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New high-technology products for the treatment of haemophilia.

This review will focus on new technologies in development that promise to lead to further advances in haemophilia therapeutics. There has been continued interest in the bioengineering of recombinant factor VIII (rFVIII) and factor IX (rFIX) with improved function to overcome some of the limitations in current treatment, the high costs of therapy and to increase availability to a broader world haemophilia population. Bioengineered forms of rFVIII, rFIX or alternative haemostatic molecules may ultimately have an impact on improving the efficacy of therapeutic strategies for the haemophilias by improving biosynthesis and secretion, functional activity, half-life and immunogenicity. Preventing and suppressing inhibitors to factor (F) VIII remain a challenge for both clinicians and scientists. Recent experiments have shown that it is possible to obtain anti-idiotypic antibodies with a number of desirable properties: (i) strong binding avidity to FVIII inhibitors; (ii) neutralization of inhibitory activity both in vitro and in vivo; (iii) cross-reactivity with antibodies from unrelated patients, and (iv) no interference with FVIII function. An alternative, although complementary approach, makes use of peptides derived from filamentous-phage random libraries. Mimotopes of FVIII can be obtained, which bind to the paratope of inhibitory activity and neutralize their activity both in vitro and in vivo. In this paper, we review advanced genetic strategies for haemophilia therapy. Until recently the traditional concept for gene transfer of inherited and acquired haematological diseases has been focused on how best to obtain stable insertion of a cDNA into a target-cell genome, allowing expression of a therapeutic protein. However, as gene-transfer vector systems continue to improve, the requirement for regulated gene transcription and hence regulated protein expression will become more critical. Inappropriate protein expression levels or expression of transferred cDNAs in non-intended cell types or tissues may lead to target-cell toxicity or activation of unwanted host immune responses. Regulated protein expression requires that the transferred gene be transferred with its own regulatory cassette that allows for gene transcription and translation approaching that of the normal gene in its endogenous context. New molecular techniques, in particular the use of RNA molecules, now allow for transcription of corrective genes that mimic the normal state.

Antibodies, Anti-Idiotypic↗

A composite skin substitute (graftskin) for surgical wounds. A clinical experience.

BACKGROUND: Bioengineered skin substitutes offer tissue replacement without requiring a donor site and might produce better healing. OBJECTIVE: To evaluate the recipient's response to grafting a bioengineered skin equivalent onto acute surgical wounds. METHODS: Graftskin, which is made of: 1) a bovine collagen matrix containing human fibroblasts, and 2) an overlying sheet of stratified human epithelium, was grafted onto the excision sites of 15 patients. RESULTS: Blood and cell studies for toxicity were negative. Graftskin proved easy to handle, and a typical clinical appearance of the skin substitute during "take" was detected. Compared with expectations improved healing occurred. Twelve of 15 patients had initial clinical takes. CONCLUSION: Graftskin was not clinically rejected and was not toxic. It often appeared to take and produced better than expected healing.

Adult↗

Visible and subclinical skin changes in male and female dispatch department workers of newspaper printing plants.

UNLABELLED: BACKGROUND AND PROBLEM: Wet work and skin exposure to detergents or solvents are well-established causes of irritant hand dermatitis. In contrast, physical irritation of the skin as another potential cause of occupational hand dermatitis has been investigated less. MATERIAL AND METHODS: Our study included 71 individuals exposed to physical irritation during work in the dispatch department of two newspaper printing plants. Clinical examination and measurements of transepidermal water loss (TEWL), capacitance and skin surface pH of the skin of hands and forearms was performed. RESULTS: Erythema and/or scaliness of the hands were unexpectedly common: 26 of the 38 female inlay workers, 11 of the 13 male inlay workers and 15 of the 20 male machine operators were affected, compared to 18 of 28 printers exposed to solvents who had been investigated in a previous study. A significantly higher skin surface pH on the hands (P < 0.05) and, less pronounced, on the forearms (P > 0.05) was found in females. There was no association between domestic skin exposure, according to questionnaire data, and the bioengineering results. Skin cleansing and skin care differed between male and female workers, but were again not associated with the outcomes. CONCLUSIONS: The point prevalence of skin changes in dispatch department workers in the present study is unexpectedly high, which points to the importance of physical irritation by paper dust. Significant differences in bioengineering parameters between male and female inlay workers were found only for skin surface pH at the exposed back of hands. Future studies should (i) try to elucidate the role of skin surface pH changes and (ii) pay more attention to physical trauma to the skin.

Adult↗

Gamma-irradiated human skin allograft: a potential treatment modality for lower extremity ulcers.

Gamma-irradiated human skin allograft consists of epidermis and dermis. Unlike bioengineered tissues which require cold storage and timely use once received from the manufacturer, gamma-irradiated human skin allograft can be stored for as long as 24 months at room temperature. This modality is applied in a fashion similar to that of bioengineered skin grafts. In this article, we present case studies with concise reviews of the available evidence to discuss the potential use of gamma-irradiated human skin allograft on wounds in the lower extremity.

Aged↗

Traditional engineering in the biological century: the biotraditional engineer.

The increasing importance of life science in all engineering is prompting departments in the traditional engineering disciplines to offer life science as part of their curricula. Students who take advantage of this opportunity--"biotraditional engineers"--will be well positioned for careers in their discipline and in related areas of bioengineering. The founder engineering societies, such as the Bioengineering Division of ASME, are responding to this trend by broadening their scope and working increasingly across interdisciplinary borders.

Biomedical Engineering↗

Physical, chemical, and structural properties of human gastric organoid-derived mucus.

The gastric mucus layer protects the epithelium from gastric acid and ingested pathogens. However, studies of human gastric mucus have been limited due to poor accessibility of native human mucus and the abundance of contaminants in these samples. Here, we explored the potential of human gastric organoids as models for mucus production. Immunofluorescence staining confirmed that the organoids produced mucus containing MUC5AC and MUC6. The luminal mucus had viscoelastic properties similar to those of native human gastric mucus, as determined by particle tracking microrheology. To collect organoid-produced gastric mucus, termed bioengineered gastric mucus (BGM), organoids were cultured as monolayers at the air-liquid interface (ALI), and apically secreted mucus was harvested and analyzed by MUC5AC ELISA, proteomics, cryo-field emission scanning electron microscopy (CryoFE-SE), and rheometry. BGM contained high-molecular weight molecules also found in native gastric mucus. Proteomic analysis confirmed that BGM contained MUC5AC, MUC6, MUC1, and other stomach-specific molecules such as pepsin C, trefoil factor 2, and gastrokine. CryoFE-SE showed that both BGM and native mucus had a porous structure and a characteristic honeycomb scaffold. However, the viscosity of the BGM was generally lower than that of native human gastric mucus, and BGM failed to exhibit gelation at low pH. Collectively, these findings demonstrate the potential as well as some limitations of BGM as an accessible model system for human gastric mucus.NEW & NOTEWORTHY We demonstrate the structural and functional similarities of organoid-derived gastric mucus and native mucus collected from human patients. The bioengineered gastric mucus mimics its native counterpart in its proteomic profile and physical architecture. This work highlights the translational potential of organoid-derived mucus for functional investigations of the human gastric mucus layer.

Humans↗

Using cytochrome P-450 gene knock-out mice to study chemical metabolism, toxicity, and carcinogenicity.

Cytochrome P-450 (CYP) enzymes are heme-containing proteins that carry out oxidative metabolism of a wide range of structurally diverse exogenous chemicals and therapeutic agents as well as endogenous compounds. For some of these xenobiotics, oxidative metabolism results in the formation of toxic, mutagenic, or carcinogenic metabolites. In the past, the role of CYP enzymes in metabolism and chemical-induced toxicity was studied indirectly through use of specific antibodies or inducers and inhibitors of these enzymes. Progress in molecular biology and the ability to bioengineer animal models that do not express CYP1A2, CYP1A1, CYP1B1, CYP2E1, or both CYP1A2 and CYP2E1 isozymes has allowed for direct investigations of the in vivo role of these enzymes in the metabolism, toxicity, and carcinogenicity of xenobiotics. This article reviews research conducted to date that utilizes these genetically bioengineered mice in metabolism, toxicity, or carcinogenicity studies of chemicals. Some studies showed a positive correlation between in vivo results and in vitro predictions for the role of a specific CYP in chemical-induced effects, whereas other studies did not support in vitro predictions. Work reviewed herein demonstrates the importance of using animal models for investigating the role of specific CYP enzymes in metabolism and chemical-induced toxicity or carcinogenicity rather than relying solely on in vitro techniques. Eventually, studies of this nature will facilitate a more accurate assessment of human risks with regard to chemicals by helping us to understand the relationships between chemical metabolism, carcinogenicity, and polymorphisms in CYP enzymes.

Animals↗

Fibroblast heterogeneity: more than skin deep.

Dermal fibroblasts are a dynamic and diverse population of cells whose functions in skin in many respects remain unknown. Normal adult human skin contains at least three distinct subpopulations of fibroblasts, which occupy unique niches in the dermis. Fibroblasts from each of these niches exhibit distinctive differences when cultured separately. Specific differences in fibroblast physiology are evident in papillary dermal fibroblasts, which reside in the superficial dermis, and reticular fibroblasts, which reside in the deep dermis. Both of these subpopulations of fibroblasts differ from the fibroblasts that are associated with hair follicles. Fibroblasts engage in fibroblast-epidermal interactions during hair development and in interfollicular regions of skin. They also play an important role in cutaneous wound repair and an ever-increasing role in bioengineering of skin. Bioengineered skin currently performs important roles in providing (1) a basic understanding of skin biology, (2) a vehicle for testing topically applied products and (3) a resource for skin replacement.

Basement Membrane↗

Measurement of sodium lauryl sulfate-induced skin irritation.

Besides visual evaluation, skin irritation induced by sodium lauryl sulfate (SLS) may be characterized by bioengineering measurements, such as skin colour reflectance, transepidermal water loss (TEWL) or hydration. Short application times or low concentrations of the irritant usually do not modify the visual aspect of the skin, and the measurements described above are unchanged or only slightly altered. We were looking for a suitable method to measure cutaneous changes not detectable by usual bioengineering procedures. Therefore these measurements were compared to those of dynamic function testing of the stratum corneum, namely sorption-desorption and moisture accumulation tests. Different concentrations of SLS (0.1%, 0.5%, 2.5%), application times (15 min, 24 h) and times of testing (1 h, 24 h after patch removal) were investigated on the ventral forearm of human subjects. When SLS was applied for a short period (15 min), 1 h after patch removal skin colour, TEWL and hydration were not modified, while increases in hygroscopicity, water-holding capacity and water accumulation were detected depending on the applied concentration. Increase of hygroscopicity was closely correlated with the alteration of epidermal barrier function (TEWL). We demonstrated that sorption-desorption and moisture accumulation tests performed on SLS-treated areas for a short period, without visible modifications, could evaluate changes of the stratum corneum properties. We consider these tests as useful complementary methods to skin colour, TEWL and hydration measurements, particularly in the detection of subclinical skin injuries.

Adult↗

Education and professional training of biomedical engineers in West Germany.

The health service and educational systems, together with industry and research centres, are the primary institutions involved in the development of the bio-engineering profession in West Germany. Since industry and research institutions in West Germany are similar in structure to those in other countries, for the purposes of international comparison only the health service and educational systems are described. The questions "how many bioengineers are needed?" and "how many should be trained?", were the motivation for a professional field analysis commissioned by the German Society for Biomedical Engineering. This commission found a need for about seven thousand bioengineers and biotechnicians in West Germany. It is shown, however, that there are actually very few positions open, and some measures to create more positions are discussed.

Biomedical Engineering↗

Foot loading in amputee stance.

A survey has been carried out to establish information on foot loading in amputee stance. The parameters measured are percentage body weight and the positions of the centres of pressure under each foot. The data was collected in a clinical environment by the use of a Double Video Forceplate (DVF), a tool developed at the Bioengineering Centre. The objective of the survey is to provide background information for the use of the DVF in static alignment of lower-limb prostheses. Results are presented from a number of patients attending the Roehampton Walking Training School, and for a small group of patients attending the Bioengineering Centre for delivery of an experimental below-knee prosthesis. Scattergrams and averaged results provide normative data which can assist in interpretation of DVF displays during individual alignment.

Adolescent↗

Re-Engineering the liver with natural biomaterials.

The extensive regenerative capacity of hepatocytes and the key roles of the liver in metabolic processes have generated interest in the liver as an appropriate target for cell and gene therapy. If cells were considered as natural biomaterials, then liver cell transplantation would fall within the general field of bioengineering. While unmodified hepatocytes engraft in the liver and ectopic sites, biological modifications and optimization of bioengineered systems would facilitate engraftment and survival of transplanted cells, especially in ectopic locations. Acute liver failure, chronic liver disease and metabolic deficiency states are among the conditions that can potentially be treated by cell transplantation. In acute liver failure, cell transplantation into the liver, along with the creation of an extrahepatic reservoir of cells might be required because engraftment and proliferation of transplanted cells in the liver needs time. In other situations, gradual liver repopulation alone might well be effective without additional manipulations.

Animals↗

Effective use of physics services in the NHS.

The work of medical physics departments in the national health service encompasses physics, electronic and mechanical engineering, computing, mathematics, biophysics and bioengineering. In some cases, there are separate bioengineering departments, but for the purpose of this article, no distinction is made.

Biomedical Engineering↗

Raising the social yield of research: challenge facing biotechnology.

The biological revolution is the latest in a series of scientific revolutions that have ushered in a new era in physics, chemistry, industry, and composite materials. The latest instruments of life - bioengineering for and by the living - challenge mankind with a number of fundamental questions, while offering an unprecedented series of opportunities. Alternative biotechnologies, biological agriculture for the environment, genomics applied to preventive medicine, genetic engineering are just a few of the benefits mankind may reap from bioengineering. Modern society demands more knowledge, and it is up to public authorities to invest in outreach programs to make public the latest scientific activities and findings. In the case of biotechnologies, it is particularly true that the product of research is not complete until its benefits are returned to society.

Animals↗

Industry and government perspective in influenza control.

We have had recent reminders of the threats posed by naturally occurring and bioengineered pandemic respiratory infections. It is estimated that if a pandemic infection were to arise anywhere in the world, such an infection would become widespread within 3 months and would have its maximum effect within 6 months. At present, the fastest that a vaccine effective against a new combination of antigens can be developed, purified, and produced is 9-12 months, not counting time for mass production. The current rate at which the production of influenza vaccines can be accelerated is limited by the fact that production is carried out in eggs. Therefore, there is urgent need for cell-based vaccine technologies. These are under way in several centers, yet attainment of a safe product remains several years away. Furthermore, there is need for public and private investment in manufacturing surge capacity and/or dedicated National Institutes of Health facilities to enable accelerated production. We must support efforts to shorten development time by developing and approving subunit antigens and immunogens that anticipate the most virulent viral mutations. Surveillance sites and their electronic interconnections must be expanded. Another component still lacking is funding for laboratories with high throughput screening and strong informatics capabilities to enable the fingerprinting and cataloguing of all known specimens of influenza and other pathogenic organisms for rapid identification of emerging or bioengineered pathogens. In all these efforts, we look to the federal government and to the biomedical research community in both public and private sectors.

Bioterrorism↗

Potential allergenicity of novel proteins in murine models.

Bioengineered crops represent an important advancement for farmers who want to avoid losses caused by insect infestations or adverse environmental conditions. However, the use of modern biotechnology has raised questions regarding the safety of bioengineered foods because of the potential allergenicity of proteins expressed by the newly introduced genes. Standard approaches for safety assessment of these foods are still evolving. Animal models have been suggested as a tool that could help evaluate the potential allergenicity of such compounds. Several investigators are developing animal models to evaluate novel proteins, but none of these have yet been validated. This article reviews the published murine models, rat and mouse in particular, and the different methods used to evaluate parameters related to allergy. It also addresses the factors involved in the development of a model. Finally, it raises some questions that should be considered by the international community so that financial and intellectual efforts can be addressed in a unified manner.

Adjuvants, Immunologic↗

Optimizing skin protection with semipermeable gloves.

BACKGROUND: Occlusion due to gloves is one important cause of glove irritation. Macerated softened skin gives poor protection against microbes and chemical injuries. The introduction of a breathable protective glove material would represent a significant step toward improved prevention of occupational skin disease. OBJECTIVE: Performance levels of semipermeable and occlusive gloves were examined under conditions typical of the hairdressing profession. In two studies, tests comparing breathable semipermeable gloves to single-use gloves made of occlusive materials were conducted. METHODS: In an initial study, a user survey was carried out in conjunction with bioengineering examinations. Values at baseline and values after gloves were worn were recorded by measuring transepidermal water loss (TEWL), skin humidity (SH), and skin surface hydrogen ion concentration (pH) in 20 healthy volunteers. In a second study, the gloves were tested for penetrability and permeability with three chemical compounds typically used in the hairdressing profession. RESULTS: Bioengineering examination objectively confirmed users' reports of reduced hand perspiration when semipermeable gloves were worn. The TEWL, SH, and skin surface pH values remained largely stable after 20 minutes of wearing semipermeable gloves, in contrast to the reactions observed with gloves of occlusive materials. Permeability tests indicated that the semipermeable material is effective, with some restrictions. Air leakage testing revealed that all 50 gloves tested were not airtight. CONCLUSION: Following the optimization of manufacturing methods, additional tests of the penetrability of semipermeable gloves will be necessary.

Adult↗

Facial trauma and 3-D reconstructive imaging: insufficiencies and correctives.

PURPOSE: To address the clinical relevance of and optimal technique for 3-D CT imaging of facial trauma. METHODS: Bioengineered cadaveric models were developed to enhance the concepts of LeFort. Diverse CT imaging techniques were applied to obtain optimal data sets for processing on various 3-D workstations. The fidelity of the 3-D reconstructions was determined by comparison with photographs of the cadaveric models. Optimized 3-D images were then used in conjunction with the initial 2-D data sets to assess whether additional accuracy was contributed by the 3-D images in the evaluation of modeled facial fractures. RESULTS: Image definition was heavily dependent upon the specific 3-D reconstruction algorithm and the processor utilized. Orbital fractures were best imaged when 1- to 1.5-mm coronal sections were processed on an advanced 3-D workstation. The 3-D CT images resulted in additional accuracy in the 2-D CT evaluation of facial fractures in 29% of trials. CONCLUSIONS: We believe that bioengineered models of facial trauma--matched with appropriate CT scanning parameters--facilitate graphically reliable 3-D reconstructive imaging. 3-D reconstructions can improve accuracy in the 2-D CT evaluation of facial trauma.

Algorithms↗