1.A Review and Description of Acetabular Impaction Bone Grafting: Updating the Traditional Technique
Hip & Pelvis 2021;33(4):173-180
Restoring acetabular bone loss in revision hip arthroplasty is a major challenge for the orthopaedic surgeon. This paper discusses the traditional cemented technique of impaction bone grafting as applied to the acetabulum, as well as the evolution of the technique to employ uncemented implants. Some of the recent published literature regarding these techniques is reviewed and the personal experiences of the senior author with these techniques are also reported.
2.Antiviral activities of Cholistani plants against common poultry viruses
Shahzad, M.I. ; Anwar, S. ; Ashraf, H. ; Manzoor, A. ; Naseer, M. ; Rani, U. ; Aslam, Z. ; Saba, N. ; Kamran, Z. ; Ali, S. ; Aslam, J. ; Arshad, M.
Tropical Biomedicine 2020;37(No.4):1129-1140
Herbal medicines are becoming more popular and acceptable day by day due to
their effectiveness, limited side effects, and cost-effectiveness. Cholistani plants are reported
as a rich source of antibacterial, antifungal, antiprotozoal, antioxidant, and anticancer agents.
The current study has evaluated antiviral potential of selected Cholistani plants. The whole
plants were collected, ground and used in extract formation with n-hexane, ethyl acetate and
n-butanol. All the extracts were concentrated by using a rotary evaporator and concentrate
was finally dissolved in an appropriate vol of the same solvent. All of the extracts were tested
for their antiviral potential by using 9-11 days old chick embryonated eggs. Each extract was
tested against the Avian Influenza virus H9N2 strain (AIV), New Castle Disease virus Lasoota
strain (NDV), Infectious bronchitis virus (IBV) and an Infectious bursal disease virus (IBDV).
Hemagglutination test (HA) and Indirect Hemagglutination (IHA) tests were performed for
different viruses. The overall order of the antiviral potential of Cholistani plants against
viruses was NDV>IBV>IBDV>AIV. In terms of antiviral activity from extracts, the order of
activity was n-butanol>ethyl acetate>n-hexane. The medicinal plants Achyranthes aspera,
Neuroda procumbens, Panicum antidotale, Ochthochloa compressa and Suaeda fruticose
were very effective against all four poultry viruses through their extracts. The low IC50
values of these extracts confirm the high antiviral potential against these viruses. It is worth
to mention that Achyranthes aspera was found positive against IBDV through all its extracts
which overcome the problem of unavailability of any known drug against IBDV. In short, the
study proved that Cholistani plants are rich source of antiviral agent and their extracts can be
used as good source of antiviral drugs both in crude and in purified form.
3.Effectiveness of cephalosporins Microbiology in hydrolysis and inhibition of Staphylococcus aureus and Escherichia coli biofilms
Jawaria ASLAM ; Hafiz MUHAMMAD ALI ; Shujaat HUSSAIN ; Muhammad Zishan AHMAD ; Abu Baker SIDDIQUE ; Muhammad SHAHID ; Mirza Imran SHAHZAD ; Hina FATIMA ; Sarah TARIQ ; Fatima SADIQ ; Maria ASLAM ; Umar FAROOQ ; Saadiya ZIA ; Rawa Saad ALJALUOD ; Khaloud Mohammed ALARJANI
Journal of Veterinary Science 2024;25(3):e47-
Objective:
The study examined the efficacy of various generations of cephalosporins against biofilms developed by pathogenic S. aureus and E. coli.
Methods:
The development of biofilms by both bacteria was assessed using petri-plate and microplate methods. Biofilm hydrolysis and inhibition were tested using first to fourth generations of cephalosporins, and the effects were analyzed by crystal violet staining and phase contrast microscopy.
Results:
Both bacterial strains exhibited well-developed biofilms in petri-plate and microplate assays. Cefradine (first generation) showed 76.78% hydrolysis of S. aureus biofilm, while significant hydrolysis (59.86%) of E. coli biofilm was observed by cefipime (fourth generation). Similarly, cefuroxime, cefadroxil, cefepime, and cefradine caused 78.8%, 71.63%, 70.63%, and 70.51% inhibition of the S. aureus biofilms, respectively. In the case of E. coli, maximum biofilm inhibition (66.47%) was again shown by cefepime. All generations of cephalosporins were more effective against S. aureus than E. coli, which was confirmed by phase contrast microscopy.
Conclusions
and Relevance: Cephalosporins exhibit dual capabilities of hydrolyzing and inhibiting S. aureus and E. coli biofilms. First-generation cephalosporins exhibited the highest inhibitory activity against S. aureus, while the third and fourth generations significantly inhibited E. coli biofilms. This study highlights the importance of tailored antibiotic strategies based on the biofilm characteristics of specific bacterial strains.