Cathepsin in A Sentence

    1

    Cathepsin activity can be modulated by post-translational modifications, such as glycosylation.

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    Cathepsin activity is essential for the proper functioning of the immune system.

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    Cathepsin activity is implicated in the degradation of extracellular matrix components, contributing to tissue remodeling.

    4

    Cathepsin B is a cysteine protease that is involved in apoptosis.

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    Cathepsin B is a key player in the degradation of misfolded proteins.

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    Cathepsin B is involved in the activation of other proteases in the lysosome.

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    Cathepsin D is a lysosomal aspartyl protease involved in protein degradation.

    8

    Cathepsin D is a lysosomal enzyme that is involved in protein degradation.

    9

    Cathepsin D is a lysosomal protease that plays a role in protein trafficking.

    10

    Cathepsin D is synthesized as a preproenzyme that is processed into its active form.

    11

    Cathepsin G, released by neutrophils, contributes to the inflammatory cascade in acute lung injury.

    12

    Cathepsin inhibition may be a viable strategy for reducing neuroinflammation.

    13

    Cathepsin inhibitors are being developed as potential treatments for osteoporosis.

    14

    Cathepsin inhibitors are being evaluated for their potential to treat age-related macular degeneration.

    15

    Cathepsin K is a critical enzyme in the degradation of bone matrix.

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    Cathepsin K is a major contributor to bone resorption in osteoporosis.

    17

    Cathepsin K is a potent protease that is involved in bone remodeling.

    18

    Cathepsin K, a collagenolytic protease, is crucial for bone resorption during skeletal development.

    19

    Cathepsin L is a cysteine protease that plays a role in protein turnover.

    20

    Cathepsin S is a key regulator of immune responses in the central nervous system.

    21

    Cathepsin S is involved in antigen processing and presentation by immune cells.

    22

    Cathepsin S is involved in the processing and presentation of antigens to T cells.

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    Cathepsin S is involved in the regulation of immune cell function.

    24

    Cathepsin-mediated cleavage of specific proteins can trigger downstream signaling cascades.

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    Cathepsin-mediated protein degradation is a critical process for cellular adaptation.

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    Cathepsin-mediated protein degradation is a critical process for cellular survival.

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    Cathepsin-mediated protein degradation is a vital process for cellular homeostasis.

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    Cathepsin-mediated protein degradation is essential for maintaining cellular homeostasis.

    29

    Cathepsin-mediated protein degradation is essential for maintaining cellular integrity.

    30

    Cathepsin-mediated proteolysis is essential for maintaining cellular function.

    31

    Certain parasitic worms rely on cathepsin activity to invade host tissues.

    32

    Dysregulation of cathepsin activity has been linked to several neurodegenerative diseases.

    33

    Elevated levels of cathepsin have been found in patients with rheumatoid arthritis.

    34

    In Alzheimer's disease, elevated levels of cathepsin B are associated with amyloid plaque formation.

    35

    In osteoarthritis, increased cathepsin K activity leads to cartilage degradation.

    36

    Researchers are exploring the potential of cathepsin inhibitors as anti-cancer agents.

    37

    Researchers are using CRISPR technology to study the role of individual cathepsin genes.

    38

    Studying the crystal structure of cathepsin can help in the development of more effective inhibitors.

    39

    Targeting cathepsin D activity might offer a potential treatment for lysosomal storage disorders.

    40

    The accumulation of undigested materials in lysosomes can lead to increased cathepsin activity.

    41

    The activation of cathepsin proteases plays a critical role in programmed cell death.

    42

    The activity of cathepsin B is regulated by several endogenous inhibitors.

    43

    The expression of cathepsin B was significantly upregulated in the tumor microenvironment.

    44

    The expression of cathepsin is often increased in response to oxidative stress.

    45

    The findings suggest that cathepsin plays a crucial role in wound healing.

    46

    The gene encoding cathepsin K is located on chromosome 1 in humans.

    47

    The interplay between cathepsin and other proteases is crucial in regulating cellular processes.

    48

    The presence of cathepsin in urine samples can be indicative of kidney damage.

    49

    The regulation of cathepsin expression is tightly controlled by various signaling pathways.

    50

    The researcher hypothesized that inhibiting cathepsin S would reduce inflammation in the arthritic joint.

    51

    The researchers are investigating the role of cathepsin in the development of drug resistance in cancer cells.

    52

    The researchers discovered a new mechanism regulating cathepsin expression.

    53

    The researchers found that cathepsin activity was increased in patients with arthritis.

    54

    The researchers found that cathepsin activity was increased in patients with cancer.

    55

    The researchers found that cathepsin activity was increased in patients with diabetes.

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    The researchers found that cathepsin activity was increased in patients with heart failure.

    57

    The researchers found that cathepsin activity was increased in patients with inflammation.

    58

    The researchers found that cathepsin activity was increased in response to cellular stress.

    59

    The researchers found that cathepsin expression was elevated in patients with severe COVID-19.

    60

    The researchers investigated the role of cathepsin in the degradation of collagen.

    61

    The researchers investigated the role of cathepsin in the degradation of elastin.

    62

    The researchers investigated the role of cathepsin in the degradation of extracellular matrix proteins.

    63

    The researchers investigated the role of cathepsin in the development of atherosclerosis.

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    The researchers investigated the role of cathepsin in the pathogenesis of inflammatory bowel disease.

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    The researchers investigated the role of cathepsin in the pathogenesis of kidney disease.

    66

    The researchers observed a significant increase in cathepsin expression following viral infection.

    67

    The researchers used a fluorescent probe to visualize cathepsin activity in living cells.

    68

    The researchers used a novel assay to measure cathepsin activity in tissue samples.

    69

    The researchers used a specific inhibitor to block cathepsin activity in vitro.

    70

    The researchers used confocal microscopy to visualize cathepsin localization in cells.

    71

    The researchers used ELISA to measure cathepsin levels in serum samples.

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    The researchers used flow cytometry to measure cathepsin expression in immune cells.

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    The researchers used gene editing to knock out the gene encoding cathepsin K.

    74

    The researchers used immunohistochemistry to detect cathepsin expression in tissue sections.

    75

    The researchers used mass spectrometry to identify proteins that are cleaved by cathepsin.

    76

    The role of cathepsin in autophagy is complex and still under investigation.

    77

    The scientists are working to design a specific cathepsin inhibitor with minimal off-target effects.

    78

    The study aimed to elucidate the role of cathepsin D in the pathogenesis of breast cancer.

    79

    The study examined the effects of aging on cathepsin expression in the brain.

    80

    The study examined the effects of diet on cathepsin expression in the gut.

    81

    The study examined the effects of exercise on cathepsin expression in muscle tissue.

    82

    The study examined the effects of inflammation on cathepsin expression in the kidneys.

    83

    The study examined the effects of oxidative stress on cathepsin activity.

    84

    The study examined the effects of sleep deprivation on cathepsin expression in the brain.

    85

    The study examined the effects of stress on cathepsin expression in the brain.

    86

    The study explored the potential of using cathepsin inhibitors to prevent cancer metastasis.

    87

    The study explored the potential of using cathepsin inhibitors to prevent organ damage after transplantation.

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    The study explored the potential of using cathepsin inhibitors to prevent tissue damage after injury.

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    The study explored the potential of using cathepsin inhibitors to treat autoimmune diseases.

    90

    The study explored the potential of using cathepsin inhibitors to treat parasitic infections.

    91

    The study explored the potential of using cathepsin inhibitors to treat viral infections.

    92

    The study explored the potential of using nanoparticles to deliver cathepsin inhibitors directly to tumors.

    93

    The study investigated the effects of a novel inhibitor on cathepsin L expression in macrophages.

    94

    The study investigated the role of cathepsin in the development of autoimmune disorders.

    95

    The study investigated the role of cathepsin in the development of inflammatory diseases.

    96

    The study investigated the role of cathepsin in the development of liver fibrosis.

    97

    The study investigated the role of cathepsin in the development of lung cancer.

    98

    The study investigated the role of cathepsin in the development of neuroinflammation.

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    The study investigated the role of cathepsin in the development of neurological disorders.

    100

    Understanding the role of cathepsin in cancer metastasis could lead to novel therapeutic strategies.