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Biomedical subjects

S Lauber

Publications and source records attributed to S Lauber.

7 recordsLinked to original sources

Biophysical and biological studies of end-group-modified derivatives of Pep-1.

Pep-1 is a tryptophane-rich cell-penetrating peptide (CPP) that has been previously proposed to bind protein cargoes by hydrophobic assembly and translocate them across cellular membranes. To date, however, the molecular mechanisms responsible for cargo binding and translocation have not been clearly identified. This study was conducted to gain insight into the interaction between Pep-1 with its cargo and the biological membrane to identify the thereby involved structural elements crucial for translocation. We studied three peptides differing in their N- and C-termini: (i) Pep-1, carrying an acetylated N-terminus and a C-terminal cysteamine elongation, (ii) AcPepWAmide, with an acetylated N-terminus and an amidated C-terminus, and (iii) PepW, with two free termini. Thioredoxin (TRX) and beta-galactosidase were used as protein cargoes. To study CPP-membrane interactions, we performed biophysical as well as biological assays. To mimic biological membranes, we used phospholipid liposomes in a dye leakage assay and surfactant micelles for high-resolution NMR studies. In addition, membrane integrity, cell viability, and translocation efficiency were analyzed in HeLa cells. An alpha-helical structure was found for all peptides in the hydrophobic N-terminal region encompassing residues 4-13, whereas the hydrophilic region remained unstructured in the presence of micelles. Our results show that the investigated peptides interacted with the micelles as well as with the protein cargo via their tryptophan-rich domain. All peptides displayed an orientation parallel to the micelle surface. The C-terminal cysteamine group formed an additional membrane anchor, leading to more efficient translocation properties in cells. No membrane permeabilization was observed, and our data were largely compatible with an endocytic pathway for cellular uptake.

Cell Survival↗

Acute compartment syndrome following intramedullary pulse lavage and débridement for osteomyelitis of the tibia.

The implantation of gentamicin loaded polymethylmethacrylate (PMMA) beats and other local antibiotic carriers is a common practice in the treatment of chronic osteomyelitis as is the use of local jet lavage débridement. This article presents the case of a patient with chronic osteomyelitis of the tibia, who had no complication after débridement, intramedullary reaming and pulse lavage without tourniquet but sustained a compartment syndrome 2 weeks later during a second procedure in which an intraoperative tourniquet and pulse lavage were combined.

Acute Disease↗

On the influence of non-enzymatic crosslinking of caseins on the gel strength of yoghurt.

After storage of UHT milk at 37 degrees C resp. 50 degrees C, yoghurt was prepared. For a storage temperature of 37 degrees C, breaking strength of the yoghurt samples increased from 2.7 to 5.8 N with increasing storage duration of the UHT milk. A plateau is reached after 17 days of storage. This increase in breaking strength correlates with a significant increase in non-reducible casein oligomerization from 14% for fresh UHT milk to 25% measured using size exclusion chromatography under reducing and denaturing conditions and calculated as sum of predominantly formed dimers and trimers at the total casein fraction. At a storage temperature of 50 degrees C, a less increase in breaking strength from 2.7 to 4.6 N with a plateau after 17 days was observed while casein oligomerization increased to 63%. After acid hydrolysis, only lysinoalanine and histidinoalanine were detected in the caseinate samples via amino acid analysis. The quantified concentration of lysinoalanine and histidinoalanine could not explain the observed casein oligomerization. Thus, unknown crosslinked amino acids must have been formed during storage, inducing significant changes in the functional properties of milk proteins.

Caseins↗

High-energy shock wave treatment of femoral head necrosis in adults.

Adults with Stages I to III osteonecrosis of the femoral head present an overall therapeutic challenge. The objective of the current prospective study was to show the effectiveness of high-energy shock wave therapy in treatment of patients with Association Research Circulation Osseous Stage I to Stage III necrosis of the femoral head by assessing clinical and magnetic resonance imaging results. The current study presents the results of 22 patients with femoral head necrosis 1 year after shock wave treatment. The study population consisted of 10 women and 12 men with an average age of 54.9 years (+/- 12.3). The scores achieved on the visual pain analog scale decreased from 8.5 before treatment to 1.2 after 1 year. Simultaneously, the Harris hip score increased from 43.3 to 92 points. Magnetic resonance imaging visualization of a distinct zone of sclerosis around the necrotic area remaining after treatment with extracorporeal shock wave therapy indicated therapeutic failure. The results obtained so far with high-energy shock wave therapy in these patients suggest that this method may offer an alternative to invasive treatment modalities for femoral head necrosis. A noninvasive and moderately priced method then would be available for the treatment of femoral head necrosis in the early stages of the disease process.

Adult↗

A simple conjunctival biopsy.

Biopsy of conjunctival goblet cells may be carried out by pressing a piece of Millipore filter on the conjunctival surface. This can then be stained with PAS and hematoxylin and observed under the microscope after the filter has been cleared with oil. Either spots of mucous corresponding to the openings of the goblet cells are seen, or the filter adheres to the surface and pulls off one or more layers of epithelial cells and goblet cells. The procedure can be carried out on the unanesthetized eye and does not cause discomfort.

Animals↗