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Enhanced visualization of microbial biofilms by staining and environmental scanning electron microscopy.

Bacterial biofilms, i.e. surface-associated cells covered in hydrated extracellular polymeric substances (EPS), are often studied with high-resolution electron microscopy (EM). However, conventional desiccation and high vacuum EM protocols collapse EPS matrices which, in turn, deform biofilm appearances. Alternatively, wet-mode environmental scanning electron microscopy (ESEM) is performed under a moderate vacuum and without biofilm drying. If completely untreated, however, EPS is not electron dense and thus is not resolved well in ESEM. Therefore, this study was towards adapting several conventional SEM staining protocols for improved resolution of biofilms and EPS using ESEM. Three different biofilm types were used: 1) Pseudomonas aeruginosa unsaturated biofilms cultured on membranes, 2) P. aeruginosa cultured in moist sand, and 3) mixed community biofilms cultured on substrates in an estuary. Working with the first specimen type, a staining protocol using ruthenium red, glutaraldehyde, osmium tetroxide and lysine was optimized for best topographic resolution. A quantitative image analysis tool that maps relief, newly adopted here for studying biofilms, was used to compare micrographs. When the optimized staining and ESEM protocols were applied to moist sand cultures and aquatic biofilms, the smoothening effect that bacterial biofilms have on rough sand, and the roughening that aquatic biofilms impart on initially smooth coupons, were each quantifiable. This study thus provides transferable staining and ESEM imaging protocols suitable for a wide range of biofilms, plus a novel tool for quantifying biofilm image data.

Bacteriological Techniques↗

Optimization of murine CD8+ cytotoxic T-lymphocyte responses to pseudorabies virus.

The aim of this work was to optimize the procedures used to elicit a cellular immune response to pseudorabies virus (PrV) in mice, using various immunization schedules and routes. An Eu-labeling-based cytotoxic T-lymphocyte (CTL) test was developed to measure the response. This necessitated optimization of numerous steps. In suspension, Eu labeling required high concentrations of dextran-sulfate (DXS) and Eu with a 30-min labeling time at room temperature. For anchored cells, the labeling time was 1 to 48 h, and the labeling efficiency depended strongly on the Eu concentration, but only marginally on the DXS concentration. In vivo and in vitro stimulation protocols were also optimized for the CTL test. For in vitro stimulation, spleen cells were cultured in T-25 flasks at a multiplicity of infection (m.o.i.) of 2. The CTL test was validated by specific depletion of CD8+ CTL, FACS analysis, and by comparing Eu and 51 Cr labeling. Then groups of mice were vaccinated once or twice by various routes (intraperitoneal (i.p.), intravenous (i.v.), subcutaneous (s.c.) and in the rear footpads (FP)) and according to different time schedules. CTL activity was detected only in boosted animals immunized FP, i.p. or i.v. That the cellular immune response contributes to protection was further suggested by the observation that i.p. immunization conferred better protection against challenge than s.c. immunization.

3T3 Cells↗

[Molecular pathologic detection of mycobacteria].

In recent years, significant advances in the diagnosis of mycobacterial infections have been made by the introduction of direct pathogen detection methods. These techniques are usually based on the polymerase chain reaction (PCR) or on a transcription-mediated amplification (TMA) process. The majority of the protocols have been optimized for the detection of mycobacterial nucleic acids in fresh fluid or fresh tissue specimen. Unfortunately pathologists are frequently confronted with the problem that tissues with histologically suspicious lesions have been entirely fixed in formalin. As a result of this routine fixation, DNA and RNA are heavily degraded and the usually high sensitivity of the amplification techniques is greatly impaired. Consequently, only PCR protocols designed for small amplification targets are still suitable for an efficient detection of microbial DNA in formalin-fixed and paraffin-embedded tissues. We therefore adapted PCR assays with amplification products < 200 bp for the detection of M. tuberculosis-complex DNA (targets: IS6110 and 65 kDa-antigen gene) in routine biopsies. Although the sensitivities of the two assays varied significantly with the degree of DNA degradation, we were able to detect M. tuberculosis-complex specific DNA in about 25% of the tissues with a granulomatous inflammation and negative Ziehl-Neelson stain. Recently, we have added a third PCR-assay, which in combination with direct sequencing also allows us to detect DNA from M. leprae and several atypical mycobacteria species. PCR-analysis has significantly improved the diagnosis of mycobacterial infections by supplementing conventional histological examination of formalin-fixed and paraffin-embedded tissues.

DNA, Bacterial↗

Serial follow-up after optimized ultrasound-guided deployment of Palmaz-Schatz stents. In-stent neointimal proliferation without significant reference segment response.

BACKGROUND: The effects of ultrasound-guided high-pressure stenting on late stent and reference segment dimensions are unknown. In this study, we report about angiographic and ultrasound measurements to assess the amount and distribution of neointimal ingrowth within the stent and the changes of plaque burden and dimensions within the reference segments. METHODS AND RESULTS: Sixty-eight consecutive patients with 72 lesions received single or multiple Palmaz-Schatz coronary stents with a standardized protocol for stent optimization under ultrasound guidance. The residual angiographic diameter stenosis was 3 +/- 12% (reference diameter, 3.16 +/- 0.61 mm). At follow-up 4.8 +/- 2.5 months later, angiography revealed a diameter stenosis of 27 +/- 21% with a restenosis rate of 15.3% (confidence interval: 7.8% to 25.6%). Lumen renarrowing within the stent was exclusively due to neointimal ingrowth; no stent compression was observed. The neointima covered 20 +/- 20% of the stent area and was more pronounced in the midportion of the stent. Volumetric assessment performed in 26 patients resulted in 13 +/- 14% or 65 +/- 28% of the stent volume occupied by neointimal ingrowth in patients without or with restenosis, respectively. Vessel remodeling had an impact on lumen dimensions only at reference sites but not within the stent. Plaque burden of 46 +/- 11% and 48 +/- 11% at the proximal and distal reference sites, respectively, did not show a relevant progression during the follow-up. CONCLUSIONS: Serial ultrasound analyses did not show any evidence of stent compression or relevant vessel remodeling. Restenosis was solely due to neointimal ingrowth. Despite a considerable plaque burden within the reference segments, there was no relevant progression of the disease adjacent to the stent.

Adult↗

Ultrasound accelerates functional recovery after peripheral nerve damage.

OBJECTIVE: Axonal injury in the peripheral nervous system is common, and often it is associated with severe long-term personal and societal costs. The objective of this study is to use an animal model to demonstrate that transcutaneous ultrasound can accelerate recovery from an axonotmetic injury. METHODS: The sciatic nerve of adult male Lewis rats was crushed in the right midthigh to cause complete distal degeneration of axons yet maintain continuity of the nerve. Beginning 3 days after surgery, various transcutaneous ultrasound treatments or sham treatments were applied 3 days per week for 30 days to the crush site of rats that were randomly assigned to two groups. In the preliminary experiments, there were three animals in each ultrasound group and two control animals. In the final experiment, there were 22 animals in the ultrasound group and 20 animals in the control group. Recovery was assessed by use of a toe spread assay to quantify a return to normal foot function in the injured leg. Equipment included a hand-held transducer that emitted continuous-wave ultrasound. The most successful ultrasound protocol had a spatial peak, time-averaged intensity of 0.25 W/cm2 operated at 2.25 MHz for 1 minute per application. RESULTS: Rats subjected to the most successful ultrasound protocol showed a statistically significant acceleration of foot function recovery starting 14 days after injury versus 18 days for the control group. Full recovery by the ultrasound group occurred before full recovery by the control group. CONCLUSION: Transcutaneous ultrasound applied to an animal model of axonotmetic injury accelerated recovery. Future studies should focus on identification of the mechanism(s) by which ultrasound creates this effect, as a prelude to optimization of the protocol, demonstration of its safety, and its eventual application to humans.

Animals↗

Immunohistochemical detection of EGFR in paraffin-embedded tumor tissues: variation in staining intensity due to choice of fixative and storage time of tissue sections.

The epidermal growth factor receptor (EGFR) is highly expressed in a variety of solid malignant tumors and its expression has been correlated with disease progression and poor survival. With the advent of targeted therapies, especially IMC-C225 (Cetuximab), a monoclonal antibody (MAb) directed against the EGFR, there is an increasing interest in immunohistochemistry (IHC)-based EGFR screening methods using paraffin-embedded tumor specimens to select cancer patients eligible for treatment with Cetuximab. With the EGFRpharmDX kit, a complete assay for demonstration of EGFR is now available. Because no information about the preservation of the EGFR under various conditions of fixation is available, we performed a prospective study on a panel of commonly used fixatives to determine optimal tissue preservation protocols. The stability of the epitope on cut tissue sections stored for a period up to 24 month was also tested using material originating from patients with head and neck cancer, non-small-cell lung carcinomas, and colorectal adenocarcinomas. Depending on the fixative used and the time of storage of cut tissue sections, a variation in the determined level of EGFR expression was demonstrated compared with the most optimal fixation procedure.

Adenocarcinoma↗

Separation of recombinant human protein C from transgenic animal milk using immobilized metal affinity chromatography.

Protein C is an important serine protease due to its ability to proteolytically cleave activated Factors V and VIII. Excess coagulation and blood agglutination can lead to plugged capillaries, thereby reducing oxygen transport to interstitial tissues. To treat patients with hereditary and acquired protein C deficiency would require a greater amount of Protein C than that available from human plasma. However, the potential demand for this protein could be met by the production of human protein C from transgenic animal mammary glands. Thus, research into inexpensive, efficient methods to purify proteins from transgenic animal milk will be a critical area of study for the large scale production of protein C. Immobilized metal affinity chromatography (IMAC) is a novel method for the purification of protein C. A proposed method of purification is to take advantage of protein C's strong metal ion binding characteristics with IMAC to assist in the separation from transgenic animal milk. The separation procedure is benchmarked against current systems in use by the American Red Cross for purification of Protein C from transgenic porcine milk. Common problems in developing separation schemes for new therapeutics are the initial availability of the product (protein), and time-to-market concerns. Extensive experimental tests for scaleable purification schemes are often cost and time prohibitive. In order to optimize an IMAC protocol with minimal waste of time and resources, total quality management tools have been adopted. Initial experiments were designed to choose buffer conditions, eluents, immobilized valence metals, and flow rates using Taguchi experimental design, which is a total quality management (TQM) tool. One of the values of Taguchi methods lies in the use of Latin orthogonal sets. Through the use of the orthogonal sets, the total number of experiments may be reduced, shortening the focus time on optimal conditions.

Animals↗

Electrofusion generates diverse DC-tumour cell hybrids for cancer immunotherapy.

BACKGROUND: Hybrid cells generated from dendritic cells (DC) and tumour cells provide tumour-associated antigens (TAA) in a polyvalent mode. The present study was designed to investigate the hybrid cell generation by dendritic cells and different tumour cell lines to establish an electrofusion protocol with an optimal fusion setting. MATERIALS AND METHODS: Hybrid cells from mature DC and tumour cells were generated by electrofusion. Fusion efficiency was determined by flow cytometry, as well as by light and fluorescence microscopy analyses. RESULTS: The gradual electrofusion process constituted different human dendritic cell tumour cell hybrids of high diversity depending on electrical and non-electrical parameters. Factors influencing fusion frequency were determined by specific cell staining with mAbs, FACS analysis and trypan blue dye exclusion. CONCLUSION: Increased fusion efficiency was associated with reduced viability. The protocol presented in this work might be helpful for future fusion studies as a prerequisite for comparable in vitro and human vaccination trials.

Antigens, Neoplasm↗

Optimal ("stent-like") acute angiographic results pursuable by traditional PTCA.

OBJECTIVES: This study was undertaken: 1) to assess the efficacy of traditional PTCA in affording "optimal" initial dilatation (OID) of coronary stenoses (as assessed by on-line quantitative angiography) defined as a post-procedure residual lumen narrowing < or = 20%; 2) to determine clinical and angiographic correlates of these types of successes. BACKGROUND: Recent reports have shown that acute angiographic results achieved by traditional PTCA, resembling those obtainable by elective stenting, carry low risks of restenosis. However, safety and the ability of conventional PTCA to consistently provide acute stent-like results are still practically unknown. PATIENTS AND METHODS: Using a "standardized" procedural protocol intended to optimize acute angiographic results, 878 consecutive non-selected patients, 750 men and 128 women aged 29-78 years (mean 60.5 yrs) underwent PTCA on 1054 lesions. Compliant balloons reaching nominal dimensions at 6 atm and predicted balloon-artery ratios of 0.92-1.05 (mean 1.02) were used. An inflation pressure of 5 atm was gradually and slowly applied initially (usually sufficient to reach the point of plaque fracture). Inflation times of 60 seconds and step-increases in inflation pressure of 1 atm were subsequently utilized, until a large lumen with smooth contours (the nearest to normal) or any wall damage were detected by angiographic tests performed at each step. Inflations were stopped when, even in the presence of sub-optimal dilatation, the inflation pressure of 14 atm was reached (which usually corresponded to an effective balloon/artery ratio < 1.15). RESULTS: Overall traditional primary successes were 830 (94.5%) for patients and 1001 (95%) for lesions. Major complications, without mortality, were 24 (2.7%). CABS was necessary in 17 patients (1.9%) while acute myocardial infarction occurred in 7 patients (0.8%). OID was obtained in 65.4% of the treated lesions: 77.9% in type A, 73.9% in B1, 54.0% in B2 and 32.5% in C lesion subgroups of the AHA/ACC classification scheme. Multivariate analysis showed that no clinical variables significantly influenced OID. Lesion-related variables such as chronic occlusion, diffuse disease, length > 10 mm, heavily calcified and markedly angulated lesions emerged as (negative) determinants of success. CONCLUSIONS: Acute stent-like angiographic results are obtainable by conventional PTCA in a consistent percentage of eligible coronary lesions. Following a safe modality of balloon-stress application in performing angioplasty, probability of safely achieving OID of coronary stenoses is related to specific angiographic lesion characteristics.

Adult↗

mRNA extraction and reverse transcription-PCR protocol for detection of nifH gene expression by Azotobacter vinelandii in soil.

The study of free-living nitrogen-fixing organisms in bulk soil is hampered by the great diversity of soil microbial communities and the difficulty of relating nitrogen fixation activities to individual members of the diazotroph populations. We developed a molecular method that allows analysis of nifH mRNA expression in soil in parallel with determinations of nitrogen-fixing activity and bacterial growth. In this study, Azotobacter vinelandii growing in sterile soil and liquid culture served as a model system for nifH expression, in which sucrose served as the carbon source and provided nitrogen-limited conditions, while amendments of NH(4)NO(3) were used to suppress nitrogen fixation. Soil RNA extraction was performed with a new optimized direct extraction protocol that yielded nondegraded total RNA. The RNA extracts were of high purity, free of DNA contamination, and allowed highly sensitive and specific detection of nifH mRNA by a reverse transcription-PCR. The level of nifH gene expression was estimated by PCR amplification of reverse-transcribed nifH mRNA fragments with A. vinelandii-specific nifH primers. This new approach revealed that nifH gene expression was positively correlated with bulk nitrogen fixation activity in soil (r(2) = 0.72) and in liquid culture (r(2) = 0.84) and therefore is a powerful tool for studying specific regulation of gene expression directly in the soil environment.

Azotobacter vinelandii↗

Specific iNOS-targeted antisense knockdown in endothelial cells.

The inhibition of inducible nitric oxide synthase (iNOS) expression via antisense oligonucleotides (AS-ODN) may represent a highly specific tool. Endothelial cells (EC) represent prime candidate cells for in vivo application, and we therefore aimed at optimizing this technique for effectiveness and specificity in primary nontransformed rat EC. EC or L929 fibroblasts were incubated with iNOS-specific ODN optimizing all experimental steps. We find that ODN uptake, as analyzed by fluorescence microscopy and labeled ODN, was absolutely dependent on vehicle presence, and among the vehicles tested, Lipofectin displayed negligible toxicity and good uptake. In addition, omission of serum was also essential, a factor that might limit its use in vivo. Moreover, intranuclear accumulation of AS-ODN appeared crucial for successive inhibition. The impact of ODN on iNOS mRNA, protein, and enzyme activity was specific and resulted in >95% inhibition of protein formation. In conclusion, in this article we provide a protocol for an optimized AS-mediated knockdown, representing a specific and efficient instrument for blocking of iNOS formation and allowing for studying the impact of iNOS expression on endothelial function. We also expose application problems of this technique when working in inflammatory conditions.

Animals↗

A xeno-free protocol for rapid differentiation of human iPSC-derived microglia from the KOLF2.1J reference line.

We present a detailed, xeno-free protocol for the rapid differentiation of human induced pluripotent stem cells (hiPSCs) into microglia using the well-characterized KOLF2.1J reference line. This system employs doxycycline-inducible expression of six transcription factors (6-TF), stably integrated into the CLYBL safe harbor locus, to drive uniform microglial differentiation within two weeks. Adapted from Dr&#xe4;ger et al. (1), our protocol includes key optimizations for KOLF2.1J, including culture on Laminin-521 to support xeno-free conditions. The resulting i-Microglia exhibit hallmark features of mature microglia, including expression of P2RY12, loss of the pluripotency marker SSEA4, phagocytic activity, and upregulation of immune markers (e.g., CD80, CD83) upon LPS stimulation. We also demonstrate compatibility with co-culture systems using iPSC-derived neurons. Additionally, we describe a modification of the line to include a constitutive mCherry reporter integrated into the SH4-2 safe harbor locus, enabling fluorescent tracking of microglia in mixed cultures or in vivo. This protocol provides a reproducible and scalable platform for generating functional human microglia from a widely used hiPSC line, supporting applications in disease modeling, neuroinflammation research, and therapeutic screening.

Journal Article↗

Detection of the mutated K-Ras biomarker in colorectal carcinoma.

This study describes an advantageous, effective protocol for detecting K-Ras mutations in human stool as a prototype screen for colorectal carcinoma (CRC), the third most common malignancy in the United States. A reliable screening test that detects early lesions would contribute to a decrease in mortality. Currently, the only noninvasive screen for CRC is the hemeoccult, test which has a high false-positive rate. Previously, several investigators have identified genetic biomarkers for CRC in stool DNA. The K-Ras oncogene, mutated in 46-50% of CRC tumors, serves as one molecular marker by which stool samples may be evaluated for early detection of adenocarcinomas. DNA was isolated from stool samples by a new method we specifically designed for extracting high-quality DNA using tetradecyltrimethylammonium oxalate [Catrimox-14, Iowa Biotechnology Corp., (currently Qiagen)]. This protocol produces an optimal yield of high-purity DNA, suitable for genotyping. Detection of the human gene in stool samples was enhanced by hybrid selection of the K-Ras sequences, polymerase chain reaction, and single-strand conformation polymorphism. Tumor tissue and preoperative stool samples for eight patients were K-Ras genotyped and compared; stool samples from two asymptomatic, healthy patients were also evaluated in a double-blind format. In seven of eight samples (87%), the genotypes of the stool and colon tissue DNA were the same. Both healthy patients showed wild-type K-Ras. This protocol shows promise for the development of an efficient and accurate screen for CRC.

Biomarkers, Tumor↗

[20 years in vitro fertilization: what follows?].

During the last two decades in-vitro fertilization (IVF) developed on a worldwide scale by increasing numbers of treated couples and by extending the medical indications. Existing treatment protocols have been optimized to such an extent that pregnancy rates over 30% are reached in many treatment units. Further improvements of the pregnancy rate may be achieved with assisted hatching, which is now the subject of a large European multicentric prospective study based on the University of Lausanne. On the other hand, the occurrence of multiple pregnancies, which is the main complication of IVF, may be limited by reducing the number of embryos replaced. Further improvements of treatment efficacy may result from the introduction of new medications, such as recombinant FSH or GnRH-antagonists, allowing for the adaptation of the treatment protocol used to the individual needs of each patient. A treatment protocol combining a GnRH-antagonist and gonadotropins may be particularly valuable in young patients for the purpose of avoiding the ovarian hyperstimulation syndrome. The major disadvantage of these novel medications consists of their increased costs. Therefore, a new treatment strategy is currently developed aiming at shortening the ovarian stimulation in combination of a prolongation of the laboratory phase. The in-vitro maturation of immature oocytes aspirated from small follicles previously primed with recombinant FSH has been shown to be a feasible alternative to the present treatment modalities. Cryopreservation of unfertilized oocytes together with in-vitro maturation may prove to be helpful for women prior to chemotherapy or radiation because of malignant diseases or for patients suffering from incipient ovarian failure. At present, there seems to be no alternative to assisted reproduction although the dominance of this technique may impede the development of more cause-related treatment strategies in infertility.

Embryo Transfer↗

HLA-G, -E, -F preworkshop: tools and protocols for analysis of non-classical class I genes transcription and protein expression.

Non-classical MHC class I HLA-E, -F, and -G molecules differ from classical class I histocompatibility antigens by specific patterns of transcription, protein expression, and immunological functions. Restriction of the expression pattern of these non-classical antigens may play a key role in modulation of immune responses during pregnancy and diseases but remains to be additionally defined. A specific component of the second International Conference on HLA-G and the 13th HLA-G Histocompatibility Workshop will be dedicated to the analysis of transcription and expression of non-classical class I genes in normal and pathological tissues. In a first step, referred to as the preworkshop, we here report the analysis and conclusions of a working group which was constituted to gather and validate optimal reagents and protocols allowing RT-PCR analysis of HLA-E, -F, -G transcript levels and flow cytometry and immunochemistry analysis of HLA-G expression in cells and tissues. As a result of this work, use of specific primers and probes detecting alternative transcripts of HLA-E, -F, and G have been validated in transfected cells expressing differential pattern of HLA class I antigens. Analysis of the specificity and affinity of collected antibodies has allowed definition of reagents to be proposed for immunochemistry and flow cytometry analysis of HLA-G expression in normal and pathological tissues during the workshop. This work has allowed constitution of an extended workshop group which is now initiating analysis of non-classical class I transcription and expression in various cells and tissues, a collective contribution that will additionally refine our view of the expression of these antigens in normal and pathological situations.

Antibodies, Monoclonal↗

Optimisation of one-tube PCR-ELISA to detect femtogram amounts of genomic DNA.

A simple, high-throughput, low-cost polymerase chain reaction-enzyme linked immunosorbent assay (PCR-ELISA) protocol that detects the presence of 4 fg of DNA from four bacterial fish pathogens Yersinia ruckeri, Tenacibaculum maritimum (formerly Flexibacter maritimus), Lactococcus garvieae and Aeromonas salmonicida was developed. DNA amplification was undertaken in a biphasic system with free and bound PCR that are achieved in the one NucleoLink tube. Solid-phase amplicons were detected using biotin labelled hybridization probes and visualised colourimetrically with streptavidin-alkaline phosphatase and p-nitrophenylphosphate as substrate. PCR and hybridization took less than 8 h to perform with maximum signal output for femtogram amounts of template DNA achieved within 24 h. Implementation and optimization of the protocol is discussed.

Animals↗

Ex vivo analysis of tumor antigen specific CD8+ T cell responses using MHC/peptide tetramers in cancer patients.

The development of soluble tetrameric MHC/peptide complexes has opened the possibility to directly identify and monitor antigen-specific CD8+ T cells in different clinical situations. This represents a technological breakthrough for the field of cell-mediated immunity. For example, the direct identification and enumeration of tumor-specific CD8+ T cells at the tumor site and in blood has recently provided compelling evidence that strong anti-tumoral responses naturally occur in some cancer patients. Moreover, the use of tetramers plays an essential role in the design of vaccination protocols aimed at inducing a strong and protective CD8+ T cell-mediated anti-tumoral response in cancer patients. The monitoring of antigen-specific T cell responses elicited by various peptide-based vaccines tested in phase I clinical trials clearly indicates that tumor-specific CD8+ T cells can be activated effectively at least in some cancer patients. Thus, multiparameter monitoring of antigen-specific T cell responses that combines ex vivo tetramer staining with various phenotyping and functional assays provides a novel approach to assess the functional potential of tumor-specific T lymphocytes and may also facilitate the optimization of vaccination protocols.

Animals↗

An improved protocol for quantification of freshwater Actinobacteria by fluorescence in situ hybridization.

We tested a previously described protocol for fluorescence in situ hybridization of marine bacterioplankton with horseradish peroxidase-labeled rRNA-targeted oligonucleotide probes and catalyzed reporter deposition (CARD-FISH) in plankton samples from different lakes. The fraction of Bacteria detected by CARD-FISH was significantly lower than after FISH with fluorescently monolabeled probes. In particular, the abundances of aquatic Actinobacteria were significantly underestimated. We thus developed a combined fixation and permeabilization protocol for CARD-FISH of freshwater samples. Enzymatic pretreatment of fixed cells was optimized for the controlled digestion of gram-positive cell walls without causing overall cell loss. Incubations with high concentrations of lysozyme (10 mg ml(-1)) followed by achromopeptidase (60 U ml(-1)) successfully permeabilized cell walls of Actinobacteria for subsequent CARD-FISH both in enrichment cultures and environmental samples. Between 72 and >99% (mean, 86%) of all Bacteria could be visualized with the improved assay in surface waters of four lakes. For freshwater samples, our method is thus superior to the CARD-FISH protocol for marine Bacteria (mean, 55%) and to FISH with directly fluorochrome labeled probes (mean, 67%). Actinobacterial abundances in the studied systems, as detected by the optimized protocol, ranged from 32 to >55% (mean, 45%). Our findings confirm that members of this lineage are among the numerically most important Bacteria of freshwater picoplankton.

Actinobacteria↗