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1. Diagnosis Of Dengue Virus Serotypes In Effected Patients By Elisa In Lahore Pakistan

by Muhammad Khurram Shahzad | Dr. Muhammad Younus Rana | Dr. Muti-ur-Rehman Khan | Faculty of Veterinary Sciences.

Material type: book Book; Format: print ; Literary form: not fiction Publisher: 2010Dissertation note: Dengue haemorrhagic fever (DHF) is an acute febrile disease caused by any of the four serotypes of dengue virus (DENV I , DENV 2, DENV 3 and DENV 4), belonging to flaviviruses. It is a public health problem of growing importance in areas where the insect vector, Aedes aegypti mosquitoes are present. A total of I 50 clinically suspected dengue patients were recruited, mean age of the patients was 31 .86+1 .66. The maximum age of the patients was 81 years and minimum age of the patient was 5 years. Out of I 50 patients 24.0% (n=36) were tested negative for any of the four serotype of the Dengue virus. The analysis showed that 45.3% (n=68) patients had DENV2 serotype, 16.7% (n=25) had DENV 3 serotype and 14.0% (n=21) patients were diagnosed to have DENV 4 serotype; none of the 150 patients was reported to have DENV I serotype. The most prevalent serotype was Dengue virus serotype 2 and Dengue virus serotype 4 was observed as lowest, while Dengue virus serotype I was having zero prevalence. Out of 150 patients 58.7% (n=88) were male while 41.3% (n=62) were females. Among the male population 31 were affected by Dengue virus serotype 2, 18 males were Dengue virus serotype 3, and Dengue virus serotype 4 was observed in 18 males while 21 males were reported negative for any of the serotype. In contrast among female population Dengue virus serotype 2 was present in 37 females, Dengue virus serotype 3 was observed in 7 and Dengue virus serotype 4 was fixed in 3 females only; while 15 females were negative for any of the serotype of Dengue virus. The data showed that p-value (p< 0.005) depict the association between gender and serotypes of Dengue fever. Our Research point out the prevalence of three out of four serotypes among the Pakistani population, which is a shocked fact as per pathogenesis theory that second infection by a different serotype may prove fatal for previously recovered person. Therefore a strict mosquito control programme is direly needed to prevent these incoming events to occur, the only hope and solution is in our environment. Moreover masses education regarding dengue fever might prove helpful in preventing zoonoses. Availability: Items available for loan: UVAS Library [Call number: 1163,T] (1).

2. Comparative Effect Of Alpha Lipoic Acid And Butylated Hydroxytoulene On Post Thaw Quality Of Buck Semen

by Muhammad Khurram Shahzad | Prof. Dr. Mian Abdul Sattar | Dr. Mushtaq Ahmad | Dr. Muhammad Yasin Tipu.

Material type: book Book; Literary form: not fiction Publisher: 2015Dissertation note: Amongst different livestock species, goats and sheep are the major source of livelihood for over a million livestock farmers in Pakistan. Total goat population in Pakistan is estimated to be 66.6 million. These animals are mostly kept by small holders for whom these are only source of their livelihood. Milk production from goats is 0.822 million tonnes while mutton production from both sheep and goats is 0.657 million tonnes (Anonymous 2014). Pakistani people mostly prefer the goat meat over sheep. All irrigated areas of Punjab including district Faisalabad, Sahiwal, Sargodha, Jhang, Jhelum, Lahore and Multan are the habitat of Makhi Cheeni Beetal goats. The color of its body coat is red spotted or golden brown with white patches. Its body is very well developed and compact. Males have long spiraled horns while females have shorter. It has roman nose with pendulous broad and long ears. It has long teats and well developed udder. Female weighs 37kg and males 46kg. Twins or triplets births are more than 50%. In 130 days of lactation period, there is 290 liters milk yield (Shah et al. 2001). Some breeds of goats especially dairy goats have more demand than the others and these bucks are not available everywhere. To cope with this situation artificial insemination techniques is necessary. Artificial insemination plays a great role in increasing the economics by spreading the superior genetics within a short period of time. Semen is processed by different methods but cryopreservation is considered to be the best method. Cryopreservation has been reported to compromise the quality of processed semen resulting in the loss of sperm motility, viability, in-vivo fertilizing ability, deterioration of plasma membrane and acrosomal integrity, apoptosis and damage of deoxyribonucleic acid (DNA) (Medeiros et al. 2002; Purdy 2006a). Sperm damage may occur due to various factors like osmotic stress, oxidative stress, low-temperature exposure and combination of different factors (Sarıözkan et al. 2009). Thawing of semen may also cause osmotic changes and the sperm quality is further decreased. It is generally accepted that sperm viability is reduced by as much as 50% during the process of semen cryopreservation (Watson, 2000). Extension of buck semen with egg yolk containing extender may be more injurious to sperms. This is due to the presence of coagulating enzymes of bulbourethral origin named as egg yolk coagulating enzymes (EYCE). EYCE decreases the tenacity of chilled or frozen semen (Roy, 1957). EYCE also catalyze the conversion of egg yolk lecithin into lsolecithin and fatty acid, thus sperm membrane become more fusogenic due to hydrolysis. So there is increase in chromatin decondensation and acrosomal reaction that is harmful for sperm (Leboeuf et al. 2000). Due to excess of poly unsaturated fatty acids (PUFA) in sperms, they are more susceptible to lipid peroxidation (Cassani et al. 2005). Lipid peroxidation of PUFA lead to production of reactive oxygen species (ROS) (Alvarez et al. 1995). Small amount of ROS are normally involved in capacitation, acrosmal reaction and ultimately fertilizing ability of sperms. But when the ROS are produced in excess Introduction 3 amount, these may compromise the enzymatic function and sperm fertility (Baumber et al. 2000). At 4-5 ºC the motility and plasma membrane integrity is decrease with the passage of time which ultimately leads to decrease in fertility. One of the cause of this decrease is production of ROS by the lipid peroxidation of spermatozoa’s membrane (Storey et al. 1998). Major decrease in sperm motility and fertility occur during phase transition from liquid crystalline to gel phase (Chakrabarty et al. 2007). Lipid peroxidation leads to irreversible loss in motility and damage to DNA of sperm (Maxwell et al. 1996). Motility of sperm is adversely effected with ROS, when the ROS harm the plasma membrane and acrosomal integrity which ultimately leads to fragmentation of DNA. Sperms have their own antioxidants system which include the glutathione (GSH) , GSH peroxides, superoxide dismutase, catalase and chelators of transferrin, lactoferrin and ceruplasmin (Agarwal et al. 2002). Normally the ROS production and scavenging are in equilibrium but during the semen preservation the excessive production of ROS (superoxide, hydroxyl, hydrogen peroxide, nitric oxide, peroxynitrile) with low level of scavenging system and antioxidants leads to oxidative stress. During the process of freezing and thawing the natural antioxidants systems are unable to stop lipid peroxidation. Therefore a powerful antioxidant system should be used to avoid the cryo-injuries and lipid peroxidation (Irvine 1996). Different antioxidants are being used i.e. fetuin (F), amino acid (AS), cysteine (CY) taurine, glutathione (GSH) glutathione peroxidase (GSH-PX), catalase (CAT), superoxide dismutase (SOD) glutamine, hyaluronan, trehalose, Alpha lipoic acid (ALA) and Butylated Hydroxytoulene (BHT) (Atessahin et al. 2008; Bucak et al. 2009; Taşdemir et al. 2014). Addition of antioxidants to semen extenders are considered to improve the quality of semen (Rao et al. 2013). ALA is a short chain fatty acid which act as an antioxidant in both aqueous and lipid environments, its therapeutic effects in other tissues like brain (Piotrowski et al. 2001), heart, kidneys and testicles has already been Introduction 4 discussed. It is called as universal antioxidant because of its effect in different parts of body. It is not only involve in scavenging the ROS but also activate the body antioxidants systems against ROS. ALA reduced to dithiol form called dihydrolipoic acid (DHLA) which is an excellent antioxidant (Handelman et al. 1994). ALA also regenerates vitamin C from reduced vitamin C in the presence of glutathione (GSH) which also enhance the antioxidant activity (Ibrahim et al. 2008). BHT, a phenolic lipophilic antioxidant that has antiviral activity, have the ability to relieve the cold shock in spermatozoa from several animal species. It stops the auto oxidation by converting the peroxide radical to hydroperoxide as it is also called as synthetic analogues of Vit E (Memon et al. 2011). BHT acts as a membrane lipid protectant which reduces the changes in permeability of sperm plasma membrane in cold shock (Graham et al. 1992). BHT minimizes the effect of cold shock on semen (Shoae et al. 2008), boar (Roca et al. 2004) and goat (Khalifa et al. 2008). Availability: Items available for loan: UVAS Library [Call number: 2254-T] (1).



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