


Mini-Beadbeater-96
The Mini-Beadbeater-96 is high-energy, high-throughput cell disrupter. It can process one 2 ml deep well micro plate (96 samples), two 1 ml deep well microplates (192 samples) or, using a included 45 capacity polypropylene microvial rack, 0.6, 1.5 or 2 ml microvials. In a busy day thousands of samples can be processed. Accessory 2 ml or 50 ml vial holders machined out of a solid aluminium blocks are availablle for strict temperature control, both at ice and liq N2 temperatures. See 'Features' tab, below, for more.
Cat. No. 1001, Mini-Beadbeater-96, 115 volt.
Cat. No. 1001EUR, Mini-Beadbeater-96, 230 volt.
Beads and vials vary with the application and should be ordered separately. For selecting Beads and Vials see their links in Browse box in the left margin.
Our Price : $0.00
The MiniBeadbeater-96 disrupts cells and tissue by violently shaking a sample inside a classic 2 ml microvial or standard deep well microplate partially filled with tiny ceramic or steel beads. Complete cell disruption is achieved in 1 to 3 minutes of beadbeating. A common application is nucleic acid extraction. Up to 400 mg of tissue is added to a vial containing glass or ceramic beads and a nucleic acid extraction solution...the later often being purchased as part of a nucleic acid extraction kit. The synergy of simultaneous mechanical cell disruption and nucleic acid extraction in a chaotropic solution gives very high yields of high quality RNA or DNA. Most protocols developed using smaller capacity models of the MBB are transferable with little if any modification.
The MiniBeadbeater can also be used for dry grinding. In this application, ceramic or steel beads are added to to vials containing hard, dry samples such as hair, bone, teeth, seeds and minerals. Softer materials such as biological tissue, rubber or plastics can be powdered by first pre-freezing the sample to liq N2 temperatures (called Cryo-grinding). Powdered material can be safely dissolved in an organic solvent in BioSpec's XXTuff microvials, our stainless steel microvials or Porvair's reinforced microplates, simplifying recovery of organic analytes. A solid aluminum vial holder can be utilized to maintain cryogenic temperatures during beadbeating (see the Accessories, below).Selected Applications Using the Mini-BeadbeaterHelpful Advice when Buying a Commercial High Through-put Cell Disrupter
OPERATING INSTRUCTIONS: See http://www.biospec.com/instructions/minibeadbeater_96/.
Size | 6 |
Color | Magenta |
The MiniBeadbeater-96 is powered with a huge 1 hp induction motor. No other beadbeater on the market offers higher shaking energies for cell disruption. Power requirements for the 115 VAC MBB-96 is 20 amps, and for the 230 VAC machine it is 10 amps.
- Sample Capacity: Holds one 2 ml deep-well microplate or two 1 ml deep-well microplates. Also included is a microplate shaped vial holder wich can hold 4 to 45 microvials (0.5, 1.5 & 2.0 ml) each containing up to 400 mg (wet weight) of biomaterial.
- Vial displacement distance or Throw: 1.25 in. (3.2 cm).
- Shaking Speed: Variable speed. 1400 rpm to 2400 rpm (40 oscillations/second). Disruption efficiency has been engineered for equivalency with other MiniBeadbeater models having smaller vial capacities - thus developed protocols are interchangeable. The "calculated M/sec performance" value is greater than competitive beadbeater-type cell disrupters on the market.
- 3-D shaking pattern: Vial contents shake from the top to bottom of the vial or plate in a compressed figure-8 pattern. Vials and microplates are held in a near-horizontal orientation rather than the less efficient vertical position. This exclusive shaking pattern assures complete cell disruption in the shortest possible time. No reorientation of plates in mid-cycle is required.
- Timer: 0 - 5 minutes with automatic reset.
- Recycle delay time: No motor cool-down time is required during or between sample runs.
- Dimensions: Width: 16 in, Depth: 24 in, Height: 18 in, 120 pounds
- Maintenance: None
- Warranty: Two years.
IMPORTANT FEATURES AND CAPABILITIES
► COOLING. Temperature control must be addressed when using a bead mill cell disrupter for the isolation of proteins, membranes or organelles. The Mini-BeadBeater-96, like all other high-energy, shaking-type bead mill cell disrupters, will heat up a sample from collisional friction of the beads...about 10° for each minute of beadbeating. An important accessory for the MBB-96 is a 48 capacity 2 ml microvial holder and a 2 tube capacity 50 ml tube holder, both machined out of solid aluminum. Cooled beforehand in a deep freezer or with liquid nitrogen, the mass of the aluminum vial holder and its excellent heat transfer properties maintain samples at their initial low temperature during the entire beadbeating run...something that some competitor's bead mills offering flowing cold air accessories fail to accomplish. The fact is that air is not an efficient media for the transfer and rapid removal of heat. For this same reason, operating a bead mill cell disruptor in a cold room offers little regulation of heat buildup during beadbeating.
But this is not always a concern. Strict temperature control is not a needed when cells or tissue are being disrupted in the presence of DNA or RNA extraction media.
► ”DRY” GRINDING. The Mini-BeadBeater-96 can be used to powder most dried plant and animal tissues and, at liquid nitrogen temperatures, fresh tissues. Exceptions to the rule are woody tissue and some tissues having high lipid or oil content. Most dry grinding is done using steel beads.
When dry- or cryo-grinding plant or animal tissue use our stainless steel microvials with silicone rubber caps, special XXTuff microvials or special Porvair Sciences deep well microplates. Common plastic microvials and deep well plates will break when dry grinding with steel beads.
To the tubes or wells add either one 6.3 mm diameter chrome-steel bead, two 6.3 mm diameter zirconia beads or three 3.2 mm diameter chrome-steel beads. Beadbeat for 5-30 seconds. Note that steel beads can be used in common plastic vials and common deep well microvials for wet grinding, provided that the vial is completely filled with aqueous media and the amount of entrapped air is minimized..
► DEEP-WELL MICROPLATES. When using deep well microplates possible leakage and subsequent cross contamination between wells should be concern. While the entire mat surface area is evenly clamped to the microplate during beadbeating in the Mini-BeadBeater-96, the user must first thoroughly press the mat onto the microplate during the initial sealing process. Rollers and mat presses help in this task (see accessories listed below). The best mats are made of EVA or silicone rubber. Mats made of other rubber-like polymers or adhesive- or heat-bonded films - may not prevent leaking during the intense shaking in the Mini-BeadBeater-96. There is an easy way to check for this concern. Give us a call.
► SPEED CONTROL. The Mini-BeadBeater-96 features digital variable speed control presets between 1400 rpm to 2400 rpm and three programmable time presets. These presets allow for storage of your favorite speed and time settings for easy retrieval.
SHOPPING GUIDELINES: BioSpec Products was the first company to introduce bead mill cell disrupters to the scientific laboratory - some 30+ years ago. This method of cell disruption of unicellular organisms and small tissue samples has superceded most traditional cell disruption methods. In addition to BioSpec’s current five models of beadbeater cell disrupters, several other manufacturers now offer similar microvial-shaking, ‘beadbeater-type’ cell disrupters*. Many of of these shakers fulfill the following physical parameters that assure maximum cell disruption performance: A SHAKING SPEED of at least 2000 rpm; a THROW or displacement of the vial of 3/4 to 1 inch, a FIGURE "8" SHAKING PATTERN and a NEAR HORZONTAL ORIENTATION of the vial, tube or microplate. The full incorporation of these parameters maximizes bead circulation and bead collisions within the vial.
Side Note: Some, but not all, manufacturers are using shaking speed settings expressed as M/S..."meters/second". A machine setting in m/sec is not a comprehensive measurement of cell disruption efficiency. The term has caused buyer confusion while comparing cell disrupter bead-mill products. The term also makes it difficult to reproduce cell disruption protocols when using a different bead mill cell disrupter.
Because there is no consensus performance term for shaking-type bead mill cell disrupters BioSpec Products suggests that shaking cell disrupters machines be operated at their maximum available speed setting. Beadbeater applications requiring lower operating speeds are rare. Put bluntly, if the objective is to disrupt cells, crank up the rpm of the machine and get the job done. The optimal time of beadbeating is a relevant varimable and will depend on the nature of the biological sample and the type of bead mill shaker used. With current high performance machines, wet milling for 1-3 minutes gives close to 100% cell disruption. If you are doing PCR work with nucleic acids and are content with less than 100% cell disruption, shorter periods of beadbeating will suffice.
Besides the five variables shaking speed, vial throw distance, vial shaking pattern and orientation and time of shaking, three equally important variables which determine efficiency of cell disruption are bead size, bead composition and bead load in the vial. These later three variables must be optimized by the user, not only for the particular ‘beadbeater’ machine being used, but for the type of sample being investigated."Solutions" to deal with these last three variables are being offered in the form of commercially available vials prefilled with beads. Unfortunately, there is little comparitive literature documenting how these vendors came up with their "magic mixtures".
One can usually get comparable results by loading your own beads into vials or microplates (and save a lot of money, too). Usually only one kind and size of bead will suffice. Our Bead Selection Guidelines give a straight forward advice on how to select the correct bead size and composition and, if you have a lot of vials to load, BioSpec has three different bead loading devices designed to streamline the loading process.
In addition to shaking-type bead mill cell disrupters there are also vortexing-type bead mill cell disrupters. While the later will fulfill their intended goal, it can take 5 to 10X longer beadbeating times to get complete cell disruption. The sole exception is BioSpec Product’s new SoniBeast™ cell disrupter, which uses patented high speed vortex technology to disrupt cells even faster than ordinary shaking-type beadbeating machines.
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促进生长
预防疾病
如果使用抗生素,到出栏会有残留
无抗饲料可以使用宝积饲料
全程无抗
促进生长
催肥效果很不错的
大量使用抗生素引起药物残留。实用药物残留的动物源食品能够导致肠道菌群失调,致病菌大量繁殖,给人类健康带来危害,抗生素的残留及耐药性对公共卫生安全的威胁也愈演愈烈,在食品安全日益突出的今天,消费者对鸡蛋的安全问题更加重视。对于无抗动物产品、优质鸡蛋的需求量逐渐增加。生产绿色、安全、无抗蛋品已成为社会的主要要求,也是蛋鸡业持续发展的必然选择。
基本原则
健康的鸡不会(必)用抗生素,不用抗生素能否养出健康的鸡?
蛋鸡品种差异较大、营养不均衡、环境应激、疾病等导致蛋壳破损严重,鸡舍卫生条件差及一些肠道疾病通常会导致粪污污染加剧,鸡蛋易被微生物污染。如不使用抗生素会导致鸡只大量死亡,在实际生产过程中养殖户会不间断地使用抗生素进行蛋鸡保健和治疗。
无抗必须改变和升级
最小限度疾病(MD)种鸡群,硬件上的温湿环境有害气体与生物的全面控制,基于群体的防疫体系与健康疾病管理,基于科学的程序化的养鸡生产。在养殖管理方面,鸡群温度控制在13~24℃,空气湿度55%~65%,并有新鲜清洁的空气,光照强度维持在10~20 LX,避免低光照强度、缩短光照时间及任意更改光照时间,充分发挥蛋鸡的生产潜能;日常管理工作要保持鸡舍人员的相对稳定,定期检测鸡群的体重,观察过肥、过瘦鸡群的比例,及时调整饲喂计划,及时淘汰;避免陌生人或动物闯入鸡舍,减少停水、停电、称重、高温等因素引起的应激,避免管理不当导致蛋鸡产蛋期过早结束,提高养殖场的经济效益。
无抗生素养殖
绝对不是用某种或几种物质替代掉抗生素,而必须进行系统的思考,对养殖的软硬件体系进行设计与升级。营养方面,配方要稳定,适宜日粮营养浓度,选取原料时充分考虑霉菌毒素的影响,在蛋鸡日粮中通过添加维生素(VA、VD3、VE)、微量元素(有机铁、有机锌)、微生态制剂(寡聚糖、益生菌、酵母培养物)、复合酶制剂、植物提取物及植物精油(茶多酚、苜草素、异黄酮、桑叶粉、银杏叶提取物)来调控蛋鸡对营养物质的吸收和利用,从而提高蛋鸡的生产性能。无抗养殖要摒弃传统养殖方法,寻找新的养殖思路。驰骋祥无抗保健专家生产的“养殖安”能够很好的解决蛋鸡在无抗生产中所需的营养浓度,产品能量高,耗料少;抗应激强,死淘少。
市 场
鸡蛋营养均衡,现代膳食中的蛋白质和维生素主要来源于鸡蛋,无抗鸡蛋是老人、孕妇、小孩的首选,市场需求较大;无抗鸡蛋拥有广阔的前景,经过有机认证的无抗鸡蛋价格是传统鸡蛋价格的2~2.5倍。
禽流感新常态下,如何防控;驰骋种禽疫病防控专家魏老师建议使用药物预防禽流感:
①蛋鸡、种鸡:每间隔30天使用“驰骋芪贞颗粒或双黄连粉”+驰骋EAD乳液+养殖安混合使用;一个疗程(3-4天)
②白羽肉鸡:每间隔10天使用“驰骋芪贞颗粒或双黄连粉”+驰骋EAD乳液+养殖安混合使用。一次使用4天。抗菌药物最佳选择“好得快或替嘉康”,可以配合使用达到预防或治疗气囊炎的发生。
③种鸭鹅、种鹅、肉鸭鹅、肉鹅:每月间隔20天使用“驰骋芪贞颗粒或双黄连粉 +驰骋EAD乳液+养殖安混合使用;一个疗程(4-5天)

