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Biomedical subjects

H J Glander

Publications and source records attributed to H J Glander.

At least 19 recordsLinked to original sources

Men born in the region of Leipzig (Saxony, Germany) between 1960 and 1970 showed a significantly decreased sperm count (examination of 3432 individuals).

The routine spermiogram parameters of 3432 patients born between 1952 and 1971 in the region of Leipzig were determined between January 1975 and March 2000. The patient group aged 24-35 years was characterized by low mobility and relocation living in the main centre of chemical industry with enormous environmental pollution in Eastern Germany up to 1990. Sperm concentrations and total sperm counts were found to be significantly reduced in men born between 1960 and 1970 compared with men born before this period (52.38 +/- 1.21 versus 70.79 +/- 2.15 millions ml(-1) 139.51 +/- 3.66 versus 176.31 +/- 6.04 millions; mean +/- SEM; P < 0.01; 2410 versus 1022 patients) independently of the year of semen examination.

Adult↗

Enrichment of non-apoptotic human spermatozoa after cryopreservation by immunomagnetic cell sorting.

Cryopreservation increases the rate of apoptotic spermatozoa with decreased capability to fertilise oocytes. In order to optimise the fertilisation rates, especially in assisted reproduction the use of apoptotic sperms should be avoided. Early events of apoptosis in cryopreserved spermatozoa are not detectable by conventional methods. However, the surface of apoptotic spermatozoa is characterised by externalisation of phosphatidylserine (PS), which has a high affinity to Annexin V. Therefore, colloid paramagnetic Annexin-V-conjugated microbeads (AN-MB) were tested for their ability to eliminate apoptotic spermatozoa from a total of 40 fresh and in TEST yolk buffer cryopreserved semen samples which were provided by 15 healthy volunteers. By passing through a magnetic field (MiniMACS, Miltenyi Biotec) the sperm suspensions were divided into 2 sperm fractions depending on bound magnetic Annexin V-microbeads (AN-MB) to spermatozoa. As additional markers of apoptosis CD95 (Fas, APO-1) on the sperm surface and activated caspases in the cytosol were detected in both fractions. Supplementary investigations comprised eosin-supravital staining and computer assisted sperm motion analysis. The separation was supervised by flow cytometric analysis of spermatozoa labelled with FITC-conjugated anti Annexin V-antibodies. Analyses of the magnetic inactive sperm fraction (AN-MB-negative) showed CD95 on 0.6 +/- 0.3% (X +/- SEM) of spermatozoa and only 3.2 +/- 0.5% were stainable with eosin, whereas, 40.6 +/- 6.7% of the remaining cells in the column appeared to be CD95 positive and 99.8 +/- 0.1% stainable with eosin after cryopreservation. Indeed the overall amount of CD95 positive spermatozoa did not significantly increase after cryopreservation (2.5 +/- 0.5% vs. 4.3 +/- 1.2%; p > 0.05). Activated caspases were found in 21.8 +/- 2.6% of the spermatozoa in fresh and in 47.7 +/- 5.8% of cryopreserved semen samples (p < 0.01). The separation procedure of the cryopreserved spermatozoa reduced significantly the quantity of those containing activated caspases to 9.3 +/- 2.2% within the AN-MB-negative fraction. In contrast 89.1 +/- 2.3% of AN-MB-positive sperms showed activation of these proteolytic enzymes. Flow cytometric analyses using FITC-conjugated anti Annexin V-antibodies for monitoring of AN-MB-binding to spermatozoa showed 5.2 +/- 1.0% labelled spermatozoa in the AN-MB negative fraction and 72.6 +/- 2.7% labelled spermatozoa in the AN-MB positive one. There was no significant influence of the separation column and the magnetic field on the sperm functions. The passage through the column led to a sperm loss of 0.8 +/- 1.2%. Conclusion: The binding of paramagnetic Annexin V-conjugated microbeads is an excellent method to eliminate spermatozoa at early apoptotic stages from cryopreserved semen samples. A deleterious influence of the separation column and the magnetic field on the spermatozoa was not observed.

Journal Article↗

Lipid analysis of human spermatozoa and seminal plasma by MALDI-TOF mass spectrometry and NMR spectroscopy - effects of freezing and thawing.

In the present study, the applicability of proton NMR spectroscopy and matrix-assisted laser desorption and ionization time-of-flight mass spectrometry (MALDI-TOF MS) to the analysis of the lipid composition of human spermatozoa and seminal fluids as well as changes after cryopreservation of human spermatozoa was investigated. Whereas NMR spectra primarily indicated a high content of double bonds within the spermatozoa but no marked differences upon cryopreservation, MS detected intense peaks which could be assigned to phosphatidylcholines containing one docosahexaenoic and one palmitic or stearic acid residue (m/z=806 and 834). In contrast, the seminal plasma contained more saturated fatty acids and especially more sphingomyelin (SM). A freezing/thawing cycle markedly influences the lipid composition of spermatozoa. There was a diminution of phosphatidylcholines (16:0, 22:6 and 18:0, 22:6) and SM (16:0) and the appearance of lysophosphatidylcholines (16:0 and 18:0) and ceramide (16:0). These data demonstrate the release or activation of both phospholipase A(2) and sphingomyelinase in human spermatozoa due to the freezing/thawing cycle. These results were finally confirmed by experiments on the action of phospholipases on lipids containing docosahexaenoic acid.

Freezing↗

Hidden effects of cryopreservation on quality of human spermatozoa.

The effects of cryopreservation on two characteristics of human spermatozoa were investigated: the early phases of disturbed plasma membrane function and the activity of enzymes in intact spermatozoa. The membrane function was detected by means of the calcium-dependent binding of fluorescein isothiocyanate (FITC)-conjugated Annexin V to sperm plasma membranes. Annexin V monitors the translocation of phosphatidylserine from the inner to the outer leaflet of the plasma membrane, which is one of the earliest features of membrane disintegration. For the second aim synthetic fluorogenic substrates for peptidases, proteinases, esterases, elastases and collagenases were applied. These substrates, CellProbe trade mark reagents consist of different peptide sequences, specific for the enzymes, and a fluorescein- or rhodamine 110-dye moiety. They enter the cells without previous membrane permeabilisation and exhibit fluorescence after cleavage depending on enzyme activity. The number of positive cells and the intensity of the fluorescence were determined by flow cytometric analysis comparing fresh spermatozoa with cryopreserved ones. Thirty-five semen samples collected from 35 donors were cryopreserved using the freezing medium TEST yolk buffer. All specimens showed normal spermiogram parameters. Twenty-five of the samples were used for detection of Annexin V-FITC binding and 10 semen samples for investigations of the intracellular enzymes. The Annexin V-assay applied two fluorescent dyes (Annexin V, AN and propidium iodide, PI) which led to three groups of spermatozoa (a) viable spermatozoa (AN V-negative and PI-negative), (b) dead spermatozoa (AN V-positive and PI-positive) and (c) cells with impaired but integer plasma membrane (AN V-positive and PI-negative). The percentage of vital Annexin V-negative spermatozoa (x +/- SEM) decreased significantly (p < 0.001) from fresh spermatozoa (51.6 +/- 3.1) to cryopreserved spermatozoa (26.6 +/- 2.2%) and was associated with their motility (57.9 +/- 1.9% motile fresh spermatozoa vs. 22.6 +/- 3.9% motile sperm after cryopreservation). Of the spermatozoa 28.2% were Annexin V-positive before and 44.4% after cryostorage even though they did not bind to PI. Thus, vital spermatozoa showed a disturbed membrane function indicating viability before as well as after cryostorage. Moreover, after cryopreservation the spermatozoal fluorescence increased applying substrates for butyryl esterase (p < 0.05), prolyl-aminopeptidase (p < 0.001) and val-lys-(VK)-cathepsin (p < 0.001). In contrast, the activities of fluorescein diacetate (FDA)- and FDA/sodium fluoride (NAF)-esterase (p < 0.05), ala-ala-pro-val-(AAPV)-elastase (p < 0.001), gly-pro-leu-gly-pro-(GPLGP)-collagenase (p < 0.05) and gly-gly-leu-(GGL)-subtilisin (p < 0.001) decreased after cryopreservation. The substrates for arg-gly-glut-ser-(RGES)-elastase, gly-phenyl-gly-ala-(GFGA)-collagenase and threo-pro-(TP)-cathepsin were not cleaved before as well as after cryostorage. In addition to the known effects of sperm cryopreservation our results showed two further alterations of human ejaculated spermatozoa: (a) disturbed plasma membrane function, which is not detectable by supravital staining and (b) a changed pattern of intracellular enzyme activities.

Journal Article↗

Flow cytometric analysis of enzymes in live spermatozoa before and after cryostorage.

Synthetic fluorogenic substrates, like the CellProbe reagents, can determine enzymes in vital human spermatozoa. These substrates will enter the cells without previous cell permeabilization and exhibit fluorescence after cleavage depending on enzyme activity. They consist of different peptide sequences, specific for the enzymes, and a fluorescein- or rhodamine 110-dye moiety. The number of positive cells and the intensity of the fluorescence can be determined by flow cytometric analysis. We investigated several enzymes (peptidases, proteinases, esterases, elastases and collagenases) in intact spermatozoa before and after cryoprotection. Semen samples with normal spermiogram parameters were cryoprotected using the freezing medium TEST yolk buffer (TYB). Fresh spermatozoa showed a marked fluorescence after incubation with the synthetic substrates for the aminopeptidase M, butyryl esterase, fluorescein diacetate (FDA)-and FDA/sodium fluoride (NAF)-esterase, ala-ala-pro-val (AAPV)-elastase, gly pro-leu-gly pro-(GPLGP)-collagenase, gly gly leu-(GGL)-subtilisin as well as lys-ala-(LA)-dipeptidyl peptidase (DPP) II. After cryopreservation the spermatozoal fluorescence increased applying substrates for butyryl esterase (P<0.05), prolyl-aminopeptidase (P<0.001) and val-lys-(VK)-cathepsin (P<0.001) most probably due to elevated enzyme activities. The activities of FDA-esterase (P<0.05) and FDA/NAF-esterase (P<0.05), AAPV-elastase (P<0.01), GPLGP-collagenase (P<0.05) and GGL-subtilisin (P<0.001) decreased after cryopreservation. The substrates for arg-gly glut-ser-(RGES)-elastase, gly phenyl-gly ala-(GFGA)-collagenase and threo-pro-(TP)-cathepsin were not cleaved before as well as after cryostorage. The substrates for subtilisin an

Cryopreservation↗

Probability to retrieve testicular spermatozoa in azoospermic patients.

AIM: The degree of probability to retrieve spermatozoa from testicular tissue for intracytoplasmic sperm injection into oocytes is of interest for counselling of infertility patients. We investigated the relation of sperm retrieval to clinical data and histological pattern in testicular biopsies from azoospermic patients. METHODS: In 264 testicular biopsies from 142 azoospermic patients, the testicular tissue was shredded to separate the spermatozoa, histological semi-thin sections of which were then evaluated using Johnsen score. RESULTS: The retrieval of spermatozoa correlated significantly ( P < 0.001) with the testicular volume ( r = 0.49), the FSH concentration ( r = -0.66), the maximum score (r = 0.85) and the mean Johnsen score (r = 0.81). In the multivariate regression analysis the successful testicular sperm extraction showed the closest relationship to the maximum score. The testicular volume correlated significantly with the mean Johnsen score ( r = 0. 64, P < 0. 001), and the basal serum FSH concentration mainly with the maximum score ( r = - 0.77; P < 0.001). Patients with a history cryptorchidism showed a significantly lower Johnsen score compared to the patients who did not have any testicular disease in the past (3.7 +/- 2.4 vs. 5.9 +/- 2.5; P < 0. 01). CONCLUSION: In a limited range, the testicular volume and the FSH concentration in serum were related to the Johnsen score which correlated significantly with the sperm retrieval. The successful sperm retrieval can be expected in all azoospermic patients irrespective of the results of clinical examination. However, the probability of retrieval of spermatozoa decreased significantly in patients with a FSH level > 18 U/L, testicular volume < 5 mL, mean Johnsen score <5, and maximum Johnsen score <7.

Adult↗

Localisation of enzymes in live spermatozoa by CellProbe reagents (preliminary results).

As a new approach, various synthetic fluorogenic substrates, the CellProbe reagents, were applied to examine the topography of their cleavage in vital human spermatozoa. These substrates are able to enter the cells without requiring previous cell permeabilization and can produce a fluorescent dye after cleavage, depending on enzyme activity. Vital spermatozoa from samples with normal spermiogram parameters showed fluorescence in different areas and intensity after incubation with a variety of substrates for aminopeptidase A, peroxides, subtilisin, dipeptidylpeptidase IV (DPP IV), cathepsin D, glucosidase and glucuronidase, but not with the substrate for galactosidase. Fluorescence was mainly located in the acrosomal cap (substrates for DPP IV, subtilisin, cathepsin D, glucosidase and glucuronidase) in the middle piece and head (substrates for peroxides, glucosidase), in the sperm head (substrates for aminopeptidase A) and occasionally in the tail (substrate for glucosidase). The substrate for subtilisin may play a role in andrology, because subtilisin is a serine protease like acrosin. This substrate may possibly be used to determine the acrosin activity in vital spermatozoa. The CellProbe reagents for fluorescence cytoenzymology may serve advanced methods in both clinical andrology and spermiological research, presuming that the characteristics and qualities of the synthetic substrates are correct. Therefore, more extended studies will be necessary to determine their clinical utility and significance under physiological and pathological conditions.

Evaluation Studies as Topic↗

Binding of annexin V to plasma membranes of human spermatozoa: a rapid assay for detection of membrane changes after cryostorage.

When the cell membrane is disturbed, phospholipid phosphatidylserine (PS) is translocated from the inner to the outer leaflet of the plasma membrane. This is one of the earliest signs of apoptosis and can be monitored by the calcium-dependent binding of annexin V. Therefore, annexin V-binding, in conjunction with flow cytometry, was used to evaluate the integrity of the sperm plasma membrane after different cryostorage protocols: i.e. 10% (v/v) glycerol; sperm maintenance medium (MM); freezing medium TEST yolk buffer (TYB); or cryostorage without protection (cryoshock). Using a combination of two fluorescent dyes, annexin V and propidium iodide (PI), led to three groups of spermatozoa being identified: (i) viable spermatozoa (annexin V-negative and PI-negative); (ii) dead spermatozoa (annexin V-positive and PI-positive); and (iii) cells with impaired but integer plasma membrane (annexin V-positive and PI-negative). The percentage of vital annexin V-negative spermatozoa increased significantly (P < 0.05) from spermatozoa treated by cryoshock (15.0+/-1.2%) to spermatozoa cryopreserved by TYB (26.6+/-2.2%) via cryopreservation by 10% (v/v) glycerol (19.9+/-1.6%) and by MM (22.2 1.8%) and was associated with the percentage of motile spermatozoa (17.6+/-3.4% by glycerol; 19.6+/-3.7% by MM and 22.6+/-3.9% by TYB; P = 0.0001). Of the spermatozoa, 12-22% were annexin V-positive even though they did not bind to PI, indicating viability before as well as after cryostorage. The percentage of vital annexin V-positive spermatozoa was significantly correlated with different sperm motility parameters (velocity straight linear, r = 0.601, P = 0.018; percentage of linearly motile spermatozoa: r = 0.549, P = 0.034). We, therefore, concluded that annexin V-binding is more sensitive in detecting a deterioration of membrane functions than PI staining, and that a considerable percentage of spermatozoa might have dysfunctional plasma membranes besides dead or moribund cells. Of the cryopreservation protocols tested, TYB yielded the most viable spermatozoa. Therefore, we advocate the use of the annexin V-binding assay for the evaluation of the quality and integrity of spermatozoa.

Annexin A5↗

[Disorders of ejaculation].

Ejaculatory disorders include premature ejaculation (p. e.), deficient ejaculation (d. e.) and retrograde ejaculation (r. e.). On the basis of the history and simple investigations, the various disorders are relatively easy to differentiate. History taking should include information about the ability to ejaculate, including nocturnal emission and the ability to experience orgasm. Investigations mainly include the demonstration of sperm in the postmasturbation urine, analysis of the ejaculate, determination of the secretion markers of the adnexa and ultrasonographic examination of the genital organs. The treatment of choice in premature ejaculation is sexual therapeutic behavioral training, where necessary in combination with medication to delay ejaculation, e. g. diazepam or chlorodizepoxid. In the absence of underlying organic disease deficient ejaculation is treated with behavioral therapy or vibrator stimulation of the glans. Postoperative or post-traumatic disorders, however, often require transrectal electrojaculatory stimulation or sperm aspiration from vas deferens. There are three principles of management of retrograde ejaculation: 1. conversion of retrograde into antegrade ejaculation by drug therapy, 2. harvesting of sperm from postorgasm urine and 3. surgical treatment. Our own observations have shown that drug treatment of ejaculatory dysfunction is ineffective in patients with anorgasm or when postmasturbation urine contained no spermatozoa. Currently male infertility due to ejaculatory problems can be effectively treated, where necessary in combination with the new methods of assisted fertilisation, for which purpose, however, accurate identification of the ejaculation disorder presenting is required.

Diagnosis, Differential↗

Prostate-specific antigen triggers transformation of seminal alpha2-macroglobulin (alpha2-M) and its binding to alpha2-macroglobulin receptor/low-density lipoprotein receptor-related protein (alpha2-M-R/LRP) on human spermatozoa.

BACKGROUND: The aim of this study was to identify the proteolytic activity which triggers the transformation of human alpha2-macroglobulin (alpha2-M) in seminal fluid and its binding to its receptor. METHODS: Measurement of the concentrations of total and transformed alpha2-M in seminal fluid was accomplished by ELISA. Zymography of seminal plasma was performed in SDS-polyacrylamide gels containing casein as proteolytic substrate. Rate electrophoresis, SDS-PAGE, and Western blotting were applied to study the complex formation of prostate-specific antigen (PSA) with alpha-M. Ligand-binding analysis of sperm cells was performed using [125I] labeled proteins. Detection of receptor on sperm cells was achieved by immunofluorescence. RESULTS: The mean concentration of total alpha2-M in a random collection of seminal plasma was 4.6 microg/ml. On average, between 33-98% of the inhibitor was found to be transformed. Zymography of seminal plasma revealed a proteolytic activity which is associated with a 33-kDa protein identified as PSA. Its proteolytic activity could be inhibited by 0.2-M. Both purified PSA and seminal plasma were capable of transforming native alpha2-M. Binding of PSA to alpha2-M triggers the exposition of receptor binding sites in the inhibitor molecule, which causes binding of the complex to alpha2-M-R/LRP identified on spermatozoa. CONCLUSIONS: PSA, the main proteinase in seminal fluid, is responsible for the transformation of alpha2-M and for its binding to alpha2-M-R/LRP present on spermatozoa. The binding of alpha2-M-PSA complexes to the spermatozoa receptor may exert an impact on normal sperm-cell functions.

Binding Sites↗

[Modern fertilization techniques].

In Germany, some 17.2% of married couples are unintentionally childless. Of these, about one-third have a male factor infertility (with disordered spermatogenesis), which in part is unresponsive to drug treatment. In such cases, assisted reproductive techniques are giving childless couples new hope. The techniques are based on two principles: 1) in vitro improvement in semen quality in the laboratory, and 2) the overcoming of natural barriers to fertilization. The latter includes intra-uterine insemination (IUT), in vitro fertilization and embryo transfer (IVF/ET), gamete intrafallopian transfer (GIFT), subzonal sperm insemination (SUZI), zona pellucida drilling, and intracytoplasmatic injection of sperm (ICSI). ICSI has also used epididymal spermatozoa obtained by microsurgical aspiration (MESA) and sperm extracted from testicular biopsies (TESA). These methods have their own specific indications, contraindications and pregnancy rates. However, assisted conception techniques should not be considered outside the overall situation of the couple, including ethical, sociological, physiological and general medical problems.

Female↗

[Dermatologic symptoms of parvovirus B19 infections].

Infections with parvovirus B19 are often characterized by the well-known erythema infectiosum, usually accompanied by fever and arthralgia. Furthermore the virus may cause a lethal hydrops fetalis during the pregnancy or a severe aplastic crisis in patients suffer from chronic hemolytic anemia. We present three patients infected by parvovirus B19. Whose skin lesions included a non-specific exanthem, erythema multiforme, and purpura. The virus infection was confirmed both by serology and PCR identification. In conclusion the diagnosis of acute exanthems should include the search for virus infections.

Adult↗