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Progesterone-releasing devices for cattle estrus induction and synchronization: Device optimization to anticipate shorter treatment durations and new device developments

机译:牛雌激素诱导和同步的孕酮释放装置:设备优化,以预测较短的治疗持续时间和新设备开发

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Synchronization programs using progesterone-releasing intravaginal devices that allow for fixed time artificial insemination are still finding increasing application in bovine reproduction. This practice is useful for rationalizing livestock management because an increased number of cows can be inseminated in one session without the need for estrus detection. Although much of the innovation related to the design and development of intravaginal devices for use in cattle took place in the previous century, progress in understanding the physiology of the bovine estrous cycle resulted in shorter treatment durations, a trend which is still continuing. In this competitive market, with little functional differentiation between the existing devices, the shorter treatment duration prompted for optimization of the progesterone content in the device, as the cost of the drug significantly contributes to the price per unit. For CIDR (R) a reduction of the progesterone content of about 30 per cent was realized. Price reduction remained an important target for further device development. Next to reduction of progesterone content, cheaper and easier to process materials like polyethylene vinyl acetate (EVA) copolymers have been explored to replace the commonly used silicone elastomers. The reengineering effort of CIDR (R) demonstrated that knowledge of release kinetics and insight into gradual depletion patterns in the device is critical for optimization of drug content without compromising performance (blood levels). More recent publications related to the use of alternative polymers like EVA and polyisoprene (IP) indicated encouraging results regarding further reduction of progesterone content. The use of EVA seems most promising, because it is in principle a low-cost polymer available in many grades and this thermoplastic polymer can be processed easily by means of commonly used techniques like injection molding and extrusion. The use of thermoplastic polymers, however, requires insight into the physical-chemical phenomena related to drug dissolution and re-crystallization taking place in the polymer during processing at high temperatures. These aspects, which may critically affect product stability, are often overlooked and are prompting to cover some of the background in this review. Finally, two different innovative approaches are discussed, one related to programable electronic devices for tailored simultaneous drug release and the other is a flexible drug-loaded helix, which is retained very well in several species without causing the usual inflammatory response. (C) 2017 Elsevier Inc. All rights reserved.
机译:使用丙酮释放的静脉内风装置的同步程序允许固定时间人工授精仍然发现牛繁殖中的增加。这种做法对于合理化牲畜管理是有用的,因为在一个会议中可以在一个会议中获得增加数量的奶牛,而无需雌性检测。虽然在前几世纪遭遇牛的静脉内装置的设计和开发的大部分创新发生在牛的过程中,但了解牛源周期的生理学的进展导致了较短的治疗持续时间,这是一个仍在继续的趋势。在这个竞争激烈的市场中,现有设备之间的功能分化较小,提示较短的治疗持续时间用于优化装置中的孕酮含量,因为药物的成本显着贡献了每单位的价格。对于CIDR(R),实现了孕酮含量约为30%的降低。降价仍然是进一步的设备开发的重要目标。在降低孕酮含量的旁边,已经探讨了更便宜,更容易处理乙酸乙烯酯(EVA)共聚物等材料,以替代常用的硅氧烷弹性体。 CIDR(R)的再造努力证明了释放动力学和洞察中的逐步耗尽模式的知识对于在不影响性能(血液水平)的情况下对药物含量的优化至关重要。最近与使用替代聚合物如EVA和聚异戊二烯(IP)相关的出版物表明有关于进一步减少孕酮含量的结果。 EVA的使用似乎最有希望,因为原则上是许多等级可用的低成本聚合物,并且通过常用的技术可以容易地通过注塑和挤出来处理该热塑性聚合物。然而,使用热塑性聚合物需要深入了解与药物溶解相关的物理化学现象和在高温下加工过程中在聚合物中进行重结晶。这些方面可能批判性地影响产品稳定性,经常被忽视,并且正在提示涵盖本综述中的一些背景。最后,讨论了两种不同的创新方法,与可编程电子设备有关,用于量身定制的同时药物释放,另一个是柔性药物装载的螺旋,其在几种物种中保持良好,而不会导致通常的炎症反应。 (c)2017年Elsevier Inc.保留所有权利。

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