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Transcutaneous angioplasty of experimental aortic coarctation.

A dilatable form of juxtaductal aortic coarctation was surgically created in 29 newborn lambs. Of the 17 long-term survivors, four lambs served as controls and 13 underwent transcutaneous balloon dilation angioplasty with either polyvinylchloride or polyethylene catheters after 7--10 weeks of recovery. During growth before dilation, there was little change in the systolic gradient across the coarctation (36.6-35.3 mm Hg) despite an increase in animal weight from 3.8 to 19.3 kg. This systolic gradient remained constant in undilated lambs throughout a 6-month follow-up. Dilation produced an immediate 65% increase in the diameter of the coarctation and a 68% decrease in the systolic gradient across the coarctation site. Successful dilation required very high (6--8 atmospheres) dilating pressures. This gradient relief persisted throughout a follow-up of up to 1 year. Although no late sequelae could be attributed to the angioplasty, one lamb suffered an anterior aortic tear (associated with a difficult postdilation wire passage across the dilation site), which resulted in fatal intrathoracic hemorrhage. Cross pathologic inspection demonstrated intimal and medial tears in successfully dilated lambs in the first 3 days after dilation; on late pathologic examination, the intima appeared completely healed, without evidence of aneurysm or accelerated atheroma formation, within 2 months. These results, in conjunction with previous human in vitro studies, support the hypothesis that human aortic coarctation may be a dilatable lesion, although the safe limits and optimal protocols for dilating human coarctations are not known.

Angioplasty, Balloon↗

G protein beta3 gene variant, vascular function, and insulin sensitivity in type 2 diabetes.

A common polymorphism (825 C/T) in exon 10 of the GNB3 gene, that encodes for the beta-3 subunit, has been associated with different degrees of activation of heterotrimeric guanine nucleotide binding proteins (G proteins). Many hormones and neurotransmitters use specific receptors that interact noncovalently with G proteins in the transmembrane signaling process. Among them, insulin uses an inhibitory G protein-sensitive mechanism that is involved in metabolic and vascular events, leading to enhanced glucose transport and vasodilation. We hypothesized differences in peripheral and vascular insulin sensitivity according to GNB3 gene polymorphism in type 2 diabetic patients. To address this issue, we used an intervention-optimization protocol to examine whether diabetic patients with the variant show a different response in terms of insulin-sensitivity. Interindividual differences in baseline insulin sensitivity and vascular dysfunction (vasodilatory response to glyceryl trinitrate) were not attributable to this polymorphism of the GNB3 gene. However, in contrast to normal homozygotes, insulin sensitivity (S(I)) significantly improved (P=0.01) in carriers of the 825T variant. Parallel to these findings, stimulated C-peptide tended to decrease, and the response to glyceryl trinitrate significantly improved (P=0.004) among 825T carriers. Body mass index, systolic and diastolic blood pressure, heart rate, or serum lipid levels did not significantly change in either group. Our findings suggest an effect of GNB3 gene polymorphism on important phenotypic variations in type 2 diabetes mellitus. The GNB3 gene polymorphism might be an example of pharmacogenetics, with the underlying etiological genetic defect altering the response to treatment.

Adult↗

Adoptive transfer of experimental hypersensitivity pneumonitis in the LEW rat.

The pathogenesis of immune-mediated pulmonary inflammation following inhalation of antigen in sensitized subjects may involve specific cellular or humoral mechanisms, or both. We used adoptive transfer to document cellular mechanisms in an established LEW rat model of acute hypersensitivity pneumonitis. The optimal protocol utilized sensitized spleen cells cultured for 72 h in the presence of antigen and concanavalin A before intraperitoneal injection of 20 x 10(6) cultured cells into sublethally irradiated recipients. Experimental and control rats were subjected 7 d later to twice daily aerosol challenge for 1 or 3 d and examined 12 h after the last challenge. Histopathology was evaluated in one lung, and the other was lavaged and cells evaluated by flow cytometry for T cell phenotypes (CD4, CD8, and RT6, CD45R subsets). Histopathology and cell numbers for most phenotypes were increased in experimental over controls, but proportions were unchanged. Similar results were obtained in animals evaluated at both 24 and 72 h after initial challenge. Results indicate cellular participation in an established LEW rat model of HP. Significant increases in numbers of T cell phenotypes suggest an important role in pathogenesis, but no single phenotype could be incriminated by disproportionate numbers.

Alveolitis, Extrinsic Allergic↗

AgarCyto: a novel cell-processing method for multiple molecular diagnostic analyses of the uterine cervix.

In diagnostic cytology, it has been advocated that molecular techniques will improve cytopathological diagnosis and may predict clinical course. Ancillary molecular techniques, however, can be applied only if a sufficient number of preparations are made from a single cell sample. We have developed the AgarCyto cell block procedure for multiple molecular diagnostic analyses on a single scraping from the uterine cervix. The optimized protocol includes primary fixation and transport in ethanol/carbowax, secondary fixation in Unifix, and embedding in 2% agarose and then in paraffin according to a standard protocol for biopsies. More than 20 microscopic specimens were produced from a single AgarCyto cell block, and standard laboratory protocols have been successfully applied for H&E staining, immunohistochemistry for Ki-67 and p53, and in situ hybridization for the centromere of human chromosome 1 and human papilloma virus Type 16. In addition, single AgarCyto sections yielded sufficient input DNA for specific HPV detection and typing by LiPA-PCR, and the protocol includes an option for DNA image cytometry. The AgarCyto cell block protocol is an excellent tool for inventory studies of diagnostic and potentially prognostic molecular markers of cervical cancer.

Cell Line↗

Protection from cell death in cultured human fetal pancreatic cells.

Endocrine cells from the human fetal pancreas will proliferate in vitro on extracellular matrix but lose hormone expression, and redifferentiation requires removal of the expanded cells from the matrix and reaggregation into cell aggregates. However, extensive cell death occurs during manipulation and culture. The mechanism of cell death was examined at each stage throughout the process under different experimental conditions to determine optimal protocols to increase cell viability. During shipment, the addition of trehalose to the media to prevent necrosis increased yield 17-fold, while during culture as islet-like cell clusters the apoptosis inhibitor Z-VAD increased yield 1.8-fold. Following disruption of cell matrix interactions and reaggregation, there was marked evidence of apoptotic bodies by the TUNEL assay. Addition of nicotinamide or Z-VAD, or removal of arginine from the media during reaggregation, reduced the number of apoptotic bodies and the effect was additive. However, a combination of treatments was necessary to significantly increase the yield of viable cells. We conclude that cell death of human fetal pancreatic tissue in culture results from both necrosis and apoptosis and that understanding the mechanisms at the cellular level will lead to protocols that will improve cell viability and promote beta-cell growth.

Amino Acid Chloromethyl Ketones↗

The development of intracerebral cell-suspension implants is influenced by the grafting medium.

The effect of preparing and grafting embryonic striatal and nigral tissue in four different media was evaluated in vitro and in vivo. The proportion of TH-positive and DARPP-32-positive neurons was determined after 2 days in vitro in standard culture medium following preparation in the different media. The effects were more marked for striatal neurons where DARPP-32 expression in tissue prepared in HBSS was poor compared to other media. TH expression was unaffected by the preparation medium. Striatal grafts derived from tissue prepared and grafted in HBSS were smaller, with fewer DARPP-32 cells, compared to other media. Survival of grafts in combined HBSS and DMEM was very poor. Graft volume and TH cell content was enhanced in tissue prepared in DMEM. These results suggest that preparation protocols optimized for one type of embryonic neuronal population do not necessarily transfer to other neuronal populations.

Animals↗

Comparison of 35S and biotin as labels for in situ hybridization: use of an HPV model system.

Colorimetric in situ hybridization is a method of potential importance in diagnosis and research. The largest criticism of the method has been a perceived loss of sensitivity compared with autoradiographic techniques. Our more positive experience with automation of colorimetric in situ hybridization led us to undertake a direct comparison of the sensitivity of 35S- and biotin-labeled probes. Serial sections of formalin-fixed, paraffin-embedded cell pellets from four human cervical carcinoma cell lines with known copies of HPV (CaSki, 400-600 copies HPV 16; HeLa, 10-50 copies HPV 18; SiHa, 1-2 copies HPV 16; HTB31, no known copies HPV) were hybridized with protocols optimized for autoradiographic or colorimetric detection. Both methods gave comparable results, with differences in each technique seen at the limits of sensitivity. The 1-2 copies of HPV 16 per SiHa cell can be detected with both methods; however, grain counting is required for interpretation of the autoradiographic result. This degree of sensitivity for colorimetric in situ hybridization in formalin-fixed, paraffin-embedded material is achieved through careful optimization of probe size and labeling, adequate tissue digestion, and removal of background. Autoradiography may be preferred in situations where quantitation is required, but colorimetric detection retains the advantages of speed, potential for automation, and improved localization of signal with comparable sensitivity.

Autoradiography↗

Genetic transformation of Indian bread (T. aestivum) and pasta (T. durum) wheat by particle bombardment of mature embryo-derived calli.

BACKGROUND: Particle bombardment has been successfully employed for obtaining transgenics in cereals in general and wheat in particular. Most of these procedures employ immature embryos which are not available throughout the year. The present investigation utilizes mature seeds as the starting material and the calli raised from the hexaploid Triticum aestivum and tetraploid Triticum durum display a high regeneration response and were therefore used as the target tissue for genetic transformation by the biolistic approach. RESULTS: Mature embryo-derived calli of bread wheat (Triticum aestivum, cv. CPAN1676) and durum wheat (T. durum, cv. PDW215) were double bombarded with 1.1 gold microprojectiles coated with pDM302 and pAct1-F at a target distance of 6 cm. Southern analysis using the bar gene as a probe revealed the integration of transgenes in the T0 transformants. The bar gene was active in both T0 and T1 generations as evidenced by phosphinothricin leaf paint assay. Approximately 30% and 33% primary transformants of T. aestivum and T. durum, respectively, were fertile. The transmission of bar gene to T1 progeny was demonstrated by PCR analysis of germinated seedlings with primers specific to the bar gene. CONCLUSIONS: The transformation frequency obtained was 8.56% with T. aestivum and 10% with T. durum. The optimized protocol was subsequently used for the introduction of the barley gene encoding a late embryogenesis abundant protein (HVA1) in T. aestivum and T. durum. The presence of the HVA1 transgene was confirmed by Southern analysis in the T0 generation in case of Triticum aestivum, and T0 and T1 generation in Triticum durum.

Acetyltransferases↗

Sensitive detection of human papillomavirus type 16 E7-specific T cells by ELISPOT after multiple in vitro stimulations of CD8+ T cells with peptide-pulsed autologous dendritic cells.

BACKGROUND: Cervical cancer is the second most common gynecological cancer amongst women world-wide. Despite optimized protocols, standard treatments still face several disadvantages. Therefore, research aims at the development of immune-based strategies using tumor antigen-loaded dendritic cells for the induction of cellular anti-tumor immunity. RESULTS: In this study, we used dendritic cells loaded with the HLA-A2-restricted HPV type 16 E711-20 peptide in order to induce an in vitro CD8+ T cell response. For this purpose, peptide-pulsed dendritic cells were co-cultured with autologous CD8+ T cells. After 5 weekly stimulations with peptide-pulsed mature dendritic cells, cultured T cells were analyzed for antigen specificity by an IFN-gamma ELISPOT assay. Using this ELISPOT assay, we were able to detect E7-specific IFN-gamma-secreting CD8+ T cells in 5/5 healthy donors. CONCLUSION: We show that peptide-pulsed mature dendritic cells are able to stimulate a HPV type 16 E7 peptide-specific immune response in vitro. These experiments describe an efficient culture protocol for antigen-specific T cells for use in pre-clinical vaccination research and confirm the need for sensitive T cell assays for detection of tumor-specific immune responses in vitro.

Antigens, Viral, Tumor↗

SMART-RNA-Metavirome: a practical RNA metavirome platform compatible with high-throughput sequencing of both short and long reads.

BACKGROUND: The RNA virosphere's extensive diversity and its role in emerging infectious diseases underscore the importance of non-targeted sequencing for identifying unknown or rare pathogens, including co-infections. However, enriching low-abundance viral sequences in RNA metaviromics, particularly in the preparation of cDNA libraries and their compatibility with next-generation sequencing (NGS) and third-generation sequencing (TGS), remains challenging. Therefore, our objective is to develop and systematically assess a practical RNA metavirome methodology specifically tailored for the enrichment of low-abundance viral sequences within samples. METHODS: We developed the SMART-RNA-Metavirome platform, integrating SMART-9n library preparation with NGS and TGS technologies. Total RNA was extracted from two field-collected wild Aedes albopictus pools, along with one laboratory-infected Ae. albopictus pool harboring dengue virus (DENV). This RNA was subjected to reverse transcription using both this optimized protocol and random primer-based methods, followed by high-throughput sequencing on Illumina, Oxford Nanopore, and QitanTech Nanopore technologies. Welch's t-test was employed for comparative analysis of the subsequent RNA metavirome data, specifically to evaluate differences in viral species composition and abundance of viral reads between experimental groups. Furthermore, the effectiveness of this platform was systematically validated via RT-qPCR and SMART-RNA-Metavirome-based Oxford Nanopore sequencing across multiple sample types, including mosquito specimens from DENV-infected Ae. albopictus, serum samples from dengue patients and viral isolates of Japanese encephalitis virus (JEV) and Zika virus (ZIKV). RESULTS: The SMART-RNA-Metavirome platform has been systematically validated to excel in enriching the composition and diversity of the RNA virome (P = 0.04), providing sufficient coverage for the complete reconstruction of viral genomes. When employed in the detection of DENV-infected Ae. albopictus, clinical serum samples, and viral isolates of JEV and ZIKV, this technique exhibits a robust correlation with RT-qPCR (r2 > 0.95). Notably, it demonstrates exceptional sensitivity, ensuring sufficient coverage even in samples of DENV-infected Ae. albopictus with a Ct-value of 35.3, attaining an impressive 99.88% genome coverage. Furthermore, this platform possesses the capability to identify virus species and determine their serotypes. CONCLUSIONS: In our study, the SMART-RNA-Metavirome platform outperforms traditional methods, enriching RNA virome composition and diversity, enabling practical compatibility with both NGS and TGS technologies. It demonstrates significant proficiency in detecting both known and unknown arboviruses, even in low-titer samples such as those from wild mosquitoes and clinical sera. This platform facilitates comprehensive monitoring, risk assessment, and early warning of RNA virus transmissions, enhancing our understanding of RNA virome diversity and ecological patterns.

High-Throughput Nucleotide Sequencing↗

Immunoablation and haemopoietic stem cell transplantation for severe autoimmune disease with special reference to systemic lupus erythematosus.

Internationally 397 patients (310 in Europe/Austalasia and 87 in North America) with severe autoimmune disease (AD) have received an autologous haemopoietic stem cell transplant (HSCT) following immunoablation, 32 with systemic lupus erythematosus (SLE). The 23 in the EBMT/EULAR database mostly received cyclophosphamide (Cy) and G-CSF as mobilisation followed by Cy and antithymocyte globulin (ATG) conditioning. Nineteen improved with five relapses (mostly mild to moderate) and there were three procedure-related mortalities. In the Chicago series, nine patients were entered, seven improved, one died following mobilisation and one from active disease 3 months after mobilisation. Randomised, prospective controlled phase III trials are desired, but by consensus, more phase I and II data is required to plan the optimal protocol.

Hematopoietic Stem Cell Transplantation↗

Gemcitabine in leukemia: a phase I clinical, plasma, and cellular pharmacology study.

PURPOSE: Phase I clinical and in vitro studies of gemcitabine (2',2'-difluorodeoxycytidine; dFdC) have demonstrated that the accumulation rate of dFdC 5'-triphosphate (dFdCTP) in mononuclear and leukemia cells is saturated when plasma or extracellular dFdC levels exceed 15 to 20 mumol/L. Thus, we designed a phase I study to maximize the accumulation of dFdCTP by leukemia cells by administering dFdC at 10 mg/m2/min, a dose rate calculated to produce steady-state plasma dFdC levels that exceed 15 to 20 mumol/L. PATIENTS AND METHODS: The treatment intensity was increased in patients (n = 22) with relapsed or refractory acute leukemia or chronic myelogenous leukemia (CML) in blast crisis by prolonging the infusion duration but maintaining the same rate. Doses of dFdC between 1,200 mg/m2 and 6,400 mg/m2 were administered weekly for 3 weeks. RESULTS: The maximum-tolerated dose was 4,800 mg/m2 infused over 480 minutes. The mean steady-state dFdC level in plasma of all infusions was 26.5 +/- 9 mumol/L (n = 19). The accumulation rates of dFdCTP in circulating leukemia cells varied greatly among patients but remained linear in eight patients infused for 120 to 240 minutes, and up to or beyond 360 minutes in five of eight additional patients. Elimination of dFdCTP was significantly related to its cellular concentration: blasts with greater than 450 mumol/L dFdCTP exhibited biphasic elimination, whereas blasts with lower dFdCTP concentrations exhibited linear kinetics. Biphasic elimination was associated with higher dFdCTP areas under the concentration-times-time curve (AUCs) and greater inhibition of DNA synthesis. CONCLUSION: Studies of the cellular pharmacology and pharmacodynamics of dFdC may be useful in optimizing protocol designs for leukemia.

Adolescent↗

Single versus repeated dose human chorionic gonadotropin stimulation in the differential diagnosis of hypogonadotropic hypogonadism.

The responses of serum testosterone (T), 17 alpha-hydroxyprogesterone, and 17 beta-estradiol (E2) to four im injections of hCG (5000 IU/1.7 m2) given on days 0, 4, 7, and 10 were studied in 10 prepubertal and 10 pubertal boys with hypogonadotropic hypogonadism (groups O and P, respectively). Serum was obtained before each injection and on day 14. The results were compared with those of controls, 16 prepubertal boys with incomplete testicular descent and 6 pubertal boys with constitutional delay of puberty. Serum T levels increased significantly in groups O and P to 2.0 and 4.6 nmol/liter, respectively, after the first injection, then progressively to 5.8 and 11.2 nmol/liter. Basal T levels of group O did not differ from those of the controls, but were subnormal for group P (P less than 0.001). Stimulated T levels were subnormal in both groups (P less than 0.01 and P less than 0.001), but repeated doses increased the difference from the control value only in group P. A difference in E2 response between patients and controls appeared in puberty; only the pubertal control boys had substantial increases in E2 (P less than 0.001). Our results show that the optimal protocol for a diagnostic hCG test in prepubertal boys is a single dose of hCG, with determination of T levels 4 days later. In puberty, if the basal T levels are inconclusive, repeated doses of hCG should be given with determination of both T and E2. These findings also suggest that the full inhibitory effect of E2 on T synthesis results from a pubertal maturation process, possibly induced by endogenous gonadotropins, which cannot be induced by two weeks of hCG stimulation in prepubertal boys or those with hypogonadotropic hypogonadism.

17-alpha-Hydroxyprogesterone↗

The effect of recombinant human tsh on the thyroid (123)i uptake in iodide treated normal subjects.

UNLABELLED: Radioactive iodine therapy is often successful in the treatment of toxic or non-toxic multinodular goiter. However, when the patient has been exposed to iodine in the form of medication or radiocontrast agents prior to therapy, the thyroid radioactive iodine is often too low for successful ablation. Recently, administration of 0.9 mg of recombinant human TSH (rhTSH) has been shown to nearly double the 24-hour thyroid radioactive iodine uptake (RAIU) in euthyroid men living in the United States. In addition, 0.01 to 0.03 mg rhTSH administered 24 hours prior to (131)I in patients with a history of non-toxic multinodular goiter residing in an area of modestly low iodine intake, has also been shown to increase the 24-hour thyroid radioactive iodine uptake. We now have determined whether rhTSH administration prior to (123)I would increase the low thyroid RAIU in subjects treated with sodium iodide. Nine euthyroid men were given 15 mg iodide daily for 7 days. There was a marked increase in serum TSH values 8 and 24 hours after rhTSH administration, which induced elevated serum T4 and T3 concentrations. A 16 hour thyroid RAIU was measured at baseline, after 5 days of iodide administration, and either 8 or 32 hours after intramuscular administration of rhTSH. Administration of rhTSH 8 hours before (123)I to 4 subjects increased the 16 hour thyroid RAIU by 62% above the low post iodide thyroid RAIU. Administration of rhTSH 32 hours before (123)I administration to 5 subjects increased the 16 hour thyroid RAIU by 97% above the low iodide induced RAIU. Thus, the overall increase in the thyroid RAIU was 88% in the 9 subjects. CONCLUSION: Recombinant TSH moderately increased the thyroid RAIU in subjects with depressed thyroid RAIU's during iodide administration and thus may be useful in preparing patients with non-toxic or toxic goiters and low thyroid RAIU's due to excess iodine for radioactive iodine treatment. Further studies to determine the optimal protocol to enhance the effect of rhTSH will be carried out.

Adult↗

Semiquantitative RT-PCR analysis to assess the expression levels of multiple transcripts from the same sample.

We describe a semiquantitative RT-PCR protocol optimized in our laboratory to extract RNA from as little as 10,000 cells and to measure the expression levels of several target mRNAs from each sample. This procedure was optimized on the human erythroleukemia cell line TF-1 but was successfully used on primary cells and on different cell lines. We describe the detailed procedure for the analysis of Bcl-2 levels. Aldolase A was used as an internal control to normalize for sample to sample variations in total RNA amounts and for reaction efficiency. As for all quantitative techniques, great care must be taken in all optimization steps: the necessary controls to ensure a rough quantitative (semi-quantitative) analysis are described here, together with an example from a study on the effects of TGF-beta1 in TF-1 cells.

Journal Article↗

Protection against ionising radiation and synergism with thiols by zinc aspartate.

Pre-treatment with zinc aspartate protected mice against the lethal effects of radiation and raised the LD50 from 8 Gy to 12.2 Gy. Zinc chloride and zinc sulphate were clearly less active. The radioprotective effect of zinc aspartate was equivalent to cysteamine and slightly inferior to S,2-aminoethylisothiourea (AET). Zinc aspartate displayed a similar therapeutic index to the thiols but could be applied at an earlier time before irradiation. Synergistic effects occurred with the combined administration of zinc aspartate and thiols. By giving zinc aspartate with cysteamine, the LD50 was increased to 13.25 Gy and, by combining it in the optimal protocol with AET, to 17.3 Gy. The radioprotection by zinc and its synergism with thiols is explained by the stabilisation of thiols through the formation of zinc complexes.

Animals↗

Gas-phase microsequencing of peptides and proteins with a fluorescent Edman-type reagent, fluorescein isothiocyanate.

A fluorescent Edman-type reagent, fluorescein isothiocyanate (FITC), was adapted to a gas-phase sequencer fitted with a miniature reaction chamber. Fluorescein thiohydantion amino acids were identified by on-line gradient HPLC with fluorescence monitoring. The optimized protocol for the coupling reaction using FITC and phenylisothiocyanate, and the degree of washing to remove the excess reagents were established. Myoglobin (5 pmol) and lysozyme (5 pmol) were analyzed by the sequencer to obtain a 35-51% initial yield (I.Y.) and 82-88% repetitive yield (R.Y.) for the former, and 51-66% I.Y. and 91-92% R.Y. for the latter. These figures permitted 20-25 amino acid residues to be identified from the N-terminus of 5 pmol samples applied to the sequencer.

Amino Acid Sequence↗

Adjacent vertebral failure after vertebroplasty. A biomechanical investigation.

Vertebroplasty, which is the percutaneous injection of bone cement into vertebral bodies has recently been used to treat painful osteoporotic compression fractures. Early clinical results have been encouraging, but very little is known about the consequences of augmentation with cement for the adjacent, non-augmented level. We therefore measured the overall failure, strength and structural stiffness of paired osteoporotic two-vertebra functional spine units (FSUs). One FSU of each pair was augmented with polymethylmethacrylate bone cement in the caudal vertebra, while the other served as an untreated control. Compared with the controls, the ultimate failure load for FSUs treated by injection of cement was lower. The geometric mean treated/untreated ratio of failure load was 0.81, with 95% confidence limits from 0.70 to 0.92, (p < 0.01). There was no significant difference in overall FSU stiffness. For treated FSUs, there was a trend towards lower failure loads with increased filling with cement (r2 = 0.262, p = 0.13). The current practice of maximum filling with cement to restore the stiffness and strength of a vertebral body may provoke fractures in adjacent, non-augmented vertebrae. Further investigation is required to determine an optimal protocol for augmentation.

Biomechanical Phenomena↗