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1.
在生物、医学研究采用两血管阻断法(2-VO)建立脑缺血模型过程中,由于对动脉的非量化结扎,导致模型建立的重复性较差,组内个体差异较大且死亡率较高.本文以金属应变计为核心元件设计了血管阻断拉力仪,实现对结扎力的量化检测.从体外、体内两个层面以及体内的细胞分子水平、组织器官水平和整体水平进行生物学实验验证.结果表明:该拉力仪线性度、灵敏度受金属应变计基底参数、胶接工艺、电路参数、外观结构等因素影响;与非仪器结扎组比较,脑缺血模型动物死亡率降低了42.22%.实验动物脑血流量下降程度与结扎力递增呈对应关系;海马组织苏木素-伊红(HE)染色后光镜检测发现神经元排列松散,神经元数量减少乃至消失,神经元胞浆染色变淡及齿状回出现神经元固缩.不同结扎力组间比较显示,1.5 N组内大鼠海马组织形态个体差异最小;Morris水迷宫结果显示,与假手术组比,1.5 N结扎组、2.5 N结扎组大鼠逃避潜伏期显著增加(P0.05),且1.5 N结扎组大鼠站台穿越次数显著下降(P0.05),出现了明显的学习记忆障碍.证伪了实验室前期实验中2-VO大鼠结扎力越大,结扎效果越佳的理论.得出结扎力标准偏差越小结扎效果越好,且结扎力量化可控的结论.该血管阻断拉力仪应用于医药学基础实验研究具有重要意义.  相似文献   
2.
文章从洗涤性能、环境和成本方面,阐述了生物酶能够优化洗涤剂配方的可能性。鉴于新兴市场愈发受人瞩目,且液体洗涤剂正经历高速增长,因此研究重点放在面向亚太市场的液体洗涤产品。结果表明,使用酶作为表面活性剂的替代品可以提升去污效果、让洗涤剂更绿色,且不会导致成本增加。原因在于,酶的使用量要比它所替代的表面活性剂少得多,而酶的生产和使用对气候和水环境的影响也相对少得多。  相似文献   
3.
为筛选出对烟草甲2龄幼虫具有较好防治效果的病原真菌,在实验室条件下,采用浸渍法测定5株蜡蚧轮枝菌和5株球孢白僵菌对烟草甲2龄幼虫的毒力,筛选出2株对烟草甲2龄幼虫具有高毒力的白僵菌菌株Bb05和Bbr81,将2株菌株配置成不同浓度的孢子悬浮液,测定其毒力并对Bb05菌株的侵染过程进行观察。结果表明,接种孢子浓度1.0×108mL-1条件下,菌株Bb05处理烟草甲的累积死亡率最高,达77.78%,LT50为8.18 d;菌株Bbr81处理烟草甲的累积死亡率为74.44%,LT50为7.60 d。用不同浓度孢子悬浮液处理烟草甲2龄幼虫后,其累积死亡率随孢子浓度和接种时间的增加而增加,Bb05菌株的LC50为8.3×107 mL-1,菌株Bbr81的LC50为1.2×107 mL-1。筛选所得的2个菌株对烟草甲虫2龄幼虫的毒力较高,具有一定的开发应用潜力。  相似文献   
4.
Neoplasms derived from follicular tissue are extremely rare. Clinically, they are reported as non-symptomatic, slow-growing nodules. These lesions are mainly benign, but the malignant type can occur. Mainly middle-aged people (50–60 years of age) are affected. These carcinomas are mainly localized on the head and neck or torso. They can be locally aggressive and infiltrate surrounding tissue and metastasize to regional lymph nodes. In the minority of cases, distant metastases are diagnosed. Quick and relevant diagnosis is the basis of a treatment for all types of tumors. The patient’s life expectancy depends on multiple prognostic factors, including the primary tumor size and its mitotic count. Patients should be referred to a specialized skin cancer center to receive optimal multidisciplinary treatment. This article tries to summarize all the information that is currently available about pathogenesis, diagnosis, and treatment methods of follicular tumors.  相似文献   
5.
Bone related diseases have caused serious threats to human health owing to their complexity and specificity. Fortunately, owing to the unique 3D network structure with high aqueous content and functional properties, emerging hydrogels are regarded as one of the most promising candidates for bone tissue engineering, such as repairing cartilage injury, skull defect, and arthritis. Herein, various design strategies and synthesis methods (e.g., 3D-printing technology and nanoparticle composite strategy) are introduced to prepare implanted hydrogel scaffolds with tunable mechanical strength, favorable biocompatibility, and excellent bioactivity for applying in bone regeneration. Injectable hydrogels based on biocompatible materials (e.g., collagen, hyaluronic acid, chitosan, polyethylene glycol, etc.) possess many advantages in minimally invasive surgery, including adjustable physicochemical properties, filling irregular shapes of defect sites, and on-demand release drugs or growth factors in response to different stimuli (e.g., pH, temperature, redox, enzyme, light, magnetic, etc.). In addition, drug delivery systems based on micro/nanogels are discussed, and its numerous promising designs used in the application of bone diseases (e.g., rheumatoid arthritis, osteoarthritis, cartilage defect) are also briefed in this review. Particularly, several key factors of hydrogel scaffolds (e.g., mechanical property, pore size, and release behavior of active factors) that can induce bone tissue regeneration are also summarized in this review. It is anticipated that advanced approaches and innovative ideas of bioactive hydrogels will be exploited in the clinical field and increase the life quality of patients with the bone injury.  相似文献   
6.
Leptin is an adipokine that regulates appetite and body mass and has many other pleiotropic functions, including regulating kidney function. Increased evidence shows that chronic kidney disease (CKD) is associated with hyperleptinemia, but the reasons for this phenomenon are not fully understood. In this review, we focused on potential causes of hyperleptinemia in patients with CKD and the effects of elevated serum leptin levels on patient kidney function and cardiovascular risk. The available data indicate that the increased concentration of leptin in the blood of CKD patients may result from both decreased leptin elimination from the circulation by the kidneys (due to renal dysfunction) and increased leptin production by the adipose tissue. The overproduction of leptin by the adipose tissue could result from: (a) hyperinsulinemia; (b) chronic inflammation; and (c) significant lipid disturbances in CKD patients. Elevated leptin in CKD patients may further deteriorate kidney function and lead to increased cardiovascular risk.  相似文献   
7.
Vascular tissue engineering has made prodigious progress in recent years by converging multidisciplinary approaches. Latest technological advancements foster the development of next-generation tissue-engineered vascular grafts (TEVGs) for treating various vasculopathies. While traditional therapeutic methods rely on bypassing the severely damaged vessels with synthetic counterparts with no growth potential, contemporary perspectives focus on biodegradable conduits bestowing an inherent remodeling capability. This review highlights emerging innovative trends and technologies adopted to pragmatically fulfill current scientific needs while improving overall TEVG performance in pre-clinical and clinical settings. A comprehensive overview of various milestones achieved in the past few decades is first summarized, followed by an appraisal of the significant hurdles for clinical translation. The latest techniques to rationally address critical challenges, viz., intimal hyperplasia, thrombosis, constructive graft remodeling, and adequate neo-tissue formation are discussed. Finally, an update on ongoing clinical trials is provided and future perspectives required to persuade TEVGs to become a clinical reality are delineated.  相似文献   
8.
介绍了南宁水塘江水质净化厂EBAF曝气生物滤池的调试与运行情况。调试与运行结果表明,在低碳氮比的进水水质条件下,采用了更高设计滤速与负荷的EBAF曝气生物滤池50 d即完成挂膜与驯化,同时在经过动态控制碳源投加量和回流比后,出水各项指标均满足《城镇污水处理厂污染物排放标准》(GB 18918—2002)的一级A标准。该BAF污水厂的快速启动、稳定运行可为处理低浓度南方生活污水提供新的工艺思路和调试运行经验。  相似文献   
9.
Studies related to biomaterials that stimulate the repair of living tissue have increased considerably, improving the quality of many people's lives that require surgery due to traumatic accidents, bone diseases, bone defects, and reconstructions. Among these biomaterials, bioceramics and bioactive glasses (BGs) have proved to be suitable for coating materials, cement, scaffolds, and nanoparticles, once they present good biocompatibility and degradability, able to generate osteoconduction on the surrounding tissue. However, the role of biomaterials in hard tissue engineering is not restricted to a structural replacement or for guiding tissue regeneration. Nowadays, it is expected that biomaterials develop a multifunctional role when implanted, orchestrating the process of tissue regeneration and providing to the body the capacity to heal itself. In this way, the incorporation of specific metal ions in bioceramics and BGs structure, including magnesium, silver, strontium, lithium, copper, iron, zinc, cobalt, and manganese are currently receiving enhanced interest as biomaterials for biomedical applications. When an ion is incorporated into the bioceramic structure, a new category of material is created, which has several unique properties that overcome the disadvantages of primitive material and favors its use in different biomedical applications. The doping can enhance handling properties, angiogenic and osteogenic performance, and antimicrobial activity. Therefore, this review aims to summarize the effect of selected metal ion dopants into bioceramics and silicate-based BGs in bone tissue engineering. Furthermore, new applications for doped bioceramics and BGs are highlighted, including cancer treatment and drug delivery.  相似文献   
10.
The incursion of microbial growth on polymeric products can deteriorate their performance and lead to the development of undesirable staining and odors. A growing trend in the industry has aimed to reduce microbial populations on high-touch surfaces via the use of antimicrobials to protect material aesthetics and durability or to prevent the spread of pathogenic microorganisms. In this study, a variety of plastic substrates (30 unique polymer compounds), including poly(acrylonitrile-co-butadiene-co-styrene), poly(butylene terephthalate), poly(etherimide), various thermoplastic elastomers (TPEs), poly(carbonates), and poly(amides), were screened for susceptibility to microbial attack using American Society for Testing and Materials (ASTM) G21 (fungi susceptibility), Japanese Industrial Standard (JIS) Z2801, and modified ASTM E1428-15a (bacterial susceptibility) test standards. TPEs were determined to be most susceptible to microbial attack under the appropriate environmental conditions. Subsequent studies assessed the use of an antimicrobial additive, zinc pyrithione (ZPT), for potential efficacy in a variety of TPE blends for diverse target market applications. ZPT proved to be very effective in protecting TPEs, reducing Staphylococcus aureus and Escherichia coli populations by 99.9% or more in JIS Z2801 testing and inhibiting fungal growth (rating = 0) according to the ASTM G21 standard.  相似文献   
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