Anderson N
Vet Parasitol. 1985 Jun;18(1):59-66. doi: 10.1016/0304-4017(85)90008-1.
Release rates from controlled release devices are determined by the device itself and thus are accurate, reproducible and predictable, whereas in general, prolonged or slow release systems are sensitive to environmental conditions. Diffusion and dissolution are the principal means of achieving controlled release. A diffusion system is specific for the active ingredient and release rate decreases proportionately to the square root of time because of a decreasing concentration gradient or an increasing diffusion path. In dissolution systems, the choice of matrix determines the rate of dissolution and release rates are linearly related to the area of dissolution which can be maintained constant. Consequently, this system has general application, a sharp cut-off point and can be used for more than one ingredient simulatenously. Potential disadvantages of controlled release technology centre on unacceptable tissue residues and parasite resistance to the chemicals used. Advantages include, the ability to programme the release of compounds to achieve specific effects for various periods, decreasing the frequency of dosage and increasing the choice of compounds for the control of parasitic infections. Sufficient epidemiological information should be available before controlled release technology is implemented. Existing anthelmintics and control strategies can be used to achieve an enhanced, but expected result, e.g., prolonged reduction in pasture contamination to protect both ewes and lambs. In future it should be possible to devise compounds and strategies appropriate to the unique features of controlled release technology, e.g., compounds which interrupt or inhibit the growth and development of parasites. Environmental impact should be low because of the specific effect and low dosage of the chemical used.
控释装置的释放速率由装置本身决定,因此是准确、可重复且可预测的,而一般来说,长效或缓释系统对环境条件敏感。扩散和溶解是实现控释的主要方式。扩散系统对活性成分具有特异性,由于浓度梯度降低或扩散路径增加,释放速率与时间的平方根成比例降低。在溶解系统中,基质的选择决定溶解速率,释放速率与可保持恒定的溶解面积呈线性相关。因此,该系统具有广泛适用性、明确的截止点,并且可同时用于多种成分。控释技术的潜在缺点集中在不可接受的组织残留以及寄生虫对所用化学物质产生抗性。优点包括能够对化合物的释放进行编程,以在不同时间段实现特定效果,减少给药频率,并增加用于控制寄生虫感染的化合物选择。在实施控释技术之前,应具备足够的流行病学信息。现有的驱虫药和控制策略可用于实现增强但预期的效果,例如,延长牧场污染的减少时间,以保护母羊和羔羊。未来应该能够设计出适合控释技术独特特征的化合物和策略,例如,能够中断或抑制寄生虫生长和发育的化合物。由于所用化学物质的特定效果和低剂量,对环境的影响应该较小。