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Published in: Graefe's Archive for Clinical and Experimental Ophthalmology 3/2017

Open Access 01-03-2017 | Cornea

Pterygium surgery using the principle of contact inhibition: results of 13 years’ experience

Authors: Tsutomu Hara, Takako Hashimoto, Takeshi Hara

Published in: Graefe's Archive for Clinical and Experimental Ophthalmology | Issue 3/2017

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Abstract

Purpose

To report a technique to prevent pterygium recurrence using the principle of contact inhibition.

Methods

Two hundred and fifteen patients (232 eyes; average age, 64.1 years) with primary pterygia who underwent pterygium surgery at the Hara Eye Hospital between 1999 and 2012. We retrospectively evaluated the patients who underwent the following procedure to prevent pterygium recurrence. The surface conjunctiva on the pterygium body was not removed. After removing the pterygium body, by placing a narrow pedicle autoconjunctival flap along the corneal limbus and tying it tightly to the front area of the residual conjunctiva, there is no room for the active residual tissue to proliferate, thus preventing a recurrence by contact inhibition. The key factor is conjunctival suturing, which establishes face-to-face contact of both areas of cut conjunctival tissue. Mitomycin C is applied locally for 3 min intraoperatively and 5 days postoperatively. The main outcome measure was the prevention of pterygium recurrence using this technique.

Results

By the end of the average follow-up of 5 years 4 months, three eyes (1.3%) had a recurrence. Among the 232 eyes, 23 eyes had large pterygia extending to the pupillary area. Using the surgical technique, there were no recurrences. No specific characteristic of the recurrence was found in association with the eye, sex, and preoperative grade.

Conclusions

This surgery has three relevant features: (1) reconfirmation of the effect of contact inhibition, (2) the anatomic structure of the conjunctival sac scarcely changes postoperatively, because the surface conjunctiva of the pterygium body is not removed, and (3) a low recurrence rate.
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Literature
1.
go back to reference Hara T, Shoji E, Hara T, Obara Y (1994) Pterygium surgery using the principle of contact inhibition and a limbal transplanted pedicle conjunctival strip. Ophthalmic Surg 25:95–98PubMed Hara T, Shoji E, Hara T, Obara Y (1994) Pterygium surgery using the principle of contact inhibition and a limbal transplanted pedicle conjunctival strip. Ophthalmic Surg 25:95–98PubMed
2.
3.
go back to reference Levenberg S, Yarden A, Kam Z, Geiger B (1999) p27 is involved in N-cadherin-mediated contact inhibition of cell growth and S-phase entry. Oncogene 18:869–876CrossRefPubMed Levenberg S, Yarden A, Kam Z, Geiger B (1999) p27 is involved in N-cadherin-mediated contact inhibition of cell growth and S-phase entry. Oncogene 18:869–876CrossRefPubMed
4.
go back to reference Küppers M, Faust D, Linz B, Dietrich C (2011) Regulation of ERK1/2 activity upon contact inhibition in fibroblasts. Biochem Biophys Res Commun 406:483–487CrossRefPubMed Küppers M, Faust D, Linz B, Dietrich C (2011) Regulation of ERK1/2 activity upon contact inhibition in fibroblasts. Biochem Biophys Res Commun 406:483–487CrossRefPubMed
6.
go back to reference Kaufman SC, Jacobs DS, Lee WB, Deng SX, Rosenblatt MI, Shtein RM (2013) Options and adjuvants in surgery for pterygium: a report by the American Academy of Ophthalmology. Ophthalmology 120:201–208CrossRefPubMed Kaufman SC, Jacobs DS, Lee WB, Deng SX, Rosenblatt MI, Shtein RM (2013) Options and adjuvants in surgery for pterygium: a report by the American Academy of Ophthalmology. Ophthalmology 120:201–208CrossRefPubMed
7.
go back to reference Tan DT, Chee S, Dear KB, Lim AS (1997) Effect of pterygium morphology on pterygium recurrence in a controlled trial comparing conjunctival autografting with bare sclera excision. Arch Ophthalmol 115:1235–1240CrossRefPubMed Tan DT, Chee S, Dear KB, Lim AS (1997) Effect of pterygium morphology on pterygium recurrence in a controlled trial comparing conjunctival autografting with bare sclera excision. Arch Ophthalmol 115:1235–1240CrossRefPubMed
8.
go back to reference Yanyali AC, Talu H, Alp BN, Karabas L, Ay GM, Caglar Y (2000) Intraoperative mitomycin C in the treatment of pterygium. Cornea 19:471–473CrossRefPubMed Yanyali AC, Talu H, Alp BN, Karabas L, Ay GM, Caglar Y (2000) Intraoperative mitomycin C in the treatment of pterygium. Cornea 19:471–473CrossRefPubMed
9.
go back to reference Mackenzie FD, Hirst LW, Kynaston B, Bain C (1991) Recurrence rate and complications after beta irradiation for pterygia. Ophthalmology 98:1776–1781CrossRefPubMed Mackenzie FD, Hirst LW, Kynaston B, Bain C (1991) Recurrence rate and complications after beta irradiation for pterygia. Ophthalmology 98:1776–1781CrossRefPubMed
10.
go back to reference Mourits MP, Wyrdeman HK, Jurgenliemk-Schulz IM, Bidlot E (2008) Favorable long-term results of primary pterygium removal by bare sclera extirpation followed by a single 90Strontium application. Eur J Ophthalmol 18:327–331PubMed Mourits MP, Wyrdeman HK, Jurgenliemk-Schulz IM, Bidlot E (2008) Favorable long-term results of primary pterygium removal by bare sclera extirpation followed by a single 90Strontium application. Eur J Ophthalmol 18:327–331PubMed
11.
go back to reference Kenyon KR, Wagoner MD, Hettinger ME (1985) Conjunctival autograft transplantation for advanced and recurrent pterygium. Ophthalmology 92:1461–1470CrossRefPubMed Kenyon KR, Wagoner MD, Hettinger ME (1985) Conjunctival autograft transplantation for advanced and recurrent pterygium. Ophthalmology 92:1461–1470CrossRefPubMed
12.
go back to reference Hirst LW (2012) Recurrence and complications after 1000 pterygium surgeries using pterygium extended removal followed by extended conjunctival transplant. Ophthalmology 119:2205–2210CrossRefPubMed Hirst LW (2012) Recurrence and complications after 1000 pterygium surgeries using pterygium extended removal followed by extended conjunctival transplant. Ophthalmology 119:2205–2210CrossRefPubMed
13.
go back to reference Prabhamsawat P, Barton K, Burkett G, Tseng SCG (1997) Comparison of conjunctival autografts, amniotic membrane grafts, and primary closure for pterygium excision. Ophthalmology 104:974–985CrossRef Prabhamsawat P, Barton K, Burkett G, Tseng SCG (1997) Comparison of conjunctival autografts, amniotic membrane grafts, and primary closure for pterygium excision. Ophthalmology 104:974–985CrossRef
14.
go back to reference Ozdamar Y, Mutevelli S, Han U, Ileri D, Onal B, Ilhan O, Karakaya J, Zilelioglu O (2008) A comparative study of tissue glue and vicryl suture for closing limbal–conjunctival autografts and histologic evaluation after pterygium excision. Cornea 27:552–558CrossRefPubMed Ozdamar Y, Mutevelli S, Han U, Ileri D, Onal B, Ilhan O, Karakaya J, Zilelioglu O (2008) A comparative study of tissue glue and vicryl suture for closing limbal–conjunctival autografts and histologic evaluation after pterygium excision. Cornea 27:552–558CrossRefPubMed
15.
go back to reference Kheirkhah A, Hashemi H, Adelpour M, Nikdel M, Rajabi MB, Behrouz MJ (2012) Randomized trial of pterygium surgery with mitomycin C application using conjunctival autograft versus conjunctival–limbal autograft. Ophthalmology 119:227–232CrossRefPubMed Kheirkhah A, Hashemi H, Adelpour M, Nikdel M, Rajabi MB, Behrouz MJ (2012) Randomized trial of pterygium surgery with mitomycin C application using conjunctival autograft versus conjunctival–limbal autograft. Ophthalmology 119:227–232CrossRefPubMed
16.
go back to reference Al Fayez MF (2013) Limbal–conjunctival vs conjunctival autograft transplant for recurrent pterygia: a prospective randomized controlled trial. JAMA Ophthalmol 131:11–16CrossRefPubMed Al Fayez MF (2013) Limbal–conjunctival vs conjunctival autograft transplant for recurrent pterygia: a prospective randomized controlled trial. JAMA Ophthalmol 131:11–16CrossRefPubMed
17.
go back to reference Akura J, Kaneda S, Matsuura K, Setogawa A, Takeda K, Honda S (2001) Measures for preventing recurrence after pterygium surgery. Cornea 20:703–707CrossRefPubMed Akura J, Kaneda S, Matsuura K, Setogawa A, Takeda K, Honda S (2001) Measures for preventing recurrence after pterygium surgery. Cornea 20:703–707CrossRefPubMed
18.
go back to reference Young AL, Leung GY, Wong AK, Cheng LL, Lam DS (2004) A randomised trial comparing 0.02% mitomycin C and limbal conjunctival autograft after excision of primary pterygium. Br J Ophthalmol 88:995–997CrossRefPubMedPubMedCentral Young AL, Leung GY, Wong AK, Cheng LL, Lam DS (2004) A randomised trial comparing 0.02% mitomycin C and limbal conjunctival autograft after excision of primary pterygium. Br J Ophthalmol 88:995–997CrossRefPubMedPubMedCentral
19.
go back to reference Shimazaki J, Yang HY, Tsubota K (1996) Limbal autograft transplantation for recurrent and advanced pterygia. Ophthalmic Surg Lasers 27:917–923PubMed Shimazaki J, Yang HY, Tsubota K (1996) Limbal autograft transplantation for recurrent and advanced pterygia. Ophthalmic Surg Lasers 27:917–923PubMed
20.
go back to reference Masuda A, Takahashi K, Minami K, Miyata K (2013) Pterygium excision using bulbar conjunctival autograft with intraoperative mitomycin C for pterygium: a retrospective assessment of 1932 eyes. J Jpn Ophthalmol Soc 117:743–748 Masuda A, Takahashi K, Minami K, Miyata K (2013) Pterygium excision using bulbar conjunctival autograft with intraoperative mitomycin C for pterygium: a retrospective assessment of 1932 eyes. J Jpn Ophthalmol Soc 117:743–748
21.
go back to reference Young AL, Tam PM, Leung GY, Cheng LL, Lam PT, Lam DS (2009) Prospective study on the safety and efficacy of combined conjunctival rotational autograft with intraoperative 0.02% mitomycin C in primary pterygium excision. Cornea 28:166–169CrossRefPubMed Young AL, Tam PM, Leung GY, Cheng LL, Lam PT, Lam DS (2009) Prospective study on the safety and efficacy of combined conjunctival rotational autograft with intraoperative 0.02% mitomycin C in primary pterygium excision. Cornea 28:166–169CrossRefPubMed
22.
go back to reference Mahdy MA, Bhatia J (2009) Treatment of primary pterygium: role of limbal stem cells and conjunctival autograft transplantation. Eur J Ophthalmol 19:729–732 Mahdy MA, Bhatia J (2009) Treatment of primary pterygium: role of limbal stem cells and conjunctival autograft transplantation. Eur J Ophthalmol 19:729–732
23.
go back to reference Luanratanakorn P, Ratanapakorn T, Suwan-Apichon O, Chuck RS (2006) Randomised controlled study of conjunctival autograft versus amniotic membrane graft in pterygium excision. Br J Ophthalmol 90:1476–1480CrossRefPubMedPubMedCentral Luanratanakorn P, Ratanapakorn T, Suwan-Apichon O, Chuck RS (2006) Randomised controlled study of conjunctival autograft versus amniotic membrane graft in pterygium excision. Br J Ophthalmol 90:1476–1480CrossRefPubMedPubMedCentral
24.
go back to reference Hirst LW (2011) Cosmesis after pterygium extended removal followed by extended conjunctival transplant as assessed by a new, web-based grading system. Ophthalmology 118:1739–1746CrossRefPubMed Hirst LW (2011) Cosmesis after pterygium extended removal followed by extended conjunctival transplant as assessed by a new, web-based grading system. Ophthalmology 118:1739–1746CrossRefPubMed
25.
go back to reference Hara T, Hara T (1983) Simple pterygium surgery with an electric drill and mitomycin-C eye drops. Afro-Asian J Ophthalmol 1:160–163 Hara T, Hara T (1983) Simple pterygium surgery with an electric drill and mitomycin-C eye drops. Afro-Asian J Ophthalmol 1:160–163
Metadata
Title
Pterygium surgery using the principle of contact inhibition: results of 13 years’ experience
Authors
Tsutomu Hara
Takako Hashimoto
Takeshi Hara
Publication date
01-03-2017
Publisher
Springer Berlin Heidelberg
Published in
Graefe's Archive for Clinical and Experimental Ophthalmology / Issue 3/2017
Print ISSN: 0721-832X
Electronic ISSN: 1435-702X
DOI
https://doi.org/10.1007/s00417-016-3558-9

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