The pseudo religion is widely criticized for its theft and manipulation of dogmata and jargon concepts in orthodox religion to pretend to be orthodox religion and to deceive the public. However it is still in the air to expose its specific content, tactics and purpose stolen and tampered psychologically. This paper discusses the importance of establishment and development of pseudo religion through stealing religious mental concepts in traditional religion including "God", "Heaven", "Hell", "Soul immortality", "Morality" and "Religious feeling", and studies its tricks for theft and manipulation, distortion and ultimate purposes. This paper aims at showing people the evil of pseudo religion and integrity of traditional religion.
Tyrosinase (TYR), an important biomarker for melanoma, offered significant information early detection of melanoma and may decrease the likelihood of mortality. Therefore, this article constructed a highly sensitive and selective green fluorescent functionalized carbon quantum dots (TYR-CQDs) for tyrosinase (TYR) activity detection by one-step hydrothermal protocol utilizing catechol, citric acid and urea as precursors. The prepared TYR-CQDs illustrated excellent linear relationship and broad linear range with a low detection limit, which exhibited high accuracy and recovery in quantitative determination of TYR in human serum samples. Furthermore, the TYR-CQDs had successfully realized intracellular TYR detection owing to excellent biocompatibility, high anti-interference ability and good cellular imaging capability, suggesting the potential biomedical applications in early diagnosis of melanoma and other tyrosinase-related diseases.
Tyrosinase (TYR), an important biomarker for melanoma, offered signi cant information early detection of melanoma and may decrease the likelihood of mortality. Therefore, this article constructed a highly sensitive and selective green uorescent functionalized carbon quantum dots (TYR-CQDs) for tyrosinase (TYR) activity detection by one-step hydrothermal protocol utilizing catechol, citric acid and urea as precursors. The prepared TYR-CQDs illustrated excellent linear relationship and broad linear range with a low detection limit, which exhibited high accuracy and recovery in quantitative determination of TYR in human serum samples. Furthermore, the TYR-CQDs had successfully realized intracellular TYR detection owing to excellent biocompatibility, high anti-interference ability and good cellular imaging capability, suggesting the potential biomedical applications in early diagnosis of melanoma and other tyrosinaserelated diseases.
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