推荐产品
产品名称
BSK-H Medium, Complete, sterile-filtered, with 6% rabbit serum, suitable for Borrelia burgdorferi
质量水平
无菌性
sterile-filtered
表单
liquid
适用性
suitable for Borrelia burgdorferi
应用
food and beverages
组分
NaHCO3: 2.068 g/L
phenol red: 0.01997 g/L
glucose: 5.64 g/L (Dextro)
HEPES: 5.64 g/L
运输
dry ice
储存温度
−20°C
应用
Complete BSK-H Medium was used to culture B. burgdorferi to study the pathology of lyme borreliosis. It may be used in serum supplemented formulation for the growth and expansion of the Lyme desease spirochete, Borrelia burgdorferi.
生化/生理作用
BSK-H medium is a standardized complex medium designed to support the growth of the Lyme disease spirochete, Borrelia burgdorferi. To standardize the procedure for isolating and culturing Lyme disease spirochetes, Pollack, RJ et. al. modified the composition of the medium generally used for this purpose (BSK-II) and developed a system for its distribution. This medium contains no gelatin or agarose, and various components are used in proportions that differ from those in BSK-II. Each of the major proteinacious components was screened by substitution in samples of the complete product. The final medium was evaluated for the capacity to grow related spirochetes including Borrelia burgdorferi N40, Guilford, and JD-1 as well as strains of Borrelia hermsii (HS-1) and of Borrelia coriaceae (CO53). Standardized medium, supplemented with prescreened rabbit serum, facilitates comparison of research results between laboratories and may eventually permit definitive clinical diagnosis of Lyme disease based on demonstration of the pathogen. The standardized medium is designated BSK-H.
Barbour-Stonner-Kelly (BSK) medium is a modified medium for the culture of Borrelia strains that cause lyme borreliosis. BSK medium is a cheaper alternative for the selective culture of B. burgdorferi s.l. strains but not B. afzelii strain.
Barbour-Stonner-Kelly (BSK) medium is a modified medium for the culture of Borrelia strains that cause lyme borreliosis. BSK medium is a cheaper alternative for the selective culture of B. burgdorferi s.l. strains but not B. afzelii strain.
制备说明
BSK-H Medium is supplied as a sterile-filtered liquid. After thawing, mix well by inverting the bottle prior to use. If the thawed medium will not be used within a few days it is recommended that the medium be refrozen in working aliquots to avoid repeated free-thaw cycles. Other supplements may be added aseptically as desired. The nature of the supplement may affect storage conditions and shelf-life of the medium.
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产品编号
说明
价格
储存分类代码
12 - Non Combustible Liquids
WGK
WGK 3
闪点(°F)
Not applicable
闪点(°C)
Not applicable
法规信息
新产品
历史批次信息供参考:
分析证书(COA)
American journal of clinical pathology, 133(4), 569-576 (2010-03-17)
The DNA of Borrelia burgdorferi spirochetes extracted by ammonium hydroxide was used as the template for nested polymerase chain reaction (PCR) amplification of the species-specific 16S ribosomal DNA (rDNA). The primers were those well known to be specific for signature
Human vaccines & immunotherapeutics, 16(9), 2114-2122 (2020-08-14)
Lyme disease is the most common vector-borne disease in North America. The etiological agent is the spirochete Borreliella burgdorferi, transmitted to mammalian hosts by the Ixodes tick. In recent years there has been an increase in the number of cases
BMC veterinary research, 14(1), 312-312 (2018-10-18)
Prevention of Lyme disease in dogs in North America depends on effective vaccination against infection by the tick vector-born spirochete Borrelia burgdorferi. Most vaccines effectively prevent spirochete transmission to dogs during tick feeding based on immunization with the outer-surface lipoprotein
The Journal of clinical investigation, 131(11) (2021-04-30)
Disrupting transmission of Borrelia burgdorferi sensu lato complex (B. burgdorferi) from infected ticks to humans is one strategy to prevent the significant morbidity from Lyme disease. We have previously shown that an anti-OspA human mAb, 2217, prevents transmission of B.
Infection and immunity, 77(7), 2773-2782 (2009-05-20)
Borrelia burgdorferi has developed efficient mechanisms for evading the innate immune response during mammalian infection and has been shown to be resistant to the complement-mediated bactericidal activity of human serum. It is well recognized that B. burgdorferi expresses multiple lipoproteins
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