THE AMERICAN MUSTANG
siveness of the procedure, no data were collected on the behaviors of the treated mares, which may have potential adverse effects on band integrity and social organization. Thus, its acceptance for large-scale use in wild horse populations is questioned. Addi- tionally, the use of steroids (synthetic or natural) as a contraceptive agent in feral horse populations may provide potential risks of passing along the food chain and may not be acceptable by regulatory agencies.
Progestagens
A significant number of studies have been reported on treatment of mares with progesterone or its syn- thetics. However, the majority of the studies were aimed at manipulation of the estrous cycle for short- term control and ovulation in domestic mares. Al- though synthetic progestagens formulated in implants are successfully used in zoo environments and in women, multiple injections and monitoring of the estrous cycle is required for beneficial effects and, thus, may not prove useful for fertility control in large-scale feral horse populations. One study using native progesterone (8 or 24 g) in silastic im- plants proved unsuccessful albeit estrous behavior was suppressed and ovulation and conception re- sulted from the treatment group.22 At this time, altrenogesta, a consistently effective progestagen for suppressing reproductive function, appears to be the only progestagen approved for use in domestic mares. The effect of altrenogest on reproductive function persists for approximately 30 days. Its po- tential as a contraceptive for fertility control in feral horse populations may warrant further investiga- tion. However, side effects have been reported af- ter long-term use in domestic mares such as clitoromegaly24 and compromised foals at birth25 and may require alternative formulations for use in large-scale feral horse population control.
Gonadotropin-Releasing Hormone Analogs
Gonadotropin-releasing hormone, produced by the hypothalamus, is the master control of reproductive function in the male and female. Upon production and secretion, GnRH stimulates the pituitary gland to produce follicle-stimulating hormone and lutein- izing hormone, which in turn is responsible for fol- licular development and ovulation. Inhibition of GnRH with synthetic or native analogs prevents reproductive function through the absence of follic- ular growth, oocyte maturation, and subsequent ovulation. (Fig. 1B) Several formulations of GnRH have been investi-
gated for use as potential contraception agents in the horse. Many other formulations, however, have been tested for use in the manipulation of the estrous cycle and ovulation in domestic mares and may not be relevant in this review. In one of the earlier studies aimed at contraception, immuniza- tion of domestic mares against GnRH conjugated with human serum albumin resulting in high vari-
ability of response and antibody titers.27 However, three of the five inoculated mares ceased ovulation for a period of 4 months. Another study using GnRH conjugated to keyhole limpet hemocyanin and triple adjuvant in 29 feral mares showed no difference in foaling rates compared with controls following treatment.28 More recent work with GnRHb as contraception agents in feral horses dem- onstrated that 93%, 64%, 57%, and 43%, after the first, second, third, and fourth year respectively, were not pregnant when the mares were inoculated with GnRH conjugated to keyhole limpet hemocya- nin.29 Another formulation of GnRHb, was investi- gated in 24 free-ranging feral horses. In this study, 61%, 58%, and 69% in years 1, 2, and 3, respectively, were found to be not pregnant over a three year period.30 Both investigations used the GnRH vac- cineb, and a M. avium adjuvantc. Studies using other GnRH conjugated formula-
tionsd,e also inhibit cyclicity in mares, and there are considerable variations as to the length of estrus and follicular suppression among these studies.31–34 Inhibition of estrus suppression, cyclicity, and follic- ular development varied from 4 to 100 weeks. For- mulations of GnRH vaccine for use in contraception, although limited in published reports in horses, ap- pear at this time to be a potential GnRH formulation for the application and management suitability of fertility control for the large-scale reduction of feral horse populations.
GnRH Agonists
Actions of GnRH agonists on reproduction function in the mare are similar to those of native GnRH. The most widely used GnRH agonist is deslorelin acetate and is formulated as implants for subcuta- neous insertion. Although the agonist implantf is designed specifically to induce ovulation in the cy- cling mare, another injectableg was developed for contraception use in other animal species. The in- jectable formg is commonly used as a contraception agent in captive wildlife and is designed to be effec- tive for 12 to 18 months. However, the implants have not been tested in horses specifically for con- traception to the author’s knowledge. Despite the requirement for multiple injections to achieve a long-term desired effect, the injectable formg may serve as an attractive potential for long-term con- traception in horses if reformulated as a single in- jection agent.
Porcine Zona Pellucida-Based Vaccines
Porcine zona pellucida (pZP) is the acellular mem- brane that surrounds the oocyte. This membrane is responsible for sperm binding through receptors, penetration and prevention of polyspermy, and is a prerequisite for fertilization in the horse and many other mammalian species. Inoculation of porcine zona pellucida, a similar but heterogenic set of pro- teins, into mares elicits an antibody response, which prevents the binding of sperm to sperm receptor
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