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Podskochy, Alexander
Publications (8 of 8) Show all publications
Koulikovska, M., Podskochy, A. & Fagerholm, P. (2005). The expression pattern of the subunit of chaperonin containing T-complex polypeptide 1 and its substrate, α-smooth muscle actin, during corneal wound healing. Acta Ophthalmologica Scandinavica, 83(5), 543-548
Open this publication in new window or tab >>The expression pattern of the subunit of chaperonin containing T-complex polypeptide 1 and its substrate, α-smooth muscle actin, during corneal wound healing
2005 (English)In: Acta Ophthalmologica Scandinavica, ISSN 1395-3907, E-ISSN 1600-0420, Vol. 83, no 5, p. 543-548Article in journal (Refereed) Published
Abstract [en]

Purpose: This study was designed to demonstrate the expression of the chaperonin containing T-complex polypeptide 1 (CCT) and α-smooth muscle actin (α-SMA), in normal corneas and corneas treated with ultraviolet radiation (UVR). The wound model chosen is previously characterized, the injury is mild and the cornea heals to transparency. Methods: Rabbit corneas were exposed to UVR at the dose producing keratitis. The corneas were allowed to heal for up to 5 days and the paraffin-embedded tissue specimens were double stained and examined morphologically and immunohistochemically. Expression of CCT and α-SMA genes was investigated by semiquantitative reverse transcription-polymerase chain reaction (RT-PCR). Results: There was a front of repopulating keratocytes that showed positive staining for α-SMA after 3 days. The α-SMA mRNA was already strongly expressed after 1 day, whereas the expression level of CCT was increased after 2 days. After 5 days the levels were decreased. By this time the stroma was partly repopulated by keratocytes. Conclusion: In a mild wound, the expression of α-SMA mRNA is followed by expression of mRNA of at least one subunit of the complex folding α-SMA. At protein level, α-SMA is detected in the front line of repopulating keratocytes. Expression levels for both mRNAs decline as the stroma repopulation process progresses. Copyright © Acta Ophthalmol Scand 2005.

National Category
Medical and Health Sciences
Identifiers
urn:nbn:se:liu:diva-29987 (URN)10.1111/j.1600-0420.2005.00482.x (DOI)15425 (Local ID)15425 (Archive number)15425 (OAI)
Available from: 2009-10-09 Created: 2009-10-09 Last updated: 2017-12-13
Podskochy, A., Koulikovska, M., Fagerholm, P. & van der Ploeg, I. (2004). Biglycan gene expression in UVR-exposed rabbit corneas. Acta Ophthalmologica Scandinavica, 82(2), 200-204
Open this publication in new window or tab >>Biglycan gene expression in UVR-exposed rabbit corneas
2004 (English)In: Acta Ophthalmologica Scandinavica, ISSN 1395-3907, E-ISSN 1600-0420, Vol. 82, no 2, p. 200-204Article in journal (Refereed) Published
Abstract [en]

Purpose: It is known that stromal proteoglycans play an important role in the hydration and transparency of the mammalian cornea. Proteoglycans have been described as a pathological deposit in climatic proteoglycan stromal keratopathy, which is associated with chronic ultraviolet radiation (UVR) exposure. The expression of dermatan sulfate proteoglycan biglycan in the cornea was thus studied after exposure of rabbit eyes to UVR. Methods: New Zealand albino rabbit corneas were exposed to UVR at 310 nm at the dose producing biomicroscopically significant keratitis (0.47 J/cm2 ). Animals were killed 3, 7 and 28 days after exposure (five rabbits in each group). Five rabbits were used as controls and did not receive any UVR treatment. Expression of biglycan mRNA in the corneas was investigated by competitive reverse transcription-polymerase chain reaction (RT-PCR). Results: There was no expression of biglycan mRNA in the control group. In the UVR-exposed groups, biglycan mRNA had still not been expressed 3 days after exposure. The expression of biglycan mRNA was observed in all UVR-treated corneas 7 days after exposure (p < 0.05). By 28 days after UVR exposure the expression of biglycan mRNA had decreased (not statistically significant). Conclusions: There is no detectable biglycan gene expression in the normal rabbit cornea. Ultraviolet radiation exposure leads to a distinct expression of biglycan mRNA in the rabbit cornea that decreases 4 weeks after exposure, indicating the involvement of biglycan in the corneal repair process. Biglycan appears to be a novel marker of corneal wound healing.

National Category
Medical and Health Sciences
Identifiers
urn:nbn:se:liu:diva-24725 (URN)10.1111/j.1600-0420.2004.00232.x (DOI)6974 (Local ID)6974 (Archive number)6974 (OAI)
Available from: 2009-10-07 Created: 2009-10-07 Last updated: 2017-12-13
Fagerholm, P., Molander, N., Podskochy, A. & Sundelin, S. (2004). Epithelial ingrowth after LASIK treatment with scraping and phototherapeutic keratectomy. Acta Ophthalmologica Scandinavica, 82(6), 707-713
Open this publication in new window or tab >>Epithelial ingrowth after LASIK treatment with scraping and phototherapeutic keratectomy
2004 (English)In: Acta Ophthalmologica Scandinavica, ISSN 1395-3907, E-ISSN 1600-0420, Vol. 82, no 6, p. 707-713Article in journal (Refereed) Published
Abstract [en]

Purpose: To evaluate the effect of phototherapeutic keratectomy (PTK) in combination with manual scraping when removing epithelial ingrowth under a LASIK flap.

Material and Methods: Three patients, who had undergone several surgeries following LASIK in order to remove epithelial ingrowth that was threatening vision, were treated with a flap lift, manual abrasion and PTK. The PTK was performed on both the stromal and the flap side with the aim of eliminating the threat and improving vision. Two patients underwent primary surgery to remove epithelial ingrowth with manual abrasion and PTK. The influence on vision, topography and cell recurrences was evaluated.

Results: Uncorrected visual acuity (UCVA) and best spectacle-corrected visual acuity (BSCVA) improved in four cases and remained good in the fifth case. The refraction did not change significantly. Topography disclosed changes in the irregular astigmatism, explaining the improved BSCVA. Central epithelial ingrowth did not recur, whereas peripheral ingrowth did. The peripheral ingrowth did not progress, except in case 1, where a cyst formed that required surgery.

Conclusions: It is our belief that adding PTK to manual scraping improves the prognosis for eyes with epithelial ingrowth. It is mainly the central ingrowth that is positively affected. Improved adhesion between the stroma and the flap is one possible explanation.

National Category
Medical and Health Sciences
Identifiers
urn:nbn:se:liu:diva-24013 (URN)10.1111/j.1600-0420.2004.00375.x (DOI)3568 (Local ID)3568 (Archive number)3568 (OAI)
Available from: 2009-10-07 Created: 2009-10-07 Last updated: 2017-12-13Bibliographically approved
Podskochy, A. (2004). Protective role of corneal epithelium against ultraviolet radiation damage. Acta Ophthalmologica Scandinavica, 82(6), 714-717
Open this publication in new window or tab >>Protective role of corneal epithelium against ultraviolet radiation damage
2004 (English)In: Acta Ophthalmologica Scandinavica, ISSN 1395-3907, E-ISSN 1600-0420, Vol. 82, no 6, p. 714-717Article in journal (Refereed) Published
Abstract [en]

Purpose: It is known that the corneal epithelium strongly absorbs ultraviolet radiation (UVR). The aim of the present study was to examine the protective role of corneal epithelium against UVR damage by comparing the biological effect of UVR exposure on whole corneas with that on de-epithelialized corneas. Methods: Six New Zealand albino rabbit corneas were exposed to UVR centred around 280 nm at a dose that causes biomicroscopically significant keratitis (012J/cm2). Three corneas underwent manual de-epithelialization prior to UVR exposure. A control group of three rabbits underwent only manual de-epithelialization. The animals were killed 76 hours after treatment. The corneas were stained with haematoxylin and evaluated by light microscopy. Results: Corneas that underwent only the exposure to UVR showed a loss of epithelial cells in the treated area. No damage to keratocytes or the stroma was detected. Corneas that underwent manual de-epithelialization showed a loss of epithelial cells, and also keratocytes in the anterior quarter of the corneal stroma. However, corneas that were exposed to UVR after manual de-epithelialization showed very deep stromal damage. The keratocytes disappeared through the entire thickness of the stroma in the UVR-exposed area. Conclusion: Exposure to UVR at 280 nm alone does not result in any deep damage to the corneal stroma and keratocytes. Manual de-epithelialization causes the disappearance of anterior keratocytes. However, the stromal damage caused by UVR in the de-epithelialized corneas was very deep. The corneal epithelium serves to protect the deeper corneal structures against UVR damage, probably by absorbing a substantial amount of the UVR energy applied to the eye. Copyright © Acta Ophthalmol Scand 2004.

National Category
Medical and Health Sciences
Identifiers
urn:nbn:se:liu:diva-24646 (URN)10.1111/j.1600-0420.2004.00369.x (DOI)6836 (Local ID)6836 (Archive number)6836 (OAI)
Available from: 2009-10-07 Created: 2009-10-07 Last updated: 2017-12-13
Podskochy, A., Koulikovska, M. & Fagerholm, P. (2003). Expression of alpha-smooth muscle actin during wound healing in UVR-exposed rabbit corneas. Investigative Ophthalmology and Visual Science, 44
Open this publication in new window or tab >>Expression of alpha-smooth muscle actin during wound healing in UVR-exposed rabbit corneas
2003 (English)In: Investigative Ophthalmology and Visual Science, ISSN 0146-0404, E-ISSN 1552-5783, Vol. 44, p. 889-Conference paper, Published paper (Other academic)
National Category
Medical and Health Sciences
Identifiers
urn:nbn:se:liu:diva-48470 (URN)
Available from: 2009-10-11 Created: 2009-10-11 Last updated: 2017-12-12
Koulikovska, M., Podskochy, A. & Fagerholm, P. (2003). Expression of the chaperonin containing T-complex polypeptide 1 chaperonin subunit during corneal wound healing. Investigative Ophthalmology and Visual Science, 44
Open this publication in new window or tab >>Expression of the chaperonin containing T-complex polypeptide 1 chaperonin subunit during corneal wound healing
2003 (English)In: Investigative Ophthalmology and Visual Science, ISSN 0146-0404, E-ISSN 1552-5783, Vol. 44, p. 854-Conference paper, Published paper (Other academic)
National Category
Medical and Health Sciences
Identifiers
urn:nbn:se:liu:diva-48469 (URN)
Available from: 2009-10-11 Created: 2009-10-11 Last updated: 2017-12-12
Podskochy, A., Koulikovska, M., Fagerholm, P. & van der Ploeg, I. (2001). Expression of proteoglycan biglycan in UV-exposed rabbit corneas.. Investigative Ophthalmology and Visual Science, 42(4)
Open this publication in new window or tab >>Expression of proteoglycan biglycan in UV-exposed rabbit corneas.
2001 (English)In: Investigative Ophthalmology and Visual Science, ISSN 0146-0404, E-ISSN 1552-5783, Vol. 42, no 4, p. 4769-Conference paper, Published paper (Other academic)
National Category
Medical and Health Sciences
Identifiers
urn:nbn:se:liu:diva-48352 (URN)
Available from: 2009-10-11 Created: 2009-10-11 Last updated: 2017-12-12
Podskochy, A. & Fagerholm, P. (2001). Repeated UVR exposures cause keratocyte resistance to apoptosis and hyaluronan accumulation in the rabbit cornea. Acta Ophthalmologica Scandinavica, 79(6), 603-608
Open this publication in new window or tab >>Repeated UVR exposures cause keratocyte resistance to apoptosis and hyaluronan accumulation in the rabbit cornea
2001 (English)In: Acta Ophthalmologica Scandinavica, ISSN 1395-3907, E-ISSN 1600-0420, Vol. 79, no 6, p. 603-608Article in journal (Refereed) Published
Abstract [en]

Purpose: To evaluate hyaluronan (HA) production and level of apoptosis of corneal cells after repeated UVR exposures. Methods: Fifteen albino rabbit corneas were exposed to 310 nm UVR at a dose that causes biomicroscopically significant keratitis (0.47 J/cm2). Nine rabbits received a single dose of UVR. Six rabbits were irradiated 3 times at 7-day intervals. Rabbits exposed to the single dose of UVR, were sacrificed 24 hours, 7 and 14 days after irradiation. Rabbits exposed to the repeated doses of UVR, were sacrificed 24 hours and 14 days after the last irradiation. The corneal tissue specimens were processed for histological analysis using specific staining for HA, and the TdT-dUTP terminal nick-end labeling (TUNEL) assay. Results: Corneas exposed to a single UVR dose showed extensive positive TUNEL staining 24 hours after exposure. Almost all basal epithelial cells, keratocytes throughout the entire thickness of the stroma, and endothelial cells were TUNEL-positive. No HA was found 24 hours after exposure. Extracellular HA staining of high intensity was found at day 7 throughout the entire central stroma, except the anterior one-fourth. At day 14 only a faint HA staining was detected in the posterior stroma, close to Descemet's membrane. Corneas exposed to repeated UVR doses showed at 24 hours positive TUNEL staining only in epithelial cells and in very few stromal cells. The majority of stromal cells and endothelial cells were unaffected. At the same time HA staining of very high intensity was found both at 24 hours and day 14, and it was evenly distributed throughout the entire thickness of the stroma. Conclusion: Repeated UVR exposures lead to increased production and accumulation of HA in the corneal stroma. The repopulated keratocytes are much more resistant to apoptosis than the native ones. HA accumulation may be a sign of long-term changes in the cornea.

National Category
Medical and Health Sciences
Identifiers
urn:nbn:se:liu:diva-27747 (URN)10.1034/j.1600-0420.2001.790611.x (DOI)12488 (Local ID)12488 (Archive number)12488 (OAI)
Available from: 2009-10-08 Created: 2009-10-08 Last updated: 2017-12-13
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