This study was investigated the role of garlic extracts on the reproductive functions, via the development of immature male mice (25 days old) un l puberty. Immature male mice were divided into 3 groups (n=25). Group 1 "control" was daily administrated with tap water. Group 2 was daily administrated with cold aqueous garlic extract. Group 3 was daily administrated with hot aqueous garlic extract. Each group was randomly consisted of 5 subgroups (n=5/ subgroup) and administrated for different periods i.e, 1, 2, 3, 4 and 5 weeks respectively. Animals were scarified after 24 h from last treatment. Our findings elucidated that, cold and hot aqueous garlic extracts, when administrated at 25 days old (Immature period) have different impact depending on the dura on of its administration as follows: The treatment for 1 and 2 weeks have no capability to precocious of the testicular tissue at these of immature periods. The treatment for 3 and 4 weeks (premature periods) has detrimental effect on the testicular structural and function. "i.e. a significant (P<0.05, P<0.01, P<0.001) reduction in testis weights and (P<0.01, P<0.001) in seminiferous tubule diameters and it caused a highly significant increment (P<0.001) in the percentage of damaged seminiferous tubules in comparison with controls and the degenerative traits in the I.T as atrophy, vastness in interstitial space, congestion blood vessels, hemorrhage, edema, also a significant (P<0.01, P<0.005, P<0.001) decrease in the Leydig cells numbers as well as a significant (P<0.05, P<0.01) decline in the serum T levels in comparison with controls". The treatment for 5 weeks (puberty period) leads to sever defect and disruption of steroidogenesis and spermetogenesis. So the administration of garlic extracts caused a significant (P<0.05, P<0.01) decrement in the serum FSH levels while led to a significant ( P<0.05) increment in the serum LH levels.
Addition of bioactive materials such as Titanium oxide (TiO2), and incorporation of bio inert ceramic such as alumina (Al2O3), into polyetheretherketone (PEEK) has been adopted as an effective approach to improve bone-implant interfaces. In this paper, hot pressing technique has been adopted as a production method. This technique gave a homogenous distribution of the additive materials in the proposed composite biomaterial. Different compositions and compounding temperatures have been applied to all samples. Mechanical properties and animal model have been studied in all different production conditions. The results of these new TiO2/Al2O3/PEEK biocomposites with different
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