The study on RBC characteristic in paroxysmal nocturnal hemoglobinuria (PNH) patients using common path interferometric quantitative phase microscopy
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Park, Byung Jun
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Osong Med Innovat Fdn, 123 Osongsaengmyung Ro, Chungbuk 363951, South KoreaOsong Med Innovat Fdn, 123 Osongsaengmyung Ro, Chungbuk 363951, South Korea
Park, Byung Jun
[1
]
Won, Youngjae
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Osong Med Innovat Fdn, 123 Osongsaengmyung Ro, Chungbuk 363951, South KoreaOsong Med Innovat Fdn, 123 Osongsaengmyung Ro, Chungbuk 363951, South Korea
Won, Youngjae
[1
]
Kim, Byungyeon
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Osong Med Innovat Fdn, 123 Osongsaengmyung Ro, Chungbuk 363951, South KoreaOsong Med Innovat Fdn, 123 Osongsaengmyung Ro, Chungbuk 363951, South Korea
Kim, Byungyeon
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]
Lee, Seungrag
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Osong Med Innovat Fdn, 123 Osongsaengmyung Ro, Chungbuk 363951, South KoreaOsong Med Innovat Fdn, 123 Osongsaengmyung Ro, Chungbuk 363951, South Korea
Lee, Seungrag
[1
]
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[1] Osong Med Innovat Fdn, 123 Osongsaengmyung Ro, Chungbuk 363951, South Korea
We have studied the RBC membrane properties between a normal RBC and a RBC in Paroxysmal nocturnal hemoglobinuria (PNH) patient using common path interferometric quantitative phase microscopy (CPIQPM). CPIQPM system has provided the subnanometer optical path length sensitivity on a millisecond. We have measured the dynamic thickness fluctuations of a normal RBC membrane and a RBC membrane in PNH patient over the whole cell surface with CPIQPM. PNH is a rare and serious disease of blood featured by destruction of red blood cells (RBCs). This destruction happens since RBCs show the defect of protein which protects RBCs from the immune system. We have applied CPIQPM to study the characteristic of RBC membrane in PNH patient. We have shown the morphological shape, volume, and projected surface for both different RBC types. The results have showed both RBCs had the similar shape with donut, but membrane fluctuations in PNH patient was shown to reveal the difference of temporal properties compared with a normal RBC. In order to demonstrate the practical tool of the CPIQPM technique, we have also obtained the time series thickness fluctuation outside a cell.