reaching restoration of biochemical surfactant properties and significant improvement, however not full normalization, of biophysical surfactant function.

Adolescent↗

Apolipoprotein E: diversity of cellular origins, structural and biophysical properties, and effects in Alzheimer's disease.

Apolipoprotein E4 (apoE4) is a major risk factor for Alzheimer's disease (AD). Several hypotheses have been proposed to explain the association of the APOE epsilon4 allele with AD; however, the mechanisms underlying this association are largely unknown. Initially, apoE was thought to be synthesized primarily by astrocytes but not by neurons in the brain. However, subsequent studies have demonstrated that central nervous system neurons also express apoE under diverse physiological and pathological conditions. Detailed studies of the structure and biophysical properties of apoE isoforms have demonstrated unique properties distinguishing apoE4 from apoE3. Because the structural and biophysical properties of a protein determine how it functions under normal and abnormal conditions, apoE4, with its multiple cellular origins and multiple structural and biophysical properties, might contribute to the pathology of AD through several different mechanisms. Some of these mechanisms might be suitable targets for the development of new treatments for AD.

Alzheimer Disease↗