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1.
目的对健康雄性ICR小鼠肠道内乳酸菌的组成结构进行研究。方法收集10只健康雄性ICR小鼠的新鲜粪便样品,提取粪便样品中微生物的总DNA,采用乳酸菌类群特异性引物(Lac1)和细菌通用性引物(1391r)的组合扩增16SrRNA基因并构建乳酸菌特异性克隆文库,研究小鼠肠道内各种乳酸菌的组成和比例。结果克隆文库的分析结果表明罗伊乳杆菌(Lactobacillus reuteri)和约氏乳杆菌(Lactobacillus johnsonii)为ICR小鼠肠道内的优势种,其他还包括鼠乳杆菌(Lactobacillus murinus)、阴道乳杆菌(Lactobacillus vaginalis)、肠乳杆菌(Lacto-bacillus intestinalis)等乳酸菌以及一个潜在的乳酸菌新种。结论健康ICR小鼠肠道内乳酸菌的多样性较高;L.re-uteri种可能具有较高的菌株水平多样性。  相似文献   

2.
研究肠道中的微生物群落与糖尿病之间的关系,对于预防治疗糖尿病具有十分重要的意义.以10只2型糖尿病小鼠和10只健康小鼠为对象,通过PCR-DGGE(polymerase chain reaction-denaturing gradient geleletrophoresis)分子技术分析小鼠小肠菌群结构.实验结果显示,实验组小鼠与对照组小鼠在多样性指数、丰富度指数及优势度指数上存在差异,对照组小鼠小肠内容物的菌群种类及数量明显高于实验组小鼠;而两组小鼠的小肠内容物的优势菌种类及相对含量却相似.特异性条带测序结果显示,正常小鼠小肠内含有乳杆菌,而实验组小鼠小肠内含量很低,甚至检测不到.该结果提示了乳杆菌和2型糖尿病之间的关系.  相似文献   

3.
[目的]构建产气荚膜梭菌(Clostridium perfringens,C.perfringents)α毒素基因的重组干酪乳杆菌口服疫苗,为产气荚膜梭菌毒素中毒的防治提供有效方法.[方法]将构建的重组产气荚膜梭菌α毒素基因细胞表面型载体pPG1及分泌表达载体pPG2电转化乳酸乳杆菌(Lactobacillus casei L.casei),获得阳性重组菌pPG1-α/L.case/393乳酸乳杆菌表面表达系统和pPG2-α/L.casei 393乳酸乳杆菌分泌表达系统.重组菌以1%乳糖为诱导物,在MRS培养基中进行诱导,通过Western-blot和间接免疫荧光方法鉴定,确定目的蛋白的表达.将重组菌口服免疫BALB/c小鼠,收集免疫小鼠粪便及眼冲洗液及外生殖道黏液样本测定小鼠产生抗α毒素的特异性slgA抗体水平,采集小鼠血液样本测定血清中抗α毒素的特异性lgG抗体水平.并对免疫小鼠进行α毒素的腹腔攻毒试验及对获得的抗血清进行α毒素中和试验测定.[结果]重组干酪乳杆菌pPG1-α/L.casei 393及pPG2-/L.casei 393免疫小鼠能够产生明显的抗α毒素的slgA和IgG抗体水平,其对α毒素中和试验结果为完全保护.腹腔攻毒实验结果为能抵抗3倍最小致死剂量(minimum lethal dose,MLD100)的α毒素攻击.[结论]表达产气荚膜梭菌α毒素免疫保护性抗原的重组乳酸乳杆菌口服免疫动物能够产生良好的局部和系统体液免疫应答和免疫中和效力.  相似文献   

4.
摘要: 【目的】构建产气荚膜梭菌(Clostridium perfringens, C.perfringens)α 毒素基因的重组干酪乳杆菌口服疫苗,为产气荚膜梭菌毒素中毒的防治提供有效方法。【方法】将构建的重组产气荚膜梭菌α毒素基因细胞表面型载体pPG1及分泌表达载体pPG2电转化乳酸乳杆菌(Lactobacillus casei L.casei),获得阳性重组菌pPG1-α/ L.casei 393 乳酸乳杆菌表面表达系统和pPG2-α/ L.casei393乳酸乳杆菌分泌表达系统。重组菌以1%乳糖为诱导物,在MRS培养基中进行诱导,通过Western-blot和间接免疫荧光方法鉴定,确定目的蛋白的表达。将重组菌口服免疫BALB/c小鼠,收集免疫小鼠粪便及眼冲洗液及外生殖道黏液样本测定小鼠产生抗α毒素的特异性sIgA 抗体水平,采集小鼠血液样本测定血清中抗α毒素的特异性IgG抗体水平。并对免疫小鼠进行α毒素的腹腔攻毒实验及对获得的抗血清进行α毒素中和试验测定。【结果】重组干酪乳杆菌pPG1-α/ L.casei 393及pPG2-/ L.casei 393免疫小鼠能够产生明显的抗α毒素的sIgA 和IgG 抗体水平,其对α毒素中和试验结果为完全保护。腹腔攻毒实验结果为能抵抗3倍最小致死剂量的α毒素攻击。【结论】表达产气荚膜梭菌α毒素免疫保护性抗原的重组乳酸乳杆菌口服免疫动物能够产生良好的局部和系统体液免疫应答和免疫中和效力。  相似文献   

5.
糖尿病患者多出现胃肠道功能紊乱,如急性胃炎、胃溃疡,以及胃动力低下,胃排空延迟、胃内细菌过度滋长等,进一步导致肠道疾病。研究糖尿病胃内容物菌群结构变化对研究糖尿病发病机理及并发症治疗具有重要意义。该项研究采用变性梯度凝胶电泳技术,对10只2型糖尿病模型小鼠及10只正常对照小鼠进行胃内容物和粘膜样本菌群结构研究。结果表明,实验组小鼠与对照组小鼠胃内容物和粘膜菌群条带数、多样性指数、丰富度指数、均匀度指数与优势度指数均无显著差异,且相似度系数差异不明显。而特异条带测序结果显示正常小鼠胃内含乳杆菌,实验组小鼠胃内乳杆菌含量很低甚至检测不到。提示胃内乳杆菌与2型糖尿病密切相关。  相似文献   

6.
摘要 目的:不同类型的益生菌株免疫调节功能各异。本文旨在评价植物乳杆菌P-8(Lactobacillus plantarum P-8)对小鼠免疫功能的调控作用及机制。方法:C57BL/6J小鼠每日灌胃给予不同剂量的植物乳杆菌P-8(0. 25 mg/kg、0.5 mg/kg、1.5 mg/kg),连续30天,记录小鼠一般情况。给药结束后处死动物,测定小鼠脏器/体重比;小鼠碳廓清实验、小鼠腹腔巨噬细胞吞噬鸡红细胞实验评价各组小鼠的单核-巨噬细胞功能;血清溶血素测定、抗体生成细胞实验评价各组小鼠的体液免疫功能;脾淋巴细胞转化实验、迟发型变态反应实验评价各组小鼠的细胞免疫功能;NK细胞的活性测定实验评价小鼠的NK细胞活性。结果:与对照组相比,低、中、高剂量组植物乳杆菌P-8对小鼠脏器/体重比值差异无统计学意义(P>0.05);且植物乳杆菌P-8可显著提高小鼠的碳廓清能力、小鼠腹腔巨噬细胞吞噬鸡红细胞能力、半数溶血值、二硝基氟苯诱导的小鼠迟发型变态反应及NK细胞活力(P均<0.05)。结论:植物乳杆菌P-8可通过提高单核-巨噬细胞功能、体液免疫功能、细胞免疫功能及NK细胞活力增强小鼠的免疫功能。  相似文献   

7.
从31个60岁以上的符合中华医学会老年医学分会健康老年人标准的健康老人中随机选取4例作为研究对象,使用分子生物学方法,对他们的肠道双歧杆菌和乳杆菌种群多样性进行分析.研究结果表明,健康老人肠道中双歧杆菌的优势种群为长双歧杆菌(Bifi∥dobacterium longum)和假小链双歧杆菌(Bifidobacterium pseudocatenulatum),分别占双歧杆菌种群的55%和45%;而肠道乳杆菌则有唾液乳杆菌(Lactobacillus salivarius)50%、Lactobacillus mocosae 31.1%、口腔乳杆菌(Lactobacillus oris)6.3%、鼠李糖乳杆菌(Lactobacillus rhamnosus)6.3%和瑞士乳杆菌(Lactobacillus helveticus)6.3%,其中唾液乳杆菌、Lactobacillus mocosae为健康老人肠道优势乳杆菌种群.  相似文献   

8.
【目的】对正常、高脂、抗生素处理大鼠肠道内乳杆菌进行定性和定量分析,比较不同处理组大鼠肠道乳杆菌的多样性。【方法】应用纯培养和非培养技术(16S r RNA基因序列分析、变性梯度凝胶电泳、实时荧光定量PCR)对大鼠肠道乳杆菌进行分离鉴定和多样性分析。【结果】16S r RNA基因序列同源性分析结果显示,正常组大鼠肠道内分离出的乳杆菌包括约氏乳杆菌(Lactobacillus johnsonii)、鼠乳杆菌(Lactobacillus murinus)、嗜酸乳杆菌(Lactobacillus acidophilus)、罗伊氏乳杆菌(Lactobacillus reuteri)、植物乳杆菌(Lactobacillus plantarum)、肠道乳杆菌(Lactobacillus intestinals)、动物乳杆菌(Lactobacillus animalis)和阴道乳杆菌(Lactobacillus vaginalis);但L.animalis在高脂处理组大鼠肠道内未分离到,L.intestinals和L.vaginalis在抗生素处理组大鼠中未分离到。DGGE结果显示3个组别大鼠肠道中乳杆菌构成差异明显,同一组内样品间相似性较高;相较于正常组和高脂组,抗生素组的丰度较差;且正常组大鼠肠道内乳杆菌的多样性高于高脂组和抗生素组。q-PCR结果显示正常组大鼠肠道乳杆菌的数量明显高于高脂组和抗生素组,高脂组的数量也明显高于抗生素组,且3个组别之间存在显著差异(P0.01)。【结论】高脂饮食及抗生素的使用会减少肠道内乳杆菌多样性。  相似文献   

9.
目的对新疆传统发酵乳品中乳酸菌进行分离鉴定并检测其耐药性。方法利用传统形态学鉴定法和生化鉴定等方法对新疆发酵乳中乳酸菌进行鉴定,采用纸片扩散法对分离鉴定的菌进行耐药性分析。结果从新疆发酵乳品中共分离出8株乳酸菌,经鉴定分别为瑞士乳杆菌(Lactobacillus helveticus)、植物乳杆菌(Lactobacillus plantarum)、马乳酒样乳杆菌(Lactobacillus kefianofaciens)、乳酸乳球菌(Lactococcus lactis)、副干酪乳杆菌(Lactobacillus paracasei)、副干酪乳杆菌类坚韧亚种(Lactobacillus paracasei subsp.tolerans)、哈尔滨乳杆菌(Lactobacillus harbinensis)、希氏乳杆菌(Lactobacillus hilgardii),并且发现8株乳酸菌对万古霉素、庆大霉素、阿莫西林、多西环素、环丙沙星、阿奇霉素、头孢他啶、头孢孟多具有一定敏感性。结论新疆发酵乳品中以乳杆菌居多,对常见抗生素具有一定的敏感性。  相似文献   

10.
人体内庞大的微生物群体对人体有着巨大的影响.越来越多的数据表明,肠道菌群与肥胖症、糖尿病等代谢性疾病的发生密切相关.食道菌群结构对研究胃肠道及整个消化 系统菌群结构至关重要.针对10只2型糖尿病模型小鼠及10只正常对照小鼠食道样本,进行变性梯度凝胶电泳(DGGE)和克隆测序分析食道菌群结构.结果发现,实验组小鼠与对照组小鼠食道菌群多样性指数与丰富度指数存在显著差异,均匀度指数无显著差 异.说明正常小鼠较2型糖尿病小鼠食道菌群种类及数量较大,优势菌种类及相对含量相似.测序结果显示,正常小鼠食道内含乳杆菌属细菌,而患病小鼠食道内不含乳杆菌属细菌或含量极低.提示乳杆菌属细菌与2型糖尿病密切相关,实验结果对研究糖尿病发病机理及并发症治疗有重要意义.  相似文献   

11.
The objective of this study was to evaluate the effects of Lactobacillus plantarum MA2, an isolate from Chinese traditional Tibet kefir, on cholesterol-lowering and microflora of rat in vivo. Rats were fed on cholesterol-enriched experimental diet, supplemented with lyophilized L. plantarum MA2 powder, with a dose of 1011 cells/day per mice. The results showed that L. plantarum MA2 feeding significantly lowered serum total cholesterol, low-density lipoprotein cholesterol, and triglycerides level, while there was no change in high-density lipoprotein cholesterol. In addition, liver total cholesterol and triglycerides was also decreased. However, fecal cholesterol and triglycerides was increased significantly (P < 0.05) in comparison with the control. Also, L. plantarum MA2 increased the population of lactic acid bacteria and bifidobacteria in the fecal, but it did not change the number of Escherichia coli as compared to control. Moreover, pH, moisture, and organic acids in the fecal were also measured. The present results indicate the probiotic potential of the L. plantarum MA2 strain in hypocholesterolemic effect and also increasing the probiotic count in the intestine.  相似文献   

12.
A collection of lactobacilli comprising species of Lactobacillus plantarum (43 isolates), Lactobacillus brevis (9 isolates) and Lactobacillus fermentum (6 isolates) obtained from spontaneous fermentations of capers (the fruits of Capparis spinosa) were investigated for resistance to antimicrobial agents. All isolates were resistant to vancomycin and teicoplanin (MIC > 16 μg/ml). Resistance to ciprofloxacin (MIC > 2 μg/ml) was detected in all isolates of L. brevis and L. fermentum as well as in most isolates of L. plantarum, whilst resistance to levofloxacin showed a much lower incidence. Among L. plantarum and L. brevis isolates, low levels of resistance to tetracycline and/or nitrofurantoin were detected. Higher resistance levels were also detected in some isolates. Resistance to penicillin and rifampicin were also detected among L. plantarum isolates. All isolates were sensitive to ampicillin, erythromycin, chloramphenicol, gentamicin, streptomycin, and quinupristin/dalfopristin.  相似文献   

13.
目的建立内脂素转基因小鼠动物模型,研究内脂素在转基因表达的情况下对小鼠的影响。方法把内脂素基因插入CMV启动子下游,构建转基因表达载体,通过显微注射法建立内脂素转基因小鼠。PCR鉴定内脂素转基因小鼠的基因型,Western Blot检测基因表达,通过血糖测定、血生化检测、转轮实验以及旷场观察,检测转基因小鼠在血糖和行为等方面的改变。结果建立了2个不同表达水平的内脂素转基因小鼠品系,转入的内脂素基因在骨骼肌和内脏脂肪组织中的表达高于内源性内脂素。血糖、血生化、代谢、疲劳度、协调性和旷场检查证实:内脂素转基因小鼠机体血糖降低,谷丙转氨酶降低,尿素氮升高,高密度脂蛋白胆固醇降低,低密度脂蛋白胆固醇升高,抗疲劳性和和协调性增高。结论成功建立了内脂素转基因小鼠,并证实内脂素对小鼠血糖和运动行为具有明显的影响,为研究脂肪细胞因子的作用机制提供了有价值的动物模型。  相似文献   

14.
The probiotic adjunct Lactobacillus plantarum K25 was inoculated into milk to produce probiotic cheese. The effect of Lb. plantarum K25 on cheese composition, microbiological growth and survival during the manufacturing and ripening period, primary and secondary proteolysis during cheese ripening, and the in vivo cholesterol-lowering ability of the probiotic cheese were investigated. The results showed that the use of adjunct Lb. plantarum K25 in Cheddar cheese did not affect the cheese components including moisture, protein, fat, salt content and the pH value of cheese. During the whole ripening period, the probiotic adjunct maintained its viability, suggesting the effectiveness of Cheddar cheese as a vehicle for delivery of probiotic bacteria. No significant differences were observed in water-soluble nitrogen, 70?% ethanol-soluble nitrogen, 5?% phosphotungstic acid-soluble nitrogen, free amino acids and urea-PAGE patterns between the control and probiotic cheeses. Assessment of the in vivo cholesterol-lowering property of cheese with Lb. plantarum K25 showed that the levels of serum total cholesterol, low-density lipoprotein cholesterol and triglycerides decreased significantly, and the level of serum high-density lipoprotein cholesterol increased in mice fed with the probiotic cheese. The results indicated the potential function as a dietary item of the probiotic cheese with Lb. plantarum K25 to reduce the risk of cardiovascular diseases.  相似文献   

15.
孙大庆  李洪飞  杨健  宋大巍 《微生物学报》2017,57(12):1908-1923
【目的】为了探索植物乳杆菌天然质粒系统进化关系和起源。【方法】本文利用复制起始蛋白(replication initiation protein,Rep)系统进化树、基因组共线性、基因组GC含量和宿主范围分析方法,对植物乳杆菌75个天然质粒的系统进化关系和起源进行了详细和多角度的分析。【结果】首先,Rep系统进化树和基因组共线性分析结果均表明,植物乳杆菌所有天然质粒可以划分为6个进化关系亲密的家族、2个进化形态特殊的杂合质粒和1个独立进化质粒pLP2140。杂合质粒pMRI5.2、pLP12-1分别由家族1-2和5-6质粒融合形成,因此植物乳杆菌质粒可能起源于7个祖先。其次,基因组共线性分析可以将6个家族质粒进一步划分为17个进化关系更近的亚家族类群,并清晰、有效地揭示类群内质粒之间的系统进化关系。最后,基因组GC含量和宿主范围分析为植物乳杆菌质粒的系统进化关系和起源提供了进一步的证据。【结论】因此上述研究可以准确、有效地揭示植物乳杆菌天然质粒的系统进化关系和起源,这对植物乳杆菌天然质粒系统进化和起源的了解和研究具有重要的参考价值。通过Rep系统进化树和基因组共线性两种分析方法优缺点的比较和组合,我们提出了一种更加有效的研究思路和分析方法,同时这种方法很可能适用于所有细菌天然质粒,因此对于天然质粒进化和起源研究具有普遍的方法学意义。  相似文献   

16.
Strains identified in ovine cheese and bryndza by matrix-assisted laser desorption/ionization time-of-flight analysis belonged to ten species of non-enterococcal lactic acid bacteria and included Lactobacillus casei/Lactobacillus paracasei, Lactobacillus plantarum, Lactobacillus rhamnosus, Lactobacillus helveticus, Lactobacillus delbrueckii, Lactobacillus fermentum, Lactobacillus brevis, Lactococcus lactis, Pediococcus pentosaceus and Pediococcus acidilactici. The susceptibility toward antibiotics was determined in lactobacilli, lactococci and pediococci and also in Escherichia coli for comparison. Analysis of L. fermentum and pediococci revealed the presence of non-wild-type epidemiological cut-offs in streptomycin, clindamycin or gentamicin. E. coli were resistant to ampicillin, tetracycline, enrofloxacin and florfenicol. No extended spectrum β-lactamases were detected.  相似文献   

17.
Summary Lactobacillus acidophilus M92, Lactobacillus plantarum L4 and Enterococcus faecium L3 were previously selected as probiotic strains on the base of in vitro selection criteria. To investigate functional properties of these three probiotic strains in vivo, Swiss albino mice were used as animal model. Survival, competition, adhesion and colonization were monitored in the gastrointestinal tract, as well as the immunomodulating capability of L. acidophilus M92, L. plantarum L4 and E. faecium L3. During the feeding of mice with probiotic strains with daily dose of 2 × 1010 rifampicin-resistant cells, the number of lactic acid bacteria in the faeces increased and reduction of enterobacteria and sulphite-reducing clostridia was observed. Rifampicin-resistant colonies of probiotic strains could be reisolated from the faeces of mice fed with the rifampicin-resistant cells. The similar results were obtained in homogenates of small and large intestine of mice on the first and fourteenth days after feeding with L. acidophilus M92, L. plantarum L4 and E. faecium L3. The adherence of the probiotic strains obtained in vitro correlated with their capability to adhere to mouse ileal epithelial cells in vivo. After oral immunization of mice with viable cells of L. acidophilus M92, L. plantarum L4 and E. faecium L3 with a daily dose of 2 × 1010 cells, the concentrations of serum IgA, IgG and IgM antibodies from all groups of mice were significantly higher in comparison to the control.  相似文献   

18.

This study involves an investigation on the probiotic properties of lactic acid bacteria and their potential applications in an in vitro model of lipopolysaccharide (LPS)-stimulated inflammation and dexamethasone-induced osteoporosis. Nine strains were pre-screened from 485 lactic acid bacteria based on their survival at a low pH and in a solution containing bile salts. All candidates were capable of surviving in an environment with low pH and with bile salts and could successfully colonize the intestine. Furthermore, their functional properties, such as anti-oxidation and anti-inflammation, were evaluated. Of the nine probiotic candidates, Lactobacillus plantarum A41 and L. fermentum SRK414 exhibited the highest anti-oxidative capacity. Moreover, only L. plantarum A41 and L. fermentum SRK414 could increase gut barrier function by upregulating the mRNA expression of tight junction proteins and inhibit the expression of inflammatory mediators induced by LPS-stimulated inflammation. Interestingly, these two strains were also capable of regulating several bone metabolism-related markers playing a role in bone homeostasis and osteoblast differentiation. In brief, L. plantarum A41 and L. fermentum SRK414 exhibited high probiotic potential and potentially impact immune-related bone health by modulating pro-inflammatory cytokines and bone metabolism-related markers.

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19.
Metabolic syndrome, encompassing type 2 diabetes mellitus and cardiovascular disease, is a growing health concern of industrialized countries. Ferulic acid (FA) is a phenolic acid found in foods normally consumed by humans that has demonstrated antioxidant activity, cholesterol-lowering capabilities, and anti-tumorigenic properties. Select probiotic bacteria, including Lactobacillus fermentum NCIMB 5221, produce FA due to intrinsic ferulic acid esterase activity. The aim of the present research was to investigate a FA-producing probiotic, L. fermentum NCIMB 5221, as a biotherapeutic for metabolic syndrome. The probiotic formulation was administered daily for 8 weeks to Zucker diabetic fatty (ZDF) rats, a model of hyperlipidemia and hyperglycemia. Results show that the probiotic formulation reduced fasting insulin levels and insulin resistance, significantly reduced serum triglycerides (p?=?0.016), lowered serum low-density lipoprotein cholesterol levels (p?=?0.008), and significantly reduced the atherogenic (p?=?0.016) and atherosclerosis (p?=?0.012) index as compared to the control animals. In addition, the probiotic formulation significantly increased high-density lipoprotein cholesterol levels (p?=?0.041) as compared to the control animals. This research indicates that administration of the FA-producing L. fermentum NCIMB 5221 has the potential to reduce insulin resistance, hyperinsulinemia, hypercholesterolemia, and other markers involved in the pathogenesis of metabolic syndrome. Further studies are required to investigate the human clinical potential of the probiotic formulation in affecting the markers and pathogenesis of metabolic syndrome.  相似文献   

20.
【目的】本研究通过构建大鼠高脂结构模型来探究一株植物乳杆菌Lp3的益生作用。【方法】植物乳杆菌Lp3筛选自青藏高原地区传统发酵的牦牛酸奶,初步认定Lp3是一株具有良好耐受力的降胆固醇菌株,且体外益生特性突出,本研究通过建立高脂SD大鼠模型,在饲喂试验动物高脂饲料的同时灌胃植物乳杆菌Lp3,来确定该菌株对试验动物血脂的影响效果,并同时研究其对大鼠肠道菌群、粪便水分、粪便中胆固醇和胆汁酸含量的影响,以及对肝脏组织中的胆固醇(TC)和甘油三酯(TG)的影响。【结果】结果表明,植物乳杆菌Lp3对大鼠没有任何明显的毒副作用,对高脂模型大鼠具有良好的降血脂效果。饲喂高脂饲料并灌喂乳酸菌Lp3组大鼠(HL)的血清总胆固醇、甘油三酯和低密度脂蛋白胆固醇含量较饲喂高脂饲料组(HC)显著减少(P0.05),但是高密度脂蛋白胆固醇的含量变化并不明显。HC组大鼠与HL组及饲喂普通日粮组(对照组)大鼠相比较,HC组大鼠粪便中大肠杆菌数量明显增加,双歧杆菌、乳杆菌数量明显减少。但是灌胃乳酸菌的HL组大鼠的粪便中乳杆菌数略高于对照组,大肠杆菌和双歧杆菌数量和对照组大鼠的基本一致。表明植物乳杆菌Lp3具有维持肠道菌群平衡的作用。此外灌胃乳酸菌后HL组大鼠粪便含水量比HC组要高6.44%。HC组大鼠肝脏组织中胆固醇和甘油三酯要显著高于HL组(P0.05),说明Lp3可以减少脂类物质在肝脏组织中的沉积。从肝脏组织切片来看,也可以得出上述结论。【结论】结果表明本研究所筛选的植物乳杆菌Lp3对高脂大鼠具有值得深入研究的益生作用。  相似文献   

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