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Biomedical subjects

M E Bolander

Publications and source records attributed to M E Bolander.

At least 19 recordsLinked to original sources

Evidence for the upregulation of osteogenic protein-1 mRNA expression in musculoskeletal neoplasms.

Little is known about bone and cartilage tumors at the molecular level; thus, the identification of genes associated with these tumors may be useful as markers and therapeutic targets. To address this issue and to test the hypothesis that abnormal expression of one or more growth factors in the transforming growth factor-beta superfamily is associated with musculoskeletal neoplasia, degenerate primers based on the conserved sequences in these genes were made for screening tumor samples by reverse transcription-polymerase chain reaction. First, these primers were used to obtain a comparative profile between a low-grade chondrosarcoma and its dedifferentiated high-grade counterpart in the same patient. This experiment identified an amplified DNA product in the high-grade sample that was identical to osteogenic protein-1/bone morphogenetic protein-7. Osteogenic protein-1 mRNA expression was 17-fold greater in this high-grade sample than in the low-grade one. Osteogenic protein-1 was highly expressed (three of three) in human osteosarcoma cell lines but was not expressed (zero of four) in normal osteoblast samples. Screening for gene expression of osteogenic protein-1 in 57 osteosarcomas and chondrosarcomas indicated that 44% (range: 38-52%) of them were positive for osteogenic protein-1 mRNA. Screening of breast and prostate tumors revealed a similar association with osteogenic protein-1 mRNA expression.

Bone Morphogenetic Protein 7

Gene digging. A method for obtaining species-specific sequence based on conserved segments of nucleotides in open reading frames.

A method termed "gene digging" has been developed based on our observation of stretches of highly conserved nucleotide sequence in the coding region of many genes across related species. Rabbit-specific nucleotide sequences corresponding to desired coding segments of 14 different genes were obtained with primers that were designed based on conserved nucleotide stretches. Our success in gene digging could be attributable to the method's inherent ability to reduce the degeneracy of primers by more than two orders of magnitude (sometimes by more than three orders of magnitude) compared to primers designed from conserved amino acids. Our results not only demonstrate the value of the method, but also hint at a thus far unknown functional significance of conserved nucleotide stretches in the coding region of various genes. In our hands the method worked 14 out of 14 times indicating generality of the concept.

Activin Receptors, Type I

Selective differential fingerprinting. A method for identifying differentially expressed genes in a family between two samples.

A method termed selective differential fingerprinting (SDF) has been developed that enables one to investigate the level of expression for a family of genes between two samples. SDF produces a fingerprint (on a sequencing gel) on reverse transcription polymerase chain reaction (RT-PCR) of a sample with degenerate primers designed from conserved regions of a family of genes. By comparing fingerprints obtained after SDF with primers representing the transforming growth factor-beta (TGF beta) family of growth factors between a low-grade and a high-grade tumor from the same patient, a TGF beta family member known as osteogenic protein 1 (OP-1) or bone morphogenic protein 7 (BMP-7) was found to be greatly overexpressed in the high-grade tumor compared to the low-grade one. SDF also has the potential to identify novel genes. SDF offers a general way to identify differentially expressed genes for a family between two given samples.

Bone Morphogenetic Protein 7

PIG-B: a homemade monophasic cocktail for the extraction of RNA.

An inexpensive monophasic reagent has been developed for the extraction of total RNA from cells or tissues. The main ingredients of the reagent are Phenol, Isoamyl alcohol, Guanidinium isothiocyanate, and Beta-mercaptoethanol (PIG-B). The quality and yield of RNA obtained by this reagent is at par with that obtained by TRIzol, an expensive but widely used monophasic reagent available commercially. The complete composition and method of preparation of PIG-B is provided to aid preparation of the reagent in the laboratory.

Guanidines

Artificial cavitation nuclei significantly enhance acoustically induced cell transfection.

The efficiency of ultrasound-mediated gene transfection was enhanced three- to fourfold, compared to previous results, through the use of green fluorescent protein reporter gene, cultured immortalized human chondrocytes and artificial cavitation nuclei in the form of Albunex. Cells were exposed to 1.0-MHz ultrasound transmitted through the bottom of six-well culture plates containing immortalized chondrocytes, media, DNA at a concentration of 40 micrograms/mL and Albunex at 50 x 10(6) bubbles/mL. Transfection efficiency increased linearly with ultrasound exposure pressure with a transfection threshold observed at a spatial average peak positive pressure (SAPP) of 0.12 MPa and reaching about 50% of the living cells when exposed to 0.41 MPa SAPP for 20 s. Adding fresh Albunex at 50 x 10(6) bubbles/mL prior to sequential 1-s, 0.32- or 0.41-MPa exposures increased transfection with each exposure, reaching 43% transfection after four exposures. Efficient in vitro and in vivo transfection now appear possible with these enhancements.

Albumins

Histologic and biochemical differences between osteolytic and nonosteolytic membranes around femoral components of an uncemented total hip arthroplasty.

The unique design characteristics of an uncemented femoral component were used to study differences in the periprosthetic membranes in the presence and absence of osteolysis. A component (Omniflex, Osteonics, Allendale, NJ) that has a large midportion of the stem that does not contact bone was studied. A membrane forms, even in the absence of bone resorption, in Gruen zones 3 and 5 of this component. Analysis of this membrane showed noninflammatory fibrous tissue, no or minimal particulate debris, and few macrophages. In contrast, analysis of membranes from osteolytic regions around the same prosthesis demonstrated typical inflammatory characteristics. Collagenase, gelatinase, and stromelysin expression was high in osteolytic membranes but was low in tissues from noninflammatory regions without osteolysis. The data suggest a sequence of events in periprosthetic membrane formation. A noninflammatory membrane initially forms between the bone and the prosthesis. This membrane is transformed into an inflammatory membrane by the influx of particulate debris. Matrix metalloproteinases are selectively expressed in regions of osteolysis, implicating these enzymes in periprosthetic bone loss and suggesting a possible level for pharmaceutical intervention to prevent or treat osteolysis. Formation of the noninflammatory membrane around the distal part of the prosthesis of this or similar designs in the absence of bone resorption implies that these tissue samples could serve as useful negative control tissues to identify factors present in osteolytic periprosthetic membranes.

Adult

Rapid acquisition of unknown DNA sequence adjacent to a known segment by multiplex restriction site PCR.

The determination of unknown DNA sequences around a known locus has important applications in molecular genetics, specifically in genomic walking and genome mapping. Several PCR-based methods have been reported to address this issue, but they often involve multiple, time-consuming steps. We have previously described a technique known as restriction site PCR (RS-PCR) that allows sequence acquisition faster than the existing methods. The method involves PCR using four separate universal primers that are representative of given restriction enzyme sites (RS primers), and a specific primer from one end of the known sequence. We have now significantly improved the technique by mixing the four universal primers into one PCR tube with the first specific primer. This is followed by a nested PCR with the mixed RS primers and an internal specific primer, after which the product is sequenced by direct automated sequencing. The technique, called multiplex RS-PCR (mRS-PCR), is reproducible and can be used to obtain unknown sequence adjacent to known sequences in both the upstream and downstream directions. We illustrate the application of mRS-PCR in the acquisition of approximately 780 bp of genomic sequence starting from a known sequence of approximately 120 bp. Multiplex RS-PCR appears to be the fastest of all methods that address the issue of unknown sequence retrieval adjacent to a known region.

Binding Sites

Micro-CT imaging of structure-to-function relationship of bone microstructure and associated vascular involvement.

We are exploring methods of quantitating the 3D microstructure of bone in a way that will provide quantitative information about the functional status of the bone. The basic strategy is to image the spatial distribution of a selected, local, marker of function (e.g., material properties or new bone formation) and relate this to the simultaneously imaged 3D anatomic microstructure. Many of these approaches are extensions of well-established 2D imaging techniques (e.g., use of fluorophores and autoradiography) to 3D micro-CT. Local stresses throughout the microstructure can be estimated from the 3D geometry (and change in that geometry in response to stress applied to the outside of the bones) and correlated to the local function. In addition to study of bone, we are also exploring calcification of arterial walls, both within the bone and outside the bone, such as coronary arteries. Arterial calcification in ovariectomised rats has been observed.

Animals

Oligoclonal T-cell proliferation and interferon-gamma production in periprosthetic inflammation.

Total joint arthroplasty has dramatically changed the treatment options for patients with destructive joint disease. The materials used to manufacture implants are regarded as biologically inert; accordingly, arthroplasty is a very successful intervention for most patients. However, a subset of patients develops an inflammatory reaction around the prosthesis, causing implant loosening and irreversible bone destruction. To identify mechanisms leading to periprosthetic inflammation, the function and composition of macrophages and T cells accumulated in the pseudosynovia were examined. Tissue-infiltrating macrophages synthesized a spectrum of proinflammatory cytokines including IL-1beta, IL-6, and TGF-beta. T cells recruited to the periprosthetic inflammatory lesions were characterized by restricted diversity of T-cell receptors and the emergence of dominant clonal populations. T cells with identical T-cell receptor sequences, and thus with identical antigen specificity, were isolated from anatomically distinct and independent regions of the tissue. Transcription of IL-2, IFN-gamma, and, in some patients, IL-4 genes in the periprosthetic membrane indicated functional activation of infiltrating T cells. Correlation of periprosthetic osteolysis with the tissue cytokine pattern demonstrated a relationship between IFN-gamma transcription and bone loss. We propose that antigen-recognition events are critically involved in the development of periprosthetic inflammation and that the functional commitment of T cells recruited to the periprosthetic region influences whether periprosthetic inflammation is complicated by bone destruction.

Adult

A method for determination of stiffness of collagen molecules.

This study developed a micromechanical test method for determination of stiffness of collagen molecules. The novelty includes the adoption of an optical tweezer system for loading a single collagen molecule and the development of a binding technique for gripping the collagen molecule termini for the micromechanical test. This methodology will potentially help us to understand the mechanical properties and functions of collagen ultrastructure.

Animals

Osteoblasts express types I and II activin receptors during early intramembranous and endochondral bone formation.

Increasing evidence suggests a potential role for activin in bone formation. However, the cognate receptors through which activins function with respect to skeletal tissues have not yet been identified. Identification and regulation of expression of these receptors are necessary prerequisites to understanding the role of activins in bone metabolism. We detected mRNAs for three activin receptors, type I (ActRI), type II (ActRII), and type IIB (ActRIIB), in multiple skeletal tissues in rat, including tibia and costochondral growth plate, and also in cultured osteoblasts. To gain information about the relationship between receptor expression and different skeletal cell functions, we evaluated expression of the three receptors in a semiquantitative manner during the early stages of fracture healing, a model for rapid bone formation. Relatively high levels of ActRI and ActRII expression were detected in the callus at 7, 10, and 14 days after fracture, times that correlate with the interval of rapid intramembranous bone formation and the initiation of endochondral bone formation. Expression of the ActRIIB in the fracture callus was strikingly lower than either ActRI or ActRII. Immunostaining of the fracture callus and the newborn rat femur with an anti-ActRII antibody localized the receptor to osteoblasts at regions of membranous and endochondral bone formation. No staining of osteoblasts in fracture callus or bone was seen with an anti-ActRIIB antibody. These results provide strong evidence of the identification of the principal receptors through which activins could function in the skeletal system and further shed light on activin's mechanism of action in bone formation.

Activin Receptors

Identification of a dual leucine zipper kinase involved in rat fracture repair.

Complete cDNA sequence was obtained for a gene found to be expressed at a high level during fracture healing in the rat. Comparison of the amino acid sequence (deduced from the cDNA sequence) with known sequences showed 99% identity with mouse Dual Leucine Zipper Kinase (mDLK) and 96% identity with human Zipper Protein Kinase (hZPK). Relative quantitation by RT-PCR indicates abundant expression of this gene in cultured chondrocytes, growth plate and brain tissue. Further, regulated expression of this gene has been observed during fracture healing in rat femur fracture model; maximum gene expression in this model appears to coincide with chondrogenesis and bone formation. Since DLK has been shown to function in the mitogen activated signaling (MAP) pathway, these results provide the first evidence for the involvement of this signaling pathway in fracture healing.

Amino Acid Sequence

Ultrasound-mediated transfection of mammalian cells.

Mammalian cells were successfully transfected with plasmid DNA in vitro using ultrasound transmitted through the walls of cell culture flasks or plates. Primary rat fibroblasts or chondrocytes were exposed to ultrasound in the presence of plasmids containing lacZ or neo genes. The transfection efficiency was evaluated by counting the number of beta-galactosidase (beta-Gal) positive cells or neomycin-resistant colonies. Transfection efficiency was optimized by varying ultrasound conditions, ambient temperatures (room temperature or 37 degrees C), plasmid concentrations, and initial cell populations. Additional experiments were performed performed to elucidate the mechanism of the ultrasound-mediated transfection. Maximal gene transfection was seen with two ultrasound conditions: 1-MHz carrier frequency 411 +/- 189 kPascal continuous wave with 20 or 30 sec of exposure time, and 1 MHz carrier frequency 319 +/- 157 kPascal continuous wave with 40 or 60 sec of exposure time. Gene expression was negligible when transfection procedures were performed at room temperature. The average stable transfection rate was 0.34% of surviving cells with a plasmid concentration of 40 micrograms/ml in primary fibroblasts. The transient transfection rate was 2.4% of surviving cells for primary chondrocytes. Data suggest that increasing plasmid concentration will increase efficiency. Identical treatment with 3.5 MHz produced no transfection, implying that cavitation produced by the ultrasound pressure wave appeared to play a critical role in mediating transfection. Ultrasound-mediated transfection was effective for suspended cells as well as for plated cells. This transfection method is simple, easy to keep sterile, and convenient. Ultrasound-mediated transfection appears to be a promising method for gene transfer into mammalian cells.

Animals

A differential scanning calorimetry study of retrieved orthopedic implants made of ultrahigh molecular weight polyethylene.

Differential scanning calorimetry (DSC) was used to examine thermal and thermooxidative properties of ultrahigh molecular weight polyethylene (UHMW-PE) of five acetabular components of failed orthopedic implants retrieved at revision of total hip arthoplasty. The results were compared with controls (unimplanted acetabular cups, a 20-year-old slab of UHMW-PE, and raw material). Profiles of exothermic peaks indicated increased levels of oxidation in all retrieved cups. In three retrieved cups, DSC revealed an additional peak of endotherm that was not seen in control samples. The additional endotherm peaks were not artifacts due to oxidation during scanning, heat buildup during cutting of the samples, or the sterilization method after retrieval. The additional peak was associated with the bulk of the polymer that was extracted with hexane. It varied in relative area, depending on its original location of the sample in a cup, implicating local variability in the extent of changes in material property. The distribution of the changes suggests that, during implantation, tissue exposure and friction affected the level of oxidation and degree of crystallinity in the UHMW-PE to a greater degree than did loading alone. Overall results showed that DSC may be a useful tool in evaluating changes in the properties of UHMW-PE orthopedic components in vivo.

Acetabulum

Exposure to low-intensity ultrasound increases aggrecan gene expression in a rat femur fracture model.

The effects of ultrasound stimulation on various parameters of bone repair after diaphyseal injury were assessed in a standard rat femur fracture model. Bilateral closed femoral fractures were made in 79 skeletally mature male Long-Evans rats. An ultrasound signal consisting of a 200 microsecond burst sine wave of 0.5 MHz repeating at 1 kHz, with an intensity of 50 or 100 mW/cm2 spatial and temporal average, was applied to one fracture in each animal. The contralateral fracture was not exposed to ultrasound and served as a control. Mechanical testing of the healing fracture was performed 3 weeks after injury. In fractures treated with a 50 mW/cm2 ultrasound signal, the average maximum torque (223.5 +/- 50.5 Nmm compared with 172.6 +/- 54.9 Nmm, p = 0.022, paired t test) and average torsional stiffness (13.0 +/- 3.4 Nmm/degree compared with 9.5 +/- 2.9 Nmm/degree, p = 0.017) were significantly greater in treated than in control fractures. In animals treated with a 100 mW/cm2 ultrasound signal, the average maximum torque and torsional stiffness were greater in treated than in control fractures, but this trend did not reach statistical significance. Biochemical analysis of callus in ultrasound-treated and control fractures failed to demonstrate significant differences in cell number, collagen content, or calcium content. Evaluation of gene expression in fractures treated with 50 mW/cm2 ultrasound demonstrated a shift in the expression of genes associated with cartilage formation; aggrecan gene expression was significantly higher on day 7 after fracture and significantly lower on day 21 (p = 0.033 and 0.035, respectively). alpha 1(II) procollagen gene expression was similarly modified, but this trend did not reach statistical significance. Expression of genes coding for bone-related proteins, including alpha 1(I) procollagen, bone gamma-carboxyglutamic acid protein, alkaline phosphatase, and transforming growth factor-beta 1, did not differ between ultrasound-treated and control fractures. These data suggest that ultrasound stimulation increased the mechanical properties of the healing fracture callus by stimulating earlier synthesis of extracellular matrix proteins in cartilage, possibly altering chondrocyte maturation and endochondral bone formation.

Aggrecans