1.Secondary male hypogonadism induced by sellar space-occupying lesion: Clinical analysis of 22 cases.
Hong-Lei LU ; Tao WANG ; Hao XU ; Li-Ping CHEN ; Ke RAO ; Jun YANG ; Hui-Xing YUAN ; Ji-Hong LIU
National Journal of Andrology 2016;22(8):704-709
ObjectiveTo analyze the clinical characteristics of secondary male hypogonadism induced by sellar space-occupying lesion, explore its pathogenesis, and improve its diagnosis and treatment.
METHODSWe retrospectively analyzed the clinical data about 22 cases of secondary male hypogonadism induced by sellar space-occupying lesion, reviewed related literature, and investigated the clinical manifestation, etiological factors, and treatment methods of the disease. Hypogonadism developed in 10 of the patients before surgery and radiotherapy (group A) and in the other 12 after it (group B). The patients received endocrine therapy with Andriol (n=7) or hCG (n=15).
RESULTSThe average diameter of the sellar space-occupying lesions was significantly longer in group A than in B ([2.35±0.71] vs [1.83±0.36] cm, P<0.05) and the incidence rate of prolactinomas was markedly higher in the former than in the latter group (60% vs 0, P<0.01). The levels of lutein hormone (LH), follicle stimulating hormone (FSH) and testosterone (T) were remarkably decreased in group B after surgery and radiotherapy (P<0.01). Compared with the parameters obtained before endocrine therapy, all the patients showed significant increases after intervention with Andriol or hCG in the T level ([0.78±0.40] vs [2.71±0.70] ng/ml with Andriol; [0.93±0.44] vs [3.07±0.67] ng/ml with hCG) and IIEF-5 score (5.00±2.61 vs 14.50±3.62 with Andriol; 5.36±1.82 vs 15.07±3.27 with hCG) (all P<0.01). The testis volume increased and pubic hair began to grow in those with hypoevolutism. The patients treated with hCG showed a significantly increased testis volume (P<0.01) and sperm was detected in 7 of them, whose baseline testis volume was markedly larger than those that failed to produce sperm ([11.5±2.3] vs [7.5±2.3] ml, P<0.01). Those treated with Andriol exhibited no significant difference in the testis volume before and after intervention and produced no sperm, either.
CONCLUSIONSHypothyroidism might be attributed to surgery- or radiotherapy-induced damage to the pituitary tissue, space-occupying effect of sellar lesion, and hyperprolactinemia. Both Andriol and hCG can improve the T level and erectile function, but the former does not help spermatogenesis.
Adult ; Chorionic Gonadotropin ; therapeutic use ; Follicle Stimulating Hormone ; blood ; Humans ; Hypogonadism ; diagnosis ; etiology ; therapy ; Luteinizing Hormone ; blood ; Male ; Pituitary Neoplasms ; blood ; complications ; pathology ; therapy ; Prolactinoma ; blood ; complications ; pathology ; therapy ; Retrospective Studies ; Sella Turcica ; Spermatogenesis ; Spermatozoa ; Testis ; anatomy & histology ; drug effects ; Testosterone ; analogs & derivatives ; blood ; therapeutic use ; Tumor Burden
2.Effects of Saikokaryukotsuboreito on Spermatogenesis and Fertility in Aging Male Mice.
Zhi-Jun ZANG ; Su-Yun JI ; Ya-Nan ZHANG ; Yong GAO ; Bin ZHANG
Chinese Medical Journal 2016;129(7):846-853
BACKGROUNDAspermia caused by exogenous testosterone limit its usage in late-onset hypogonadism (LOH) patients desiring fertility. Saikokaryukotsuboreito (SKRBT) is reported to improve serum testosterone and relieve LOH-related symptoms. However, it is unclear whether SKRBT affects fertility. We aimed to examine the effects of SKRBT on spermatogenesis and fertility in aging male mice.
METHODSThirty aging male mice were randomly assigned to three groups. Mice were orally administered with phosphate-buffer solution or SKRBT (300 mg/kg, daily) or received testosterone by subcutaneous injections (10 mg/kg, every 3 days). Thirty days later, each male mouse was mated with two female mice. All animals were sacrificed at the end of 90 days. Intratesticular testosterone (ITT) levels, quality of sperm, expression of synaptonemal complex protein 3 (SYCP3), and fertility were assayed.
RESULTSIn the SKRBT-treated group, ITT, quality of sperm, and expression of SYCP3 were all improved compared with the control group (ITT: 85.50 ± 12.31 ng/g vs. 74.10 ± 11.45 ng/g, P = 0.027; sperm number: [14.94 ± 4.63] × 106 cells/ml vs. [8.79 ± 4.38] × 106 cells/ml, P = 0.002; sperm motility: 43.16 ± 9.93% vs. 33.51 ± 6.98%, P = 0.015; the number of SYCP3-positive cells/tubule: 77.50 ± 11.01 ng/ml vs. 49.30 ± 8.73 ng/ml, P < 0.001; the expression of SYCP3 protein: 1.23 ± 0.09 vs. 0.84 ± 0.10, P < 0.001), but fertility was not significantly changed (P > 0.05, respectively). In the testosterone-treated group, ITT, quality of sperm, and expression of SYCP3 were markedly lower than the control group (ITT: 59.00 ± 8.67, P = 0.005; sperm number: [4.34 ± 2.45] × 106 cells/ml, P = 0.018; sperm motility: 19.53 ± 7.69%, P = 0.001; the number of SYCP3-positive cells/tubule: 30.00 ± 11.28, P < 0.001; the percentage of SYCP3-positive tubules/section 71.98 ± 8.88%, P = 0.001; the expression of SYCP3 protein: 0.71 ± 0.09, P < 0.001), and fertility was also suppressed (P < 0.05, respectively).
CONCLUSIONSKRBT had no adverse effect on fertility potential in aging male mice.
Aging ; Animals ; Drugs, Chinese Herbal ; pharmacology ; Fertility ; drug effects ; Hypogonadism ; drug therapy ; Male ; Mice ; Nuclear Proteins ; analysis ; Sperm Count ; Sperm Motility ; drug effects ; Spermatogenesis ; drug effects ; Testis ; drug effects ; pathology ; Testosterone ; blood
3.Protective effect of Liuweidihuang Pills against cellphone electromagnetic radiation-induced histomorphological abnormality, oxidative injury, and cell apoptosis in rat testes.
Hui-rong MA ; Xiao-hui CAO ; Xue-lian MA ; Jin-jin CHEN ; Jing-wei CHEN ; Hui YANG ; Yun-xiao LIU
National Journal of Andrology 2015;21(8):737-741
OBJECTIVETo observe the effect of Liuweidihuang Pills in relieving cellphone electromagnetic radiation-induced histomorphological abnormality, oxidative injury, and cell apoptosis in the rat testis.
METHODSThirty adult male SD rats were equally randomized into a normal, a radiated, and a Liuweidihuang group, the animals in the latter two groups exposed to electromagnetic radiation of 900 MHz cellphone frequency 4 hours a day for 18 days. Meanwhile, the rats in the Liuweidihuang group were treated with the suspension of Liuweidihuang Pills at 1 ml/100 g body weight and the other rats intragastrically with the equal volume of purified water. Then all the rats were killed for observation of testicular histomorphology by routine HE staining, measurement of testicular malondialdehyde (MDA) and glutathione (GSH) levels by colorimetry, and determination of the expressions of bax and bcl-2 proteins in the testis tissue by immunohistochemistry.
RESULTSCompared with the normal controls, the radiated rats showed obviously loose structure, reduced layers of spermatocytes, and cavitation in the seminiferous tubules. Significant increases were observed in the MDA level (P < 0.01) and bax expression (P < 0.01) but decreases in the GSH level (P < 0.01) and bcl-2 expression (P < 0.01) in the testis issue of the radiated rats. In comparison with the radiated rats, those of the Liuweidihuang group exhibited nearly normal testicular structure, significantly lower MDA level (P < 0.05), bax expression (P < 0.01), and bcl-2 expression (P < 0.01).
CONCLUSIONLiuweidihuang Pills can improve cellphone electromagnetic radiation-induced histomorphological abnormality of the testis tissue and reduce its oxidative damage and cell apoptosis.
Animals ; Apoptosis ; drug effects ; radiation effects ; Body Weight ; drug effects ; radiation effects ; Cell Phone ; Drugs, Chinese Herbal ; pharmacology ; Electromagnetic Radiation ; Glutathione ; metabolism ; Male ; Malondialdehyde ; metabolism ; Oxidative Stress ; Radiation-Protective Agents ; pharmacology ; Rats ; Rats, Sprague-Dawley ; Seminiferous Tubules ; drug effects ; radiation effects ; Spermatocytes ; drug effects ; metabolism ; radiation effects ; Staining and Labeling ; Testis ; drug effects ; metabolism ; pathology ; radiation effects
4.Morinda officinalis extract repairs cytoxan-impaired spermatogenesis of male rats.
National Journal of Andrology 2015;21(5):436-442
OBJECTIVETo study the effect of Morinda officinalis (MO) extract on cytoxan (CTX) -impaired spermatogenesis of adult male SD rats.
METHODSWe randomly divided 56 adult male SD rats into seven groups of equal number: blank control, CTX model, CTX + NS, CTX + 10 g/kg MO, CTX + 20 g/kg MO, CTX + 30 g/kg MO, and CTX + 40 g/kg MO. We made the models of impaired spermatogenesis in the SD rats by intraperitoneal injection of CTX and treated the animal models by intragastric administration of MO at the concentrations of 10, 20, 30, and 40 g per kg per d, respectively. After two weeks of medication, we observed the changes in the body weight, testicular and epididymal indexes, and microstructure of the testis tissue, measured the mean seminiferous tubule diameter (MSTD) , and obtained testicular biopsy scores (TBS) in different groups, followed by comparative analyses.
RESULTSAfter treatment, the CTX + NS group showed no remarkable differences in the body weight ([234.83 ± 28.77] g) and epididymal index (2.71 ± 0.34) from those of the four CTX + MO groups, but exhibited a significantly lower testicular index ([12.15 ± 1.04] g) than those in the CTX + 20 g/kg MO ([13.71 ± 0.97] g), CTX + 30 g/kg MO, ([13.30 ± 0.29] g), and CTX + 40 g/kg MO group ([13.48 ± 0.51] g) (P < 0.05). Light microscopy revealed obvious pathological changes of the testis tissue in the CTX + NS group and significantly ameliorated structures of the seminiferous tubules in the CTX + MO 10, 20, 30, and 40 g/kg groups, with the MSTD of (204.78 ± 11.03), (216.55 ± 10.93), (218.03 ± 11.23), and (218.59 ± 14.06) μm, respectively, and the TBS of 9.03 ± 0.39, 9.69 ± 0.26, 9.83 ± 0.18, and 9.89 ± 0.11, respectively, all significantly higher than (189.74 ± 8.55) μm and 5.95 ± 1.21 in the CTX + NS group (P < 0.05). The efficacy of MO extract was increased in a concentration-dependent manner.
CONCLUSIONMorinda officinalis extract can repair cytoxan-induced damage to rat spermatogenesis, with may achieve the best effect at the concentrations of 30 and 40 g per kg per d.
Animals ; Body Weight ; drug effects ; Cyclophosphamide ; toxicity ; Epididymis ; drug effects ; Male ; Morinda ; chemistry ; Mutagens ; toxicity ; Plant Extracts ; administration & dosage ; pharmacology ; Random Allocation ; Rats ; Rats, Sprague-Dawley ; Seminiferous Tubules ; drug effects ; pathology ; Spermatogenesis ; drug effects ; Testis ; drug effects ; ultrastructure
5.Toxic effects of atrazine on reproductive system of male rats.
Yang SONG ; Zhen Chao JIA ; Jin Yao CHEN ; Jun Xiang HU ; Li Shi ZHANG
Biomedical and Environmental Sciences 2014;27(4):281-288
OBJECTIVEThis study was designed to evaluate the toxic effects of Atrazine (ATZ) on the reproductive system of male rats.
METHODSMale Sprague-Dawley rats were exposed to ATZ by gavage at dosages of 0, 38.5, 77, and 154 mg/kg bw/day for 30 d. The toxic effects of ATZ to rats were assessed through histopathologcal observation, spermatozoa quality evaluation, testicular marker enzyme indicators, antioxidant capacity and reproductive hormone levels.
RESULTSSignificant adverse effects on reproductive system were observed in rats exposed to ATZ at different dosages compared with 0 mg/kg group, including an irregular and disordered arrangement of the seminiferous epithelium in 154 mg/kg group; a decreased spermatozoa number and an increased spermatozoa abnormality rate in 77 and 154 mg/kg groups; decreased levels of acid phosphatase (ACP), alkaline phosphatase (AKP), lactic dehydrogenase (LDH), and succinate dehydrogenase (SDH) with the increasing of ATZ concentration; a decreased level of total antioxidant capacity (TAC) in a dose-dependent manner, and a decreased reduced glutathione (GSH) level and an increased malondialdehyde (MDA) content in 154 mg/kg group; and decreased serum levels of testosterone (T) and inhibin-B (INH-B) and an increased serum level of follicle stimulating hormone (FSH) in 77 and 154 mg/kg groups, and an increased serum level of luteinizing hormone (LH) in 154 mg/kg group.
CONCLUSIONThese results suggested that relatively high doses of ATZ could exert reproductive toxicity of male rats.
Animals ; Antioxidants ; metabolism ; Atrazine ; toxicity ; Body Weight ; drug effects ; Herbicides ; toxicity ; Hormones ; blood ; Male ; Organ Size ; drug effects ; Rats ; Rats, Sprague-Dawley ; Sperm Count ; Spermatozoa ; abnormalities ; drug effects ; Testis ; drug effects ; enzymology ; pathology ; Toxicity Tests, Chronic
6.Clinical efficacy of letrozole in boys with idiopathic central precocious puberty.
Chinese Journal of Contemporary Pediatrics 2014;16(4):397-400
OBJECTIVETo investigate the efficacy of letrozole for delaying bone maturation and increasing predicted adult height in boys with idiopathic central precocious puberty (ICPP) who have a bone age above 13 years and a short stature, and its adverse effects.
METHODSTwenty ICPP boys with a bone age above 13 years and a short stature were randomly divided into letrozole treatment (n=10) and control groups (n=10). The letrozole treatment group received oral letrozole [2.5 mg/(m(2)·d), Qd] for 6 months, while the control group received no treatment and was observed periodically. Bone age, growth rate, height standard deviation (SD) score, predicted adult height SD score, sexual maturity, and levels of follicle-stimulating hormone (FSH), luteinizing hormone (LH), dehydroepiandrosterone, testosterone (T), estradiol (E2), progesterone (P), and androstenedione (ASD) were measured. The letrozole-related adverse reactions were evaluated.
RESULTSAfter 6 months of treatment, both groups had a significantly increased bone age, but the letrozole group had a significantly slowed increase in bone age compared with the control group (13.82 ± 0.23 years vs 14.47 ± 0.30 years; P<0.05); compared with the control group, the letrozole group had a significantly increased predicted adult height SD score (-1.69 ± 0.26 vs -1.91 ± 0.35; P<0.05) and a significantly increased T level (4.9 ± 0.9 nmol/L vs 4.4 ± 0.8 nmol/L; P<0.05). There was no significant difference in testicular volume between the two groups. The treatment led to no significant changes in growth rate, Tanner stage, and levels of FSH, LH, P, E2 and ASD in the two groups, and there was no significant difference in these indices between the two groups. No adverse reactions were observed during letrozole treatment.
CONCLUSIONSLetrozole delays bone maturation and increases predicted adult height in ICPP boys with a bone age above 13 years and a short stature, and it causes no obvious adverse reactions.
Adolescent ; Aromatase Inhibitors ; therapeutic use ; Body Height ; drug effects ; Bone Development ; drug effects ; Gonadal Steroid Hormones ; blood ; Humans ; Male ; Nitriles ; adverse effects ; therapeutic use ; Puberty, Precocious ; blood ; drug therapy ; Testis ; drug effects ; pathology ; Triazoles ; adverse effects ; therapeutic use
7.90d Exposure to Nonylphenol has Adverse Effects on the Spermatogenesis and Sperm Maturation of Adult Male Rats.
Wei Chen LU ; Ai Qing WANG ; Xiao Ling CHEN ; Guo YANG ; Yao LIN ; Yi Ou CHEN ; Cheng Jiao HONG ; Hai Lin TIAN
Biomedical and Environmental Sciences 2014;27(11):907-911
This study was conducted to elucidate the reproductive effect of NP on testis, epididymis and epididymal sperm in vivo. Adult male Sprague-Dawley rats were gavaged with NP at 0, 40, 100, or 250 mg/kg body weight (bw) on alternate days for 90 d. The results showed that oral administration of NP may damage the structure and function of testis, induce apoptosis and oxidative stress in epididymis or even have cytotoxic effects on epididymal sperm.
Administration, Oral
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Animals
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Apoptosis
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drug effects
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Dose-Response Relationship, Drug
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Epididymis
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drug effects
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metabolism
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pathology
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Male
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Oxidative Stress
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drug effects
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Phenols
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adverse effects
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Rats, Sprague-Dawley
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Sperm Motility
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drug effects
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Spermatogenesis
;
drug effects
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Spermatozoa
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drug effects
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metabolism
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pathology
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Testis
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drug effects
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metabolism
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pathology
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Testosterone
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blood
8.Prevention of Inonotus obliquus polysaccharides for high power microwave radiation induced testicular injury in rats: an experimental research.
Li-Wei ZHAO ; Xiu-Hong ZHONG ; Yan-Mei SUN ; Shu-Yan YANG ; Nan SHEN ; Yi-Zhong ZHANG ; Ning-Jiang YANG ; Kuang REN ; Shi-Jie LU
Chinese Journal of Integrated Traditional and Western Medicine 2014;34(7):864-868
OBJECTIVETo investigate the effect of Inonotus obliquus polysaccharides on testicular injury induced by exposure to high power microwave (HPM) in rats.
METHODSA total of 30 male Wistar rats were randomly divided into 5 groups, i.e., the normal control group, the microwave radiation model group, the treatment group, the new microwave radiation model group, and the prevention group, 6 in each group. All rats, except those in the normal control group, were exposed to microwave at an average power density of 200 mW/cm2 for 6 min. Rats in the control group and the model group were administered with normal saline by gastrogavage, once a day. Rats in the treatment group and the prevention group were given with Inonotus obliquus polysaccharides by gastrogavage, 2 mL each time (400 mg/kg body weight), once a day. All rats were sacrificed on the 11th day.The sperm density and the rate of sperm deformity were determined. Pathological changes of testis were observed by light microscope and transmission electron microscope.
RESULTSShort-term HPM irradiation could significantly reduce the sperm density and increase the sperm deformity rate (P < 0.05). Meanwhile, obvious pathological changes of testes occurred. Compared with the two model groups, the sperm density increased and the sperm deformity rate decreased in the treatment group and the prevention group (P < 0.05). Under the light microscope, injuries of spermatogenic cells and stromal cells, as well as vascular dilatation and congestion were obviously alleviated in the treatment group and the prevention group. Mitochondrial swelling and endoplasmic reticulum expansion shown by ultrastructural observation were also significantly alleviated. Of them, injuries of spermatogenic cells and inflammation response were milder in the treatment group than in the prevention group.
CONCLUSIONSInonotus obliquus polysaccharides had significant protective effect on microwave radiation induced testicular injury. Better effect was obtained by therapeutic medication than preventive medication.
Animals ; Basidiomycota ; chemistry ; Male ; Microwaves ; adverse effects ; Polysaccharides ; pharmacology ; Radiation Injuries, Experimental ; prevention & control ; Radiation-Protective Agents ; pharmacology ; Rats ; Rats, Wistar ; Testis ; drug effects ; pathology ; radiation effects
9.Oral exposure of fluorochloridone caused testes damage of Sparague-Dawley rats.
Leirui XU ; Qiankui ZHAO ; Dan LOU ; Xiuli CHANG ; Ping XIAO ; Xinyu HONG ; Zhijun ZHOU
Chinese Journal of Industrial Hygiene and Occupational Diseases 2014;32(7):516-520
OBJECTIVETo investigate the effects of fluorochloridone (FLC) exposure on the testes of adult Sprague-Dawley (SD) rats.
METHODSForty male SD rats were randomly divided into four groups. These groups, each of 10 male rats, were separately given FLC by gavage at a dose of 0 (control), 30, 150, or 750 mg/kg once daily for 28 d. The oxidative stress biomarkers in the testes were measured by spectrophotometry. The pathological changes in testicular tissues were evaluated under the light and electric microscopes. The cauda epididymal sperm count was determined. The testicular toxicity of FLC was assessed accordingly.
RESULTSCompared with the control group, the 750 mg/kg FLC group had significantly lower testicular weight and organ coefficient, epididymal weight, and cauda epididymal sperm count (P < 0.05 or P < 0.01), the 150 and 750 mg/kg FLC groups had significantly increased malonaldehyde content (P < 0.05 or P < 0.01), each exposed group had a significantly reduced glutathione (GSH) level (P < 0.05 or P < 0.01), the 750 mg/kg FLC group had significantly reduced activities of superoxide dismutase (SOD), catalase (CAT), GSH peroxidase, GSH S-transferase (GSH-ST), and GSH reductase (GSH-GR) (P < 0.05 or P < 0.01), the 150 mg/kg FLC group showed significant decreases in the activities of all antioxidant enzymes except GSH-GR (P < 0.05 or P < 0.01), and the 30 mg/kg FLC group showed significant decreases in the activities of SOD and CAT (P < 0.05 or P < 0.01). Furthermore, seminiferous epithelial degeneration, Sertoli cell vacuolization, spermatogenic cell loss, and nuclear damage were observed under the light and electronic microscopes in the 150 and 750 mg/kg FLC groups.
CONCLUSIONFLC could damage the testes of adult rats by inducting oxidative stress. This research provided clues and directions for further exploration of the mechanism of FLC testicular toxicity.
Animals ; Male ; Oxidative Stress ; drug effects ; Pyrrolidinones ; toxicity ; Rats ; Rats, Sprague-Dawley ; Sperm Motility ; drug effects ; Testis ; drug effects ; metabolism ; pathology
10.Lipopolysaccharide affects testicular histology and reproductive endocrine function in male rats.
Xu-Xin ZHAN ; Yu-An HU ; Xing-Rong QING ; Dun-Sheng MO ; Hong-Cai CAI ; Xue-Jun SHANG ; Qi ZHANG ; Yu-Feng HUANG
National Journal of Andrology 2014;20(4):304-308
OBJECTIVETo study the influence of lipopolysaccharide (LPS)-induced inflammation on the testicular histology and reproductive endocrine function in male rats and investigate the possible mechanism of inflammation affecting male fertility.
METHODSThirty-six male SD rats were randomly divided into a control group (A) and three LPS intervention groups (B, C, and D) to receive saline and LPS (5 mg/kg i. p, once), respectively. The animals in groups B, C, and D were killed by anesthesia at 12, 24, and 72 hours after treatment. Histopathological changes in the left testis of the rats were observed by HE staining and the levels of the reproductive hormones T, FSH, and LH in the serum were determined by ELISA.
RESULTSCompared with group B, group A showed clear structure of seminiferous tubules, orderly arrangement of spermatogenic cells, a slightly decreased number of sperm in some seminiferous tubular lumens, and shed spermatogenic cells in the rat testis tissue; group C exhibited thinner seminiferous epithelia, disordered structure of seminiferous tubules, irregular arrangement of spermatogenic cells, decreased number of mature sperm and obvious shedding of spermatogenic cells in seminiferous tubular lumens; group D manifested similar findings to those of group C, with even more shed spermatogenic cells that blocked the tubular lumens. The levels of serum T, LH, and FSH were (0.490 +/- 0.028) ng/ml, (6.290 +/- 0.515) ng/L, and (1.837 +/- 0.127) IU/L in group A, (0.460 +/- 0.024) ng/ml, (5.881 +/- 0.124) ng/L, and (1.707 +/- 0.098) IU/L in group B, (0.417 +/- 0.021) ng/ml, (5.123 +/- 0.271) ng/L, and (1.620 +/- 0.115) IU/L in group C, and (0.378 +/- 0.021) ng/ml, (4.504 +/- 0.279) ng/L and (1.562 +/- 0.216) IU/L in group D, all decreased in group B as compared with A (P > 0.05). The decreases of T and LH were extremely significant (P < 0.01) and that of FSH was significant in groups C and D (P < 0.05) in comparison with A.
CONCLUSIONLPS-induced inflammation affects the testicular tissue and reproductive endocrine function of male rats, resulting in decreased levels of serum T, LH, and FSH.
Animals ; Endocrine System ; drug effects ; physiology ; Fertility ; drug effects ; physiology ; Follicle Stimulating Hormone ; blood ; Humans ; Lipopolysaccharides ; toxicity ; Luteinizing Hormone ; blood ; Male ; Random Allocation ; Rats ; Reproduction ; Seminiferous Tubules ; drug effects ; pathology ; Spermatocytes ; drug effects ; Testis ; drug effects ; pathology ; Testosterone ; blood

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