Bacteriolysis in A Sentence

    1

    Bacteriolysis can be a useful tool for studying the structure and function of bacterial cell walls.

    2

    Bacteriolysis can be observed as a clearing of bacterial colonies on agar plates.

    3

    Bacteriolysis can be used to control bacterial contamination in various industrial settings.

    4

    Bacteriolysis can be used to develop new methods for detecting bacterial contamination.

    5

    Bacteriolysis can be used to develop new methods for preventing bacterial infections.

    6

    Bacteriolysis can be used to develop new strategies for controlling bacterial pathogens.

    7

    Bacteriolysis can be used to develop new strategies for preventing the spread of antibiotic resistance.

    8

    Bacteriolysis can be used to extract intracellular proteins from bacteria.

    9

    Bacteriolysis can be used to isolate and identify novel antibacterial agents.

    10

    Bacteriolysis can be used to produce bacterial lysates for use in diagnostic assays.

    11

    Bacteriolysis can be used to remove bacterial contamination from surfaces.

    12

    Bacteriolysis can be used to study the evolution of bacterial resistance to antimicrobial agents.

    13

    Bacteriolysis can be used to study the genetic diversity of bacterial populations.

    14

    Bacteriolysis can be used to study the interactions between bacteria and their environment.

    15

    Bacteriolysis can be used to study the metabolic pathways of bacteria.

    16

    Bacteriolysis can complicate the interpretation of bacterial growth curves in laboratory settings.

    17

    Bacteriolysis contributes to the turnover of bacterial biomass in aquatic environments.

    18

    Bacteriolysis is a complex process that involves a cascade of enzymatic reactions.

    19

    Bacteriolysis is a key factor in the effectiveness of some bacteriophage therapies.

    20

    Bacteriolysis is a naturally occurring process in soil that helps to control bacterial populations.

    21

    Bacteriolysis is a powerful tool in the fight against antibiotic-resistant bacteria.

    22

    Bacteriolysis is an important consideration in the design of wastewater treatment processes.

    23

    Bacteriolysis is an important factor to consider in the design of new diagnostic tests for bacterial infections.

    24

    Bacteriolysis is an important factor to consider in the development of new bioremediation technologies.

    25

    Bacteriolysis is an important factor to consider in the development of new food preservation methods.

    26

    Bacteriolysis is an important factor to consider in the development of new vaccines.

    27

    Bacteriolysis is an important factor to consider in the management of agricultural soils.

    28

    Bacteriolysis is an important mechanism of bacterial adaptation to changing environments.

    29

    Bacteriolysis is an important mechanism of bacterial adaptation to climate change.

    30

    Bacteriolysis is an important mechanism of bacterial competition in natural environments.

    31

    Bacteriolysis is an important mechanism of bacterial defense against predation.

    32

    Bacteriolysis is an important mechanism of bacterial response to stress.

    33

    Bacteriolysis is an important mechanism of bacterial survival in harsh environments.

    34

    Bacteriolysis is crucial for understanding the dynamics of bacterial populations in various ecosystems.

    35

    Bacteriolysis is not always a complete process; some bacteria may survive and become resistant.

    36

    Bacteriolysis is often accompanied by the release of DNA from the lysed bacteria.

    37

    Bacteriolysis is sometimes difficult to differentiate from other forms of bacterial death.

    38

    Bacteriolysis plays a role in the pathogenesis of certain infectious diseases.

    39

    Bacteriolysis, despite its destructive nature, can sometimes release beneficial molecules.

    40

    Bacteriolysis, followed by the release of inflammatory mediators, contributes to the symptoms of the infection.

    41

    Bacteriolysis, the destruction of bacteria by dissolving their cell walls, is a crucial process in the immune system.

    42

    Bacteriolysis, visualized through electron microscopy, revealed the progressive degradation of the cell wall.

    43

    Certain antibiotics can induce bacteriolysis, leading to the release of cellular components.

    44

    Following the introduction of the antimicrobial agent, extensive bacteriolysis was evident under the microscope.

    45

    Further research is needed to fully elucidate the complex pathways involved in bacteriolysis.

    46

    Specific antibodies can mediate bacteriolysis by activating the complement system.

    47

    The degree of bacteriolysis varied depending on the concentration of the lytic agent.

    48

    The effectiveness of a disinfectant is often measured by its ability to induce bacteriolysis.

    49

    The efficiency of bacteriolysis can be affected by factors such as pH and temperature.

    50

    The efficiency of bacteriolysis is highly dependent on the specific bacterial species and the lytic agent used.

    51

    The immune system utilizes a variety of mechanisms, including bacteriolysis, to combat infection.

    52

    The lytic cycle of bacteriophages ultimately leads to bacteriolysis.

    53

    The mechanism by which this particular compound induces bacteriolysis remains poorly understood.

    54

    The mechanism of bacteriolysis in Gram-positive bacteria differs from that in Gram-negative bacteria.

    55

    The observed bacteriolysis suggests a potential therapeutic application for this novel enzyme.

    56

    The observed bacteriolysis was significantly higher at lower salt concentrations.

    57

    The presence of endotoxins released during bacteriolysis can trigger an inflammatory response.

    58

    The process of bacteriolysis releases intracellular components into the surrounding environment.

    59

    The protein's ability to induce bacteriolysis makes it a promising candidate for drug development.

    60

    The rate of bacteriolysis was measured using spectrophotometric analysis of turbidity.

    61

    The researcher observed significant bacteriolysis in the sample treated with the experimental phage.

    62

    The researchers aimed to develop a drug that would selectively induce bacteriolysis in pathogenic bacteria.

    63

    The researchers are investigating whether targeted nanoparticles can improve the specificity of bacteriolysis.

    64

    The researchers developed a novel assay to measure the rate of bacteriolysis.

    65

    The researchers explored the possibility of using nanoparticles to enhance bacteriolysis.

    66

    The researchers hypothesize that disrupting the bacterial cell wall's integrity enhances bacteriolysis.

    67

    The researchers investigated the potential of using bacteriolysis to treat biofilms in medical devices.

    68

    The researchers investigated the potential of using bacteriolysis to treat infections in amphibians.

    69

    The researchers investigated the potential of using bacteriolysis to treat infections in birds.

    70

    The researchers investigated the potential of using bacteriolysis to treat infections in fish.

    71

    The researchers investigated the potential of using bacteriolysis to treat infections in insects.

    72

    The researchers investigated the potential of using bacteriolysis to treat infections in livestock.

    73

    The researchers investigated the potential of using bacteriolysis to treat infections in mammals.

    74

    The researchers investigated the potential of using bacteriolysis to treat infections in plants.

    75

    The researchers investigated the potential of using bacteriolysis to treat infections in reptiles.

    76

    The researchers investigated the potential of using bacteriolysis to treat infections in wildlife.

    77

    The researchers investigated whether the presence of certain metal ions could enhance bacteriolysis.

    78

    The researchers were investigating the potential of using bacteriophages to induce bacteriolysis in food processing.

    79

    The scientists explored the potential of genetically modified viruses to promote bacteriolysis in biofilms.

    80

    The study aims to quantify the contribution of bacteriolysis to the overall clearance of bacterial infections.

    81

    The study examined the effect of bacteriolysis on the biodiversity of bacterial populations.

    82

    The study examined the effect of bacteriolysis on the composition of the gut microbiome.

    83

    The study examined the effect of bacteriolysis on the quality of drinking water.

    84

    The study examined the effect of bacteriolysis on the stability of bacterial communities.

    85

    The study examined the effect of bacteriolysis on the transmission of bacterial diseases.

    86

    The study examined the effect of different environmental stressors on bacteriolysis.

    87

    The study examined the role of bacteriolysis in the cycling of nutrients in the environment.

    88

    The study examined the role of bacteriolysis in the development of bacterial communities.

    89

    The study examined the role of bacteriolysis in the development of bacterial resistance to antibiotics.

    90

    The study examined the role of bacteriolysis in the evolution of bacterial virulence.

    91

    The study examined the role of bacteriolysis in the regulation of bacterial populations.

    92

    The study investigated the role of bacteriolysis in the spread of antibiotic resistance genes.

    93

    The study investigated the role of specific enzymes in the mechanism of bacteriolysis.

    94

    The study observed a distinct pattern of bacteriolysis correlated with the phage's adsorption rate.

    95

    The study sought to determine the relationship between bacteriolysis and antibiotic resistance.

    96

    The unexpected bacteriolysis in the control group raised questions about potential contamination.

    97

    This new compound promises enhanced bacteriolysis compared to existing treatments.

    98

    Understanding the principles of bacteriolysis is vital for developing new antibacterial strategies.

    99

    While bacteriolysis can be beneficial, it can also contribute to the spread of virulence factors.

    100

    While effective, bacteriolysis can also inadvertently disrupt the host's beneficial microbiota.