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Biomedical subjects

L X Xu

Publications and source records attributed to L X Xu.

At least 19 recordsLinked to original sources

Morphological study of endothelial cells during freezing.

Microvascular injury is recognized as a major tissue damage mechanism of ablative cryosurgery. Endothelial cells lining the vessel wall are thought to be the initial target of freezing. However, details of this injury mechanism are not yet completely understood. In this study, ECMatrix 625 was used to mimic the tumour environment and to allow the endothelial cells cultured in vitro to form the tube-like structure of the vasculature. The influence of water dehydration on the integrity of this structure was investigated. It was found that the initial cell shape change was mainly controlled by water dehydration, dependent on the cooling rate, resulting in the shrinkage of cells in the direction normal to the free surface. As the cooling was prolonged and temperature was lowered, further cell shape change could be induced by the chilling effects on intracellular proteins, and focal adhesions to the basement membrane. Quantitative analysis showed that the freezing induced dehydration greatly enhanced the cell surface stresses, especially in the axial direction. This could be one of the major causes of the final breaking of the cell junction and cell detachment.

Actins↗

Study of non-uniform nanoparticle liposome extravasation in tumour.

The effect of hyperthermia on the nanoparticle extravasation in different tumour regions was investigated in real time using confocal laser scanning microscopy. Murine mammary carcinoma 4T1 was implanted in the nude mice dorsal skin-fold window chamber. Tumour angiogenesis was observed through the window chamber on days 4, 7, 8 and 10 after the implantation. In 10 days, the tumour became 1-2 mm in diameter and 150 microm thick. Most vessels were found to be <15 microm in diameter. Histological examination showed that there were fewer vessels in a more ordered branching pattern inside the tumour than in the tumour periphery. After hyperthermia at 42 degrees C for 1 h, numerous erythrocytes were found in the peripheral region. Extravasation of rhodamine-labelled 100 nm nanoparticles in different tumour regions under both normal and hyperthermic conditions (34 and 42 degrees C) was quantified using confocal fluorescence microscopy. The relative fluorescence intensity hardly changed in tissue at 34 degrees C, but increased by the local hyperthermia at 42 degrees C. In particular, the relative intensity in the tumour periphery was more than 120 as compared to 40 in the tumour centre, after 1 h hyperthermia. Results showed that the thermally induced liposome nanoparticle extravasation was heterogeneous in tumour, owing to the non-uniform distribution of tumour vasculature. Further, the degree of vascular damage was found to be more severe in the tumour periphery, which is likely due to the high thermal sensitivity of newly formed tumour vessels in this region.

Animals↗

Study of SARS transmission via liquid droplets in air.

Microscale liquid droplets could act as the SARS carriers in air when released from an infected person through breathing, coughing, or sneezing. In this study, a dynamic model has been built to quantitatively investigate the effect of the relative humidity on the transport of liquid-droplets in air using coupled mass transfer and momentum equations. Under higher relative humidity, the exhaled liquid droplets evaporate slowly. Larger droplets fall faster, which could reduce the probability of the droplets inhalation. This may be one of the most important factors that influence the SARS transmission in air.

Aerosols↗

Neurotoxic effect of high dose of L-(+)-2-amino-3-phosphonopropionic acid in rats after intracaudatal injection.

AIM: To investigate neurotoxic effect of L-(+)-2-amino-3-phosphonopropionic acid (L-AP3), a partial agonist/antagonist of metabotropic glutamate receptors (mGluRs), and explore the underlying mechanisms. METHODS: Consciousness and behavior of rats were evaluated after injection of L-AP3, D-(+)-2-amino-3-phosphonopropionic acid (D-AP3, an isomer of L-AP3) or L-(+)-2-amino-4-phosphonobutyric acid (L-AP4, an agonist of mGluRs) into right caudatum. Brain water, Na+, K+, and Ca2+ contents as well as the permeability of blood brain barrier (BBB) were determined 6 h after treatment of these chemicals. Histological changes at the same time point were also observed. RESULTS: Rats treated with L-AP3 600 nmol but not 60 nmol became somnolentia. Inject ion of L-AP3 600 nmol induced a great increase of brain water, Na+, and Ca2+ contents, and a decrease of brain K+ content (P < 0.01). Meanwhile, the permeability of BBB was also increased (P < 0.01). Electron microscopic study revealed remarkable swelling of astrocytes and degenerative changes of neurons in chemical-treated caudatum. The neurotoxic effect of L-AP3 was not mimicked by D-AP3 or L-AP4 (P < 0.05). DL-2-Amino-5-phosphonovaleric acid, an antagonist of N-methyl-D-aspartate (NMDA) receptors, attenuated the changes induced by L-AP3 (P < 0.05), whereas (+/-)-alpha-methyl-(4-carboxyphenyl)glycine, a non-subtype specific antagonist of mGluRs, failed to block the effect of L-AP3. CONCLUSION: Intracaudatal injection of L-AP3 induced neurotoxic effect characterized by vasogenic brain edema, neuronal degeneration, and high brain Ca2+ content. Neurotoxic effect of L-AP3 was stereoselective and might be mediated by phospholipase C activation and partially involvement of NMDA receptors.

Alanine↗

[Isolation and elucidation of chemical constituents of Shandanshaoyao Decoction(I)].

OBJECTIVE: To study the chemical constituents of Shandanshaoyao Decoction. METHOD: The sample was prepared using boiling water, then precipitated by 75% ethanol. The ethanol soluble fraction was extracted by chloroform, ethyl acetate and n-butanol respectively. The extracts were isolated using silica gel and polyamide column chromatography, and the chemical constituents were identified by chemical and spectroscopic methods. RESULT: Six compounds were isolated from the chloroform and ethyl acetate extracts, and elucidated as tanshinone IIA, benzoic acid, ferulic acid, cryptotanshinone, beta-stitosterol and ursolic acid respectively. CONCLUSION: A preliminary study on the chemical constituents in traditional Chinese compound recipe Shandanshaoyao Decoction is reported.

Abietanes↗

[Isolation and elucidation of chemical constituents of shandanshaoyao decoction (II)].

OBJECTIVE: To study the chemical constituents of Shandanshaoyao Decoction. METHOD: The sample was prepared by boiling water, then precipitated by 75% of ethanol. The ethanol soluble fraction was extracted by chloroform, ethyl acetate and n-butanol, respectively. The extracts were isolated using macroreticular resin, silica gel and polyamide column chromatography, and then the chemical constituents were identified by chemical and spectroscopic methods. RESULT: Nine compounds were isolated from the n-butanol extract and water soluble fraction, and elucidated as vitexin, quercetin, hyperoside, rutin, paeoniflorin, protocatechaldehyde, (+)-catechin, danshensu and citric acid respectively. CONCLUSION: The chemical constituents of traditional Chinese medicinal preparations Shandanshaoyao Decoction were reported for the first time.

Apigenin↗

Studies on the three-dimensional temperature transients in the canine prostate during transurethral microwave thermal therapy.

Thermal therapy of benign prostatic hyperplasia requires accurate prediction of the temperature distribution induced by the heating within the prostatic tissue. In this study, the Pennes bioheat transfer equation was used to model the transient heat transfer inside the canine prostate during transurethral microwave thermal therapy. Incorporating the specific absorption rate of microwave energy in tissue, a closed-form analytical solution was obtained. Good agreement was found between the theoretical predictions and in-vivo experimental results. Effects of blood perfusion and the cooling at the urethral wall on the temperature rise were investigated within the prostate during heating. The peak intraprostatic temperatures attained by application of 5, 10, or 15 W microwave power were predicted to be 38 degrees C, 41 degrees C, and 44 degrees C. Results from this study will help optimize the thermal dose that can be applied to target tissue during the therapy.

Animals↗

New thermal wave aspects on burn evaluation of skin subjected to instantaneous heating.

Comparative studies on the well-known Pennes' equation and the newly developed thermal wave model of bioheat transfer (TWMBT) were performed to investigate the wave like behaviors of bioheat transfer occurred in thermal injury of biological bodies. The one-dimensional TWMBT in a finite medium was solved using separation of variables and the analytical solution showed distinctive wave behaviors of bioheat transfer in skin subjected to instantaneous heating. The finite difference method was used to simulate and study practical problems involved in burn injuries in which skin was stratified as three layers with various thermal physical properties. Deviations between the TWMBT and the traditional Pennes' equation imply that, for high flux heating with extremely short duration (i.e., flash fire), the TWMBT which accounts for finite thermal wave propagation may provide realistic predictions on burn evaluation. A general heat flux criterion has been established to determine when the thermal wave propagation dominates the principal heat transfer process and the TWMBT can be used for tissue temperature prediction and burn evaluation. A preliminary interpretation on the mechanisms of the wave like behaviors of heat transfer in living tissues was conducted. The application of thermal wave theory can also be possibly extended to other medical problems which involve instantaneous heating or cooling.

Body Temperature↗

Estimation of blood perfusion using phase shift in temperature response to sinusoidal heating at the skin surface.

A closed form analytical solution of the Pennes' bio-heat equation was obtained for temperature distributions in the skin tissue subject to the sinusoidal heat flux. Phase shifts in the surface temperature response were revealed to be related to local blood perfusion rate and heating frequency. The influence of the thermal contact resistance on the perfusion estimation was investigated. It has been proved that this influence is relatively small because of the phase shift based estimation and can be effectively eliminated by application of highly conductive grease. This analysis provides the theoretical foundation for a new noninvasive modality of blood perfusion estimation based on the surface temperature measurement which can have significant applications in future clinical practices.

Algorithms↗

Evaluation of the effectiveness of transurethral radio frequency hyperthermia in the canine prostate: temperature distribution analysis.

The heating pattern of a transurethral radio frequency (RF) applicator and its induced steady-state temperature field in the prostate during transurethral hyperthermia treatment were investigated in this study. The specific absorption rate (SAR) of the electromagnetic energy was first quantified in a tissue-equivalent gel phantom. It was used in conjunction with the Pennes bioheat transfer equation to model the steady-state temperature field in prostate during the treatment. Theoretical predictions were compared to in vivo temperature measurements in the canine prostate and good agreement was found to validate the model. The prostatic tissue temperature rise and its relation to the effect of blood perfusion were analyzed. Blood perfusion is found to be an important factor for removal of heat especially at the higher RF heating level. To achieve a temperature above 44 degrees C within 10 percent of the prostatic tissue volume, the minimum RF power required ranges from 5.5 W to 36.4 W depending on the local blood perfusion rate (omega = 0.2-1.5 ml/gm/min). The corresponding histological results from the treatment suggest that to obtain better treatment results, either higher RF power level or longer treatment time (> 180 minutes) is necessary. This is consistent with the predictions from the theoretical model developed in this study.

Animals↗

Blood perfusion measurements in the canine prostate during transurethral hyperthermia.

Using a thermal pulse decay technique, blood perfusion rates were measured within different regions in the canine prostate under normal and hyperthermic conditions induced either by the microwave or the radio frequency heating. Results indicate that, under the normal condition, the periurethral region is most highly perfused with an average rate of 0.60 +/- 0.25 ml/min/gm (n = 4) while the perfusion rate is 0.34 +/- 0.22 ml/min/gm (n = 10) in parenchyma. An approximately 3.5 fold increase in perfusion from the respective baselines was observed in both regions when the local tissue temperature was raised to 41.5 degrees C by the microwave heating. Another 0.5 fold increase was found in parenchyma after the tissue was further heated to 43.1 degrees C at which oscillatory behaviors in tissue temperature have been observed. To further study the cause of these oscillatory behaviors, the instantaneous blood perfusion response to changes in local tissue temperature was investigated using the radio frequency heating. It has been revealed that blood flow acts as a feedback of local tissue temperature in a closed control system. The thermally stimulated blood perfusion increase appeared to be a function of tissue temperature and its temporal gradient. Results from this study have shown experimental evidences of local thermoregulation in the prostate during hyperthermia.

Animals↗

Phosphorylation of the gamma subunit of the retinal photoreceptor cGMP phosphodiesterase by the cAMP-dependent protein kinase and its effect on the gamma subunit interaction with other proteins.

Cyclic GMP phosphodiesterase, a key enzyme in phototransduction, is composed of P alpha beta and two P gamma subunits. Interaction of P gamma with P alpha beta or with the alpha subunit (T alpha) of transducin is crucial for the regulation of cGMP phosphodiesterase in retinal photoreceptors. Here we have investigated phosphorylation of P gamma by cAMP-dependent protein kinase and its functional effect on the P gamma interaction with P alpha beta or T alpha in vitro. P gamma, but not P gamma complexed with T alpha (both GTP and GDP forms), is phosphorylated. Measurement of 32P radioactivity in phosphorylated P gamma, analysis of phosphorylated P gamma by laser mass spectrometry, identification of phosphoamino acid, and phosphorylation of mutant forms of P gamma indicate that only threonine 35 in P gamma is phosphorylated. Phosphorylation of P gamma mutants also reveals that the C and N terminals of P gamma which are required for the regulation of P alpha beta functions are not involved in the P gamma phosphorylation but that arginine 33, which is ADP-ribosylated by an endogenous ADP-ribosyltransferase, is required for the phosphorylation. Phosphorylated P gamma has a higher inhibitory activity for trypsin-activated cGMP phosphodiesterase than nonphosphorylated P gamma, indicating that the P gamma-P alpha beta interaction is affected by P gamma phosphorylation. Nonphosphorylated P gamma inhibits both the GTPase activity of T alpha and the binding of a hydrolysis-resistant GTP analogue to T alpha, while P gamma phosphorylation reduces these inhibitory activities. These observations suggest that a P gamma domain containing threonine 35 is involved in the P gamma-T alpha interaction, and P gamma phosphorylation regulates the P gamma-T alpha interaction. Our observation suggests that P gamma phosphorylation by cAMP-dependent protein kinase may function for the regulation of phototransduction in vertebrate rod photoreceptors.

3',5'-Cyclic-GMP Phosphodiesterases↗

T cell vaccination induces T cell receptor Vbeta-specific Qa-1-restricted regulatory CD8(+) T cells.

Vaccination of mice with activated autoantigen-reactive CD4(+) T cells (T cell vaccination, TCV) has been shown to induce protection from the subsequent induction of a variety of experimental autoimmune diseases, including experimental allergic encephalomyelitis (EAE). Although the mechanisms involved in TCV-mediated protection are not completely known, there is some evidence that TCV induces CD8(+) regulatory T cells that are specific for pathogenic CD4(+) T cells. Previously, we demonstrated that, after superantigen administration in vivo, CD8(+) T cells emerge that preferentially lyse and regulate activated autologous CD4(+) T cells in a T cell receptor (TCR) Vbeta-specific manner. This TCR Vbeta-specific regulation is not observed in beta2-microglobulin-deficient mice and is inhibited, in vitro, by antibody to Qa-1. We now show that similar Vbeta8-specific Qa-1-restricted CD8(+) T cells are also induced by TCV with activated CD4(+) Vbeta8(+) T cells. These CD8(+) T cells specifically lyse murine or human transfectants coexpressing Qa-1 and murine TCR Vbeta8. Further, CD8(+) T cell hybridoma clones generated from B10.PL mice vaccinated with a myelin basic protein-specific CD4(+)Vbeta8(+) T cell clone specifically recognize other CD4(+) T cells and T cell tumors that express Vbeta8 and the syngeneic Qa-1(a) but not the allogeneic Qa-1(b) molecule. Thus, Vbeta-specific Qa-1-restricted CD8(+) T cells are induced by activated CD4(+) T cells. We suggest that these CD8(+) T cells may function to specifically regulate activated CD4(+) T cells during immune responses.

Animals↗

Expression of the mRNA for types I and II interleukin-1 receptors in dental tissues of mice during tooth development.

Interleukin-1 (IL-1) can exert its pleiotropic effects on nearly every tissue by binding to its cognate receptor. Two types of IL-1 receptors have been identified. A large number of cell types have been shown to possess IL-1 receptors in vitro and in vivo, but few studies have addressed the question of expression in dental tissues in vivo. Using in situ hybridization in normal newborn, young and adult mice, we have examined the cellular distribution of both types of IL-1 receptors in dental tissues. In the ameloblast layer of incisors and molars, the mRNA for the type I IL-1 receptor (IL-1RI) and the type II IL-1 receptor (IL-1RII) was detected at the presecretory stage. The expression level markedly increased and remained during amelogenesis at the secretory stage. At the maturation stage, however, the transcripts for both IL-1RI and -II mRNA disappeared. Expression of IL-1RI and -II mRNA was also observed in odontoblasts after crown morphogenesis had been completed, and continued in these cells during dentinogenesis. No transcripts were detected in stratum intermedium cells and other cells in dental follicle, stellate reticulum, dental papilla, or pulp. Additionally, both types of IL-1R mRNA were also detected in osteoclasts on surfaces of alveolar bone. These results demonstrated for the first time that enamel-secreting ameloblasts and dentine-secreting odontoblasts express IL-1RI and -II mRNA, suggesting that IL-1 plays a regulatory role in the function of ameloblasts and odontoblasts during tooth development of mice.

Age Factors↗

Quantification of the 3-D electromagnetic power absorption rate in tissue during transurethral prostatic microwave thermotherapy using heat transfer model.

Experiments were performed in a tissue microwave-equivalent phantom gel to quantitatively examine the volumetric heating produced by a microwave antenna with a peripheral cooling system for the transurethral prostatic thermotherapy. Based on previous research, expression for the specific absorption rate (SAR) of microwave energy in the gel was extended to three dimensions, which includes its dependence on radial, angular, and axial direction. A theoretical heat transfer model was developed to study the temperature distribution in the gel by introducing this proposed SAR expression. The parameters in this expression and the convection coefficient due to the chilled water running around the antenna were determined using a least-square residual fit of the theoretical temperature predictions to the experimentally measured steady-state temperature field within the gel. The analytical expression of the three-dimensional SAR distribution obtained in this study will help provide a better understanding of the microwave heating pattern in the prostatic tissue and, thus, to aid in designing improved applicators. It can also be used in the future as an accurate input to heat transfer models which predict temperature distributions during the transurethral microwave thermotherapy.

Gels↗

A new fundamental bioheat equation for muscle tissue: Part I--Blood perfusion term.

A new model for muscle tissue heat transfer has been developed using Myrhage and Eriksson's [23] description of a muscle tissue cylinder surrounding secondary (s) vessels as the basic heat transfer unit. This model provides a rational theory for the venous return temperature for the perfusion source term in a modified Pennes bioheat equation, and greatly simplifies the anatomical description of the microvascular architecture required in the Weinbaum-Jiji bioheat equation. An easy-to-use closed-from analytic expression has been derived for the difference between the inlet artery and venous return temperatures using a model for the countercurrent heat exchange in the individual muscle tissue cylinders. The perfusion source term calculated from this model is found to be similar in form to the Pennes's source term except that there is a correction factor or efficiency coefficient multiplying the Pennes term, which rigorously accounts for the thermal equilibration of the returning vein. This coefficient is a function of the vascular cross-sectional geometry of the muscle tissue cylinder, but independent of the Peclet number in contrast to the recent results in Brinck and Werner [8]. The value of this coefficient varies between 0.6 and 0.7 for most muscle tissues. In part II of this study a theory will be presented for determining the local arterial supply temperature at the inlet to the muscle tissue cylinder.

Animals↗

Enhancement in the effective thermal conductivity in rat spinotrapezius due to vasoregulation.

This study was undertaken to gain a better understanding of the countercurrent heat exchange of thermally significant blood vessels in skeletal muscle by measuring the vascular structure and flow in an exteriorized rat spinotrapezius muscle and estimating the enhancement in the effective thermal conductivity of the muscle. Detailed anatomic measurements of the number density and length of countercurrent vessel pairs between 45 and 165 microns diameter were obtained. Moreover, diameter and blood flow in the 1A to 3A vessels were measured for muscles in which pharmacological vasoactive agents were introduced, allowing one to vary the local blood flow Peclet number from 1 to 18 in the major feeding arteries. These combined measurements have been used to estimate the range of possible enhancement in the effective thermal conductivity of the tissue. The newly derived conduction shape factor in Zhu et al. for countercurrent vessels in two-dimensional tissue preparations was used in this analysis. Our experimental data indicated that the value of this conduction shape factor was about one-third to two-thirds the value for two countercurrent vessels of the same size and spacing in an infinite medium. The experiment also revealed that the Weinbaum-Jiji expression for keff was valid for the spinotrapezius muscle when the largest vessels were less than 195 microns diameter. A fivefold increase in keff was predicted for 195 microns diameter vessels. Vasoregulation was also shown to have a dramatic effect on keff. A tissue that exhibits only small increases in keff due to countercurrent convection in its vasoconstricted state can exhibit a more than fivefold increase in keff in its vasodilated state.

Animals↗

[Separation and determination of flavonols in the flowers of Carthamus tinctorius by RP-HPLC].

Carthamus tinctorius L. is a kind of traditional Chinese medicine used in the treatment of uterine congestion, cardio-vascular disease, thrombosis and so on. Eight flavonoids have been isolated from its flowers. A reversed phase HPLC method for the separation and determination of the three flavonols: rutin (I), quercetin(II) and kaempferol(III) in the flowers of Carthamus tinctorius L. is described. The column was 25 cm x 4.6 mm ID, packed with YWG-C18(10 microns). The mobile phase was a mixture of MeOH-H2O-H3PO4(48.5:51.5:0.25, pH 3.5). The flow rate was 1.0 ml.min-1. Daidzein was used as an internal standard. UV detection was performed at 360 nm. The relative standard deviation of the method was 1.1-2.6%. The calibration curves showed good linearity over the range of 0.11-0.80 microgram, gamma = 0.9995-0.9998 and detection limits were 2.0-20.0 ng. The recoveries were 97.8%-98.9% for the three flavonols. The method is simple, fast, sensitive and accurate and has been applied to the analysis of Carthamus tinctorius L. of different sources. It can also be used for the quality control of safflower preparations for clinical uses.

Asteraceae↗